How To Manage And Reverse Diabetes Naturally – Nutritional Remedies. There are millions of people suffer from Diabetes. Diabetes isn’t the major danger with disease itself, but complications that can lead to cause of Diabetes – related death. ____________________________________________________________________ In this webinar, Veronica Yoo will cover; 1. What Is Diabetes & Types of Diabetes 2. How Does The Hormone Insulin Work In The Body. 3. What Is Insulin Resistance And Signs & Symptoms Of Insulin Resistance. 4. Solutions: Reversing Diabetes – Nutritional Remedies
Veronica Yoo is a Nutritionist, Published author, Instructor, and WBFF professional figure athlete whose energy and passion for her work is infectious. She is a firm believer in whole food based cleansing the body when starting with new clients and is a specialist in hormones and how do they effect the problems which may be affecting the client, there are many different reasons why clients are overweight and unhealthy and she treats each client with a different plan to make sure they get better get healthy and of course take off the unwanted weight they have gained over the years. Most of her clients are middle aged men/women who have weight issues as well as other health problems that need to be addressed so they can live a healthy and optimal life. She is very well versed in the benefits of herbs vitamins and minerals which can be used to help treat many problems that modern medicine is used to treat, but without any of the side effects. She lives what she teaches to clients and students. She is committed to helping others transform their lives by regenerating organ function and resetting hormone balance through her health and wellness programs for optimal living.
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There is a healthy eating campaign in the UK & a Type 2 diabetic rugby player will also be featured.
Aged 28, Dan Millington is 1 of 7 people to feature in the Diabetes UK led ‘food you love’ campaign & will be a showcasing how he has not let diabetes come in between him and his food.
In the year 2010, Dan was diagnosed diabetes after he noticed he was losing weight & had been feeling really tired & thirsty.Watch Diabetic rugby player hopes to inspire health management
High hopes to inspire
The charity has high hopes to inspire a lot of people from over the world with this disease to make best changes to manage their diabetes.
On showcase at event
He will be showcasing green masala fish curry.
Dan is also a Tesco driver. He says that diabetes is something that can haunt you at first. But there are amazing people in the world to help with advice and willing to support you.
Diabetes is not about do’s & don’ts, it is mainly about moderation & finding the balance.”
Dan’s life now
After he was diagnosed, he has till now lost 5 ½ stones by changing his lifestyle and still plays rugby for his local team and enjoys it.
He no longer needs any medications to manage this condition & keeps control on himself along with diet & exercise.
The head at Diabetes UK Stephen Ryan said: to enjoy what we eat gives us pleasure, but when it comes to eating healthy, we need some inspiration.
On a daily basis, we get questions from diabetic people on what our experts say to eat and not to eat.
We say, these recipes for the food we love that is healthier as a practical answer.
We also hope that Dan’s story inspires diabetic people to start wearing the chef caps and start cooking something healthy. These recipes make a delicious meal.
In the UK, 4.5 million people have diabetes, 1 million have the type 2 diabetes but are unaware of the problem as they have not been diagnosed.
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We know that there are many serious side effects that come with diabetes. They are heart trouble, nerve damage, kidney failure, blindness & amputations. We now hear of a new connection of diabetes with high risk of bone fractures.
We got the transcript of an interview between the Bioscience-Medicine reporter Wendy Rigby and Dr. Ajeya Joshi of South Texas Spinal Clinic on this topic.
Rigby: So, let’s get started. Sir, how is it that having diabetes puts you at greater risk of brittle bones. What is happening here to increase the risk of osteoporosis in type 1one & type 2 diabetics?
Joshi: To start with, diabetes can actually affect every organ in our body. We have now found out that it affects our bones.
If we think that it is the sugar that is floating in our bloodstream, we know that the blood is flowing to the bones too.
The sugar goes into the bone matrix, corrodes it. It does not matter now much bone you have, it is how strong the bone is.
Rigby: That means that means that if a person has diabetes, they have more chances of a fracture than a normal person without diabetes.
Joshi: Yes, that is true. We have to interpret the bone scan for diabetic people differently. They have more chances of fracture. We did not understand these 5 to 10 years ago.
Rigby: So, what part of our body is most affected?
Joshi: For example, wrists fracture in a 50 year old female tennis player or a vertebral fracture which is very common.
Another important factor is the fact of how tall our patients are. We see people losing height over time.
The most important as we grow old is the shoulders and hips.
Rigby: Here, how can we help a person if we know they are diabetic and developing this?
Joshi: We need to rethink how to help them with the low bone density. For diabetics, most important is to avoid the vascular problems like a stroke or kidney failure; most important is the control of sugar.
Rigby: You recently published this paper and data used from University Health System. Where was it published? & who exactly are you trying to reach out?
Joshi: Firstly, I was excited as I was part of such a research. Secondly, was published in the Journal of Immigrant and Minority Health.
Rigby: What exactly did you find about Hispanic diabetics?
Joshi: Being both diabetic & Hispanic increased the risk of fracture above the population that was diabetic but not Hispanic by 1 ½ – 2 times. Therefore, we have to give more attention to such patients. We must communicate, educate and do more research on the background behind it.
Rigby: Right now, people hearing or watching this news might wonder how to make their bones stronger if they have this disease. What do they do?
Joshi: what I think is that you need to be aware of the things around you. Have a good lifestyle, eat right, and control your sugar. Manage your weight by walking daily, this is a good habit.
Rigby: Sir, do you see more research done on this area in future.
Joshi: I certainly hope so.
Rigby: Alright, thank you so much for speaking with us Dr. Joshi; it was great to be here.
Joshi: It is my pleasure to be here. Thank you.
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Young adults with the Type 2 diabetes on high risk to develop an eye disease, researchers say.
This is the most common form of eye disease.
This can be seen when changes in blood glucose levels cause changes in retinal blood vessels.
We find out about this very late & it usually affects up to 80% of people who have had diabetes for 20 years and more.
Anyway, the study showed that the earlier we get Type 2 diabetes, the faster & greater will be the vision problem be. The increased chance of diabetic retinopathy is very much associated with early-onset diabetes and is not to be avoided.
We think that his young generation has greater chances of diabetes.
Additionally with further the complications to the eye is possible. -lead author Muthuswamy Balasubramanyam at the MDRF.
The reason being, they are not taking care of their bodies.
They do not think much about what they are eating.
Subsequently, the lifestyle is remarkably different to what it was earlier.
In the journal of Diabetes and its complications, researchers also mentioned about elevated levels of certain biomarkers such as monocyte chemotactic protein 1 (MCP-1) & cathepsin-D in the diabetic patients, subsequently raising the risk of developing diabetic retinopathy.
The people with Type 2 diabetes have higher levels of MCP-1 & cathepsin-D which means they accelerate faster towards aging and this in return will form the complications to the eye sooner.
The new young generation needs to learn how to manage their food intakes and not eat junk foods.
Speaking about this, yoga is useful however exercise is comaratively a second best options to remain healthy.
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A North Bay business has expanded after it joined forces with a Southern Ontario-based company.
Reconnect which provides speech, language & swallowing assessment to adults with difficulties from brain injury, stroke and neurological diseases has now converted to Community Rehab North, the 1st Northern Ontario location for the Community Rehab, which has its head office in Hamilton & has branches in London, Brampton, Cambridge & Catharines.
The Community Rehab North on Wednesday officially opened its doors at 204 First Avenue.W
Monique Lugli is the director who is also a speech pathologist & Reconnect’s founder.
Community Rehab North services
The Community Rehab North offers various services.
This includes speech-language pathology, physiotherapy, occupational therapy, dietician services in the home or work environment and also does social work.
“We have been here as a company since 20 years and our head office is in Hamilton.
It is when Monique thought of growing her business that we looked at a partnership with her in North Bay -said Lynn Corbey (executive vice president at Community Rehab)
He also said that the Community Rehab North will work close with the public sector agencies such as the Community Care Access Centre & local hospitals as it will handle the needs of private sector employers & insurance companies.
We have the services needed but sometimes it is hardest to find the professionals for rehab. We also have a large number of therapist who work with us.
Community Rehab North also has its plans in place in case of any overloads to hospitals. We can also provide therapists to the CCAC.
I personally have lived in North Bay for 4 years.
“Our goal is to make sure we grow without any backdrops.
Also want to offer the best to the residents in our area with our professional and reliable services.
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The reports of the arrest of 3 cannibalistic Floridians who seem to have feasted on human remains for some medical reasons are fake news.
Furthermore, they believe that eating human flesh cures diabetes and depression by 3 Florida men who were arrested.
The Miami Herald web site had published an article on the 30th of May positing that 3 Florida men arrested for eating human flesh and it cured diabetes and depression also.
The cops in Vernal Heights, Florida have arrested 3 men practicing cannibals who have this claim. They mentioned that it cures both types of diabetes though Type 1 is incurable.
Gregory Moore, the chief of police was on a daily routine and assumed it was just a noise complaint.
The cops arrived at the Toolson Lane (the home of William Provost) around 7:45 PM on a Sunday evening.
They received a complaint from the neighbors of weird sounds from the house.
The officers said that they reached the house and saw the scene. It was taking place in the basement where the 3 men were sitting forming a circle and chanting religious chants while consuming the human remains. The cops check what they are eating.
There is no truth to this story, whose lone source was the Miami Gazette web site.
Surely, this is not the online operation of a legitimate newspaper but rather a news site that updates fake news. The disclaimer states that the site uses “satirical” material in nature & fake news.
To start with, the Miami Gazette is an entertainment & satire web publication.
Furthermore the Miami Gazette also publishes large NON-POLITICAL, satirical in nature.
Fake news articles created and intended only for entertainment purpose.
They stay away from Political nature as it can create debates or conflicts. We only provide an outlet for our writers & contributors to develop creative, outrageous & 100% fictional, tall-tales that our audience can enjoy reading & sharing with friends.
Any content published on The Miami Gazette is intended to be entertainment & is often intended to generate thoughts & discussion among its readers.
Any resemblance to the truth is purely coincidental and not to take it seriously.
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We know there are 2 types of diabetes namely Type 1 and Type 2.
Diabetes is among the fastest growing diseases in the world. If we leave it untreated, it can cause life-threatening conditions & also death. We now see medical establishment creating new methods of management.
The trend nowadays is the usage of Technology. Today, a diabetic is mostly wired up with Bluetooth sensors & custom software that turns them into real-life cyborgs.
This is what happens. Actually when we eat food, it is split into 3 basic categories:
Carbohydrates are usually found in plant products that break down into a sugar called glucose in our digestive system. This glucose is turned into fuel to power our mind & muscles.
The body is able to do that conversion with the help of a hormone called Insulin, which gets produced by beta cells in our pancreas.
In Type 1 diabetics, the body does not produce it. Their immune system destroys those beta cells for an unknown reason.
In Type 2 diabetics, the body produces it but in less effective to do the conversion.
If the body cannot break down glucose, it has to get energy from other places mostly fat, but nothing is safe. This leads to a state of ketosis, where the acids released from fats build up. These acids can cause a wide variety of nerve & tissue damage.
They must continuously monitor their carbohydrate intake & then inject an appropriate amount of insulin to control.
If the intake is too little, they go into ketosis. Vice-versa can drop their blood sugar dangerously low, which can also lead to comas & death. It is a daily life and death situation.
This was how it was done 50 years back
The diabetic would wake up in the morning & pee into a test tube. Then they would have to add a tablet into that test tube that would change the color to show if the blood sugar was high, normal or low.
Then, take an Insulin injection and inject into their body that would last the entire day. Later, they would boil it in hot water and sterilize it for the next day.
We all know that the life expectancy for a diabetic is very short. It is only now, that there has been better ways to manage diabetes or else people would die even sooner.
In previous times around 1980’s, a Finger prick blood glucose monitor had come out.
A drop of blood had to be introduced to an enzyme & an electrical current was to be passed through it. The number of electrons the sample would lose correlates to the amount of glucose present in the sample.
This was significantly more precise and would deliver a numerical representation of the patient’s current blood sugar.
That was dropped after the development of faster-acting insulin where diabetics could treat highs as they occur.
Secondly, it was to monitor their glucose throughout the day and made the required adjustments as and when needed.
Next was an accidental scientific discovery in the mid-1990s that helped change the life of diabetics around the world.
The researchers were experimenting with the body’s cell fluid in the skin & discovered that it actually mirrors the blood glucose level with a 15 minute delay.
In the year 1999, MiniMed got FDA approval for the 1st continuous glucose monitor which is an electrode that is inserted into a diabetic’s skin which transmits a reading every 5 minutes without the need to draw blood.
T, Diabetics could get readings throughout the day. as of now, the sensors are good for about 3 days and have to be replaced as the body rejects it after that period. As of now, there are modern ones available that last almost a week.
In the year 1973, Dean Kamen (inventor of the Segway) debuted the world’s 1st wearable insulin pump, which was a device that could dose any amount of insulin to a diabetic through a small tube which is attached to the body. This gave diabetics even better control over their treatment, enabling them to dose themselves right amounts.
This is now, a new treatment is the “The artificial pancreas,” a device that combines the 2 into 1. It has passed clinical trials & is slowly coming into light around the world. Though it uses complex algorithms, they monitor blood glucose & treat it at the same time in a “closed-loop” system that also administers glucose when blood sugars are too low.
The results are very positive. Just like existing pumps & CGMs, they still have to be changed out regularly, but this system marks a significant advance in treatment.
Upcoming Treatment of Diabetes
This seems to be very exciting. as of now, companies are working on insulin that does not have to be injected, but rather gets absorbed through the skin with a sound-activated patch.
Meanwhile, a company is working on something that can be inhaled before a meal.
Therefore, we are truly in safe hands.
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The Aussie soft drinks have a much higher level of glucose which is a cause of the hike in chances to develop a heart disease & Type 2 diabetes.
The Australian soft drinks increases the risk of diabetes as there is 22% more glucose in contrast to the US brands.
More than 30% of population consumes soft drinks on a daily basis.
A Professor from the Baker Heart and Diabetes Institute, Bronwyn Kingwell said that this study is very much relevant to the Australians and their consumption of the soft drinks.
She also mentioned that it is the glucose and not the fructose that elevates the plasma glucose & insulin which allows the body to develop the diseases like diabetes after they consume the drinks.
In recent times, a new Tax on Sugar-sweetened beverages has been requested. The proposal made to the Federal Government is to help reduce the high rates of Diabetes.
This request made by many leading health organizations like (AMA) Australian Medical Association, the Royal Australian College of General Practitioners & also the Consumers Health Forum.
Professor Kingwell said:
It is now a major concern rising in the society.
Eventually, we build up fats in our liver.
What is unknown by the public are its effects on their health.
A new study by Kingwell found that 39% of all men & 29% of women drank the sugar-sweetened beverages on a daily basis which accounts for it to be the largest source of sugar in the Australian diet.
We now need to spread the awareness.
In the meantime, more research can be done on this topic.
In order to do this, people must stop drinking these drinks or significantly, lower its consumption levels. Doing so, we can
On the other side, the manufacturers of these drinks rejects the observations made and say no such link exists.
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Bolivia joins hands with traditional healers to help diabetics who are wary of modern medicine.
Diabetes is fast emerging into a national crisis in Bolivia.
Nearly half a million Bolivians, some 4.5% of the total population, suffer from the disease & a change of diet is being held responsible.
With many diabetics also not comfortable with modern medicine, the government has teamed up with traditional healers to deal with the growing & imminent health problem.
“For me, it’s imperative to incorporate inherited teaching … [patients] can heal with plants & herbs,” said German Mamani, a specialist in conventional remedies.Find out How conventional Bolivian healers deal with diabetes crisis
Up until the 1980s, conventional medicine was prohibited in Bolivia. Now, the government encourages traditional practitioners to work alongside contemporary medicine to reach those with diabetes, especially in native communities.
Merging both traditional curative practices & current medicine is helping to educate Bolivians on prevention.
“Bolivia is a largely an indigenous society & is increasingly using its ancient medicines to deal with a very modern problem,” said Mario Vargas, a Kallawaya, or traditional healer, who practises an ancient type of medicine inherited from his ancestors & adapts it to the modern world.
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Watch the insider report – Islet Cell Diabetes Treatment
The day is not far when doctors will be able to “Cure” Diabetes Patients With A Bio-Engineered Pancreas Implant
Science is always been on the lookout for more sophisticated medical treatments, unfortunately even the most forward thinking methods can have a inadequate effect on genetic conditions. That’s why it’s amazing that scientists are now at the brink of a breakthrough that could in the near future eliminate at least one common medical condition haunting humanity.
Scientists at the University of Miami’s Diabetic Research Institute have managed to bio-hack a diabetic patient’s anatomy in a unique way that she never has to administer an insulin shot ever again.
The undisclosed patient suffers from a variant of Type 1 diabetes, one that’s capable of crippling a person’s lifestyle, thanks to the strict nutritional & medication management it calls for. The researchers transplanted insulin-manufacturing islet cells into the membrane close to her abdomen in order to counter the need for synthetic insulin supplements. Now, almost one year later, the team is delighted to find the surgery is a victory, with the cells still in full working order.
The change of surgery location was also important, as it avoids technical hitches that arise when these cells are implanted, (conventionally) into the liver. The end game now is to spot a suitable position to implant a bioengineered imitation pancreas called the Bio-Hub, that could fabricate insulin to completely offset the patient’s diabetes.
The results are momentous, as the patient says her life prior to the surgery revolved around her condition. “Her quality of life was dramatically impacted,” said the study’s lead author Dr David Baidal told HealthDay. “She had to relocate and live with her parents. And, if she travelled, she had to take the trip with her father.”
If not appropriately treated, diabetes can lead to a variety of further problems, ranging from blindness to nerve damage, & even death. The test’s encouraging results then are a ray of hope to diabetes patients around the globe, who could soon be able to live regular, healthy lives. Instead of relying on a watcher & prescriptions, one simple surgery could render them similar to the next healthy individual, not having to always focus on their medical state.
“We’re looking into a way to optimise islet cell treatment to a larger population,” said Baidal. “This study gives us hope for a radically different transplant approach.”
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You want to manage your blood glucose levels, here is an app that will help.
For individuals with type 2 diabetes, managing glucose levels can be a daily challenge.
Recently, introduction of a new algorithm-based app may soon take some of this stress away.
A lot of work pending in the process.
The idea behind the personalized technology is to predict the impact of each meal on a user’s blood sugar levels.
For a fact, Type 2 diabetes affects upwards of 29 million people in the United States.
Additionally, as a result 86 million adults have prediabetes.
Can develop into type 2 diabetes if lifestyle changes not implemented.
Need for checking our intake of foods to ensure the correct blood glucose levels are maintained. most importantly if levels are too high for prolonged periods of time, serious health complications can arise.
In short, medication is done to help manage sugar level fluctuations, but exercise and diet also play a substantial role.
The impact of specific food types on glucose levels being estimated is not an exact science.
Effects can vary substantially between individuals and they can even vary within an individual dependent on a range of factors.
A report, published in PLOS Computation Biology explains how a group of scientists have integrated an algorithm into an app called Glucoracle, which goes some way toward solving this problem.
In New York, at CUMC, David Albers, Ph.D, lead author of study explains:
“It is tough for people to understand the true impact of the dietary choices even after expert’s guidance.
Albers and team attempt to design an algorithm that can help individuals to make more informed dietary decisions.
App for diabetes
Albers explains how the app works:
“The algorithm as a result is integrated in an easy-to-use app to predict the consequences of eating certain meal before the food is eaten, allowing individuals to make better nutritional choices during mealtime.”
The algorithm used a technique utlized in a range of modern applications.
Includes weather prediction.
The app does data include blood sugar measurements and nutritional information & makes a mathematical model of an individual’s response to glucose on a daily basis.
Lena Mamykina, Ph.D., assistant professor of biomedical informatics at CUMC and a study co-author, explains: “The data assimilator is continually updated with the user’s food intake and blood glucose measurements, personalizing the model for that individual.”
Users of Glucoracle have an option to upload pictures of a meal with rough estimates of nutritional content, along with fingerstick blood measurements.
On the bright side, the app can then almost provide an immediate prediction of post-meal blood sugar levels.
After using app for 1 week
Then it will produce predictions.
This allows the data assimilator to learn how the individual user responds to various types of food. The estimate and forecast adjusts for accuracy over time.
Overall research carried out on five individuals.
Three had type 2 diabetes and two did not.
Therefore the app predicted changes in glucose levels following a particular meal.
Similarly, we also compared it with the actual glucose measurements.
Readings quite accurately measured in the non-diabetic participants. 3 people with diabetes, the results turned inaccurate
To begin with, we thought that physiological fluctuations in patients .
Probably due to parameter error, results turned out inaccurate.
Secondly and most important, the predictions were “still comparable” to those of certified diabetes educators.
In contrast, the results are not perfect.
Moreover, Albers is not disheartened. with this in mind, he said:
Certainly, the next step is room for improvement.
The evaluation designed to prove possibility, using routine self-monitoring data, generate real-time glucose forecasts that people could use to make better nutritional choices.
We have made type 2 diabetes manageable easily.
We are trying to better the app.
Plans for larger clinical trial & researchers hope that the app will be ready for widespread use in two years.
To summarize, its all in the making.
There is no doubt, we all will be talking about this rather sooner than later.
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Recently, an 11-year-old Florida boy set out to cure diabetes and his family decided to sell their home and everything in it.
Named Noah Barnes, he has type 1 diabetes diagnosed since he was 16 months old.
He wants to make sure that no child has to go through what he is going through.
The Noah’s March Foundation has raised $15,000 dollars upto now. Noah will march across America in his effort to cure diabetes and spread awareness.
“Forty years ago they said they were pretty close to a cure and then 40 years later….. We still don’t have a cure. Noah Barnes says he is disappointed at this.
Noah got the idea after reading an article online about a diabetes walk fundraiser. He then asked his father– How far do I need to walk so that I can be cured?
Robert Barnes, the father was not sure of doing the walk and it took about 1 week for Noah to convince him. Noah started training.
Now, the whole family is marching from Key West Florida to Washington and it is like a long field trip says Robert.
The three siblings have been on the road for three months. Noah’s brother, 8-year-old John, says it hasn’t been easy. John says he likes the colder places as he does not like to sweat. Noah hopes that others too will support him on this journey.
Noah has worn shoes for this entire journey, and has 3 pairs of shoes. One was for training.
Noah Barnes has a commendable attitude and says “I do not want to quit.”
On the way, passing through Ashland city, they met few 4th grade children and spoke about diabetes and educated them.
Noah and his family will be passing by Chattanooga on Tuesday afternoon, before they head towards Nashville. They hope to be in Washington by the month of November. Noah and his siblings are homeschooling, while on the road.
The kids and us have been enjoying and it is great to meet people and spread awareness. It’s a joy.
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Scientists discover unconventional diabetes treatment in Texas.
Diabetes is the disease whereby a human is inability to process the carbohydrates.
A condition that if left untreated could lead to catastrophic health consequences such as lethargy, diminished eyesight, heart attacks, common strokes, sometimes blindness and a loss of blood circulation in the feet that could lead to amputation.
At the University of Texas, health researchers think that they have found a way to trick the body into curing the Type 1 diabetes.
An immune system of a diabetic person kills off useful “beta” cells, while researchers say they have got other options to make other cells in the pancreas perform the necessary work.
Earlier this month, as per their approach, in the academic journal Current Pharmaceutical Biotechnology, would have implications for Type 1, formerly called Juvenile diabetes, and also could help treat the very well known Type 2 variety, also known as Adult-onset diabetes.
Experiments were done on mice by the researchers which are genetically similar to people but different enough that new rounds of animal testing & millions of dollars and more are required before human trials can begin.
The researcher’s approach are sure to receive scrutinism as it is yet another attempt from the many other attempts at curing diabetes, which typically involve transplanting new cells and/or suppressing the immune system’s attempts to kill off the useful ones.
We are actually taking a cell that is in the human body and programme it to secrete insulin, without changing its characters” said Ralph DeFronzo, diabetes researcher at the UT Health Science Center @ San Antonio.
The Centers for Disease Control and Prevention estimated that in the year 2014, about 29 million Americans; 1 in 10 persons had diabetes.
The core problem is insulin. Most people naturally intake that substance when they eat something with carbohydrates, such as bread, potatoes and candy bars.
Insulin acts as an agent that delivers the sugar from the bloodstream into the cells, providing the cells with the energy to function. In most people, the body continuously monitors blood sugar and produces insulin as & when needed.
In Type Two diabetes, 9 out of 10 diabetes cases and generally associated with the older people and weight gains, the cells reject the insulin, causing sugar to collect and build up in the bloodstream even as cells are starved for energy.
Type Two treated with pills that tell the cells to let in the insulin. But in Type Two diabetes, the body often gradually loses the ability to produce insulin, requiring insulin injections.
In Type 1, the researchers studied that the body has simply stopped producing insulin.
This type is often seen in children, though it can sometimes develop in adults as well.
The People with Type 1 diabetes gain their Insulin from injections, which is an often imprecise task.
Intake of lesser amounts of insulin and blood sugar levels stay high for longer periods potentially damaging the body.
Vice-versa could induce a crash, possibly causing a person with diabetes to faint or experience even worse problems, such as a stroke.
DeFronzo’s partner, Bruno Doiron, decided to check whether the body could reliably produce insulin without the transplantation of new cells.
He used a “gene transfer” technique on mice.
Delivered through a virus, that activated insulin production in cells already in the pancreas, for instance, those that produced certain enzymes.
Fundamentally, we are not changing anything in the cell, we are only handing over an additional task.
The immune systems of mice did not attack the new cells producing insulin.
Very importantly, the cells did produce just the right amount of insulin, not so much that they sent a mouse into a blood sugar free fall, not so little that blood sugar levels stayed high.
The mice have shown no signs of diabetes for more than 12 months now, according to the findings.
Yet, lots of research pending before testing will start on people.
Now, raising enough money as they estimate $5-$10 million.
Later proceed to testing on larger animals, such as pigs, dogs or primates.
The next step that is in discussion with the U.S. Food and Drug Administration.
They hope to start the human trials in three years time.
DeFronzo and Doiron said they do expect skepticism.
Driven by how unconventional their work is.
The established technique used for transfer of gene using virus, approved dozens of times by the FDA to treat diseases.
Doiron also stated-“We can use the cells the body has naturally. “This wakes up the cells to produce insulin.”
Type 1 and Type 2 diabetes dealers
Both these diseases deal with insulin, the substance produced in body that takes sugar from our bloodstream into the cells & power the body.
Type 2 is far more common. The prime issue is that the cells reject insulin, causing sugar to build up in the bloodstream.
The common treatment is the pill that makes the cells accept the insulin (and sugar it carries into the cell). Over a period of time, people body stops producing it.
With Type 1 diabetes, people just stop producing insulin as body kills the cells in pancreas.
Those with Type 1 diabetes must inject or ingest insulin.
People with Type 2 increasingly depending on insulin injections, sometimes can be cured or controlled through diet and exercise.
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Can the temperature make a difference?
Yes, by lowering the central heating temperature by a mere 1 degree Centigrade, it could ease the effects of type 2 diabetes- according to a new study.
Dutch researchers clearly believe that, if we expose people with the type 2 diabetes to slightly cooler climate then,
Indeed it could increase insulin sensitivity by more than forty percent.
Further, this research could also help in further research on obesity and methods to tackle it.
Professor Wouter van Marken Lichtenbelt- lead author says-
“It was previously assumed that stable &fixed indoor temperatures could satisfy comfort level and health in most humans”
As per research
It indicates that mild cold and variable temperatures could well be having a very positive effect on the health of diabetics.
Mild cold and warm environments will increase metabolism, resulting in targeting obesity by counterbalancing excess energy intake.
As per survey, participants with type 2 diabetes exposed to intermittent mild cold.
Did you know, it increased their insulin sensitivity by Forty percent.
Overall, the heart health no doubt positively affected by regular exposure to heat as well and cold.
For a matter of fact, few authors also feel that in homes and offices, the adjustment in thermostat could significantly have positive effects on our health.
In 2014, the same team discovered that the colder temperatures were helping to tackle obesity.
One of the latest study shows that when we are exposed to cooler temperatures, we tend to quickly adapt to situations & end up feeling less tired and have more energy to keep going.
Notably when possible we must try exercising to maintain the body.
In a short interview, speaking to Richard Lorch (editor in chief of the journal) says
“This ground-breaking research gives a new approach to how we look at the heating and cooling of our buildings.
To conclude, our expectations and comfort levels affected by temperature, who would have thought?
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Chilli for diabetes is because when we eat chilli, it interacts with the same receptor in our stomachs.
The result is that it help calm the gut, scientists at the University of Connecticut found.
During experimentation with Mice, they were fed both chilli peppers and the class B drug showed less inflammation in their guts.
Also, the researchers even found that they were able to reverse type 1 diabetes in some mice, by feeding them the fiery pepper.
The chilli seemed to bind itself to a receptor called TRPV1, which is found in the gut, oesophagus and pancreas.
When it binds itself to the receptor, it creates a compound called as Anandamide, which is chemically quite similar to Cannabinoids found in Marijuana.
It was this compound that caused the immune system of these mice to calm down, by reducing the inflammation, and the same happened when they were fed anandamide directly.
Reducing the inflammation in the pancreas could help in the treatment of diabetes.
As the pancreas is responsible for the maintenance of insulin and glucose levels in the body.
Reason-A diabetes patient has too much glucose in their system and the pancreas is unable to regulate it.
The brain even creates anandamides when, the receptors in our brain react to people getting high.
Scientists have been unsuccessful to find out why those receptors existed in the past.
Pramod Srivastava, professor of immunology and medicine at the university, said:
“This allows you to imagine how the immune system and the brain might talk to each other as they share a common language.”
Additionally, chillies also help in losing weight, boost immunity, and also acts as a natural pain relief
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We all know that Diabetes is a growing problem in our kids.
Fact: Every year 25000 children diagnosed with diabetes.
To start, there are 2 different types of childhood diabetes namely Type 1 & Type 2.
Type 1 diabetes was initially called Juvenile Onset diabetes & is typically diagnosed in children and adolescents. Only five percent of those with diabetes have Type 1.
Our parents worry thinking that their kids will get diabetes as they eat a lot of sugar. Sugar does not directly cause type 1 diabetes.
Type 1 diabetes is an autoimmune disease where our immune system attacks and destroys the beta cells (insulin producing cells) of the pancreas. Scientists are not quite sure why it occurs, but it seems to be a combination of genetic & environmental factors, & has no relation with diet.
The Type 1 diabetes comes very suddenly and it depends on insulin for the rest of the child’s life.
Children who develop type 1 diabetes appear to be tired, thin & sick. Parents worry that their child is diabetic because the child drinks a lot of water though this is not the only symptom.
Luckily, the manner in which insulin is given now days continue to improve & most children now use an insulin pump, which delivers insulin in a consistent manner than earlier methods. Even after hopes of pancreas transplants and all, parents find it difficult to manage.
Type 2 diabetes, earlier called “Non-insulin dependent diabetes,” is quite different than before. Earlier diagnosed in adults, currently it is now rising in children too.
In type 2 diabetes, our body is unable to use insulin in the correct way and the glucose in the blood stream is unable to enter the cells. This is called insulin resistance. Hence, the pancreas tries to produce even more insulin to keep blood sugar levels normal. Over time, the pancreas may wear out completely. Type 2 diabetes can be controlled with an oral medication instead of insulin.
Type 2 diabetes occurs in those children who are
The more children in this country developed obesity, the more the number of cases of type 2 diabetes will continue to rise. In most cases, if a child changes their lifestyle starts a healthy diet, loses weight and importantly exercising, then the body may be able to restore normal insulin balance.
This is the big difference between the type 1 & type 2.
If any concerns for your child, child is showing any signs of diabetes, make sure to consult your doctor. Also, promote healthy eating habits and daily exercise.
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Could anyone believe that artificial organs could just be the norm where scientific research is considered?
Well, the University of Virginia has successfully developed also done a trial on the artificial pancreas to help children control Type 1 diabetes.
This could well be a major breakthrough in scientific research that will send shock waves throughout the community moving ahead.
Tangible and feasible solutions research done by scientists from all over the world to fight diabetes. Unfortunately, to no effect.
Though recently, there seems to be a small light at the far end of this long tunnel in recent times.
Though on paper, creating an artificial pancreas would sound like something worth checking out.
There is never a guarantee for success.
What this “organ” does is that it actively monitors & regulates the blood-sugar levels of its host.
This removes the need of manual injections of insulin nor do we need to prick our fingers to check blood sugar levels.
As advertised, this artificial pancreas is significant for the medical sector as a whole.
All data gathered by artificial pancreas sent to a reconfigured smart phone.
It will run algorithms to process the data.
The smart phone then forwards the information to a blood-sugar monitor & insulin pump worn by the person suffering from Type 1 diabetes.
Additionally, all information simultaneously broadcast to a remote monitoring site.
On patient behalf, data collected
Conduction of a field trial among twelve children and all were perfectly capable to control their diabetes using the new method.
Noticing, children wearing the artificial pancreas had lower average blood-sugar levels.
No increment in hypoglycemia during trial
This was designed for children between the age of five & eight.
And it differs from technology devised to support other age categories in upcoming future.
For the time-being, the plan is to monitor children for extended period of time and check whether the artificial pancreas is as effective at school as well.
Conducted first test during a 68-hour window both with and without the pancreas.
This only gives a glimpse of how this “organ” could hold up.
Further plans are to provide an artificial pancreas to children aged 14+ & suffering from Type 1 diabetes.
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The Type 1 diabetes is one of the most discouraging disease.
Although we have the availability of synthetic insulin and increasingly sophisticated monitoring technology, it is yet a condition that requires incessant vigilance. The diabetics must constantly track their blood sugar levels and re-evaluate their drug dosage. None the less, despite the management, bad days remain almost inevitable. If we intake large amount of insulin, and you can spiral into a hypoglycemic delirium. Take lesser & your glucose levels will rise, filling the body with dangerous levels of Ketones.
John Glass, A researcher working on one such new effort, knows how false hope can be maddening, having lived with the disease for decades. Type 1 diabetes, in theory, is quite easy to solve, not practically, he said. All said than done, he still takes insulin daily.
There are ways to re-engineer the genomes of skin bacteria in ways that would allow to execute functions that the diabetic’s bodies no longer can. Whether or not that ultimately works, synthetic biology will continue to provide ways around problems that have long been insurmountable for researchers.
Glass, Explains the Type 1 diabeties; At core, It is an Auto-immune disease, one that results from a biological glitch that leads the body to attack the insulin-producing beta cells of its own pancreas. Beta cells serve 2 primary functions in a healthy organism.
• They detect blood glucose levels within the body.
• When those levels begin to rise, the cells secrete insulin. The autoimmune kills off the beta cells, leaving the body with no way to process the carbohydrates it consumes.
Finally, the researchers behind this sought to re-engineer human embryonic kidney cells to copy the functions of the pancreatic beta cells that immune systems of those with diabetes destroy. These new cells were injected into diabetic mice, resulting in a success.
Can Synthetic Biology Finally Cure Diabetes?
It is the autonomous, or “closed loop,” quality that’s most exciting here that offers the potential to stabilize the body without the regular injections and blood sugar checks. True closed-loops recreate the healthy body through natural processes, just like these modified kidney cells that automatically distributes insulin in response to blood sugar fluctuations. Such systems have long been the holy grail for diabetic researchers.
Medical technologists too have been working long on devices that would achieve similar results by more mechanical means. MedTronic (recently received FDA approval) for what it calls a “closed loop” combination of a digital glucose sensor and an insulin pump that it has plans to roll out later this year. It can be a game-changing device, but it still demands involvement from the user, who must feed it the required information about the carbohydrate intake, regularly recalibrate the sensor & attach the sensors and insulin pump to their body. By comparison, synthetic biology promises to be a truly hands-off solution.
The diabetic body’s seemingly irreversible autoimmune response is the bane because the mimetic replacements resemble the natural beta cells, hence the immune system still recognizes them as targets and eventually kills them off. Although they work under experimental conditions for a few weeks, their effectiveness fades with time, as Glass and other researchers explained. “We yet do not know how to overcome that hurdle”
Chad Cowan, director of the diabetes program at the Harvard Stem Cell Institute, told us that the issue has been extremely difficult to resolve.
“Over the course of the last two years, we’ve … tried to talk to every immunologist and every person who works on autoimmunity, particularly if they have any focus on type 1 diabetes,” he said.
“Our overall assessment is that there isn’t an easy solution, at least in terms of modulating the immune system.”
It’s here that the real promise of Glass’ proposal reveals itself. He thinks he’s found a solution for the problem that would allow the body to autonomously produce insulin as needed & without risk of disruption.
Glass’s own professional involvement in the field began a few years ago when he met Alberto Hayek, a diabetes researcher and emeritus professor from University of California–San Diego.
Hayek introduced Glass to the work of a dermatologist named Richard Gallo, who discovered a beneficial bacteria living deep in the layers of our skin that seem to be overlooked by the immune system.
Would it be right to harvest and modify these microbes so that they function like Instead of making new beta cells that will face rejection ,they rather take something that the body still accepts and make it to act like a beta cell.
It seemed very feasible to Glass. Also, he might be able to “take those cells from any given person & put in the machinery beta cells?
that would allow those cells now to sense blood glucose, there in and amongst the capillaries that are in our skin.” And since the immune system usually passes over these particular microbes, it might just let the newly engineered cells go about their business. Further, We also know that if you put bacteria on your skin, they very quickly make it into the deep layers, meaning it could potentially be delivered via a nonintrusive application, such as personalized skin cream.
Glass’s work is still in its initial stage. He along with colleagues at JCVI are seeking funding to conduct experiments in mice.
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Brooklyn Borough President Adams Completely Reversed his Diabetes in 8 Months – this is a really inspiring true story set right in present day United Sates of America.
About a year ago, current Brooklyn Borough President Eric L. Adams admitted that he was diagnosed with Type 2 diabetes & a sugar level so elevated that his doctors were surprised he wasn’t already in a coma. After consulting with many specialists & doing his own research, Adams became certain: A vegetable-plant based diet was his only route to better health.
Adams spent twenty two years in the NYC PD. He was also the 1st African American to hold the high status of a New York senator. This is what Adams eats now “everything that doesn’t have a face, mother or father,” adding devoted vegan to his incredible resume.
Adams in an interview tried to explain that when we rid ourselves of animal products, we free ourselves of the pain, the injury, the disease & the constant fatigue. In his opinion we are all dying because our bodies can no longer require what we feed them.
He even pointed out the remarkable coincidence between high meat consumption & disease in impoverished communities. Adams also highlighted that people residing in these parts of the world don’t have access to plant-based options & are illiterate on maintaining a healthy diet. Adams has taken it upon himself or that coined it his mission to change that.
Not only is Adams promoting diabetes awareness at senior centers, but his borough is investing heavily and actively into urban gardens in schools. By educating students to cultivate vegetables, these schools empower healthier lifestyles.
Adams is sparing no effort to promote veganism and social media seems to be his choice of the moment.
In just eight short months, Adams has witnessed unprecedented results from his switch to a vegan diet; he lost thirty pounds & completely reversed his diabetes! This is encouraging news, considering this pancreatic disease can lead to heart attacks, stroke, nerve damage, kidney disease, vision loss, & cognitive disability.
By going totally vegan and ditching animal products, Adams has literally eliminated his own suffering from disease & the suffering of so many farmed animals each year.
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Doctors had Denise convinced that there was nothing she could do about her type 2 diabetes.Denise Kissed Insulin Goodbye
She felt she might as well get used to giving herself shots the rest of her life.
Then one day, everything changed.
Have you ever met someone who opened your thinking up to a whole new world of possibility?
That’s what happened to Denise, through encounters with several people who knew that diabetes could in fact, be reversed.
She was skeptical at first and put off doing anything about it.
Then months later, she started feeling the painful pin pricking sensations of diabetic neuropathy.
She decided to give her new found information and try and… In less than 30 days, her blood sugar was low enough to no longer need Insulin.
Find out how you can do what Denise did…Denise Kissed Insulin Goodbye – Find out how
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Before we dive into the question “Are berries good for diabetics” let us talk a bit about fruits in general.
Higher consumption of fresh fruit is directly linked with a lower occurrance of type 2 diabetes & reduced complications in people with already diagnosed with type 2 diabetes, research suggests.
The study was spearheaded by Huaidong Du of the Univ. of Oxford, which found people with type 2 diabetes who ate lots of fresh fruits had lower rates of microvascular & macrovascular problems.
The research group claims this is the 1st large prospective study illustrating how consuming fresh fruit is associated with incident diabetes & diabetic complications.
Fruit is a very healthy food category, but some fruits such as bananas & oranges are higher in carbohydrates than other low-carb fruits like berries. Knowing the fruit that you eat can help people derive the right health benefits.
Nearly half a million people were recruited from the China Kadoorie Biobank for the research, which took place between June 2004 & July 2008.
Follow-up over 7 years monitored new cases of type two diabetes & the occurrence of vascular disease & death in people with pre-existing type two diabetes. All inferences lead to the same conclusion. Overall fruits are good, however for diabetics higher consumpion of the lower carb fruits help in keeping blood sugar in control.
Are berries good for diabetics, was the premise of this post. Absolutely berries are considered diabetes superfood as they are bundled with antioxidants, vitamins, and fiber, plus they’re low-GI. For example 3 quarters of a cup of fresh blue berries has sixty two calories & just sixteen grams (g) of carbohydrates.
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The rate at which America’s juvenile diabetes is climbing & researchers don’t know why.
A 1st-ever study of new diabetes diagnoses of American youth under age twenty found both Types 1 & 2 diabetes surged from 2002-2012.
The diagnosis of fresh episodes of Type 2 diabetes, directly linked with obesity, increased about 5 percentage each year from 2002 to 2012, the research said, while new cases of Type one, the most recurrent form for young people, rose about 2% each year.
The National Institutes of Health (NIH), which funded the research along with the Centers for (DCP) Disease Control & Prevention, said the reason of the rise is “unclear.”
“These findings lead to several more questions,” reiterated Dr. Barbara Linder, senior advisor for juvenile diabetes research at NIH’s National Institute of Diabetes & Digestive & Kidney Diseases. “The diversities amongst racial & ethnic groups & between genders raise many uncertainities. We need getto the root of the problem to comprehend why the rise in rates of diabetes development varies so vastly & is so concentrated in specific racial & ethnic groups.”
The research, published Friday 14th April in the New England Journal of Medicine, showed elevated rates of diabetes diagnoses among minorities. Type two diabetes, which the CDC stated comprises of about 90% to 95% of reported diabetes cases, rose by 8.5% in Asian Americans ages 10-19. Blacks in the same age category saw a 6.3% rise, followed by a 3.1% bump in Hispanics & whites at fewer than a 1% increase.
Hispanics saw the highest rate increment of Type 1 diabetes with a 4.2% rise, followed by blacks at 2.2% & whites at 1.2%
In terms of gender, girls & women 10-19 saw a 6.2% rise in Type 2 diabetes, while men & boys of the same age witnessed a 3.7% increase. Across all age groups, Type 1 diabetes rose by 1.4% in females & 2.2% in males.
CDC epidemiologist Dr. Giuseppina Imperatore observed that those who develop diabetes when they are juveniles are at greater risk of developing complications from the disease earlier, reducing their quality of life, clipping down life expectancy & increasing health care costs.
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