What Is Type 3 Diabetes? Insulin Resistance In The Brain That Could Trigger Alzheimer’s
Most people are aware of type 1 and type 2 diabetes, but did you know there is a type 3 diabetes as well! It is a more obscure term. Although it is not an accepted medical diagnosis, type 3 diabetes has been discussed in the literature as a possible relationship between insulin resistance in the brain and Alzheimer's disease. This link has been described to help explain how metabolic disorders impact brain health, causing cognitive decline and dementia.
Type 3 diabetes is more of a misnomer because it should not be confused with type 3c diabetes, which relates to pancreatic dysfunction. The term "type 3 diabetes," on the other hand, has been loosely used by some scientists to analogously propose that Alzheimer's disease is strongly implicated with insulin resistance in the brain.
This concept was conceptualized by Dr. Suzanne de la Monte and Dr. Jack Wands of Brown University in the year 2008. This hypothesis postulated that Alzheimer's disease may be called type 3 diabetes for it bears many similarities with glucose metabolism disorder type 2 diabetes. Their concept arises from the basic principle that insulin is fundamental to blood sugar regulation, but it is also the case with the brain. When brain cells become insulin-resistant, they lose access to glucose, impairing their function.
Research published in the Journal of Diabetes Science and Technology supports this hypothesis by indicating that insulin resistance can be a significant contributor to the occurrence of dementia, also referred to as Alzheimer's. The symptoms of memory loss and diminished reasoning are associated with impaired glucose metabolism in the body, especially in the cerebral tissue.
Although type 3 diabetes is not a "medical term," its symptoms correlate well with Alzheimer's diseases that are known to reduce the ability to think in an efficient manner and bring down brain health. These signs are:
- Loss of memory, especially short-term.
- Poor judgment and judgment ability
- Failure in recognizing people or places familiar once.
- Failure in the process of reading, writing or processing numbers
- Anxiety, agitation, or mood changes.
- Disorganized thoughts or confusion
- Lack of impulse control
As the disease advances, patients may be afflicted with severe complications including an inability to swallow or control their bodily functions. In the final stages, most patients die from fatal complications such as aspiration pneumonia.
This may not be well understood with regards to type 3 diabetes, or the exact link between insulin resistance and Alzheimer's disease. Some identified contributing factors include the following:
Insulin acts as an important regulatory mechanism of brain functions such as memory and cognition. The reduction in insulin signaling may impair metabolism of brain cells, thus bringing about neurodegeneration.
These diseases show a strong relationship and those individuals diagnosed with type 2 diabetes have double chances of getting Alzheimer's. In the two, the main causes can be chronic inflammation, oxidative stress, and a defect in glucose metabolism.
Insulin resistance associated with obesity, stress, and an unhealthy diet is considered a cause that may increase the chances of Alzheimer's disease.
Researches in Frontiers in Neuroscience and The Lancet Neurology have also highlighted that drugs used for antidiabetic medication may be crucial for the prevention or at least slowing down the course of Alzheimer's.
In 2022, in a study in Pharmaceuticals, researchers studied biomarker uptake in brain regions implicated in the faulty uptake and metabolism of blood sugar in Alzheimer’s patients.
Emerging Therapies
Research into such treatments as intranasal insulin has also been promising. Intranasal delivery of insulin directly to the brain has been reported to enhance glucose uptake by brain cells, improve memory, and boost cognitive performance. While such clinical trials have been shown to be successful, additional research is needed for safety and efficacy.
Medications
For patients being aggressive or agitated, antipsychotic drugs may be prescribed; however, therapies such as cognitive rehabilitation as well as cognitive stimulation therapy serve to preserve memory and executive function.
Lifestyle Interventions
Diet, exercise, and stress management are critical in preventing and managing insulin resistance. A review in the Journal of Alzheimer's Disease also highlighted the benefits of Kirtan Kriya meditation, which can regulate genes involved in insulin and glucose metabolism, improve sleep, and reduce inflammation.
Although type 3 diabetes is not officially recognized, its connection to Alzheimer’s disease underscores the importance of proactive measures for brain health. Some prevention strategies include:
1. Healthy Diet
Consuming a balanced diet rich in antioxidants, whole grains, and healthy fats may support brain health.
2. Regular Exercise
Physical activity improves insulin sensitivity, reduces inflammation, and enhances overall metabolic health.
3. Stress Reduction
Mindfulness practices, including meditation, have been shown to lower stress levels, which can reduce the risk of cognitive decline.
The term type 3 diabetes brings out the complex relationship between metabolic disorders and brain health. Even though it is not a recognized medical condition, the concept emphasizes the crucial role of insulin in brain function and its possible contribution to Alzheimer's disease. Continued research will hopefully provide hope for therapies such as intranasal insulin and lifestyle modifications.
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The IVF laboratory is a critical place where science and precision come together to help create embryos. Here, the expert explains the careful measures that take place inside the lab and the important role of the embryologist in helping couples achieve parenthood.
Many couples are battling infertility and are advised to undergo in vitro fertilization (IVF) to conceive. The couples tend to focus on various factors such as doctor consultations, hormone injections, and embryo transfer.
However, one of the most important parts of the treatment happens in the IVF laboratory. Couples are often unaware of what happens behind the closed doors in the IVF lab.
The IVF Lab: A Highly Controlled Environment
Did you know? Highly trained embryologists work with advanced technology when it comes to handling the eggs, sperm, and embryos in the IVF laboratory.
They are the ones who are responsible for planning and carrying out every step with accuracy to be able to give embryos the best possible environment for healthy development.
The lab is a controlled and sterile space wherein the temperature, humidity, air quality, and lighting are strictly monitored to be able to protect the delicate eggs and embryos.
Even small changes in the environment tend to impact embryo development, so strict quality standards are followed every day by the expert.
Also read: From Hope To Parenthood: How IVF And Embryology Are Changing The Fertility Journey For Couples
From Egg Retrieval to Fertilisation
The process commences after the woman's eggs are collected during a minor procedure. On the same day, the male partner will also provide a semen sample, or previously frozen sperm, if needed. The embryologist will examine both the eggs and sperm under a microscope to check the quality.
Then the healthiest sperm are selected to fertilise the eggs.
Fertilisation will occur after the egg and the sperm are placed together in a special culture dish or via a procedure known as Intracytoplasmic Sperm Injection (ICSI), wherein a single healthy sperm is directly injected into the egg.
The expert will decide the method after knowing the couple's fertility condition.
Also read: Delhi's Poor AQI, Monsoon Conditions Put Children's Lungs at Risk: Ways to Keep Kids Safe
Monitoring Embryo Development
When fertilisation happens, the embryos are placed in special incubators that closely mimic the conditions inside the human body.
Over the next few days, embryologists monitor their growth and development, and some embryos may undergo genetic testing to identify certain inherited or chromosomal conditions before they are transferred.
The Embryologist's Role in Ensuring Safety and Success
Understand that the embryologist maintains detailed records and follows strict identification protocols to ensure every egg, sperm, and embryo is accurately matched with the correct patient.
Hence, the embryologist plays a vital role in every successful IVF journey.
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Ravi is 34 years old. He goes to the gym three times a week, weighs a healthy 68 kg, and has never been diagnosed with diabetes or high blood pressure. During his company's annual health check-up, an ultrasound revealed four unexpected words: Grade 1 Fatty Liver.
Like many people, Ravi was shocked. "How is that possible?" he asked. "I'm not overweight."
The answer reflects a growing reality that is changing how liver specialists understand one of India's fastest-growing liver diseases.
For years, fatty liver—now medically known as Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD)—was considered a condition affecting people who were overweight, had diabetes, or consumed excessive alcohol.
That understanding is no longer complete.
Today, we increasingly diagnose fatty liver in individuals who are lean, appear metabolically healthy, and do not consume alcohol. This condition, often referred to as lean MASLD, accounts for nearly 10–20% of fatty liver cases in Asia. Given the unique genetic and metabolic profile of South Asians, the true burden in India may be even higher.
So, What Is Actually Going On? The reasons are more complex than body weight alone—and many are hiding in plain sight.
Also read: Do People With Type 2 Diabetes Face A Higher Risk of Severe Dengue? New Review Says Yes
Certain genetic variants, particularly PNPLA3, make the liver more likely to store fat even when the rest of the body appears healthy. This genetic predisposition is significantly more common among South Asians than Western populations.
In other words, you may be lean, eat reasonably well, and still develop fatty liver because of your inherited biology.
A normal body weight does not always mean a healthy metabolism.
Many lean Indians carry excess visceral fat—fat stored around internal organs rather than under the skin. This "skinny fat" phenomenon is especially common in our population and is strongly linked to liver fat accumulation and inflammation, despite a normal BMI.
Also read: Subtle Warning Signs Of Serious Health Conditions That Only Your Partner Can Notice
A diet rich in refined carbohydrates and added sugars can overwhelm the liver.
Frequent consumption of foods such as white rice, refined flour (maida), packaged snacks, biscuits, sugary beverages, and fruit juices provides excess fructose, which the liver converts directly into fat.
Over time, this process promotes fatty liver—even in individuals who never become overweight.
By Dr. Chetan Kalal, DM Hepatology, Liver Transplant Specialist, Saifee Hospital, Mumbai
Credit: AI
For most people, dengue is associated with high fever, severe body aches, headache, fatigue, and a temporary drop in platelet count. With proper care, the majority of patients recover completely within a couple of weeks. However, doctors caution that in rare instances, dengue can leave behind an unexpected complication that affects the nervous system rather than the blood—Guillain-Barre syndrome (GBS).
GBS is an uncommon autoimmune disorder in which the body's immune system mistakenly attacks the peripheral nerves. It usually develops after an infection, and growing evidence suggests that dengue can be one of the infections capable of triggering this immune response. While the chances remain low, the condition can progress rapidly and requires prompt medical attention.
The condition affects the nerves and can cause increasing weakness in the legs, arms, face and swallowing.
Also read: Do People With Type 2 Diabetes Face A Higher Risk of Severe Dengue? New Review Says Yes
Unlike the fever and body pain seen during active dengue infection, GBS often appears days or even weeks after the patient seems to be recovering. This delay can make it easy to overlook the connection.
Our immune system protects our body by fighting infections. In some rare cases an infection like dengue can trigger a strange immune response where our body mistakenly attacks its own nerves.
Nerves carry signals between our brain and the rest of our body allowing us to move and feel normally. When nerves get damaged it disrupts the signals from our brain leading to muscle weakness tingling and other symptoms.
Someone who has recently recovered from dengue may suddenly notice tingling in the feet or hands, weakness in the legs, difficulty climbing stairs, or an unsteady walk. As the condition progresses, the weakness may spread upwards, affecting the arms, facial muscles, swallowing, or even the muscles responsible for breathing.
The exact reason this happens is believed to be an abnormal immune response. Instead of switching off after fighting the dengue virus, the immune system mistakenly attacks the protective covering of the nerves, disrupting the signals between the brain and muscles. This results in the characteristic muscle weakness seen in GBS.
Guillain-Barre syndrome usually develops when we are recovering from dengue or even days to weeks after the fever has gone away.
Also read: India’s First Approved Dengue Vaccine: Takeda’s QDENGA Protects Against All Four Virus Serotypes
Feeling tired and fatigued is common, after dengue. Usually gets better slowly. However, we need to differentiate it from weakness. Neurological weakness means our muscle movements are affected.
It often starts in our legs. We may notice it is getting harder to climb stairs get up from a chair or walk normally. This weakness can sometimes spread to our arms and face. In cases it can even affect our swallowing or breathing which may require ICU and ventilator support.
Although dengue-related GBS is rare, recognising the warning signs early can make a significant difference. Timely diagnosis and treatment can help reduce complications and improve recovery.
Any person who develops new weakness, numbness, difficulty walking, facial drooping, trouble swallowing, or breathlessness in the weeks following dengue should seek immediate medical evaluation rather than assuming it is part of normal post-viral fatigue.
Also read: Will Waterborne Diseases Rise In The Future? New Study Says Climate Change Could Be A Major Driver
The reassuring news is that most people with dengue will never develop Guillain-Barre syndrome. Nevertheless, awareness remains important because the condition can become serious if left untreated.
Preventing mosquito bites, eliminating stagnant water around homes, and seeking medical care early for suspected dengue remain the best ways to reduce the risk of both the infection and its uncommon complications.
The main thing to remember this monsoon is simple: feeling tired after dengue's normal but if our weakness is getting worse we should not ignore it. Recognizing this difference. Getting medical help early can help us identify this rare but treatable complication on time.
As dengue cases rise during the monsoon, recovery should not simply be measured by the disappearance of fever. Paying attention to new neurological symptoms after the illness has resolved can help ensure that a rare but potentially life-threatening complication is recognised before it becomes an emergency.
By Dr. Abizer Manked, Consultant Physician and Diabetologist at Saifee Hospital, Mumbai and Dr. Arun Shah, Director Neurosciences, Sir HN Reliance Foundation Hospital, Mumbai
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