Tuesday, February 25, 2020

Targeting regulatory T cells could boost the effects of cancer immunotherapy

A Ludwig Cancer Research study has identified a mechanism by which regulatory T cells, which suppress immune responses, adapt their metabolism to thrive in the harsh microenvironment of the tumor. This mechanism, the study finds, is exclusively engaged by regulatory T cells (Tregs) that reside in tumors and could be disrupted to selectively target such Tregs and boost the effects of cancer immunotherapy.

"It has long been known that the Tregs found in tumors protect cancer cells from immune attack, so countering Tregs would be an important strategy for cancer immunotherapy," says Ping-Chih Ho, associate member of the Lausanne Branch of the Ludwig Institute for Cancer Research, who led the study. "But a major hurdle to such interventions is that the systemic suppression of Treg activity can cause severe autoimmune reactions. We have discovered a potential approach to overcoming that problem, one that selectively targets Tregs in tumors and could therefore prevent such adverse effects."

Tregs play a critical role in healthy tissues, where they prevent autoimmune disease and aid wound-healing. But, when recruited into tumors, Tregs also thwart anti-cancer immune responses-;and immunotherapy. The current study, published in Nature Immunology, identifies a protein that drives the metabolic adaptations of intratumoral Tregs. The researchers show in a mouse model of melanoma that targeting that protein with an antibody significantly boosts the efficacy of immunotherapy without causing autoimmune side effects.

The cores of tumors are often acidic and starved of oxygen and vital nutrients, which forces resident cells to adapt their metabolism to survive. Ho and graduate student Haiping Wang suspected those adaptations might also reveal vulnerabilities unique to intratumoral Tregs. To find those vulnerabilities, they analyzed a dataset of Treg gene expression in breast tumors and blood compiled a few years ago by the laboratory of Ludwig MSK Director Alexander Rudensky.

They found that those and other intratumoral Tregs expressed high levels of genes involved in lipid uptake and metabolism- particularly CD36, a receptor involved in lipid import. An analysis of Tregs from human melanoma patients conducted by Ludwig Memorial Sloan Kettering (MSK) researchers Taha Merghoub and Jedd Wolchok yielded similar results.


To explore the role of CD36 in intratumoral Tregs, the researchers generated mice that lacked the CD36 gene only in their Treg cells and engrafted them with melanoma. "We found that the tumor burden was reduced in CD36-deficient mice," says Wang, "and the number and functionality of Tregs declined only within tumors, not in the other, healthy tissues of the mice."

CD36 deficiency induced in intratumoral Tregs a form of cell suicide known as apoptosis that was driven by a decline in the health and number of mitochondria-;the power generators of cells. Further study revealed that CD36 fuels the activity of PPARβ, a protein essential to the genesis and function of mitochondria.

Treating mice bearing melanoma tumors with an antibody to CD36 resulted in a decline of intratumoral Tregs that was not seen in genetically identical control mice. When this antibody was combined with an immunotherapy known as PD-1 blockade, which stimulates a T cell attack on cancer cells, tumor growth slowed significantly, prolonging the survival of the mice.

Ping-Chih Ho, associate member of the Lausanne Branch of the Ludwig Institute for Cancer Research

Ho's lab is now working to translate these findings into a potential cancer therapy while exploring how CD36-targeting might be combined with other interventions to more extensively disable Tregs selectively within tumors. They are also exploring which other types of solid tumors harbor Tregs that are dependent on CD36 for survival.


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Monday, October 07, 2019

Pistachios can be great for preventing diabetes and heart diseases

The best part about eating nuts that they make for a tasty and healthy snack. They are fibrous and help maintain gut health like nothing else. Similarly, pistachios, a type of tree nut has many health benefits that are even supported by science. Pistachios are also associated with smooth functioning of colon. They are great source of fibre that keep bowel movement under check. Just handful of these can help ensure proper bowel functioning. Apart from this, pistachios are also good source of proteins and anti-oxidants. Probably, that’s the reason their popularity for over thousand years now. Even science vouches for its health benefits. Here are the reasons you should consider making pistachios a part of your daily diet. 

Pistachios for eye health: These are the only nuts that contain coronoids which are responsible for reducing the risks of diseases associated with eyes. Pistachios contain the same coronoids that are found in human retina and lens. These can also help in decreasing the chances of developing cataracts and age-related eye problems. Experts suggest consuming coronoids with fats for the easier absorption in body. In case of pistachios, good fats are already present.

Heart health 1 1
Pistachios for heart health: High levels of bad cholesterol in body could lead to the blocking of arteries that in a long run might cause a heart attack. Pistachios contain monounsaturated fats which are considered good for lowering the level of bad cholesterol. Adding pistachios to your low-fat diet can help to add good fats necessary for healthy body functioning.

Pistachios for healthy immune system: These nuts are great source of vitamin B6. As known, vitamin B6 helps in strengthening immune system. Presence of anti-oxidants in pistachios help the body to fight against various microbial diseases. Thus, keeping immune system functioning proper. Pistachios also contain vitamin E and vitamin A; both these vitamins are known for their damage-control properties. Eating pistachios during and after infection can help in better and speedy recovery. 

Pistachios for diabetes: In diabetes, sugar form a bond with protein that makes it unusable by the body. This process is called gycation. It has been proven that anti-oxidants present in pistachios are great for decreasing the gycation rate. Therefore, these nuts are beneficial in diabetes management. 
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Pistachios for weight management: The monounsaturated fats present in pistachios doesn’t cause weight gain. Also, fibres in it can help in flushing toxins out of the body. Fibres also keep you full for long thus, overeating can be significantly decreased. 

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Thursday, September 26, 2019

Genes linked to heart failure identified

Researchers have found the way for earlier identification of people at risk of heart failure and development of new treatments.

The research team applied an artificial intelligence (AI) technique to analyse the heart MRI images of 17,000 healthy UK Biobank volunteers and found that genetic factors accounted for 22-39 per cent of variation in the size and function of the heart’s left ventricle, the organ’s main pumping chamber.
Enlargement and reduced pumping function of the left ventricle can lead to heart failure, the study said.

“It is exciting that the state-of-the-art AI techniques now allow rapid and accurate measurement of the tens of thousands of heart MRI images required for genetic studies,” said study lead researcher.

“The findings open up the possibility of earlier identification of those at risk of heart failure and of new targeted treatments,”lead researcher said.

The research, suggests that genetic factors significantly influence the variation in heart structure and function. 

The team identified 14 regions in the human genome associated with the size and function of the left ventricle – each containing genes that regulate the early development of heart chambers and the contraction of heart muscle.

Previous studies have shown that differences in the size and function of the heart are partly influenced by genes but the researchers have not really understood the extent of that genetic influence. 

This study has shown that several genes known to be important in heart failure also appear to regulate the heart size and function in healthy people. 

“That understanding of the genetic basis of heart structure and function in the general population improves our knowledge of how heart failure evolves,” said a study researcher.


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Friday, April 26, 2019

Drugs show promise in stroke, dementia prevention

Two drugs, in use for treating heart disease and angina, have shown promise in an early trial in preventing stroke and dementia caused by damage to small blood vessels in the brain.

The drugs — cilostazol and isosorbide mononitrate — were tested in a group of patients in Britain. The results showed that patients tolerated the drugs, with no serious side-effects, even when they were given in full doses or in combination with other medicines.

“The results of this trial show promise for treating a common cause of stroke and the most common cause of vascular dementia, since currently there are no effective treatments. Further trials are underway,” said lead researcher. 

Damage to small blood vessels in brain is responsible for around a quarter of strokes. It is also a common cause of memory problems and dementia. At present, the only way to reduce risk of the disease is by controlling blood pressure and cholesterol, stopping smoking and managing symptoms of diabetes.

For the study, researchers recruited 57 patients who had experienced stroke caused by damaged small blood vessels, known as a lacunar stroke. They took the two medicines either individually or in combination for up to nine weeks, in addition to usual treatments aimed at preventing further strokes.

They completed health questionnaires and had regular blood pressure checks, blood tests and brain scans. The findings suggest the drugs are safe for use in stroke patients, taken alone or in combination, at least in the short term.

There were also signs that the treatment helped improve blood vessel function in the arms and brain, and may improve thinking skills, but researchers stressed further studies to test this. 

Experts believe the findings pave the way for larger studies to check if the treatment can prevent brain damage and reduce risk of stroke and vascular dementia. A larger study, called LACI-2, is underway, said a statement.

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Saturday, April 20, 2019

Researchers develop adhesive patch to reduce heart attack damage

Researchers have developed a new adhesive patch that could reduce the stretching of cardiac muscle following a heart attack.

Developed by a team of researchers the patch is made from a water-based hydrogel material and can be placed directly on the heart to prevent left ventricular remodeling — a stretching of the heart muscle.

A heart attack puts the cardiac muscle at a risk of stretching out that can reduce the functioning of the heart’s main pumping chamber.

“Part of the reason that it’s hard for the heart to recover after a heart attack is that it has to keep pumping,” said co-author.

“The idea here is to provide mechanical support for damaged tissue, which hopefully gives it a chance to heal,” he added.

The researchers said the patch, which costs “less than a penny”, has been optimised using a computer model of the heart to perfectly match the material’s mechanical properties.

“If the material is too hard or stiff, then you could confine the movement of the heart so that it can’t expand to the volume it needs to,” the researcher said.

“But if the material is too soft, then it won’t provide enough support. So we needed some mechanical principles to guide us,” he pointed out.

For the research, the team tested the patch with rats and showed that the patch could be effective in reducing post-heart attack damage.

“The patch provided nearly optimal mechanical supports after myocardial infarction (i.e. massive death of cardiomyocytes),” said co-author, a cardiology researcher.

“[It] maintained a better cardiac output and thus greatly reduced the overload of those remaining cardiomyocytes and adverse cardiac remodeling.”

The researchers say the initial results are promising for eventual use in human clinical trials.

“It remains to be seen if it will work in humans, but it’s very promising,” the researcher said.

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Friday, November 30, 2018

Turmeric may help boost heart health

Consuming curcumin -- the active compound in turmeric -- may improve exercise capacity in patients with heart failure, a study claims.

Curcumin has been used as a traditional Asian medicine for centuries, primarily to treat gastrointestinal ailments and skin wounds, said researchers .

Studies increasingly suggest that the compound may prevent or limit muscle wasting associated with a number of health conditions, including heart failure, they said.

People with heart failure have a reduced function of the left ventricle -- the chamber of the heart that pumps blood out to the rest of the body -- called reduced ejection fraction.
 
A decreased ability to exercise or exercise intolerance is another significant characteristic of heart failure, according to the study.

The researchers theorised that a reduction in the normal signalling of Nrf2, a protein that regulates the expression of antioxidant enzymes, may play a role in the impaired expression of antioxidant enzymes.

They examined the effects of curcumin, which is known to promote activation of Nrf2, on a mouse model of heart failure with reduced ejection fraction.

One group of mice with heart failure received daily doses of curcumin for 12 weeks, and another group did not receive treatment.

The heart failure groups were compared to a control group of healthy mice that received curcumin and an untreated control group.

The team measured the exercise capacity of all the mice before and after curcumin treatment.
The researchers also examined muscle fibre samples to assess enzyme expression levels.

They found that expression of Nrf2 increased and levels of antioxidant enzymes improved in the animals with heart failure that were given curcumin.

In addition, both groups that received curcumin -- even the animals without heart failure -- had improved exercise capacity when compared with the untreated groups, suggesting the effects of curcumin on skeletal muscle is not exclusive to heart failure.

"These data suggest that activation of Nrf2 in skeletal muscle may represent a novel therapeutic strategy to improve ... Quality of life" in people with heart failure with reduced ejection fraction, the researchers said.

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Monday, January 01, 2018

Diabetes drug may help treat Alzheimer’s

A drug created to treat type 2 diabetes could be used to fight Alzheimer’s disease, say scientists who found that the medicine significantly reversed memory loss in mice. The research could bring substantial improvements in the treatment of Alzheimer’s disease through the use of a drug originally created to treat type 2 diabetes. The treatment “holds clear promise of being developed into a new treatment for chronic neurodegenerative disorders such as Alzheimer’s disease,” said a researcher.

Alzheimer’s disease is the most common cause of dementia and the numbers are expected to rise to more than two million people in many countries by 2051 according to researchers. Although the benefits of these ‘triple agonist’ drugs have so far only been found in mice, other studies with existing diabetes drugs such as liraglutide have shown real promise for people with Alzheimer’s, so further development of this work is crucial. This is the first time that a triple receptor drug has been used which acts in multiple ways to protect the brain from degeneration.

It combines GLP-1, GIP and Glucagon which are all growth factors. Problems with growth factor signalling have been shown to be impaired in the brains of Alzheimer’s patients. The study used APP/PS1 mice, which are transgenic mice that express human mutated genes that cause Alzheimer’s. Those genes have been found in people who have a form of Alzheimer’s that can be inherited. Aged transgenic mice in the advanced stages of neurodegeneration were treated. In a maze test, learning and memory formation were much improved by the drug which also enhanced levels of a brain growth factor which protects nerve cell functioning. It also reduced the amount of amyloid plaques in the brain linked with Alzheimer’s, chronic inflammation and oxidative stress.

The drug also slowed down the rate of nerve cell loss. “These very promising outcomes demonstrate the efficacy of these novel multiple receptor drugs that originally were developed to treat type 2 diabetes but have shown consistent neuro- protective effects in several studies,” said a researcher. “Clinical studies with an older version of this drug type already showed very promising results in people with Alzheimer’s disease or with mood disorders,” he said. “Here we show that a novel triple receptor drug shows promise as a potential treatment for Alzheimer’s but further dose-response tests and direct comparisons with other drugs have to be conducted in order to evaluate if this new drugs is superior to previous ones,” he added.

 Type 2 diabetes is a risk factor for Alzheimer’s and has been implicated in the progression of the disease. Insulin desensitisation has also been observed in the Alzheimer’s disease brain. The desensitisation could play a role in the development of neurodegenerative disorders as insulin is a growth factor with neuroprotective properties.

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