Thursday, January 04, 2018

Watch your alcohol consumption; it can damage DNA, increase cancer risk

Alcohol consumption permanently damages the DNA in stem cells, which in turn increases the risk of developing cancer, a study led by an Indian-origin scientist warns.

Much previous research looking at the precise ways in which alcohol causes cancer has been done in cell cultures.

However, in the new study, researchers used mice to show how alcohol exposure leads to permanent genetic damage.

Scientists  gave diluted alcohol, chemically known as ethanol, to mice.

They then used chromosome analysis and DNA sequencing to examine the genetic damage caused by acetaldehyde, a harmful chemical produced when the body processes alcohol.

The researchers found that acetaldehyde can break and damage DNA within blood stem cells leading to rearranged chromosomes and permanently altering the DNA sequences within these cells.

"Some cancers develop due to DNA damage in stem cells," said q Professor.


"While some damage occurs by chance, our findings suggest that drinking alcohol can increase the risk of this damage," said the lead author of the study.

It is important to understand how the DNA blueprint within stem cells is damaged because when healthy stem cells become faulty, they can give rise to cancer, researchers said.

The new findings help us to understand how drinking alcohol increases the risk of developing seven types of cancer including common types like breast and bowel, they said.

The study also examined how the body tries to protect itself against damage caused  by alcohol. The first line of defence is a family of enzymes called aldehyde dehydrogenases (ALDH).

These enzymes break down harmful acetaldehyde into acetate, which our cells can use as a source of energy.

Worldwide, millions of people, particularly those from South East Asia, either lack these enzymes or carry faulty versions of them, researchers said.

When they drink, acetaldehyde builds up which causes a flushed complexion, and also leads to them feeling unwell, they said.

In the study, when mice lacking the critical ALDH enzyme - ALDH2 - were given alcohol, it resulted in four times as much DNA damage in their cells compared to mice with the fully functioning ALDH2 enzyme.

The second line of defense used by cells is a variety of DNA repair systems which, most of the time, allow them to fix and reverse different types of DNA damage.

However, they do not always work and some people carry mutations which mean their cells are not able to carry out these repairs effectively.

"Our study highlights that not being able to process alcohol effectively can lead to an even higher risk of alcohol-related DNA damage and therefore certain cancers," the author said.

"But it is important to remember that alcohol clearance and DNA repair systems are not perfect and alcohol can still cause cancer in different ways, even in people whose defense mechanisms are intact," he added.



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Alcohol consumption permanently damages the DNA in stem cells, which in turn increases the risk of developing cancer, a study led by an Indian-origin scientist warns.

Much previous research looking at the precise ways in which alcohol causes cancer has been done in cell cultures.

However, in the new study, researchers used mice to show how alcohol exposure leads to permanent genetic damage.

Scientists at the MRC Laboratory of Molecular Biology at the Univer ..

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Monday, June 05, 2017

Gene therapy could wipe immune memory and "turn off" severe allergies

Scientists may be one step closer to discovering a way to genetically "turn off" allergic responses with a single injection. A team of researchers have developed a new process that has successfully silenced a severe allergic response in mice, using blood stem cells engineered with a gene that can target specific immune cells.

The big challenge previous allergy researchers faced was that immune cells, known as T-cells, tended to develop a form of "memory" so that once someone developed an immune response to an allergen, it would easily recur upon future contact. The key was finding a way to erase that "memory" response to the protein in the allergen causing the immune reaction.

"We take blood stem cells, insert a gene which regulates the allergen protein and we put that into the recipient," says the researcher, explaining the new process developed by his team. "Those engineered cells produce new blood cells that express the protein and target specific immune cells, 'turning off' the allergic response."

The team's initial clinical investigations looked at an experimental asthma allergen, with the new process found to successfully terminate established allergic responses in sensitized laboratory mice. While the initial research has focused on a very specific asthma allergen, Professor  believes the process could be applied to many other severe allergic responses, such as peanuts, bee venom and shell fish.

The long-term goal of the research would be to develop a therapy that could cure specific allergies with a single injection, much like a vaccine. 

"We haven't quite got it to the point where it's as simple as getting a flu jab," says Professor, "so we are working on making it simpler and safer so it could be used across a wide cross-section of affected individuals."

The team is realistic about the time it will take before this discovery results in practical benefits for allergy sufferers, with at least five years more laboratory work needed before even human trials can be conducted. But this new discovery could mean that, within 10 or 15 years, asthma and other lethal allergic responses might be eliminated with a single, one-time treatment.

The findings were recent published in a journal .


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