Friday, February 21, 2020

Scientists pinpoint protein that plays key role in lung cancer and melanoma progression

Scientists from Far Eastern Federal University (FEFU, Russia), University of Geneva (Switzerland), Minjiang University, and Fuzhou University (China) pointed out WDR74 protein playing an important role in lung cancer and melanoma primary tumors/metastases progression. During the research, the artificially gained WDR74 function brought about a high activity in cancer cells. 

However, when the function had been dropped cells failed to metastasize becoming more vulnerable to chemotherapy. Related articles are published in Cancer Letters and Oncogene.

Except for brain cancer and some forms of blood cancer, not the main tumor but its metastases kill the patient taking over vital organs.

Metastases form at a certain stage of the primary tumor progression when its cells start separating and entering the bloodstream. Such cells are called circulating tumor cells, and they give rise to metastases which are secondary tumors appearing in different parts of the human body.

Fortunately, just subtle minority, tenths or even hundredths of a percent, of circulating tumor cells is capable of metastasizing. A few years ago, Chinese scientists from the laboratory of Dr. Lee Jia (Fuzhou University) wondered what discriminates "successful" circulating tumor cells from "unsuccessful" ones. Searching for a possible answer, they analyzed tumor cells (proteomic analysis) and spotted proteins highly expressed in active metastatic cells and lost in passive ones. One of these proteins was WDR74; its expression level in "successful" circulating tumor cells was two times higher than in the initial tumor. Scientists set up hypotheses stated this protein is a trigger helping a circulating tumor cell turn into a secondary tumor.

Within this discovery, two of our scientific publications were being built, one devoted to lung cancer, and the other to melanoma. To test the oncogenic activity of WDR74 in circulating tumor cells of lung cancer and melanoma, we "turned off" this protein by the method of gene correction CRISPR / Cas9 and interfering RNAs to remove/reduce the amount of protein. After that, we monitored what happens to the cells in the context of their proliferation, colony formation, cell cycle, ability to migrate and grasp in body tissues. We have also conducted the opposite experiment increasing the amount of WDR74 protein in cancer cells. Both types of experiment confirmed that WDR74 plays a crucial role in the progression of the tumor and its metastases. Protein absence decreases, and the presence increases the oncogenic properties of circulating tumor cells. In vivo this confirmed during the experiments conducted on mice."

Prof. Vladimir Katanaev, one of the research authors, Head of the Laboratory of Pharmacology of Natural Compounds, Department of Pharmacology and Pharmacy of the FEFU School of Biomedicine

The scientist explained that WDR74 has at least two mechanisms of action. In different tumors, they have different priorities. In lung cancer cells, the protein primarily regulates WNT signaling pathways, which are active in tumor cells and passive in healthy cells of our body. In melanoma, WDR74 indirectly affects the expression of a number of other proteins, including the famous p53. The sequence is as follows: WDR74 regulates the amount of ribosomal protein RLP5, which has additional, extraribosomal properties; RLP5 regulates MDM2 protein ligase, and MDM2, in turn, leads to the degradation of p53 protein. The question of which mechanism is responsible for the expression of WDR74 itself remains unsolved.

Lung cancer is notorious for the lack of effective therapy methods. The same is melanoma: the mechanisms of its progression understood poorly. The published studies open up new paths to the development of effective curing methods for metastases of these two cancer types with targeted drugs. Such remedies should hit specific protein targets in the circulating tumor cells. The drugs development is the task of the next stage of the work of scientists from Russia, China, and Switzerland or other research groups.

In 2020, the laboratory of prof. Vladimir Katanaev and the team of Dr. Lee Jia started joint research to develop new drugs for obliterating circulating tumor cells of triple-negative breast cancer. Scientists are after DNA aptamers (analogs of antibodies, but synthesized using DNA chains) that will neutralize protein targets FZD7 and EpCAM. The work became possible thanks to a co-granting program from the Russian Federal Property Fund (19-515-55013) and National Natural Science Foundation of China.

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Wednesday, December 11, 2019

How fat molecules trigger inflammation

Researchers have found how fat molecules in the blood stream interact with blood vessel cells and trigger inflammation, an advance that may lead to better understanding of tissue injury related to kidney damage or heart disease.

The study, noted that patients with elevated levels of fat molecules called triglycerides in their blood had a significantly higher mortality rate than groups with a similar health history.

The researchers said adopting a low-fat diet can significantly extend the life expectancy of high-risk patients, such as those with diabetes or those with high blood pressure.

According to the researchers, blood triglyceride levels rise substantially in people who eat a high-fat diet. 

“As a result of biochemical changes, the triglycerides develop toxic properties that activate the body’s innate immune system. This initiates a series of self-destructive processes including those in which the walls of the arteries are attacked and the blood vessels become occluded, reducing blood flow,” explained the study co-author.

The study offers a link between the chronic inflammation triggered by high levels of triglyceride in the blood, and secondary diseases such as kidney failure or heart attack.

“We hope that our results will help in developing new strategies for treating and preventing these life-threatening diseases,” he said. 

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Sunday, January 15, 2017

20 minutes of walking may reduce inflammation in body


Just 20 minutes of exercise may help fight inflammation in the body, according to a new study that may have implications for diseases such as arthritis and obesity. 

It is well known that regular physical activity has health benefits, including weight control, strengthening the heart, bones and muscles and reducing the risk of certain diseases. 

Now, researchers at the University of California San Diego School of Medicine in the US have found just one session of moderate exercise can also act as an anti-inflammatory.

The findings have encouraging implications for chronic diseases like arthritis, fibromyalgia and for more pervasive conditions, such as obesity, researchers said. 

The study found one 20-minute session of moderate exercise can stimulate the immune system, producing an anti-inflammatory cellular response. 

"Each time we exercise, we are truly doing something good for our body on many levels, including at the immune cell level," said Suzi Hong from UC San Diego School of Medicine. 

The brain and sympathetic nervous system - a pathway that serves to accelerate heart rate and raise blood pressure, among other things - are activated during exercise to enable the body to carry out work.
Hormones, such as epinephrine and norepinephrine, are released into the blood stream and trigger adrenergic receptors, which immune cells possess. 

This activation process during exercise produces immunological responses, which include the production of many cytokines, or proteins, one of which is TNF - a key regulator of local and systemic inflammation that also helps boost immune responses. 

"Our study found one session of about 20 minutes of moderate treadmill exercise resulted in a five per cent decrease in the number of stimulated immune cells producing TNF," said Hong. 

"Knowing what sets regulatory mechanisms of inflammatory proteins in motion may contribute to developing new therapies for the overwhelming number of individuals with chronic inflammatory conditions, including nearly 25 million Americans who suffer from autoimmune diseases," Hong said. 

The 47 study participants walked on a treadmill at an intensity level that was adjusted based on their fitness level. Blood was collected before and immediately after the 20 minute exercise challenge. 

"Our study shows a workout session does not actually have to be intense to have anti-inflammatory effects. Twenty minutes to half-an-hour of moderate exercise, including fast walking, appears to be sufficient," said Hong.

"Feeling like a workout needs to be at a peak exertion level for a long duration can intimidate those who suffer from chronic inflammatory diseases and could greatly benefit from physical activity," Hong added. 

The study was published in the journal Brain, Behaviour and Immunity.

 
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Saturday, October 03, 2015

Researchers discover new method to trap cancer cells before they spread

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.






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 Researchers have discovered a new way to 'fence in' a tumour and help stop cancer cells from spreading.

Tumours cause cells called fibroblasts to stiffen the surrounding tissue so that cancer cells can grip it - allowing them to tunnel through to the blood stream and spread around the body.
Researchers at the Francis Crick Institute and the University of Copenhagen showed that adding experimental drugs reprogrammed fibroblasts - stopping them from 'stiffening' the tissue around tumours. This healthy tissue trapped the cancer cells, blocking their movement away from the tumour.

The team showed in mice that targeting fibroblasts reduced the movement of cancer cells from the tumour to the lungs and liver through the blood stream.

"This could be an exciting new way to harness the potential of the healthy tissue surrounding cancers to contain and restrain aggressive tumours - stopping cancer cells from breaking away and moving to new places in the body," said co-lead author of the study, Erik Sahai from the Francis Crick Institute. "It's early days but a very promising new avenue of research. If further studies show this route can benefit patients, it could help crack one of the toughest challenges in cancer research - how to stop tumours spreading," said lead author Janine Erler from Biotech Research and Innovation Centre (BRIC) at the University of Copenhagen.
"As these fibroblasts are present in all solid tumours, our findings may be relevant to many different cancer types," said Erler. "The therapy we tested is used to treat inflammatory diseases and could be used to treat cancer patients," said Erler.

The study was published in the journal EMBO Reports.

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Monday, September 23, 2013

Could your tattoo give you cancer?

Researchers have warned that the toxic chemicals in tattoo ink could penetrate your body and increase your chances of getting cancer.
A new study has discovered that ink nanoparticles could enter the bloodstream and build up in major organs of the body which can potentially impair their functionality.
The recent research supports a previous study that showed that some tattoo dye contains carcinogens, including cobalt and mercury.
Experts insisted that rules and regulations should be formed for the tattoo industry, similar to those governing the smoking and sunbathing industries.
A director  for skin sciences, said that his team needs to do more work, but there is no question that these substances can be toxic.

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