Saturday, July 03, 2021

Antimalarial drug Mefloquine promising in the battle against COVID-19

Researchers from Japan  in a breakthrough study have identified mefloquine, an anti-malarial drug ( a derivative of hydrochloroquine), which is effective against the SARS-CoV-2- the virus responsible for the COVID-19 pandemic.

Early 2020  saw the world break into what has been described as a “ war-like situation”, a pandemic, caused by the severe acute respiratory syndrome-related coronavirus 2 ( SARS-CoV-2), the likes of which majority of the living generations across most of the planet have not ever seen. This pandemic has downed economies ad resulted in hundreds of thousands of deaths. At the dawn of 2021, vaccines have been deployed, but before populations can be efficiently vaccinated, effective treatments remain the need of the hour.

Thus, other than fast-tracking research into novel drugs, scientists have also been exploring the arsenals of existing medicines in a bid to find anything that could work against COVID-19. Some approved drugs, like hyrdoxycholoroquine, lopinavir and interferon, have already been put to clinical use against SARS-CoV-2 without well establishing their clinical efficacy, due to the severity of the pandemic. Subsequent randomized trials have not been able to yield a consensus on the efficacy of these drugs. Only remdesivir has been approved for clinical use against severe COVID-19, although its efficacy is still being debated.

In a breakthrough study, a team of scientists, have identified an antimalarial drug, mefloquine ( which is incidentally a derivative of hyrdochloroquine), that is effective against SARS-CoV-2.

Detailing their modus operandi, lead scientists says , “ To identify drugs with higher antiviral potency, than existing antivirals, we first screened approved anti-parasitic. Anti-protozoal drugs. We found that mefloquine has a the highest anti-SARS-CoV-3 activity among the tested compounds. Upon testing it against other quinoline derivatives, such as hydrocholoroquine, in a cell line mimicking the cell-based environments of human lung cells, we found it to be better.

The team further explored mefloquine’s mechanism of action. Dr. explains the process, “ In our cell assays, mefloquine readily reduced the viral RNA levels when applied at the viral entry phase but showed no activity during virus-cell attachment. This shows that mefloquine is effective on SARS-CoV-2 entry into cells after attachment on cell surface”.

Thus to bolster mefloquine’s antiviral activity, the scientists looked into the possibility of combining it with a drug that inhibits the replication step of SARS-CoV-2: Nelfinavir. Interestingly, they observed that the 2 drugs acted in “ synergy” and the drug combination showed greater anti-viral activity than wither showed alone, without being toxic to the cells in the cell lines themselves.

The scientists also mathematically modeled the effectiveness of mefloquine to predict its potential real-world impact if applied to treat COVID-19. What they predicted was that mefloquine could reduce the overall viral load in  affected patients to under 7 % and shorten the “ time-till-virus-elimination’ by 6.1 days.

This study must be of course be succeeded by clinical trials, but the world can hope that mefloquine becomes a drug used to effectively treat patients with COVID-19.

 

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Thursday, September 26, 2019

Fish Oil Shows 'Promising Signals' in Preventing Cancer and Heart Attack

Vitamin D and Omega-3 (fish oil) trial shows promise in prevention of cancer death and heart attacks, a new study suggests.

Results have been mixed but show promise for some outcomes and now confirmed by updated meta analyses, according to the researchers.


"The pattern of findings suggests a complex balance of benefits and risks for each intervention and points to the need for additional research to determine which individuals may be most likely to derive a net benefit from these supplements," said study lead author.


Nearly 26,000 US men and women participated in the nationwide VITAL clinical trial.


After more than five years of study and treatment, the results show promising signals for certain outcomes.


For example, while Omega-3 fatty acids (fish oil) showed only a small, but non-significant, reduction in the primary cardiovascular endpoint of major CVD events, they were associated with significant reductions in heart attacks. 


The greatest treatment benefit was seen in people with dietary fish intake below the cohort median of 1.5 servings per week but not in those whose intake was above that level.


The heart health benefits are now confirmed by recent meta-analyses of omega-3 randomised trials.


Similarly, vitamin D supplementation did not reduce major CVD events or total cancer incidence but was associated with a statistically significant reduction in total cancer mortality among those in the trial at least two years.


The effect of vitamin D in reducing cancer death is also confirmed by updated meta-analyses of vitamin D trials to date.


The study is scheduled to be presented during The North American Menopause Society (NAMS) Annual Meeting in Chicago, September 25-28.


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https://gseasyrecipes.blogspot.com. feel free to view for easy, simple and healthy recipes    
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Wednesday, July 31, 2019

AI tool predicts cell behaviours during diseases

Researchers have developed – scGen – an Artificial Intelligence (AI)-powered tool which promises to reshape the way we study diseases and their treatment at cellular level.

The study, published in the journal Nature Methods, shows scGen will help mapping and studying cellular response to diseases and their treatment beyond experimentally available data.

According to the researchers, scGen is a generative deep learning model that leverages ideas from image, sequence and language processing and applies them to model the behaviour of a cell performed on computer or via computer simulation.

The next step for the team will be to improve scGen, make it a fully data-driven formulation, increasing its predictive power to enable the study of combinations of perturbations.

“We can now start optimising scGen to answer more and more complex questions about diseases,” said the researcher. 


Large-scale atlases of organs in a healthy state are soon going to be available, in particular, within the Human Cell Atlas. This is a significant step in understanding cells, tissues and organs in healthy state in a better way and providing a reference while diagnosing, monitoring and treating diseases.
Accurately modelling cellular response to perturbations e.g. disease, compounds and genetic interventions, is a central goal of computational biology.

In addition, scGen is the first tool that predicts cellular response out-of-sample. This means that scGen, if trained on data that captures the effect of perturbations for a given system, is able to make reliable predictions for a different system.

“For the first time, we have the opportunity to use data generated in one model system such as mouse and use the data to predict disease or therapy response in human patients,” said a researcher.


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