Tuesday, February 25, 2020

Scientists Used AI To Discover a New Powerful Antibiotic

It’s been recently published in the scientific journal Cell that a powerful new type of antibiotics has been discovered, using a pioneering machine-learning method. The work was led by biologist Jim Collins at the Massachusetts Institute of Technology in Cambridge. 

The definition of machine-learning is the application of artificial intelligence (AI) to learn from its own experience. This is the ability of computerized systems to learn and improve from ‘their own’ experience without being explicitly programmed, like playing chess against itself without human players.


This is the first time that the use of AI has led to the identification of a completely new kind of antibiotic from scratch, without the input of any previous human assumptions. The new antibiotic was named halicin. When tested on mice, it was found to be highly effective against a wide range of bacteria, including tuberculosis and strains that were considered ‘pan-resistant’ and thus untreatable.
In previous experiments involving other antibiotic compounds, resistance has typically arisen within a day or two, but in the case of halicin it did not occur even after 30 days. The name halicin was picked as a homage to HAL, the intelligent computer in the movie 2001: A Space Odyssey. 


Why Is the Discovery So Significant?
In recent years bacterial resistance to antibiotics has bee rising exponentially, while the discovery and regularity approval of new antibiotics is slowing down. Experts have made the grim prediction that by the year 2050, infections could become resistant to the point where they would kill 10 million people per year. One of the ways to avoid this terrifying scenario is by finding new antibiotics. The problem, according to Collins, is that people keep finding the same molecules again and again. That’s why the development of new modes of searching is so important. 


How Was AI Used to Discover the New Antibiotic?
The team of researchers developed an AI algorithm inspired by the brain’s structure. This system, called a neural network, learns the features and qualities of molecules atom by atom. The neural network was then trained to spot molecules which hinder the growth of the bacterium known as E. coli. 


Once the system was trained, it was used to screen about 6000 molecules. The researchers asked the model to predict which ones would be effective against E. Coli and to show only the ones that look different from conventional antibiotics.  Out of the results, about 100 candidate molecules were selected for physical testing. Luckily, one of these molecules - halicin - turned out to be an extremely potent antibiotic.  


The algorithm predicts the functions without any assumptions about how drugs work and without chemical groups being labeled, and it’s because of that neutral approach it can learn new patterns, unknown to human experts.


What Does It All Mean for The Future?

AI has already been put to use for medical research purposes, but in a slightly different way than Collins and his team have used it here. Instead of searching for specific structures and molecular classes, their network looked for molecules that display a particular activity.

The team hopes to broaden the general approach for finding new antibiotics and even use their methods to design molecules from scratch. The use of AI technology within healthcare is still considered in its infancy, but it is proving a powerful tool that may help us reach some major breakthroughs in the medical field. Many experts believe the next level of medicine and medical drugs depends enormously on our progress in computer processing power. 


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Friday, August 02, 2019

Indian scientists claim to have found 100% cure for tuberculosis

Infecting about nine million people worldwide every year, Tuberculosis is a deadly disease. Out of the nine million people infected from the disease, 32 per cent are from India. Many people don’t even realise that they have the infection as it remains dormant for years before becoming infectious.

What causes Tuberculosis?
The tuberculosis bacterium is hunted by the white blood cells called macrophages. A macrophage is an important part of our immune system. The term literally means big eaters. A macrophage is an amoeba-like organism and it’s work is to clean the body of microscopic invaders and debris. The macrophage has the innate ability to consume all the invaders including fungi, viruses, bacteria and parasites. But instead of killing the bacteria, it forms a sac-like body called granuloma around it, which keeps the bacteria dormant for as long as it’s present.

But this sac can get ruptured when your immunity is lowered due to weakness or any other illness like HIV. TB is a leading killer among people who are infected with HIV.

The new cure for tuberculosis
A team of scientists found how tuberculosis is released from the sacs granuloma formed by the macrophages around them. The granuloma keeps the TB bacteria under control. The topic has been researched and studied for years with no positive result.

ResultsScientists found that these TB bacteria secrete a protein called MPT63, which might be the reason behind the sac break. When there is acidity, these protein structures change their formation and suddenly become toxic to the host cells (macrophages). This ends up killing the cell and releasing the bacteria.

The Head of Structural Biology and Bioinformatics Division said, “Our team would now try to validate these findings in field strains of TB bacillus and see whether they can be used to develop new therapeutic interventions”.

Now with this discovery, scientists will begin looking for methods to negate the effect of the MPT63 protein. Keeping the TB locked-in permanently and saving millions of patients every year.


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Thursday, January 04, 2018

Vitamin C increases effect of tuberculosis drugs

Suffering from tuberculosis? Include bell peppers, dark leafy greens, berries and oranges in your diet.
Studies in mice and in tissue cultures suggest that giving vitamin C with tuberculosis drugs could reduce the unusually long time it takes these drugs to eradicate this pathogen. 

In the study, the investigators treated Mycobacterium tuberculosis-infected mice with anti-tuberculosis drugs or vitamin C alone, or the drugs and vitamin C together. They measured M. tuberculosis (Mtb) organ burdens at four and six weeks post treatment.

Vitamin C had no activity by itself, but in two independent experiments, the combination of vitamin C with the first-line TB drugs, isoniazid and rifampicin, reduced the organ burdens faster than the two drugs without vitamin C, said the author. Experiments in infected tissue cultures demonstrated similar results, shortening the time to sterilization of the tissue culture by seven days.

"Our study shows that the addition of vitamin C to TB drug treatment potentiates the killing of Mtb and could shorten TB chemotherapy," said the principal investigator. That's important because treatment of drug susceptible tuberculosis takes six months, "resulting in some treatment mismanagement, potentially leading to the emergence and spread of drug-resistant TB," said the Dr.

Such long term treatment is needed for tuberculosis because a subpopulation of Mtb cells can form Mtb persister cells, dormant cells that are virtually impervious to antimicrobials.

In earlier studies, the investigators discovered that while high levels of vitamin C will kill actively dividing cells, lower concentrations will stimulate respiration and prevent the formation of persisters, said the Dr. Then, in the presence of TB drugs, that increased respiration will lead to rapid death of the cells. "Thus in our new paper, we postulate that vitamin C is stimulating respiration of the Mtb cells in mice, thus enabling the action of isoniazid and rifampicin."

A French study conducted in 1948 suggested that vitamin C was safe for humans, and potentially beneficial. Investigators gave high daily doses of vitamin C to terminally ill patients with no side effects. While the infection did not regress, that study characterized other effects as "remarkable:" bedridden patients regained appetite and physical activity.

Tuberculosis is a major worldwide public health problem, infecting the lungs and other organ systems. In 2016, the disease sickened more than 10 million people worldwide, and killed 1.7 million. In the United States, cases number in the low thousands, out of a population of around 3,30 million. Treatment of multidrug resistant TB takes at least two years, and requires use of toxic second-line TB drugs with severe side effects.

"Vitamin C is known to be safe and our current mouse studies suggest that vitamin C could enhance TB chemotherapy," said the Dr.. "A clinical trial of vitamin C with TB chemotherapies could demonstrate that such an adjunct therapy could reduce patients' exposure to toxic TB drugs and also reduce the spread of TB from infected individuals." 

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.    
 
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Wednesday, November 22, 2017

Gastric acid drug lansoprazole may also treat tuberculosis

Are you in the habit of consuming lansoprazole, a cheap and easily available gastric acid suppressant to cure heartburn, gastritis conditions and ulcers? Take heart, as such drugs can also keep you away from developing bacterial infections, especially tuberculosis. People who use lansoprazole to prevent conditions of acidity in the stomach are a third less likely to develop tuberculosis, a new study found. The study, stated that lansoprazole and similar drugs omeprazole or pantoprazole could work against the bacteria that causes tuberculosis, said to be one among the top ten infectious diseases that can even lead to death in severe cases.

“It would be a major breakthrough to find a new drug with useful activity against Mycobacterium tuberculosis and a favourable side effect profile — particularly a drug like lansoprazole, which costs pennies,” said a researcher.  “Laboratory, animal and now epidemiological data are all consistent with lansoprazole acting against the bacteria that cause tuberculosis. While it is too early to say whether lansoprazole can be used to treat tuberculosis, we think there is a strong case for further study.”

The researchers compared the people who take lansoprazole with those who consume omeprazole or pantoprazole just to check whether lansoprazole was more effective in killing Mycobacterium tuberculosis, while other drugs in the same class had no effect. The findings showed that among all the people using lansoprazole, there were 10 cases of tuberculosis per 100,000 person, compared to 15.3 cases among those using omeprazole or pantoprazole.

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

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Thursday, November 17, 2016

Chronic Obstructive Pulmonary Disease (COPD)

Chronic Obstructive Pulmonary Disease (COPD) is a term used to describe a group of lung diseases which includes chronic bronchitis, emphysema and asthma. The main symptom that patients suffering from COPD complain about is breathlessness and coughing.  COPD can, however, develop over the years without any noticeable symptoms. But symptoms which appear later include tightness in the chest, persistent cough and wheezing other than breathlessness.

According to the World Health Organization (WHO), globally around 65 million people suffer from moderate to severe COPD. Out of this, 3 million succumbed to COPD in 2005 and experts estimate that by 2030 it will be the third most common cause of deaths.

 Biomass smoke and mosquito coils are major risk factors for COPD in India

The sad truth is that despite how fast cities are growing in India, 70% of the homes in rural and urban areas still use biomass fuel for cooking and heating purposes in poorly ventilated kitchens .  In fact, studies have found that 90% of rural households and 32% of urban households still cook their meals on a biomass stove. As only 25% of cooking is done with cleaner gases in India, exposure to biomass smoke is a major risk factor for COPD in the country.
However, just because you use LPG gas for cooking purposes, it does not mean you are safe from COPD. Another source of exposure in Indian houses is mosquito coils. In fact burning even one mosquito coil in the night to get rid of mosquitoes is capable of emitting particulate matter equivalent to around 100 cigarettes . Switch to mosquito repellent lotions or other eco-friendly measures to keep your lungs healthy.

Bidi smokers are at the highest risk of COPD
It’s a known fact that smokers are at a far greater risk of suffering from lung diseases as compared to non-smokers. Doctors say that smokers are thrice as likely at the risk of developing COPD. However, bidi smokers were at a much higher risk of developing COPD (8.2%) as compared to those who smoke cigarettes (5.9%) .
 COPD patients are at an increased risk of tuberculosis and vice versa
Studies have found that COPD patients are at a higher risk of developing active TB compared to the general population. This is because COPD and TB have common risk factors like smoking and poor living conditions.

COPD patients could suffer from depression
Other than tuberculosis, COPD patients are also prone to depressive symptoms. A study published in the journal Chest in 2016 reported that one in four patients with COPD also suffer from depression. If depression goes undiagnosed in these COPD patients, it can reduce the effectiveness of their treatment. Another study conducted by researchers from the University of Texas found that 22.3% of patients had one or more psychological disorders.

Yoga and walking can benefit patients with COPD
If you’re a COPD patient, you can reduce the risk of hospitalisation and improve the overall quality of your life by walking three to six kilometres a day. The study was published in the journal Respirology in 2016. Another study found that practising yoga can help COPD patients.
 
this is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.
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Thursday, January 09, 2014

Mesenchymal Stem Cells Safe As Adjunct Therapy for Resistant TB

For patients with multidrug-resistant and extensively drug-resistant tuberculosis, adjunct therapy with autologous mesenchymal stromal cells is safe, according to a study published online Jan. 9 in The Lancet Respiratory Medicine.

THURSDAY, Jan. 9, 2014 (HealthDay News) -- For patients with multidrug-resistant (MDR) and extensively drug-resistant (XDR) tuberculosis, adjunct therapy with autologous mesenchymal stromal cells (MSCs) is safe, according to a study published online Jan. 9 in The Lancet Respiratory Medicine.

Aliaksandr Skrahin, M.D., from the Republican Research and Practical Centre for Pulmonology and TB in Minsk, Belarus, and colleagues assessed the safety of infusion of autologous MSCs as an adjunct treatment in 30 patients with microbiologically confirmed MDR and XDR tuberculosis. Participants, aged older than 21 years to 65 years or younger, were treated with single-dose autologous bone marrow-derived MSCs within four weeks of the start of antituberculosis-drug treatment.

The researchers found that the most common grade 1 or 2 adverse events were high cholesterol levels, nausea, and lymphopenia or diarrhea (seen in 14, 11, and 10 of 30 patients, respectively). No serious adverse events were reported. Two transitory grade 3 events were reported: increased plasma potassium ion concentrations and γ-glutamyltransferase elevation, each in one patient.

"MSCs as an adjunct therapy are safe and can now be explored further for the treatment of patients with MDR or XDR tuberculosis in combination with standard drug regimens," the authors write. "Adjunct treatment with MSCs needs to be evaluated in controlled phase 2 trials to assess effects on immune responses and clinical and microbiological outcomes."


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