Apple cider vinegar helps with weight loss: Myth or fact?

Agencies
July 21, 2017

Atlanta, Jul 21: If you have ever searched the Internet for weight loss information, you would have definitely come across the following tip: Apple cider vinegar has been considered beneficial when it comes to keeping your weight down.applecider

But is it true?

"A lot of this is marketing," nutritionist Lisa Drayer said, "and it's been around a long time. I remember, probably 15 years ago, covering the apple cider vinegar diet. When you looked closely, the diet paired apple cider vinegar pills with a low-calorie menu. It's no wonder people lost weight.

"So I think there's been a lot of advertising about the benefits of apple cider vinegar for weight loss," she added, "and consumers get those messages, and they think, 'Oh, this must be the next magic bullet.' But whether it's based on science is another matter."

-What's the research say?

A lot of the research on vinegar's relationship with weight loss is in animals, mainly mice and rats. Studies show that acetic acid, the main component of apple cider vinegar, can suppress body fat accumulation and metabolic disorders in obese rats. But of course, mice are not men, and rats are not women, so these findings prove little.

Studies in humans have been small, which limits their validity.

"But they do suggest a weight loss from apple cider vinegar is plausible," Drayer said. "For example, some research suggests that it might promote satiety and make you consume fewer calories throughout the day."

A 2005 study of 12 people found that to be true when vinegar was consumed with a bread meal. A 2013 study of 16 folks found the same, but only because the vinegar caused nausea when ingested. "On this basis, the promotion of vinegar as a natural appetite suppressant does not seem appropriate," that study concludes.

The most-cited study to prove a connection to weight loss was done in 2009 with 175 "obese" Japanese subjects, ages 25 to 60, who were split into three groups. Considered "obese" by Japanese standards, each subject's BMI was between 25 and 30; in the United States, people aren't considered obese until their BMI exceeds 30. Anyone who had high cholesterol or diabetes or was using medications was excluded.

Over a 12-week period, the groups consumed a beverage that contained either one tablespoon of vinegar, two tablespoons of vinegar or no vinegar at all. At the end of the three months, those who consumed any amount of vinegar had a lower body weight, a smaller body mass index, less visceral fat, a smaller waist measurement and lower triglyceride levels than the placebo group that drank no vinegar.

That sounds fantastic until you look closely at the amount of weight that was lost.

"Only 2 to 4 pounds in three months over a placebo," Drayer explained. "That's only a third of a pound a week. Most diets have a much bigger result. So you would you definitely have to do many other things to accomplish any significant weight loss."

Dietitian Carol Johnston has been studying the effects of acetic acid on diabetic blood glucose levels since 2004. While she believes the Japanese study's findings make sense due to animal research, she too is quick to point out that the weight loss in humans was "very, very modest."

"In fact, I would say most people who are on a diet for 12 weeks and only lose a couple of pounds aren't going to be very happy," Johnston said.

-Regulating blood sugar

Where Johnston's research has shown significant benefits from vinegar, however, is in blood sugar control. Over the years, she's done a number of studies that show vinegar helps control blood sugar spikes for people with type 2 diabetes and those who are prediabetic, also known as insulin-resistant. She's even seen a slight benefit for healthy control subjects.

"Vinegar had an impact in all groups, but the most significant impact was in the prediabetic group," she said. "In prediabetics, it was too good to be true; (blood sugar) fell a good bit and stayed that way. It may be this is the group that could benefit the most."

The theory, according to Johnston, is that acetic acid appears to interfere with enzymes that break down starch molecules. This antiglycemic response can be induced by any sort of vinegar, such as red and white wine vinegars, pomegranate vinegar or even white distilled vinegar. It's the acetic acid in the vinegar, not the type, that produces the result.

"Basically, what acetic acid is doing is blocking the absorption of starch," said Johnston, who is associate director of the Arizona State University's School of Nutrition and Health. "If my study subjects eat a starch and add vinegar, glucose will go down. But if they drink sugar water and add vinegar, nothing happens. So if you're having bacon and eggs, don't bother. It only helps if you are consuming a starch."

It's possible that blocking starch absorption may help with weight loss as well, Drayer says, because starches cause blood sugar spikes and therefore act as an appetite stimulant.

"So if acetic acid is interfering with the breakdown of starch, what that means is that starch is not being digested," she explained. "If it's not getting digested, it's not causing the same rise in blood sugar, which can help control appetite. And if it's not being digested, it's not being absorbed into the bloodstream, and therefore it's not contributing to calories."

-The jury is still out

Though the research on acetic acid's benefits looks promising, nothing's definitive. It could be that other elements in apple cider and other vinegars also play a role. Take the trace chemicals in vinegar that vary based on where each brand was fermented.

"It could be that some of those ingredients are important or part of the effect we are seeing," Johnson said. She added that it will take much larger randomized scientific trials to prove any cause and effect between vinegar and weight loss, and especially between vinegar and diabetes or cardiovascular risks.

"Somebody, probably the federal government, is going to have to fund a multimillion-dollar grant and recruit hundreds of people at risk for diabetes and metabolic disorders to truly determine if vinegar is going to make a difference," Johnston said.

But until those occur, Johnston sees no harm in using vinegar to control blood sugars after starchy meals. After all, balsamic and wine vinegars are part of the Mediterranean diet, long associated with heart health and other benefits.

"Even in healthy people, that post-meal surge in blood sugar is a risk factor for heart disease, so in my mind, everyone should take advantage of the benefit that vinegar may provide. But I'd do it the way people have done for centuries, by adding it to their food," she said.

"What I would recommend is using salad dressings that contain vinegar, as it contains no calories," Drayer agreed. "When you make a dressing, use three parts oil to one part vinegar. Or reverse it and do one part oil and three parts vinegar."

You can also use it with food preparation, says Drayer.

"Dip your chicken with egg whites and bread crumbs mixed with balsamic vinegar for poultry or fish," she said. "Or you can drink it in water, which is good, as water makes you feel full."

But she stresses that if you choose to drink your vinegar, make sure that the tablespoon is added to a full glass of water. Properly diluting vinegar is key. Otherwise, it can damage your teeth, throat and stomach lining.

"Vinegar has that strong smell and puckering taste, so if you take a breath, you could inhale it into your lungs and burn those a little, because it's an acid," Johnston said. "So never drink it straight. Dilute it in water, and drink before you eat or with the first bites of your meal.

"You want the acetic acid in stomach before the meal to do the most good," she said. "Mediterranean people ate the salad with vinegar, then they ate the pasta."

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News Network
February 4,2020

Toronto, Feb 4: People who text while walking face a higher risk of an accident than those listening to music or talking on the phone, a study has found.

The study, published in the journal Injury Prevention, found that smartphone texting is linked to compromised pedestrian safety, with higher rates of 'near misses', and failure to look left and right before crossing a road.

Researchers from the University of Calgary in Canada call for a more thorough approach to exploring the impact of distracted pedestrian behaviours on crash risk.

Worldwide, around 270,000 pedestrians die every year, accounting for around a fifth of all road traffic deaths, according to the researchers.

'Pedestrian distraction' has become a recognised safety issue as more and more people use their smartphones or hand held devices while walking on the pavement and crossing roads, they said.

The researchers looked for published evidence to gauge the potential impact on road safety of hand-held or hands-free device activities.

This included talking on the phone, text messaging, browsing and listening to music.

From among 33 relevant studies, they pooled the data from 14 -- involving 872 people -- and systematically reviewed the data from another eight.

The analysis showed that listening to music wasn't associated with any heightened risk of potentially harmful pedestrian behaviours.

Talking on the phone was associated with a small increase in the time taken to start crossing the road, and slightly more missed opportunities to cross the road safely.

The researchers found that text messaging emerged as the potentially most harmful behaviour.

It was associated with significantly lower rates of looking left and right before or while crossing the road, and with moderately increased rates of collisions, and close calls with other pedestrians or vehicles, they said.

Texting also affected the time taken to cross a road, and missed opportunities to cross safely, but to a lesser extent, according to the researchers.

The review of the eight observational studies revealed that the percentage of pedestrians who were distracted ranged from 12 to 45 per cent, they said.

It also found behaviours were influenced by several factors, including gender, time of day, solo or group crossing, and walking speed.

The researchers acknowledge "a variety of study quality issues" which limit the generalisability of the findings.

"Given the ubiquity of smartphones, social media, apps, digital video and streaming music, which has infiltrated most aspects of daily life, distracted walking and street cross will be a road safety issue for the foreseeable future," the researchers noted.

"And as signage and public awareness campaigns don't seem to alter pedestrian behaviour, establishing the relationship between distracted walking behaviour and crash risk is an essential research need," they said.

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Agencies
July 8,2020

Scientists have designed a “catch and kill” air filter which they say can trap the novel coronavirus and neutralise it instantly, an invention that may reduce the spread of COVID-19 in closed spaces such as schools, hospitals and health care facilities, as well as public transit environments like airplanes.

According to the study, published in the journal Materials Today Physics, the device killed 99.8 per cent of the novel coronavirus, SARS-CoV-2, in a single pass through its filter. It said the device, made from commercially available nickel foam heated to 200 degrees Celsius, also killed 99.9 per cent of the spores of the deadly bacterium Bacillus anthracis which causes the anthrax disease.

“This filter could be useful in airports and in airplanes, in office buildings, schools, and cruise ships to stop the spread of COVID-19,” said Zhifeng Ren, a co-author of the study from the University of Houston (UH) in the US.

“Its ability to help control the spread of the virus could be very useful for society,” Ren added.

The researchers said they are also developing a desk-top model for the device which is capable of purifying the air in an office worker’s immediate surroundings. According to the scientists, since the virus can remain in the air for about three hours, a filter that could remove it quickly was a viable plan, and with businesses reopening across the world, they believe controlling the spread in air conditioned spaces was urgent.

The study noted that the novel coronavirus cannot survive temperatures above 70 degrees Celsius, so by making the filter temperature far hotter — about 200 degree Celsius, the researchers said they were able to kill the virus almost instantly.

Ren said the nickel foam met several key requirements. “It is porous, allowing the flow of air, and electrically conductive, which allowed it to be heated. It is also flexible,” the researchers noted in a statement.But they added that nickel foam also had low resistivity, making it difficult to raise the temperature high enough to quickly kill the virus.

The researchers said they solved this problem by folding the foam, connecting multiple compartments with electrical wires to increase the resistance high enough to raise the temperature as high as 250 degrees Celsius. By making the filter electrically heated, rather than heating it from an external source, they said the the amount of heat that escaped from the filter is minimised, allowing air conditioning to function with very low strain.

When the scientists built and tested a prototype for the relationship between voltage/current and temperature, they said it satisfies the requirements for conventional heating, ventilation, and air conditioning (HVAC) systems, and could kill the coronavirus.

“This novel biodefense indoor air protection technology offers the first-in-line prevention against environmentally mediated transmission of airborne SARS-CoV-2, and will be on the forefront of technologies available to combat the current pandemic and any future airborne biothreats in indoor environments,” said Faisal Cheema, another co-author of the study from UH.

The researchers have called for a phased roll-out of the device, “beginning with high-priority venues, where essential workers are at elevated risk of exposure.” They believe the novel device will both improve safety for frontline workers in essential industries and allow nonessential workers to return to public work spaces.

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News Network
July 9,2020

Washington, Jul 9: Ayurvedic practitioners and researchers in India and the US are planning to initiate joint clinical trials for Ayurveda formulations against the novel coronavirus, the Indian envoy here has said.

In a virtual interaction with a group of eminent Indian-American scientists, academicians, and doctors on Wednesday, Indian Ambassador to the US Taranjit Singh Sandhu said the vast network of institutional engagements have brought scientific communities between the two countries together in the fight against Covid-19.

 “Our Institutions have also been collaborating to promote Ayurveda through joint research, teaching and training programs. Ayurvedic practitioners and researchers in both the countries are planning to initiate joint clinical trials of Ayurvedic formulations against Covid-19,” Sandhu said.

“Our scientists have been exchanging knowledge and research resources on this front,” he said.

The Indo-US Science Technology Forum (IUSSTF) has always been instrumental in promoting excellence in science, technology, and innovation through collaborative activities.

To address Covid-19-related challenges, the IUSSTF had given a call to support joint research and start-up engagements. A large number of proposals are being reviewed on fast track mode by the experts on both the sides, he said.

“Indian pharmaceutical companies are global leaders in producing affordable low-cost medicines and vaccines and will play an important role in the fight against this pandemic,” Sandhu said.

According to the ambassador, there are at least three ongoing collaborations between Indian vaccine companies with US-based institutions.

These collaborations would be beneficial not just to India and the US, but also for the billions who would need to be vaccinated against Covid-19 across the world, he noted.

Asserting that innovation will be the key driver in pandemic response and recovery, he said tech-companies and start-ups have already begun to take the lead in this direction.

"Telemedicine and telehealth will evolve as will other digital platforms across sectors," he said.

Noting that there has been a longstanding collaboration between India and the US in the health sector, he said scientists have been working together in several programs to understand important diseases at the basic and clinical level.

Many such programs have been focused on translational research to develop new therapeutics and diagnostics.

There are over 200 ongoing NIH funded projects in India involving 20 institutions from NIH network and several eminent institutions in India engaged in a wide spectrum of research areas to create health care solutions, the senior diplomat said.

The collaboration under Vaccine Action Program (VAP) resulted in the development of ROTAVAC vaccine against rotavirus which causes severe diarrhea in children.

The vaccine was developed by an Indian company (Bharat Biotech) at an affordable cost. It has been commercialised and introduced in the Expanded Program on Immunisation.

Development of many other vaccines such as TB, Influenza, Chikungunya are also in progress under the VAP, he said.

 “As I speak, the VAP meeting is in progress where experts from both countries are deeply engaged in technical discussions to expedite development of Covid-19 vaccine,” Sandhu said in his remarks.

During the interaction, the eminent experts appreciated India's handling of the Covid-19 pandemic and offered their valuable suggestions and best practices in this regard.

They shared their ideas on deepening the knowledge partnership between India and the US.

The experts who took part in the interaction, were drawn from wide-ranging fields including artificial intelligence, quantum information science, biomedical engineering, robotics, mechanical engineering, earth and ocean science, virology, physics, astrophysics, and health sciences.

Prominent among those who attended the virtual interaction were Subhash Kak Regents Professor at Oklahoma State University, Dr Vijay Kuchroo, Samuel L Wasserstrom Professor of Neurology at Harvard Medical School, Dr Ashish M Kamat, Professor of Urology at MD Anderson Cancer Center, Ashutosh Chilkoti, Alan L Kaganov Professor of Biomedical Engineering and Chair of the Department of Biomedical Engineering at Duke University; and Prof Manu Prakash, a professor in Department of Bioengineering at Sandford University, among others.

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