Tag Archives: discovery

Indestructible Water Bears

Water Bears. Courtesy of Wikimedia Commons.

Tardigrades, also known as water bears, are microscopic animals that have intrigued scientists for many years. What about them is so captivating? The fact that they are nearly indestructible.

Water bears have been treated to extreme environments, and against all odds, their survival has been astounding. They can survive temperatures ranging from -328 – 300 degrees Fahrenheit, pressures of up to 6000 times our atmosphere, and even…10 days in space!

The question though, is how do they do it?

Theories have gone as far as to suggest that the reason water bears can survive these extremes, is that they came from other planets. Personally, this idea seems impossible, but could it hold a glimmer of truth?

Scientists conducted further research and found a reason for their survival. The reason is anhydrobiosis. Anhydrobiosis is a dormant state where an organism reduces their metabolic activity significantly and becomes almost completely dehydrated. As it turns out, water bears in extreme environments tend to curl up into a dehydrated ball called a tun. In this form, water bears can survive for decades or longer.

If most living organisms were to enter this state of desiccation, they would not be able to come back from it, but water bears can. According to Thomas Boothby, a Life Sciences Research Foundation Postdoctoral Fellow at the University of North Carolina:

“[T]ardigrades have evolved unique genes that allow them to survive drying out. In addition, the proteins that these genes encode can be used to protect other biological material—like bacteria, yeast, and certain enzymes—from desiccation.”

Water bears seem like very interesting creature to study, and it makes sense for scientists to be captivated by their incredible survival rates in extreme conditions. More intensive research on these water bears could lead to amazing discoveries in the future.

~ Sajni Shah

A Glass of Wine a Day Keeps the Doctor Away?

Picture from Google Images

Since the 1990’s scientists have wondered whether red wine has any potential health benefits for the average consumer. Studies have shown that a polyphenol known as resveratrol in the wine does help to reduce the risk of cardiovascular diseases, in particular atherosclerosis.

How did scientists know in the first place that red wine could potentially help? It all has to do with the French Paradox. The French paradox looks at how the French have a lower risk of cardiovascular diseases despite consuming a diet that consists mainly of fats. What’s the main difference in these diets from others around the world? They drink a lot of wine.

Studies looking into red wine discovered a polyphenol known as resveratrol. Resveratrol comes from the grapes that make the wine. It was noticed due to its anti-oxidant and anti-inflammatory properties. Scientists believed that this may have something to do with the health benefits of the wine.

Resveratrol was first tested on mice models by feeding them resveratrol supplements and in the end it showed a decrease in the risk of cardiovascular diseases, specifically atherosclerosis. Atherosclerosis is when the arteries harden and narrow making it difficult for blood to flow through the body. The question scientists then wondered was how exactly did resveratrol help with this?

Some ways resveratrol helped is by increasing the amount of high density lipoprotein cholesterol, also known as the ‘good’ cholesterol in our body as well as decreasing platelet aggregation. This coupled with its antioxidant abilities made resveratrol a very helpful polyphenol in red wine.

Benefits of Red Wine (From :Saleem, T. S. M. & Basha, S. D. (2010). Red wine: A drink to your heart. J Cardiovasc Dis Res., 1(4), 171-176.)

The research was more recently extended to human trials and similar results were found as was with the mice. However, to this day doctors are hesitant to encourage patients to drink as the consequences from drinking alcohol are too high for the benefits of resveratrol. Non-alcoholic red wine is available with all the benefits of the polyphenol without the worry of the alcohol.

The idea that red wine can help with our health is interesting, however I believe that the risk of alcohol is too great. You can never be sure how much wine is too much and it varies from person to person. To be on the safe side I would recommend other forms of resveratrol supplements other than red wine to help with any cardiovascular problems. However, it is great to know that drinking red wine isn’t all that bad. Thus in conclusion, the polyphenol resveratrol does help to reduce our risk of cardiovascular diseases, so a glass of wine a day, does keep the doctor away!

~Sajni Shah

 

References:

Chiva-Blanch, G., Arranz, S., Lamuela-Raventos, R. M., & Estruch, R. (2013). Effects of Wine, Alcohol and Polyphenols on Cardiovascular Disease Risk Factors: Evidences from Human Studies. Alcohol and Alcoholism, 48(3), 270-277.

Gilford, J. M., & Pezutto, J. M. (2011). Wine and Health: A Review. American Journal of Enology and Viticulture, 62(4), 471-486.

O’Keefe, J. H., Bhatti, S. K., Bajwa, A., Dinicolantonio, J. J., & Lavie, C. J. (2014). Alcohol and Cardiovascular Health: The Dose Makes the Poison…or the Remedy. Mayo Clinic Proceedings, 89(3), 382-393.

Smoliga, J. M., Baur, J. A., & Hausenblas, H. A. (2011). Resveratrol and health – A comprehensive review of human clinical trials. Molecular Nutrition & Food Research Mol. Nutr. Food Res., 55(8), 1129-1141.

Saleem, T. S. M. & Basha, S. D. (2010). Red wine: A drink to your heart. J Cardiovasc Dis Res., 1(4), 171-176.

Extragalactic Attack: Key to the Universe?

Radiation from cosmic rays could severely damage the brains of astronauts.

Radiation from cosmic rays could cause severe brain damage, according to a study on Mars astronauts. Photo Credits: Diana Quach

Cosmic radiation has been linked to Alzheimer’s disease, premature aging, and dementia in astronauts because it damages neurons in the brain. This is extremely concerning for anyone who wants to understand life beyond earth; sending astronauts for long space missions could destroy their lives! For decades, scientists have attempted to combat the impact of intergalactic cosmic radiation on Mars. On September 22nd, a new discovery changed everything.

Scientists recently discovered extragalactic high-energy cosmic rays, which are radiative fragments of atoms that cascade into earth at the speed of light. Scientists previously hypothesized that cosmic rays exist outside our galaxy, but were unable to prove it until now. The Pierre Auger Observatory’s particle detectors revealed that these rare cosmic rays are a million times more powerful than the largest cosmic phenomena in our galaxy. These findings were published in the journal Science as a research article titled Observation of a large-scale anisotropy in the arrival directions of cosmic rays above 8x10e18 eV.

Evidence shows that cosmic rays with large energies originate beyond our galaxy, shown through a flux diagram.

This map of the sky shows the cosmic ray flux, with a cross marking the specific region where scientists observed a pattern of cosmic rays. Photo Credits: The Pierre Auger Collaboration.

The Pierre Auger Collaboration is certain that these high-energy cosmic rays originate outside our galaxy. Although cosmic rays are emitted by the Milky Way, the intergalactic particles cannot contain as much energy as the rays detected.

The blue lines represent magnetic field lines in a black hole that project an extragalactic jet, similar to our galaxy’s magnetic field. Photo Credits: NASA/JPL-Caltech

Extragalactic cosmic rays could contribute to the radiation damage to astronauts since they are so high in energy. Previously, scientists have considered many intergalactic cosmic radiation because there was no proof that extragalactic rays existed. If the cosmic rays’ origin could be found, scientists could isolate particles inside the rays to study their properties.

Unfortunately, it is difficult to locate the source of cosmic rays because they are anisotropic. Their properties changed when they encountered our galaxy’s magnetic field, which made determining the cosmic rays’ extragalactic properties impossible.

In the movie The Martian, the stranded Mark Watney wears a fashionable suit. Photo credits: Aidan Monaghan

So what does all of this mean? If we could source and isolate extragalactic cosmic rays, we could study how radiation damage affects the brain. We could create astronaut suits from materials that would deflect cosmic radiation, so astronauts can spend time on Mars without compromising their health. The groundbreaking discovery of extragalactic cosmic rays takes us one step closer to understanding the universe.

Jessica Shi