Showing posts with label bacteria. Show all posts
Showing posts with label bacteria. Show all posts

Tuesday, November 24, 2020

Common human skin bacteria could protect against cancer, say researchers

 reposted from

https://www.theguardian.com/science/2018/feb/28/common-human-skin-bacteria-could-protect-against-cancer-say-researchers


Common human skin bacteria could protect against cancer, say researchers

This article is more than 2 years old

Staphylococcus epidermidis may help to protect against skin cancer, and could lead to preventive treatments, scientists reveal

The presence of Staphylococcus epidermidis, pictured, may provide natural protection against skin cancer.
The presence of Staphylococcus epidermidis, pictured, may provide natural protection against skin cancer. Photograph: UC San Diego Health

A type of bacteria commonly found on human skin produces a substance that may help protect against skin cancer, researchers have revealed.

The scientists say the surprise discovery regarding a strain of Staphylococcus epidermidis highlights the importance of the community microbes found on and in the body in preventing disease.

While it is not clear whether the absence of this strain could increase the risk of skin cancer in individuals, the team say that it is possible the findings might one day lead to preventive treatments for patients.

“The presence of this strain may provide natural protection, or it might be used therapeutically to inhibit the growth of various forms of cancer,” said Prof Richard Gallo, a co-author of the research from the University of California, San Diego.

The finding was somewhat serendipitous. With previous research showing that chemicals produced by Staphylococcus species commonly found on healthy human skin can kill off certain harmful bacteria, the team looked at numerous strains to explore their antimicrobial powers.

Writing in the journal Science Advances, Gallo and colleagues describe how among their results, they discovered a strain of Staphylococcus epidermidis which produced a substance that killed off a type harmful bacteria responsible for infections such as strep throat. While it was not the only strain to do so, the chemical these microbes produced was unusual, boasting a structure similar to one of the key components of DNA, called adenine.

“The strain was originally detected in a screen for antimicrobial activity, but when we identified the nature of the chemical produced by this strain we proceeded with experiments to determine if it might have activity against tumours,” said Gallo.

The researchers found that the chemical, called 6-N-hydroxyaminopurine (6-HAP), hindered the production of DNA, with work in cell cultures revealing that 6-HAP prevents several types of tumour cells from growing and multiplying.

By injecting mice with this substance, the team found that 6-HAP is not toxic. However, when melanoma cells were introduced to mice, animals which had received 6-HAP intravenously ended up with tumours that were more than 60% smaller than those that had not received the substance.

The team also found application of the 6-HAP-producing strain of Staphylococcus epidermidis to the skin of mice appeared to greatly reduce both the number of pre-malignant skin tumours formed when the creatures were exposed to ultraviolet light, and number of mice affected, compared to those exposed to a strain that did not produce the substance.

While Staphylococcus epidermidis is commonly found on human skin, the team say about 20% of the healthy population is likely to have a strain which produces 6-HAP. “Our study found that it is common, but not on everyone,” said Gallo.

Julian Marchesi, professor of human microbiome research at Cardiff University who was not involved in the study, welcomed the findings.

“[This research] further adds to a growing understanding of how important the human microbiota, and in this case the skin microbiome, is to health. We have evolved to need these microbes and desperately need to understand all the roles they play in human biology and start to think more about what it is to be a human being,” he said. “The next stage of this exciting work, will be to translate it to human clinical trials and show that this bacterially produced chemical can protect the host from skin cancers.”

Friday, October 2, 2020

Why a walk in the woods really does help your body and your soul

 reposted from


https://theconversation.com/why-a-walk-in-the-woods-really-does-help-your-body-and-your-soul-53227









Have you ever wondered why you feel healthier and happier when you stroll through the trees or frolic by the sea? Is it just that you’re spending time away from work, de-stressing and taking in the view? Or is there more to it?

For more than 20 years, scientists have been trying to determine the mechanisms by which exposure to biodiversity improves health. Japanese scientists pioneered the search when they travelled to the island of Yakushima, famous for its biodiversity.

The Japanese already had a name for the experience of well-being in nature: shinrin-yoku or “forest bathing”.

Bathe yourself in the forests of Japan’s Yakushima island. Alan LoganAuthor provided

We do know that a diverse ecosystem supports a varied and beneficial microbial community living around and inside us.

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We also know that exposure to green space, even within urban environments, increases our physical and mental well-being. But what are the mechanisms?

The forest air

The Japanese researchers suggested that we are taking in beneficial substances when we breathe forest air.

Research has identified three major inhaled factors that can make us feel healthier. These factors are beneficial bacteria, plant-derived essential oils and negatively-charged ions.

From birth to the grave, beneficial bacteria surround us; they live in the environment and, importantly, in the air we breathe. We also share almost our entire body with them. The more interaction we have with them, the happier and healthier we are.

This is in part due to our gut-dwelling bacteria, which break down the food we cannot digest and produce substances that benefit us both physically and mentally.

Plants and the bacteria living on them can produce essential oils to fight off harmful microorganisms. These are referred to collectively as phytoncides, literally, “plant-derived exterminators”.

Research on the health benefits of plant essential oils is in its infancy. But one recent study found that a phytoncide from Korean pine trees improved the health and bacterial make-up of pigs.

Notwithstanding some of the pseudoscience that gets wrapped around negative ion generating machines, there is evidence that negative air ions may influence mental outlook in beneficial ways. There are relatively higher levels of negative air ions in forested areas and close to bodies of water. This may factor into the benefits of walking in a forest or near the ocean.

But as the German writer Goethe once said:

Nature has neither kernel nor shell; she is everything at once.

Bacteria, essential oils and negative ions interact and influence each other. For example, negative ions and phytoncides may dictate the microbial make-up within a natural environment. There is evidence that this could also be taking place in the human gut.

More to be done

Nature-relatedness, or biophilia in which an individual feels connected to nature, has been linked with better health.

But we have a long way to go before we can more fully understand the mechanisms by which an innate love of nature can benefit our health. An important part of this discussion – an overlooked one in our opinion – is further understanding of an individual’s connection to nature.

Psychologists have convincingly demonstrated connections between nature relatedness and mental well-being. But how does a greater personal affinity to nature interact with dietary habits, personal microbiome, physical activity levels and many other lifestyle variables that might be intertwined with having such an affinity?

In the meantime, while scientists turn over stones and search for important mechanistic clues – including those related to biodiversity – there are many simple ways to capitalise on our biophilia.

Live in a city? The take time to walk in the city’s parks and gardens such as Melbourne’s Botanical Gardens. Flickr/Stephen BarberCC BY-NC-ND

Why not run in the park or by a river instead of on a treadmill, or take a walk through a park on the way to work or at lunchtime?

Critically, there is increasing evidence that we can help shape our children’s mental and physical health by exposing them to more green environments as they work, rest and play. The US-based Children and Nature Network is a great resource of research news and activities bringing children and nature together.

In the World Health Organization report Connecting Global Priorities – Biodiversity and Human Health, released in December last year, it was concluded that:

Considering ‘microbial diversity’ as an ecosystem service provider may contribute to bridging the chasm between ecology and medicine/immunology [… ] the relationships our individual bodies have with our microbiomes are a microcosm for the vital relationships our species shares with countless other organisms with which we share the planet.

It is easy to see that discussions of natural environments and human health are no mere matter of intellectual fancy.

In a paper published last month in Journal of Physiological Anthropology, we’ve called for more research into the links between biodiversity and human physical and mental well-being, particular in relation to childhood, that most formative of times.

Wouldn’t it be good if by nurturing our environment we were also nurturing our children’s future health?