Deep Meditation May Alter Gut Microbes for Better Health


Summary: Regularly practicing meditation helps regulate the gut microbiome and has the potential to lower anxiety, depression, and heart disease, a new study reports.

Source: BMJ

Regular deep meditation, practised for several years, may help to regulate the gut microbiome and potentially lower the risks of physical and mental ill health, finds a small comparative study published in the open access journal General Psychiatry.

The gut microbes found in a group of Tibetan Buddhist monks differed substantially from those of their secular neighbours, and have been linked to a lower risk of anxiety, depression, and cardiovascular disease.

Research shows that the gut microbiome can affect mood and behaviour through the gut–brain axis. This includes the body’s immune response, hormonal signalling, stress response and the vagus nerve—the main component of the parasympathetic nervous system, which oversees an array of crucial bodily functions.

The significance of the group and specimen design is that these deep-thinking Tibetan monks can serve as representatives of some deeper meditations. Although the number of samples is small, they are rare because of their geographical location.

Meditation is increasingly being used to help treat mental health disorders, such as depression, anxiety, substance abuse, traumatic stress, and eating disorders as well as chronic pain. But it’s not clear if it might also be able to alter the composition of the gut microbiome, say the researchers.

In a bid to find out, the researchers analysed the stool and blood samples of 37 Tibetan Buddhist monks from three temples and 19 secular residents in the neighbouring areas.

Tibetan Buddhist meditation originates from the ancient Indian medical system known as Ayurveda, and is a form of psychological training, say the researchers. The monks in this study had been practising it for at least 2 hours a day for between 3 and 30 years.

None of the participants had used agents that can alter the volume and diversity of gut microbes: antibiotics; probiotics; prebiotics; or antifungal drugs in the preceding 3 months.

Both groups were matched for age, blood pressure, heart rate, and diet.

Stool sample analysis revealed significant differences in the diversity and volume of microbes between the monks and their neighbours. 

Bacteroidetes and Firmicutes species were dominant in both groups, as would be expected. But Bacteroidetes were significantly enriched in the monks’ stool samples (29% vs 4%), which also contained abundant Prevotella (42% vs 6%) and a high volume of Megamonas and Faecalibacterium.

“Collectively, several bacteria enriched in the meditation group [have been] associated with the alleviation of mental illness, suggesting that meditation can influence certain bacteria that may have a role in mental health,” write the researchers.

These include Prevotella, Bacteroidetes, Megamonas and Faecalibacterium species, the previously published research suggests.

Research shows that the gut microbiome can affect mood and behaviour through the gut–brain axis. Image is in the public domain

The researchers then applied an advanced analytical technique to predict which chemical processes the microbes might be influencing. This indicated that several protective anti-inflammatory pathways, in addition to metabolism—the conversion of food into energy—were enhanced in the meditation people.

Finally, blood sample analysis showed that levels of agents associated with a heightened risk of cardiovascular disease, including total cholesterol and apolipoprotein B, were significantly lower in the monks than in their secular neighbours by their functional analysis with the gut microbes.

Although a comparative study, it is observational and the numbers of participants were small, all male, and lived at high altitude, making it difficult to draw any firm or generalisable conclusions. And the potential health implications could only be inferred from previously published research.

But based on their findings, the researchers suggest that the role of meditation in helping to prevent or treat psychosomatic illness definitely merits further research.

And they conclude: “These results suggest that long-term deep meditation may have a beneficial effect on gut microbiota, enabling the body to maintain an optimal state of health.”

About this meditation, microbiome, and health research news

Author: Emma Dickinson
Source: BMJ
Contact: Emma Dickinson – BMJ
Image: The image is in the public domain

Original Research: Open access.
Alteration of faecal microbiota balance related to long-term deep meditation” by Ying Sun et al. General Psychiatry


Abstract

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Alteration of faecal microbiota balance related to long-term deep meditation

Background 

Advancements in research have confirmed that gut microbiota can influence health through the microbiota–gut–brain axis. Meditation, as an inner mental exercise, can positively impact the regulation of an individual’s physical and mental health. However, few studies have comprehensively investigated faecal microbiota following long-term (several years) deep meditation. Therefore, we propose that long-term meditation may regulate gut microbiota homeostasis and, in turn, affect physical and mental health.

Aims 

To investigate the effects of long-term deep meditation on the gut microbiome structure.

Methods 

To examine the intestinal flora, 16S rRNA gene sequencing was performed on faecal samples of 56 Tibetan Buddhist monks and neighbouring residents. Based on the sequencing data, linear discriminant analysis effect size (LEfSe) was employed to identify differential intestinal microbial communities between the two groups. Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt) analysis was used to predict the function of faecal microbiota. In addition, we evaluated biochemical indices in the plasma.

Results 

The α-diversity indices of the meditation and control groups differed significantly. At the genus level, Prevotella and Bacteroides were significantly enriched in the meditation group. According to the LEfSe analysis, two beneficial bacterial genera (Megamonas and Faecalibacterium) were significantly enriched in the meditation group. Functional predictive analysis further showed that several pathways—including glycan biosynthesis, metabolism and lipopolysaccharide biosynthesis—were significantly enriched in the meditation group. Moreover, plasma levels of clinical risk factors were significantly decreased in the meditation group, including total cholesterol and apolipoprotein B.

Conclusions 

Long-term traditional Tibetan Buddhist meditation may positively impact physical and mental health. We confirmed that the gut microbiota composition differed between the monks and control subjects. The microbiota enriched in monks was associated with a reduced risk of anxiety, depression and cardiovascular disease and could enhance immune function. Overall, these results suggest that meditation plays a positive role in psychosomatic conditions and well-being.


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