4.6 Article

Gut Microbiome-Targeted Modulations Regulate Metabolic Profiles and Alleviate Altitude-Related Cardiac Hypertrophy in Rats

期刊

MICROBIOLOGY SPECTRUM
卷 10, 期 1, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/spectrum.01053-21

关键词

cardiac hypertrophy; hypobaric hypoxia; microbiota; 16S rRNA; metabolome

资金

  1. National Natural Science Foundation of China [81790632, 31970863, 31970088]
  2. National Key Technology Research and Development Program of the Ministry of Science and Technology of China [2020YFA0509600]

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This study investigated the effects of probiotics, prebiotics, and synbiotics on altitude-related cardiac impairment in a rat model. The treatments alleviated cardiac hypertrophy and restored gut microbiota disruptions caused by hypobaric hypoxia. The study suggests that the gut microbiome may play a causal role in high-altitude-related diseases and could be a target for therapeutic interventions.
It is well known that humans physiologically or pathologically respond to high altitude, with these responses accompanied by alterations in the gut microbiome. To investigate whether gut microbiota modulation can alleviate high-altitude-related diseases, we administered probiotics, prebiotics, and synbiotics in rat model with altitude related cardiac impairment after hypobaric hypoxia challenge and observed that all three treatments alleviated cardiac hypertrophy as measured by heart weightto-body weight ratio and gene expression levels of biomarkers in heart tissue. The disruption of gut microbiota induced by hypobaric hypoxia was also ameliorated, especially for microbes of Ruminococcaceae and Lachnospiraceae families. Metabolome revealed that hypobaric hypoxia significantly altered the plasma short-chain fatty adds (SCFAs), bile acids (BAs), amino acids, neurotransmitters, and free fatty acids, but not the overall fecal SCFAs and BAs. The treatments were able to restore homeostasis of plasma amino acids and neurotransmitters to a certain degree, but not for the other measured metabolites. This study paves the way to further investigate the underlying mechanisms of gut microbiome in high-altitude related diseases and opens opportunity to target gut microbiome for therapeutic purpose. IMPORTANCE Evidence suggests that gut microbiome changes upon hypobaric hypoxia exposure; however, it remains elusive whether this microbiome change is a merely derivational reflection of host physiological alteration, or it synergizes to exacerbate highaltitude diseases. We intervened gut microbiome in the rat model of prolonged hypobaric hypoxia challenge and found that the intervention could alleviate the symptoms of pathological cardiac hypertrophy, gut microbial dysbiosis, and metabolic disruptions of certain metabolites in gut and plasma induced by hypobaric hypoxia. Our study suggests that gut microbiome may be a causative factor for high-altitude-related pathogenesis and a target for therapeutic intervention.

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