Often called the second brain, the human gut has 20 million neurons and houses close to 100 trillion microorganisms responsible for influencing biological and emotional function.
Advances in confronting how to contain genetic material from engineered products, include the role played by a healthy human gut microbiome; and the impact of inflammation of horizontal gene transfer in the gut..
But her chemistry-based methods have changed the way others research the microbiome, accelerating work to hunt down more unusual chemistry in the human gut.
Next, they analyzed data from a 2016 study of microbiome composition from 1,126 pairs of twins to see whether the human gut microbiome can be inherited.
Enterome has developed a discovery platform to identify such onco-mimics from the human gut microbiome, and has advanced EO2401 as its first clinical candidate.
Within the family, Faecalibacterium prausnitzii is notable as an abundant commensal bacteria of the human gut microbiota. In addition, several members of Ruminococcus are found in the human gut.[9].
科学家发现近2000种此前未知的人类肠道细菌.
Scientists say nearly 2 000 previously unknown types of bacteria in the human gut have been identified.
问:为什么了解人类肠道微生物组很重要??
Q: Why is it important to understand the human gut microbiome?
人类肠道微生物群落将食物视为化学物质的集合。
Human gut microbial communities see foods as collections of chemicals.
人类肠道中有大量和多种微生物,包括大约37万亿细菌。
The human gut has an immense number and assortment of microorganisms, including around 37 trillion microbes.
人类肠道的微生物群受许多不同因素的影响,包括药物治疗。
The human gut's microbiota population is influenced by a number of different factors, including medication.
微生物学:非抗生素类药物对人类肠道细菌的广泛影响.
Extensive impact of non-antibiotic drugs on human gut bacteria.
微生物学:非抗生素类药物对人类肠道细菌的广泛影响.
Extensive impact of non-antibiotic drugs on human gut bacteria in NATURE.
人类肠道微生物群在形成和保持良好健康状况方面发挥着主要作用。
The human gut microbiota plays a major role in the development and maintenance of good health.
现代技术比以往任何时候都更能让我们分离出未经培养的人类肠道细菌。
More than ever before, modern techniques allow us to isolate previously uncultured human gut bacteria.
这些结果表明,人类生态学在塑造人类肠道微生物组方面比遗传关系具有更大的影响。
These results suggest that human ecology has had a stronger impact in shaping the human gut microbiome than genetic relationships.
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