相关实验视频
Updated: Jul 25, 2026

07:54
A Method to Assess Bacteriocin Effects on the Gut Microbiota of Mice
Published on: July 25, 2017
对肠道中共生宿主-微生物关系的分子分析
L V Hooper1, M H Wong, A Thelin
1Department of Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, MO 63110, USA.
概括
肠道细菌Bacteroides thetaiotaomicron通过调节肠道基因表达,显著影响宿主生理. 这项研究强调了寄居微生物在维持宿主健康和功能方面的关键作用.
科学领域:
- 微生物学 微生物学
- 胃肠病学 胃肠病学
- 主体微生物群的相互作用
背景情况:
- 人的肠道微生物群包括复杂的微生物群落.
- 居民细菌对宿主的生理影响尚未完全理解.
研究的目的:
- 为了调查突出的肠道细菌 Bacteroides thetaiotaomicron 如何影响宿主生理学.
- 为了确定由这种共生微生物调节的特定肠道功能.
主要方法:
- 没有细菌的小鼠被 Bacteroides thetaiotaomicron 殖民.
- 全球肠道基因表达分析使用DNA微阵列.
- 通过激光捕获微解剖来定位细胞反应.
主要成果:
- 细菌类的thetaiotaomicron殖民化调节了宿主基因表达.
- 受影响的关键肠道功能包括营养吸收和粘膜屏障强化.
- 这种细菌还影响了异生菌的新陈代谢,血管生成和肠道成熟.
结论:
- 像Bacteroides thetaiotaomicron这样的共生细菌在塑造宿主生理学方面发挥着至关重要的作用.
- 微生物相互作用对于维持肠道健康和功能至关重要.
- 这项研究提供了关于肠道微生物对宿主产生影响的机制的见解.
更多相关视频
相关概念视频
Mechanical and Chemical Digestion in the Small Intestine
The small intestine plays a crucial role in our digestive system, performing both mechanical and chemical digestion.
Mechanical digestion in the small intestine involves movements such as segmentations and migrating motility complexes (MMCs), primarily controlled by the myenteric plexus. Segmentations are localized contractions occurring in areas of the intestine distended by chyme—a mixture of partially digested food. These contractions mix chyme with digestive juices, facilitating absorption...
Mechanical digestion in the small intestine involves movements such as segmentations and migrating motility complexes (MMCs), primarily controlled by the myenteric plexus. Segmentations are localized contractions occurring in areas of the intestine distended by chyme—a mixture of partially digested food. These contractions mix chyme with digestive juices, facilitating absorption...
Introduction to the Human Microbiota
Microorganisms colonize various regions of the human body, including the mouth, nasal passages, throat, stomach, intestines, urogenital tract, and skin. The total number of microbial cells is estimated to range from 10¹³ to 10¹⁴—comparable to, or exceeding, the number of human somatic cells. This host–microbiome relationship has led to the conceptualization of humans as supraorganisms, wherein microbial communities perform vital roles in development, immunity, and disease...
Development of Human Microbiota
The human microbiota begins developing at birth and undergoes continual change as we age. Infancy marks a critical period of microbial sensitivity, offering a “window of opportunity” during which beneficial microbes help mature the immune system. By age three, children typically develop a more stable and diverse microbial community. Newborns acquire microbes from their immediate environment; vaginal delivery favors maternal vaginal microbes, while cesarean births favor microbes from the skin...
Microbiota of the Stomach and Small Intestine
The human gastrointestinal (GI) tract is characterized by distinct physicochemical conditions that shape its microbial communities. Among these, the stomach presents a particularly challenging environment for microbial colonization due to its highly acidic pH, ranging from 1 to 3. This extreme acidity effectively limits microbial density. However, certain acid-tolerant microorganisms are capable of surviving in this niche. Notably, Helicobacter pylori can colonize the gastric mucosa,...
Microbiota of the Large Intestine
The large intestine hosts the most densely populated microbial ecosystem in the human body. This complex community primarily consists of anaerobic bacteria, with Bacillota (formerly Firmicutes) and Bacteroidota (formerly Bacteroidetes) as the predominant groups. The distribution of these microbes varies along different sections of the large intestine, influenced by local environmental factors such as oxygen availability and nutrient composition.The cecum, located at the beginning of the large...
Microbiota Modulation by Antibiotics
Antibiotics have revolutionized modern medicine by saving countless lives from bacterial infections. However, their widespread use has inadvertently harmed the delicate balance of the human gut microbiota. The gut microbiota, a complex community of bacteria, archaea, viruses, and fungi, plays a vital role in regulating metabolism, immune responses, and maintaining intestinal health. Antibiotics, especially broad-spectrum types, disrupt this ecosystem by eradicating both harmful and beneficial...

