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相关概念视频

Anatomy of the Intestines01:23

Anatomy of the Intestines

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Although digestion of proteins, carbohydrates, and lipids may begin in the stomach, it is completed in the intestine. The absorption of nutrients, water, and electrolytes from food and drink also occurs in the intestine. The intestines can be divided into two structurally distinct organs—the small and large intestines.
Small Intestines
The small intestine is an ~7 meter-long tube with an inner diameter of just 2.5 cm. Since most nutrients are absorbed here, the inner lining of the...
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Microorganisms in Medicine and Therapeutics01:29

Microorganisms in Medicine and Therapeutics

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Microorganisms play a fundamental role in vaccine development, gene therapy, and therapeutic production. Their biological properties are harnessed to advance medicine and public health. Beyond immunization, microorganisms contribute to gut health, antibiotic synthesis, and genetic disease treatment.Live Attenuated and Inactivated VaccinesLive attenuated vaccines, such as the measles, mumps, and rubella (MMR) vaccine, utilize weakened forms of pathogens to closely resemble natural infections.
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What is Monogastric Digestion?01:50

What is Monogastric Digestion?

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The human body contains a monogastric digestive system. In a monogastric digestive system, the stomach only contains one chamber in which it digests food. Several other animal species also have monogastric digestive systems, including pigs, horses, dogs, and birds. This chapter, however, focuses on the human digestive system.
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相关实验视频

Updated: Jul 11, 2025

Individualized Reconstitution of Human Milk Microbiota: A Feasible Approach in Real-World Settings
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Individualized Reconstitution of Human Milk Microbiota: A Feasible Approach in Real-World Settings

Published on: February 7, 2025

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塑造微生物组的功能与人乳-寡糖化合物共生生物.

Ethel Closa1, Loudon Herold1, Matthew T Sorbara1

  • 1Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada.

Trends in endocrinology and metabolism: TEM
|November 9, 2023
PubMed
概括

人类牛奶的寡糖支持Bifidobacterium infantis的生长,帮助微生物组在抗生素后恢复. 这项研究强调了用于开发活生物治疗产品的协生生物.

科学领域:

  • 微生物学 微生物学
  • 人类营养人类营养
  • 胃肠病学 胃肠病学

背景情况:

  • 人类母乳寡糖化物 (HMO) 是母乳中发现的复杂碳水化合物.
  • 某些细菌,如Bifidobacterium infantis,可以利用HMO作为特定的营养来源.
  • 抗生素治疗可以破坏肠道微生物群,导致失生症.

研究的目的:

  • 调查HMO如何为Bifidobacterium infantis殖民创造一个利基.
  • 评估Bifidobacterium infantis对抗生素暴露后肠道微生物群恢复的影响.
  • 探索协生菌在开发活生物治疗产品中的潜力.

主要方法:

  • 利用可调节的系统研究HMO和Bifidobacterium infantis之间的相互作用.
  • 用于Bifidobacterium infantis,以评估其对抗生素治疗后微生物组恢复的影响.
  • 分析微生物组的组成和功能,以确定干预的效果.

主要成果:

  • 证明HMO建立了一个营养,支持可逆的Bifidobacterium infantis殖民.
  • 展示了Bifidobacterium infantis对抗生素治疗后微生物组恢复的积极影响.

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  • 证实了用于治疗目的的共生菌的可行性.
  • 结论:

    • 通过选择性地支持有益细菌,HMO在塑造婴儿肠道微生物群中发挥着至关重要的作用.
    • 在抗生素引起的干扰后,Bifidobacterium infantis可以成为恢复肠道平衡的关键参与者.
    • 协生菌代表了开发有效的肠道健康活生物治疗产品的有希望的战略.