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Anatomy of the Intestines01:23

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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.
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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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Related Experiment Video

Updated: Nov 24, 2025

Therapeutic Evaluation of Fecal Microbiota Transplantation in an Interleukin 10-Deficient Mouse Model
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Should We Fiddle with Gut Microbiome in Critically Ill?

Balaji Venkatachalam1, Babu Kuruvilla Abraham1

  • 1Department of Critical Care Medicine, Apollo Hospitals, Chennai, Tamil Nadu, India.

Indian Journal of Critical Care Medicine : Peer-Reviewed, Official Publication of Indian Society of Critical Care Medicine
|December 23, 2020
PubMed
Summary

Altering the gut microbiome in critically ill patients may impact disease outcomes. This review explores gut ecology, microbiome manipulation tools, and their potential role in critical illness management.

Keywords:
DysbiosisFecal microbial transplantationGut–lung axisMicrobiomePathobiomeProbioticsSynbiotics

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Area of Science:

  • Gastroenterology and Critical Care Medicine
  • Microbiology and Immunology

Background:

  • The gut is an active endocrine and exocrine organ housing trillions of microorganisms, collectively known as the gut microbiome.
  • In healthy individuals, the gut epithelium, barrier function, and microbiome protect against infection; however, illness, surgery, or medications disrupt this ecosystem.
  • Disruptions lead to gut barrier dysfunction, loss of mucosal immunity, and transformation of the microbiome into a pathobiome, potentially causing multi-organ damage.

Purpose of the Study:

  • To review the gut microbiome's ecology in health and sickness.
  • To discuss modern tools for manipulating the gut microbiome.
  • To explore the potential of gut microbiome modulation in preventing and treating critical illness.

Main Methods:

  • Literature review of gut microbiomic ecology.
  • Analysis of modern tools for gut microbiome manipulation.
  • Exploration of the impact of microbiome modulation on critical illness.

Main Results:

  • Critical illness significantly alters gut ecology, leading to barrier dysfunction and pathobiome formation.
  • Various tools exist to manipulate the gut microbiome.
  • The potential influence of microbiome manipulation on critical illness outcomes requires further investigation.

Conclusions:

  • The gut microbiome plays a crucial role in health and disease, particularly in critically ill patients.
  • Targeted manipulation of the gut microbiome presents a potential therapeutic strategy for critical illness.
  • Further research is needed to elucidate the precise mechanisms and efficacy of gut microbiome interventions in critical care.