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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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Acute pancreatitis presents a complex medical emergency characterized by rapid onset inflammation of the pancreas, demanding timely diagnosis and management to prevent complications. The condition primarily manifests through severe upper abdominal pain that often radiates to the back. This pain intensifies following the consumption of fatty foods. Accompanying symptoms such as nausea, vomiting, abdominal distention, fever, dyspnea, cyanosis, and jaundice can vary in intensity but significantly...
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The pancreas, an essential organ in the human body, is a pinkish-gray elongated structure located posterior to the stomach. It extends laterally from the duodenum towards the spleen and is firmly bound to the posterior wall of the abdominal cavity. The organ's surface has a lumpy, lobular texture that gives it a unique appearance.
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Updated: Dec 20, 2025

Microbiota Analysis Using Two-step PCR and Next-generation 16S rRNA Gene Sequencing
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[Gut Microbiota and Pancreatobiliary System].

Ki-Hyun Ryu1

  • 1Division of Gastroenterology and Hepatology, Department of Internal Medicine, Konyang University College of Medicine, Daejeon, Korea.

The Korean Journal of Gastroenterology = Taehan Sohwagi Hakhoe Chi
|May 26, 2020
PubMed
Summary

The gut microbiota and pancreatobiliary system interact, influencing health and disease. Understanding this gut microbiome crosstalk is key for diagnosing and treating pancreatobiliary diseases.

Keywords:
Biliary tractGastrointestinal microbiomePancreas

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Area of Science:

  • Microbiology
  • Gastroenterology
  • Human Physiology

Background:

  • The gut microbiota plays a crucial role in human metabolism and disease.
  • The pancreatobiliary system and gut microbiota engage in a critical crosstalk, maintaining homeostasis.
  • Dysbiosis in this interaction can lead to disease, including pancreatobiliary conditions.

Purpose of the Study:

  • To explore the intricate relationship between the gut microbiome and the pancreatobiliary system.
  • To highlight the significance of microbiome analysis in understanding pancreatobiliary diseases.
  • To investigate the role of this crosstalk in disease pathogenesis and potential therapeutic targets.

Main Methods:

  • Review of existing literature on gut microbiota and pancreatobiliary system interactions.
  • Analysis of the impact of antimicrobial substances (bile acids, peptides) on gut microbiota.
  • Examination of indirect signaling pathways influencing pancreatobiliary secretion.

Main Results:

  • The gut microbiota influences pancreatobiliary secretion through indirect signaling.
  • The pancreatobiliary system affects gut microbiota via antimicrobial substances.
  • Imbalances (dysbiosis) in this crosstalk are linked to pancreatobiliary diseases, including cancers.

Conclusions:

  • The gut microbiome is integral to pancreatobiliary system function and health.
  • Therapeutic strategies targeting the gut microbiota may offer new avenues for treating pancreatobiliary diseases.
  • Understanding the microbiome-pancreatobiliary axis is a promising frontier in medical research.