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Pathophysiology of Peptic Ulcer Disease: Injurious Factors01:22

Pathophysiology of Peptic Ulcer Disease: Injurious Factors

Peptic ulcers are sores on the stomach's inner lining and the upper small intestine, which are the result of disruptions in the mucosal layer that houses parietal cells which produce gastric acid, and chief cells which secrete pepsinogen.
In the antrum region, G cells secrete the gastrin hormone that binds to gastrin-cholecystokinin-B (CCK2) receptors on parietal and enterochromaffin-like (ECL) cells in the fundic glands. Simultaneously, the vagus nerve releases acetylcholine, which binds to M3...
Gastritis-II: Pathophysiology01:17

Gastritis-II: Pathophysiology

Gastritis is marked by disruption of the mucosal barrier that usually protects the stomach tissue from digestive juices and manifests in acute and chronic forms.
In acute gastritis, the gastric mucosa becomes swollen and red and undergoes superficial erosion. Superficial ulceration may lead to bleeding.
In chronic gastritis, persistent or repeated insults lead to chronic inflammatory changes and, eventually, thinning or atrophy of the gastric tissue.
Gastritis can stem from various causes, each...
Graves' Disease I: Introduction01:28

Graves' Disease I: Introduction

Graves' disease is an autoimmune disorder that causes hyperthyroidism, or overactivity of the thyroid gland. It results from autoantibodies called thyroid-stimulating immunoglobulins (TSIs), which bind to thyroid-stimulating hormone (TSH) receptors, leading to overstimulation of hormone production and a hypermetabolic state.EtiologyAlthough considered idiopathic, Graves’ disease has well-established contributing factors. There is a strong genetic component, with increased prevalence in...
Esophageal Achalasia01:27

Esophageal Achalasia

Esophageal achalasia is a chronic neurogenic disorder characterized by impaired relaxation of the lower esophageal sphincter (LES) and absent or ineffective peristalsis in the distal esophagus. This leads to a functional obstruction without a physical blockage, despite significant disruption of esophageal motility.EtiologyAchalasia is caused by degeneration of the myenteric (Auerbach's) plexus, specifically the loss of inhibitory ganglion cells that produce vasoactive intestinal peptide (VIP)...
Gastroesophageal Reflux Disease01:25

Gastroesophageal Reflux Disease

Gastroesophageal reflux disease (GERD) is the backward flow of stomach contents (acid, pepsin, or bile) into the esophagus, causing mucosal inflammation known as esophagitis. It results from failure of antireflux mechanisms, mainly the lower esophageal sphincter (LES), influenced by mechanical and physiological factors.Etiology and Risk FactorsGERD develops when LES function is weakened or when intra-abdominal pressure increases. Risk factors include aging, obesity, and sliding hiatal hernia,...
Gastritis II: Pathophysiology01:26

Gastritis II: Pathophysiology

The pathophysiology of gastritis begins with the colonization of the stomach lining by Helicobacter pylori (H. pylori). This bacterium spreads mainly via the oral-oral route through saliva or shared utensils, and can also be transmitted in overcrowded or unhygienic environments through contaminated water, despite its brief survival outside the body.ColonizationOnce ingested, H. pylori enters the stomach and begins colonization by navigating through the mucus layer lining the stomach wall. It...

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関連する実験動画

Updated: Jul 14, 2026

Mechanisms Underlying Gut Hormone Secretion Using the Isolated Perfused Rat Small Intestine
07:00

Mechanisms Underlying Gut Hormone Secretion Using the Isolated Perfused Rat Small Intestine

Published on: February 26, 2019

ハイパーガストリネミア: 新しいメカニズム

P H Deprez1, P Ghosh, R A Goodlad

  • 1Department of Medicine, Royal Postgraduate Medical School, Hammersmith Hospital, London, UK.

Lancet (London, England)
|August 17, 1991
PubMed
まとめ

悪性貧血の患者は,胃酸が不足しているため,高濃度のガストリンを持っています. ネズミと患者の胃酸を中和させることで,ガストリン濃度が著しく低下し,酸性であることが明らかになった.

科学分野:

  • 胃腸内科 胃腸内科
  • エンドクリノロジー エンドクリノロジー
  • 生理学 生理学とは

背景:

  • 破滅性貧血は,胃酸の生産が欠如していることが特徴です.
  • 高濃度のホルモンガストリン (ハイパーガストリネミア) は,悪性貧血の患者でしばしば観察されます.
  • 胃酸欠乏症と高胃水症を結びつける正確なメカニズムは,さらなる解明を必要としています.

研究 の 目的:

  • 胃酸の欠如と高胃性血症の発症の間の因果関係を調査する.
  • 胃酸そのものが,またはその欠如が,ガストリンのレベルに直接影響するかどうかを判断する.

主な方法:

  • 悪性貧血患者 (酸性欠乏症) の胃ジュースをネズミに注入した.
  • デュオデナル潰瘍患者 (酸性) のビカルボネートバッファーと胃ジュースをラットでコントロールとして使用した.
  • ガストリンレベルの変化を評価するために,中性pHで胃洗浄が悪性貧血患者で実施されました.

主要な成果:

  • 悪性貧血の患者からネズミに酸性胃汁を注入すると,プラズマのガストリンの濃度が大幅に上昇した.
  • バイカーボネートバッファまたは十二指腸潰瘍患者の胃ジュースを用いた対照注入は,ネズミのガストリン濃度を有意に変化させなかった.

さらに関連する動画

Establishment of a Mouse Severe Acute Pancreatitis Model using Retrograde Injection of Sodium Taurocholate into the Biliopancreatic Duct
07:10

Establishment of a Mouse Severe Acute Pancreatitis Model using Retrograde Injection of Sodium Taurocholate into the Biliopancreatic Duct

Published on: April 1, 2022

関連する実験動画

Last Updated: Jul 14, 2026

Mechanisms Underlying Gut Hormone Secretion Using the Isolated Perfused Rat Small Intestine
07:00

Mechanisms Underlying Gut Hormone Secretion Using the Isolated Perfused Rat Small Intestine

Published on: February 26, 2019

Establishment of a Mouse Severe Acute Pancreatitis Model using Retrograde Injection of Sodium Taurocholate into the Biliopancreatic Duct
07:10

Establishment of a Mouse Severe Acute Pancreatitis Model using Retrograde Injection of Sodium Taurocholate into the Biliopancreatic Duct

Published on: April 1, 2022

  • 発作性貧血患者の胃洗浄は,プラズマのガストリンの濃度が有意に低下することを示しました.
  • 結論:

    • 胃酸の欠如は,悪性貧血におけるハイパーガストリネミアの主要な原動力である.
    • ガストリンレベルは,胃内の酸性環境に対して敏感です.
    • 胃のニュートラルなpHを回復することで,高濃度のガストリンを効果的に低下させることができます.