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Tissue Injury: Inflammation and Repair01:28

Tissue Injury: Inflammation and Repair

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4.9K
Healing I: Introduction01:11

Healing I: Introduction

15
Healing is the physiological process by which the body restores the integrity and function of damaged tissues following injury. It involves a coordinated interplay of cellular proliferation, extracellular matrix remodeling, and growth factor signaling. The extent and nature of the tissue damage determine whether healing occurs by resolution, regeneration, or replacement.ResolutionResolution represents the most complete form of healing, occurring when the injury is minimal and tissue...
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Inflammatory Response01:28

Inflammatory Response

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An inflammatory response is a localized, nonspecific immune reaction that occurs when a tissue is injured. It is characterized by redness, swelling, heat, and pain, which are commonly called the cardinal signs and symptoms of inflammation. Inflammation can sometimes result in a loss of function.
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
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Liver Regeneration01:24

Liver Regeneration

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The liver is an important organ in vertebrates that plays an essential role in metabolism. It is also responsible for storing and redistributing nutrients such as carbohydrates, fats, and vitamins in the body. Additionally, the liver releases bile salts which are critical for digesting food and eliminating toxic metabolites from the body.
Cells of Liver
The liver comprises four major types of cells— hepatocytes, stellate, Kupffer, and sinusoidal endothelial cells. The hepatocytes are...
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Phases of Wound Repair01:28

Phases of Wound Repair

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Following injury, the integrity of the injured tissues must be reestablished. For example, in skin tissue, wound repair involves coordination among resident skin cells, blood mononuclear cells, extracellular matrix, growth factors, and cytokines to complete the healing cascade.
Formation of Blood Clot
In case of deep injuries, trauma to blood vessels results in blood loss. In the meantime, phospholipids released from the ruptured endothelial cellular membrane are converted into arachidonic...
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Inflammatory Response II: Inflammatory Exudate and Tissue Repair01:24

Inflammatory Response II: Inflammatory Exudate and Tissue Repair

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The immune system's inflammatory response destroys the invading pathogen, permitting the tissue to heal. The changes during the cellular and vascular stages allow exudate formation at the site of inflammation. The inflammatory exudate released from the wound has high protein content and a specific gravity above 1.020.
The typical wound exudate is odorless, transparent, straw-colored, thin, and watery. Exudate, however, can differ depending on the state of wound healing. Likewise, the...
8.4K

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Updated: May 6, 2026

Murine Excisional Wound Healing Model and Histological Morphometric Wound Analysis
06:36

Murine Excisional Wound Healing Model and Histological Morphometric Wound Analysis

Published on: August 21, 2020

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Lin28: 組織修復のための時間

Peter W Reddien1

  • 1Howard Hughes Medical Institute, MIT Biology, and Whitehead Institute, 9 Cambridge Center, Cambridge, MA 02142, USA.

Cell
|November 12, 2013
PubMed
まとめ

胚性遺伝子Lin28aは,出生後に活性化されると,マウスの組織修復を大幅に強化する. この発見は,再生医療に関する新しい洞察と,成人哺乳類の治癒プロセスを改善するための新しい洞察を提供します.

科学分野:

  • 発達生物学 発達生物学とは
  • 再生医学は再生医学である.
  • 分子生物学は分子生物学である.

背景:

  • 胚および幼生生物は,成人と比較して優れた組織修復能力を発揮します.
  • 治癒能力のこの違いは,発達過程と遺伝子発現パターンに関連しています.

研究 の 目的:

  • 胚発達の過程で通常活動するリン28aという遺伝子の,成人の組織修復における役割を調査する.
  • 胚の遺伝子経路を再活性化することで,産後における再生プロセスを強化できるかどうかを判断する.

主な方法:

  • 成人マウスのリン28a遺伝子の産後活性化.
  • 組織損傷の誘導,特に耳と指の損傷.
  • Lin28aの活性化後の修復効果と組織再生の評価.

主要な成果:

  • Lin28aの産後活性化により,正常な成人の能力を超える組織修復が促進されました.
  • 耳や指の怪我の治癒に顕著な改善が見られた.
  • Lin28aは,成人の組織における再生能力の強化を媒介するようです.

結論:

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Using R, Seurat, and CellChat to Analyze a Single-Cell Transcriptomics Dataset of Mouse Skin Wound Healing
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  • Lin28a再活性化は,成人哺乳類の組織修復を促進する有効な戦略です.
  • この発見は,再生医療における治療的介入の新たな道を開く.
  • Lin28aの分子メカニズムの理解は,怪我の回復のための新しい治療法につながる可能性があります.