Fibrotic Changes

Fibrotic changes are pathological alterations in which excessive connective tissue accumulates and disrupts the normal structure and function of an organ or tissue. They develop when persistent injury or inflammation activates fibroblasts and myofibroblasts, which produce and deposit extracellular matrix proteins such as collagen faster than the tissue can remove them. Although limited fibrosis can support wound repair, progressive scarring can stiffen tissues and impair organ function in the liver, lungs, heart, kidneys, and other sites. Studying fibrotic changes helps biologists understand chronic disease, identify biomarkers of tissue remodeling, and develop treatments that target inflammation, matrix production, or scar resolution.

Fibrotic Changes - Related Videos

Research

JoVE Journal - Developmental Biology

Development of an Ethanol-induced Fibrotic Liver Model in Zebrafish to Study Progenitor Cell-mediated Hepatocyte Regeneration

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Cited by 7 •

2016

Sustained fibrosis with deposition of excessive extracellular matrix proteins leads to cirrhosis. Alcohol abuse is one of the main causes of severe liver disease. We established an ethanol-induced zebrafish fibrotic liver model to study the mechanisms and strategies of promoting hepatocyte regeneration upon alcohol-induced injury.

Suppression of Pro-fibrotic Signaling Potentiates Factor-mediated Reprogramming of Mouse Embryonic Fibroblasts into Induced Cardiomyocytes

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Cited by 7 •

2018

Here we present a robust method to reprogram primary embryonic fibroblasts into functional cardiomyocytes through overexpression of GATA4, Hand2, Mef2c, Tbx5, miR-1, and miR-133 (GHMT2m) alongside inhibition of TGF-β signaling. Our protocol generates beating cardiomyocytes as early as 7 days post-transduction with up to 60% efficiency.

Picrosirius Red Polarization Staining: A Technique To Detect Fibrosis in Cardiac Tissue Sections Using Bright-Field Microscopy

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2025

This video describes the picrosirius red staining of fibrotic tissues to detect excessive collagen deposition in fibrotic tissue sections. The staining technique helps assess collagen expression in connective-tissue diseases.

The Dimethylnitrosamine Induced Liver Fibrosis Model in the Rat

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Cited by 11 •

2016

We describe a method to produce an animal model of liver fibrosis in the rat, and assess the degree of fibrosis by histological examination of the liver. The model can be used to study the development of liver disease as well as to test the efficacy of potential anti-fibrotic agents.

Isolation of Mesenchymal Stem Cells from Human Alveolar Periosteum and Effects of Vitamin D on Osteogenic Activity of Periosteum-derived Cells

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Cited by 15 •

2018

We present a protocol to investigate the mRNA expression biomarkers of periosteum-derived cells (PDCs) induced by vitamin C (vitamin C) and 1,25-dihydroxy vitamin D [1,25-(OH)2D3]. In addition, we evaluate the ability of PDCs to differentiate into osteocytes, chondrocytes, and adipocytes.

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