Compensatory Hyperplasia

Compensatory hyperplasia is an increase in cell number that enables a tissue or organ to restore lost mass and function after injury, surgical removal, or increased demand. Reduced tissue capacity can trigger local growth signals, including growth factors and cytokines, that stimulate surviving cells or progenitor cells to re-enter the cell cycle and proliferate. This regulated response differs from hypertrophy, which enlarges existing cells, although both processes may occur together. Compensatory hyperplasia is especially important in tissue repair and regeneration, providing a model for studying organ plasticity, wound healing, and the consequences of dysregulated cell growth.

Compensatory Hyperplasia - Related Videos

Research

JoVE Journal - Medicine

Integrated Compensatory Responses in a Human Model of Hemorrhage

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Cited by 11 •

2016

The purpose of this protocol is to demonstrate the techniques for measuring compensatory responses to reduced central blood volume using lower body negative pressure as a noninvasive experimental model of human hemorrhage which can be used to quantify the total integration of compensatory mechanisms to blood volume deficit in humans.

Mouse Pneumonectomy Model of Compensatory Lung Growth

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Cited by 14 •

2014

Mouse pneumonectomy is a commonly employed model of compensatory lung growth. This procedure can be used in conjunction with lineage tracing or transgenic mouse models to elucidate underlying mechanisms.

Inducing Myointimal Hyperplasia Versus Atherosclerosis in Mice: An Introduction of Two Valid Models

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Cited by 8 •

2014

This video shows two models of intimal plaque development in murine arteries and emphasizes the differences in myointimal hyperplasia and atherosclerosis.

Education

JoVE Core - Pathophysiology

Cellular Adaptation III: Hyperplasia

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2026

Hyperplasia is an increase in the number of cells in a tissue or organ due to enhanced cell division. It is an adaptive, controlled response to stimuli such as injury, hormones, or stress, involving mitosis to produce genetically identical cells and support tissue repair and regeneration.Tissue CapacityCertain tissues, including the epidermis, intestinal epithelium, bone marrow, and fibroblasts, have a high potential for hyperplasia. Others, such as bone, cartilage, and smooth muscle, show...

Carotid Artery and Jugular Vein Interposition: A Technique to Induce Venous Intimal Hyperplasia in Rabbit Model

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2025

This video demonstrates the interposition of the rabbit carotid artery with the jugular vein to induce venous intimal hyperplasia by subjecting the veins to arterial pressure. This model will help investigate molecular and genetic interventions to attenuate the progression of intimal hyperplasia after revascularization surgeries.

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