Cardiac Injury Mechanisms

Cardiac injury mechanisms are the cellular and molecular processes that damage heart muscle and impair its ability to contract, making them central to understanding cardiovascular disease. Reduced oxygen delivery, physical stress, toxins, or inflammation can disrupt mitochondrial ATP production, promote calcium overload and reactive oxygen species, and trigger apoptosis or necrosis of cardiomyocytes. These responses may also activate immune pathways and alter extracellular matrix remodeling, leading to fibrosis, electrical disturbances, and reduced cardiac function. Studying cardiac injury mechanisms supports the diagnosis and management of myocardial infarction, myocarditis, drug-induced cardiotoxicity, and other heart disorders while guiding development of protective therapies and regenerative strategies.

Cardiac Injury Mechanisms - Related Videos

Research

JoVE Journal - Developmental Biology

Mechanical Vessel Injury in Zebrafish Embryos

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Cited by 5 •

2015

This article describes a method for creating a mechanical vessel injury in zebrafish embryos. This injury model provides a platform for studying hemostasis, injury-related inflammation, and wound healing in an organism ideally suited for real-time microscopy.

Creation of Cardiac Tissue Exhibiting Mechanical Integration of Spheroids Using 3D Bioprinting

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Cited by 55 •

2017

This protocol describes 3D bioprinting of cardiac tissue without the use of biomaterials. 3D bioprinted cardiac patches exhibit mechanical integration of component spheroids and are highly promising in cardiac tissue regeneration and as 3D models of heart disease.

Normothermic Cardiac Arrest and Cardiopulmonary Resuscitation: A Mouse Model of Ischemia-Reperfusion Injury

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Cited by 20 •

2011

A powerful model for perioperative and critical care related acute kidney injury is presented. Using whole body hypoperfusion induced by cardiac arrest it is possible to nearly replicate the histologic and functional changes of clinical AKI.

Construction of Defined Human Engineered Cardiac Tissues to Study Mechanisms of Cardiac Cell Therapy

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Cited by 16 •

2016

This manuscript describes the creation of defined engineered cardiac tissues using surface marker expression and cell sorting. The defined tissues can then be used in a multi-tissue bioreactor to investigate mechanisms of cardiac cell therapy in order to provide a functional, yet controlled, model system of the human heart.

Education

JoVE Core - Pharmacology

Mechanism of Cardiac Arrhythmias

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2024

Arrhythmias are irregular heart rhythms occurring when the heart's electrical impulses become abnormal. These disturbances can lead to various symptoms, depending on their severity and the underlying cause. Some common factors contributing to arrhythmias include hypoxia, ischemia, electrolyte imbalances, excessive catecholamine exposure, drug toxicity, and muscle overstretching. Arrhythmias can be classified into two main types based on the rate and site of origin of abnormal heart rhythms.

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