Cardiac Tissue Isolation

Cardiac tissue isolation is a laboratory technique used to separate heart tissue into viable cells or tissue fragments for studying cardiac structure, function, and development. It typically combines careful dissection with mechanical or enzymatic dissociation under controlled, sterile conditions, allowing extracellular connections to be disrupted while preserving cell viability and developmental characteristics. In developmental biology, isolated cardiac tissue can support analyses of cardiomyocyte differentiation, tissue organization, gene expression, and cell signaling across developmental stages. The resulting preparations also enable imaging, culture, molecular assays, and comparisons of normal and perturbed heart development, helping clarify how cardiac tissues form and mature.

Cardiac Tissue Isolation - Related Videos

Research

JoVE Journal - Developmental Biology

Isolation of Perivascular Multipotent Precursor Cell Populations from Human Cardiac Tissue

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Cited by 7 •

2016

Human cardiac tissue harbours multipotent perivascular precursor cell populations that may be suitable for myocardial regeneration. The technique described here allows for the simultaneous isolation and purification of two multipotent stromal cell populations associated with native blood vessels, i.e. CD146+CD34- pericytes and CD34+CD146- adventitial cells, from the human myocardium.

Robust Mitochondrial Isolation from Rodent Cardiac Tissue

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Cited by 1 •

2024

Bioenergetic and metabolomic studies on mitochondria have revealed their multifaceted role in many diseases, but the isolation methods for these organelles vary. The method detailed here is capable of purifying high-quality mitochondria from multiple tissue sources. Quality is determined by respiratory control ratios and other metrics assessed with high-resolution respirometry.

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.

Isolation of Functional Cardiac Immune Cells

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Cited by 9 •

2011

This method for isolating functional immune cells from the heart provides an alternative to the conventional methods of collagenase digestion, which causes unwanted immune cell activation, resulting in a decreased responsiveness of these cells. Our method of isolation yields functional cardiac immune cells by avoiding problems associated with enzymatic digestion.

Capillary Force Lithography for Cardiac Tissue Engineering

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Cited by 27 •

2014

In this protocol, we demonstrate the fabrication of biomimetic cardiac cell culture substrata made from two distinct polymeric materials using capillary force lithography. The described methods provide a scalable, cost-effective technique to engineer the structure and function of macroscopic cardiac tissues for in vitro and in vivo applications.

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