Cardiac Fibroblasts

Cardiac fibroblasts are connective-tissue cells in the heart that produce and organize extracellular matrix, helping establish the structural environment required for myocardial function and development. During heart formation, developmental signals regulate their specification, migration, and activation; in turn, fibroblasts remodel matrix proteins and release paracrine factors that influence cardiomyocyte growth, vascularization, and tissue maturation. Their behavior changes with mechanical stress, inflammation, and injury, affecting fibrosis and electrical as well as contractile performance. Studying cardiac fibroblasts therefore helps explain how cardiac tissues form, how congenital defects arise, and how regenerative or anti-fibrotic therapies might be designed.

Cardiac Fibroblasts - Related Videos

Research

JoVE Journal - Biology

Isolation and Characterization of Adult Cardiac Fibroblasts and Myofibroblasts

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Cited by 20 •

2020

Obtaining a pure population of fibroblasts is crucial to studying their role in wound repair and fibrosis. Described here is a detailed method to isolate fibroblasts and myofibroblasts from uninjured and injured mouse hearts followed by characterization of their purity and functionality by immunofluorescence, RTPCR, fluorescence-assisted cell sorting, and collagen gel contraction.

Experimental Generation of Carcinoma-Associated Fibroblasts (CAFs) from Human Mammary Fibroblasts

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Cited by 25 •

2011

Carcinoma-associated fibroblasts (CAFs) rich in myofibroblasts present within the tumour stroma, play a major role in driving tumour progression. We developed a coimplantation tumour xengraft model for experimentally generating CAFs from human mammary fibroblasts. The protocol describes how to establish CAF myofibroblasts that acquire an ability to promote tumourigenesis.

Fabrication of 3D Cardiac Microtissue Arrays using Human iPSC-Derived Cardiomyocytes, Cardiac Fibroblasts, and Endothelial Cells

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Cited by 18 •

2021

Here, we describe an easy-to-use methodology to generate 3D self-assembled cardiac microtissue arrays composed of pre-differentiated human-induced pluripotent stem cell-derived cardiomyocytes, cardiac fibroblasts, and endothelial cells. This user-friendly and low cell requiring technique to generate cardiac microtissues can be implemented for disease modeling and early stages of drug development.

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.

Simultaneous Isolation of High Quality Cardiomyocytes, Endothelial Cells, and Fibroblasts from an Adult Rat Heart

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Cited by 8 •

2017

Several protocols have been developed and described for the isolation of different cardiac cell types from a rat heart. Here, an optimized protocol is described that allows the isolation of high-quality major cardiac cell types (cardiomyocytes, endothelial cells, and fibroblasts) from a single preparation, reducing the experimental costs.

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