Fibrin Gel Assay

The fibrin gel assay is a three-dimensional cell culture method that uses a fibrin matrix to model cell behavior in a tissue-like environment. In a typical angiogenesis assay, endothelial cells are embedded in or placed on fibrin, where signals such as vascular endothelial growth factor stimulate migration, organization, and formation of capillary-like sprouts through the gel. Researchers quantify sprout number, length, branching, and network structure to evaluate vascular development and responses to experimental treatments. Because fibrin is a protein involved in blood clot formation, this assay also provides a biologically relevant platform for studying cell-matrix interactions, wound repair, tissue engineering, and vascular biology.

Fibrin Gel Assay - Related Videos

Education

JoVE Core - Anatomy and Physiology

Clot Retraction and Fibrinolysis

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2024

After a fibrin clot is formed, the next step is clot retraction, a vital process facilitated by platelet contractile proteins, such as actin and myosin. These proteins pull the fibrin strands closer together and condense the clot. This action reduces the size of the clot, creating a smaller, denser structure that effectively seals off the damaged vessel. Clot retraction consolidates the clot and helps with wound healing by bringing the edges of the damaged blood vessel closer together.

Research

JoVE Journal - Biology

Optimized Fibrin Gel Bead Assay for the Study of Angiogenesis

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Cited by 166 •

2007

This video demonstrates the protocol of an in vitro angiogenesis assay that recapitulates several stages of angiogenesis. Time-lapse images of sprouting, lumen formation, branching and anastomosis - key features of angiogenesis - are shown.

Polyacrylamide Gels for Invadopodia and Traction Force Assays on Cancer Cells

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Cited by 9 •

2015

Mechanical rigidity in the tumor microenvironment plays a crucial role in driving malignant behavior by increasing invadopodia activity and actomyosin contractility. Using polyacrylamide gels (PAAs), invadopodia and traction force assays can be utilized to study the invasive and contractile properties of cancer cells in response to matrix rigidity.

Analyzing Supercomplexes of the Mitochondrial Electron Transport Chain with Native Electrophoresis, In-gel Assays, and Electroelution

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Cited by 15 •

2017

This protocol describes the separation of functional mitochondrial electron transport chain complexes (Cx) I-V and supercomplexes thereof using native electrophoresis to reveal information about their assembly and structure. The native gel can be subjected to immunoblotting, in-gel assays, and purification by electroelution to further characterize individual complexes.

Protein-tRNA Agarose Gel Retardation Assays for the Analysis of the N6-threonylcarbamoyladenosine TcdA Function

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Cited by 4 •

2017

A protocol is presented for the production of tRNA(UUU) and the analysis of tRNA(UUU) in complex with the enzyme TcdA by agarose gel retardation assays.

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