Gel Stiffness

Gel stiffness is the resistance of a gel to deformation, a material property that influences how it behaves in biomedical and clinical settings. It arises primarily from the structure of the polymer network, including polymer concentration, crosslinking density, and the strength of interactions between network components. Researchers measure and tune gel stiffness to create tissue-engineering scaffolds, model disease microenvironments, and control the release of therapeutic compounds. In cell-based studies, stiffness can also affect adhesion, migration, proliferation, and differentiation, making it an important design variable for biomaterials, regenerative medicine, and mechanobiology.

Gel Stiffness - Related Videos

Research

JoVE Journal - Bioengineering

Simple Polyacrylamide-based Multiwell Stiffness Assay for the Study of Stiffness-dependent Cell Responses

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Cited by 56 •

2015

Here, a method that enables quick, efficient, and inexpensive preparation of polyacrylamide gels in a multiwell plate format is described. The method does not require any specialized equipment and could be easily adopted by any research laboratory. It would be particularly useful in research focused on understanding stiffness-dependent cell responses.

Studying the Effects of Matrix Stiffness on Cellular Function using Acrylamide-based Hydrogels

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Cited by 69 •

2010

The effect of substrata stiffness on cellular function can be modeled in vitro using polyacrylamide hydrogels of varying compliances.

Research

JoVE Journal - Biology
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Measuring the Bending Stiffness of Bacterial Cells Using an Optical Trap

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Cited by 9 •

2010

We present a protocol for bending filamentous bacterial cells attached to a cover-slip surface with an optical trap to measure the cellular bending stiffness.

Education

JoVE Science Education - Basic Biology

Gel Purification

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2023

Gel purification is used to recover DNA fragments after electrophoretic separation. DNA recovery from an agarose gel includes three basic steps: binding, washing and eluting from a silica column. DNA is believed to bind to silica in the presence of high salt via a salt bridge. Following binding, DNA is washed of impurities and eluted under low salt conditions disrupting this interaction. This video goes through a step-by-step, generalized procedure for cutting out a band from the gel, gel...

How to Study Basement Membrane Stiffness as a Biophysical Trigger in Prostate Cancer and Other Age-related Pathologies or Metabolic Diseases

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Cited by 4 •

2016

Here we explain a protocol for modelling the biophysical microenvironment where crosslinking and increased stiffness of the basement membrane (BM) induced by advanced glycation endproducts (AGEs) has pathological relevance.

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