Biophysical Phenotyping Cells

Biophysical phenotyping of cells is the measurement of physical properties that distinguish cells, providing a functional complement to genetic and molecular analyses. Using methods such as microfluidic flow, optical imaging, electrical sensing, or force measurements, researchers quantify features including cell size, shape, deformability, adhesion, and mechanical behavior under defined conditions. These measurements can reveal changes associated with differentiation, disease, drug response, or environmental stress. In engineering, biophysical phenotyping supports cell sorting, biomaterial design, tissue engineering, and the development of diagnostic and screening platforms by linking measurable physical traits to cellular state and function.

Biophysical Phenotyping Cells - Related Videos

Research

JoVE Journal - Bioengineering

Concentric Gel System to Study the Biophysical Role of Matrix Microenvironment on 3D Cell Migration

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Cited by 7 •

2015

The mechanical properties and microstructure of the extracellular matrix strongly affect 3D migration of cells. An in vitro method to study the spatiotemporal cell migration behavior in biophysically variable environments, at both population and individual cell levels, is described.

Evaluation of Planar-Cell-Polarity Phenotypes in Ciliopathy Mouse Mutant Cochlea

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Cited by 8 •

2016

Primary cilia influence various signaling pathways. The mammalian cochlea is ideal for examining planar cell polarity (PCP) signaling. Cilia dysfunction affects cochlear outgrowth, cellular patterning and hair cell orientation, readouts of PCP. Our goal is to analyze PCP signaling in mouse cochlea via phenotypic analysis, immunohistochemistry and scanning electron microscopy.

Research

JoVE Journal - Immunology and Infection
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A Non-invasive Way to Isolate and Phenotype Cells from the Conjunctiva

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Cited by 5 •

2017

The exposed normal ocular surface consists of cornea and conjunctiva. Epithelial cells, goblet cells and immune cells are present in the conjunctiva. Here, a non-invasive, technique of impression cytology is described using an impression cytology device and flow cytometry to analyze immune cells in the conjunctiva.

Using Microfluidic Devices to Measure Lifespan and Cellular Phenotypes in Single Budding Yeast Cells

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Cited by 3 •

2017

This article presents a protocol optimized for the production of microfluidic chips and the setup of microfluidic experiments to measure the lifespan and cellular phenotypes of single yeast cells.

Research

JoVE Journal - Biology
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Isolation and Biophysical Study of Fruit Cuticles

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Cited by 16 •

2012

Aerial plant organs are protected by the cuticle, a supramolecular biopolyester-wax assembly. We present protocols to monitor selective removal of epi- and intracuticular waxes from tomato fruit cuticles on molecular and micro scales by solid-state NMR and atomic force microscopy, respectively, and to assess the cross-linking capacity of engineered cuticular biopolyesters.

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