Culture Insert Preparation

Culture insert preparation is a laboratory method for setting up porous membrane supports that enable controlled cell growth and communication between separate compartments. The insert is typically sterilized, coated to promote cell attachment, and placed into a compatible culture well before cells and medium are added; its microporous membrane permits diffusion of soluble factors while preventing direct cell mixing. In neuroscience, this arrangement supports neuronal and glial co-cultures, barrier models, and studies of paracrine signaling, migration, and neuroinflammation. Consistent preparation improves cell viability, experimental reproducibility, and interpretation of interactions between neural cell populations.

Culture Insert Preparation - Related Videos

Research

JoVE Journal - Biology
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Fabrication and Operation of an Oxygen Insert for Adherent Cellular Cultures

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Cited by 1 •

2010

Fabrication and validation of an add-on platform that offers enhanced control over the spatial and temporal oxygenation in a 6-well plate. The device is adaptable to a number of culture systems and can be used to investigate the effects of oxygen on wound healing.

Research

JoVE Journal - Biology

Development of an Insert Co-culture System of Two Cellular Types in the Absence of Cell-Cell Contact

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Cited by 31 •

2016

In multicellular organisms, secreted soluble factors elicit responses from different cell types as a result of paracrine signaling. Insert co-culture systems offer a simple way to assess the changes mediated by secreted soluble factors in the absence of cell-cell contact.

A Rapid Filter Insert-based 3D Culture System for Primary Prostate Cell Differentiation

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Cited by 7 •

2017

Here, we present a method for the establishment of a rapid in vitro system that supports the three dimensional culturing and subsequent luminal differentiation of primary prostate epithelial cells.

Chromosome Preparation From Cultured Cells

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Cited by 146 •

2014

Chromosomes can be isolated from live cells such as lymphocytes or skin fibroblasts, and from organisms including humans or mice. These chromosome preparations can be further utilized for routine G-banding and molecular cytogenetic procedures such as fluorescence in situ hybridization (FISH), comparative genomic hybridization (CGH), and spectral karyotyping (SKY).

Imaging pHluorin-tagged Receptor Insertion to the Plasma Membrane in Primary Cultured Mouse Neurons

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Cited by 8 •

2012

By tagging the extracellular domains of membrane receptors with superecliptic pHluorin, and by imaging these fusion receptors in cultured mouse neurons, we can directly visualize individual vesicular insertion events of the receptors to the plasma membrane. This technique will be instrumental in elucidating the molecular mechanisms governing receptor insertion to the plasma membrane.

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