Cell Repellent Plates

Cell repellent plates are laboratory culture vessels designed to prevent cells from adhering to their surfaces, enabling researchers to study cells in suspension or as three-dimensional assemblies. Their non-adhesive coatings limit protein adsorption and cell attachment, allowing cells to remain free-floating and aggregate under controlled culture conditions rather than spreading across the plate. In cancer research, these plates support the formation of tumor spheroids and other 3D cell models that better represent cell-cell interactions, nutrient gradients, and treatment responses than many two-dimensional cultures. They are useful for investigating tumor biology, evaluating anticancer compounds, and developing physiologically relevant experimental systems.

Cell Repellent Plates - Related Videos

Research

JoVE Journal - Bioengineering
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High-throughput Identification of Bacteria Repellent Polymers for Medical Devices

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Cited by 2 •

2016

A high-throughput microarray method for the identification of polymers which reduce bacterial surface binding on medical devices is described.

Research

JoVE EoE - Bacterial Growth and Techniques

High-Throughput Identification of Bacteria-Repellent Polymers via Microarray Screening

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2025

Source: Venkateswaran, S., et al. High-throughput Identification of Bacteria Repellent Polymers for Medical Devices. J. Vis. Exp. (2016)This video demonstrates a high-throughput method to identify bacteria-repellent polymers using a microarray slide exposed to mixed bacterial cultures. Bacterial binding is assessed by DAPI fluorescence, where reduced signal indicates polymers with minimal surface attachment.

Preparation of a Microfluidic Plate with Bacterial Cells

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2025

Source: Sutlief, A. L., et al. Live Cell Analysis of Shear Stress on Pseudomonas aeruginosa Using an Automated Higher-Throughput Microfluidic System. J. Vis. Exp. (2019).This video demonstrates the preparation of a microfluidic plate for shear stress studies in bacterial cultures. After priming the channels with media, bacterial cells are introduced into the experimental channel and incubated for attachment. Residual media and culture are removed to prepare the system for subsequent shear...

Systematic Analysis of In Vitro Cell Rolling Using a Multi-well Plate Microfluidic System

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Cited by 4 •

2013

This study used a multi-well plate microfluidic system, significantly increasing throughput of cell rolling studies under physiologically relevant shear flow. Given the importance of cell rolling in the multi-step cell homing cascade and the importance of cell homing following systemic delivery of exogenous populations of cells in patients, this system offers potential as a screening platform to improve cell-based therapy.

A Device for Performing Cell Migration/Wound Healing in a 96-Well Plate

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Cited by 7 •

2017

Here, we present a protocol to perform a semi-high throughput cell migration assay on a 96-well cell culture plate. This protocol is a fast, simple and economical method to create consistent scratch wounds on a cell monolayer.

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