Ultra Low Adherent Plate

An ultra low adherent plate is a cell-culture vessel designed to minimize attachment of cells to its surface, enabling researchers to maintain cells in suspension rather than on a treated plastic substrate. Its specialized, non-tissue-culture-treated surface limits protein adsorption and cell–surface interactions, allowing cells to aggregate into three-dimensional spheroids under suitable culture conditions. In cancer research, these plates support studies of tumor spheroid formation, cancer stem cell behavior, drug response, and cell–cell interactions that are often absent in two-dimensional cultures. They can therefore provide more physiologically relevant models for evaluating tumor biology and therapeutic strategies.

Ultra Low Adherent Plate - Related Videos

Research

JoVE Journal - Biology

In situ Subcellular Fractionation of Adherent and Non-adherent Mammalian Cells

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Cited by 29 •

2010

In situ subcellular fractionation of mammalian cells on microscope coverslips allows the visualisation of protein localisation.

An In Vitro Model of a Parallel-Plate Perfusion System to Study Bacterial Adherence to Graft Tissues

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Cited by 4 •

2019

We describe an in-house designed in vitro flow chamber model, which allows the investigation of bacterial adherence to graft tissues.

Clonogenic Assay: Adherent Cells

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Cited by 228 •

2011

The applicability of the clonogenic assay for evaluating reproductive viability has been established for more than 50 years. Here we demonstrate the general procedure for performing the clonogenic assay with adherent cells.

Generating an Ultra-Low-Density Neuronal Culture Using a High-Density Neuronal Feeder Layer

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2025

This video demonstrates the method for culturing ultra-low-density neurons in the presence of a high-density neuronal feeder layer. It establishes a co-culture of varying-density neurons, ensuring close physical proximity. The growth factors secreted by high-density neurons help neuronal survival and growth, maintaining ultra-low-density neurons for a longer time period.

Permeabilization of Adhered Cells Using an Inert Gas Jet

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Cited by 3 •

2013

This protocol describes a method for the temporary permeabilization of adherent cells using an inert gas jet. This technique facilitates the transfer of genetic material and biomolecules into adherent mammalian cells by the utilization of mechanical forces to disrupt the plasma membrane.

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