Silicone-coated Dish

A silicone-coated dish is a laboratory vessel with an inner surface covered by a cured silicone layer, designed to provide a smooth, nonstick workspace for biological specimens. The coating is hydrophobic and chemically resistant, reducing adsorption and limiting attachment of cells, tissues, embryos, or other materials to the dish. This low-adhesion behavior helps researchers position, manipulate, culture, or recover specimens with less mechanical disruption and reduced sample loss. Silicone-coated dishes are therefore useful in cell and developmental biology, microdissection, embryo handling, and protocols requiring clean transfer or preservation of specimen morphology.

Silicone-coated Dish - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Preparation of Collagen-Coated Compartmented Culture Dishes for Neuronal Cell Culture

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2025

This video demonstrates constructing a three-compartment cell culture system using collagen and non-reactive grease. This system is used to observe interactions between glioma cells and axons in real-time.

Production of Cardiac Extracellular Matrix from Adult Human Fibroblasts for Culture Dish Coating

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Cited by 1 •

2024

Fibroblasts isolated from the adult human heart were cultured to confluence on gelatin-coated dishes to produce the myocardium-specific extracellular matrix. After decellularization, this substrate can be used for the culture and study of other cardiac cells and cell-matrix interactions.

A 3D-Printed Silicone-Coated Device to Model Catheter-Associated Urinary Tract Infection

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2025

Source:Ocean E. Clarke1, Romy A. Dop1, Tom Hasell1, Joanne L. Fothergill1, Daniel R. Neill21University of Liverpool, 2 University of DundeeThis video demonstrates the use of a 3D-printed, silicone-coated device that mimics the inner surface of urinary catheters to simulate catheter-associated urinary tract infection.

Growth of Gold Dendritic Nanoforests on Titanium Nitride-coated Silicon Substrates

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Cited by 5 •

2019

This study presents a feasible procedure for synthesizing gold dendritic nanoforests on titanium nitride/silicon substrates. The thickness of gold dendritic nanoforests increases linearly within 15 min of a synthesis reaction.

Microtiter Dish Biofilm Formation Assay

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Cited by 2235 •

2011

The assay describes a rapid means to measure early biofilm formation in bacteria and fungi. This method uses a microtiter plate as the substratum for microbial biofilm formation, and the biofilm is visualized using crystal violet strain. The assay provides either a qualitative or quantitative assay for early biofilm formation.

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