Dish Fabrication

Dish fabrication is the process of designing and producing specialized culture dishes that provide controlled environments for growing, observing, or testing biological samples. In practice, fabrication may involve shaping a dish from a biocompatible material, modifying its surface to support cell attachment, and integrating features such as defined wells, patterned regions, or imaging windows while maintaining sterility and optical clarity. These engineered platforms help researchers control cell geometry, chemical exposure, and local culture conditions more precisely than standard laboratory ware. Dish fabrication therefore supports cell culture, tissue engineering, developmental biology, disease modeling, and microscopy-based experiments, improving reproducibility and enabling new experimental designs.

Dish Fabrication - Related Videos

Research

JoVE Journal - Immunology and Infection

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.

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.

Fabrication of Amperometric Electrodes

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Cited by 8 •

2009

This protocol describes how to generate carbon fiber electrodes. The electrodes are subsequently used to detect catecholamine release from vesicles with carbon fiber amperometry.

Fabricating Nanogaps by Nanoskiving

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Cited by 3 •

2013

The fabrication of electrically addressable, high-aspect-ratio (> 1000:1) metal nanowires separated by gaps of single nanometers using either sacrificial layers of aluminum and silver or self-assembled monolayers as templates is described. These nanogap structures are fabricated without a clean room or any photo- or electron-beam lithographic processes by a form of edge lithography known as nanoskiving.

Procedure for Fabricating Biofunctional Nanofibers

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Cited by 1 •

2012

An efficient approach for preparing nanofibers decorated with functional groups capable of specifically interacting with proteins is described. The approach first requires the preparation of a polymer functionalized with the appropriate functional group. The functional polymer is fabricated into nanofibers by electrospinning. The effectiveness of the binding of the nanofibers with a protein is studied by confocal microscopy.

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