Petri Dish

A Petri dish is a shallow, lidded laboratory container used to hold and observe biological samples, especially microorganisms and cultured cells. In biology, researchers place a sterile nutrient medium such as agar inside the dish, introduce a sample by streaking or spreading it across the surface, and incubate it under controlled conditions so cells can grow into visible colonies. Petri dishes support microbial culture, colony isolation, antibiotic sensitivity testing, and studies of cell behavior. Because they provide a simple, contained environment for repeated observation, they remain essential for teaching, environmental sampling, clinical microbiology, and experimental research.

Petri Dish - 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.

A Functional Motor Unit in the Culture Dish: Co-culture of Spinal Cord Explants and Muscle Cells

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Cited by 16 •

2012

Cultured muscle cells are an inadequate model to recapitulate innervated muscle in vivo. A functional motor unit can be reproduced in vitro by innervation of differentiated human primary muscle cells using rat embryo spinal cord explants. This article describes how co-cultures of spinal cord explants and muscle cells are established.

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.

Research

JoVE Journal - Cancer Research
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Predicting In Vivo Payloads Delivery using a Blood-brain Tumor-barrier in a Dish

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Cited by 13 •

2019

Drug targeting to central nervous system tumors is a major challenge. Here we describe a protocol to produce an in vitro mimic of the blood-brain tumor-barrier using murine and/or human cells and discuss their relevance for the predictability of central nervous system tumor targeting in vivo.

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