Organoid Growth Rate

Organoid growth rate is the change in size, cell number, or biomass of a three-dimensional, tissue-like culture over time, providing a quantitative view of its expansion and development. In cancer research, researchers track growth by measuring organoid diameter, area, volume, or viability at defined intervals, while factors such as cell proliferation, nutrient availability, matrix conditions, and cell death shape the observed rate. Comparing growth rates across patient-derived organoids can help characterize tumor behavior and heterogeneity. The measurement also supports evaluation of drug responses, treatment resistance, and experimental conditions in models designed to represent features of individual cancers.

Organoid Growth Rate - Related Videos

Research

JoVE Journal - Environment

Enhancement of the Initial Growth Rate of Agricultural Plants by Using Static Magnetic Fields

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Cited by 1 •

2016

The goal of this protocol is to demonstrate the acceleration of the initial growth rate of plants by applying static magnetic fields with no external energy.

ATP-Based Luciferase Viability Assay: A Homogenous Method to Evaluate the Growth-Inhibitory Potential of Test Agents on Tumor Organoids

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2025

In this video, we demonstrate a rapid, single-addition assay to assess cell viability in patient-derived organoids upon treatment with a test agent using intracellular ATP levels as a marker for cellular metabolic activity. The intracellular ATP levels are measured using the luciferase/luciferin reaction, where the emitted light intensity indicates the cellular viability and, in turn, the test agent's growth-inhibitory potency.

Generation of Apical-Out Intestinal Organoids and Assessment of Organoid Proliferation Rate Using EdU-Labeling

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Cited by 1 •

2025

Here, we describe a protocol for generating apical-out intestinal organoids from standard matrix-embedded organoid cultures. It also outlines the subsequent incorporation of EdU into actively proliferating cells and the semiautomatic quantification of EdU-positive cells.

Continuous Culture of Bacteria at Constant Density via Automated Growth Rate Estimation

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2025

Begin with a turbidostat, a device that maintains a constant cell density in culture.The device contains a vessel with a bacterial culture, which is continuously aerated by stirring and maintained at a constant temperature.A laser diode emits a light beam that is split into two paths.One path is directed to a reference sensor to monitor laser intensity fluctuations, while the other passes through the culture.Bacterial cells scatter and absorb light, decreasing the transmitted intensity, which...

Growth and Characterization of Irradiated Organoids from Mammary Glands

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Cited by 16 •

2019

Organoids developed from mouse mammary glands were irradiated and characterized to assess epithelial traits and interactions with immune cells. Irradiated organoids can be used to better evaluate cell-cell interactions that may lead to tumor cell recruitment in irradiated normal tissue.

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