High-throughput Growth Evaluation

High-throughput growth evaluation is a biological method for measuring how cells or microorganisms grow across many samples, conditions, or time points in parallel. It typically uses standardized cultures, automated liquid handling, plate-based assays, optical density or imaging measurements, and computational analysis to generate growth curves and compare features such as growth rate, lag phase, and final biomass. By revealing how nutrients, environmental conditions, genetic changes, or chemical compounds influence proliferation, this approach supports microbial physiology, functional genomics, drug screening, and bioprocess development. Its scale and reproducibility help researchers identify growth phenotypes efficiently while reducing manual measurement and enabling data-driven comparisons.

High-throughput Growth Evaluation - Related Videos

Research

JoVE Journal - Biology

Precise, High-throughput Analysis of Bacterial Growth

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Cited by 56 •

2017

Quantitative evaluation of bacterial growth is essential to understanding microbial physiology as a systems-level phenomenon. A protocol for experimental manipulation and an analytical approach are introduced, allowing for precise, high-throughput analysis of bacterial growth, which is a key subject of interest in systems biology.

Precise and High-Throughput Analysis of Bacterial Growth Using a Microplate Reader

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2025

Source: Kurokawa, M., et al. Precise, High-throughput Analysis of Bacterial Growth. J. Vis. Exp. (2017)This video demonstrates the high-throughput quantification of bacterial growth using a microplate reader. It outlines the steps involved in culture preparation, optical density measurement, and analysis of growth dynamics.

A Simple Bioassay for the Evaluation of Vascular Endothelial Growth Factors

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Cited by 7 •

2016

We describe a simple cell-based bioassay for detecting, quantifying and monitoring the activity of members of the vascular endothelial growth factor family of ligands. The assay uses chimeric receptors expressed in a factor-dependent cell line to provide a semi-quantitative or quantitative assessment of receptor binding and cross-linking by the ligand.

Research

JoVE Journal - Immunology and Infection
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ScanLag: High-throughput Quantification of Colony Growth and Lag Time

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Cited by 66 •

2014

ScanLag is a high-throughput method for measuring the delay in growth, namely lag time, as well as the growth rate of colonies for thousands of cells in parallel. Screening using ScanLag enables the discrimination between long lag-time and slow growth at the level of a single variant.

A Rat Tibial Growth Plate Injury Model to Characterize Repair Mechanisms and Evaluate Growth Plate Regeneration Strategies

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Cited by 22 •

2017

The growth plate is a cartilaginous region in children's long bones where longitudinal growth occurs. When injured, bony tissue can form and impair growth. We describe a rat model of growth plate injury that leads to bony repair tissue, allowing the study of repair mechanisms and growth plate regeneration strategies.

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