Cellular Proliferation Analysis

Cellular proliferation analysis is the quantitative assessment of how rapidly cells grow and divide, providing essential information about tissue development, disease, and engineered biological systems. It measures proliferation by tracking changes in cell number or detecting indicators of cell-cycle activity, such as DNA synthesis, metabolic activity, or expression of proliferation-associated proteins. In bioengineering, researchers apply these measurements to evaluate biomaterials, optimize culture conditions, monitor tissue-engineered constructs, and assess responses to drugs or physical cues. Reliable proliferation data help determine whether a scaffold or intervention supports viable cell expansion and guide the design of regenerative therapies and other cell-based technologies.

Cellular Proliferation Analysis - Related Videos

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JoVE EoE - Assay Techniques

Cellular Impedance-Based Analysis for Monitoring of Cellular Processes in Real-Time

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2025

In this video, we demonstrate the process of real-time monitoring of cellular events, including the proliferation of adherent cells, via a cellular impedance assay. Here, the adherent cells act as insulators, restricting the current flow between the electrodes and increasing the impedance.

High-throughput Imaging and Analysis Workflow for Evaluating Skin Cell Phenotypes and Proliferation States in Tissue Samples

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Cited by 1 •

2025

The combination of iterative-bleaching-extends-multiplexity (IBEX) and a commercial nucleotide labeling assay (Click-iT EdU) enables the detection and categorization of dividing cell types in highly dynamic processes in fixed frozen murine tissue sections. Furthermore, a novel open-source image processing pipeline provides high-throughput image acquisition and analysis.

Evaluating the Effect of SASP Factors on the Proliferation of Cancer Cells Using a Comparative Analysis of Three Distinct Methodologies

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Cited by 1 •

2025

This study evaluates the proliferative effects of senescence-associated secretory phenotype (SASP) factors from senescent HeLa cells on non-senescent HeLa cells using three in vitro models with real-time monitoring. The advantages and limitations of each method were systematically compared to better understand cell-cell interactions in cancer.

A Morphometric and Cellular Analysis Method for the Murine Mandibular Condyle

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Cited by 4 •

2018

This manuscript presents methods for analyzing morphometric and cellular changes within the mandibular condyle of rodents.

Research

JoVE Journal - Biology
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Immunohistochemistry Techniques to Analyze Cellular Proliferation and Neurogenesis in Rats Using the Thymidine Analog BrdU

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Cited by 7 •

2020

This paper presents four of the most common techniques for visualizing BrdU positive cells to measure adult neurogenesis in rats. This work includes instructions for reagent preparation, thymidine analog administration, transcardial perfusion, tissue preparation, peroxidase immunohistochemical reaction, immunofluorescence, signal amplification, counterstaining, microscopy imaging, and cell analysis.

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