Quiescence

Quiescence is a reversible state in which a cell exits the active cell cycle without undergoing terminal differentiation, allowing it to remain viable while conserving resources. In response to conditions such as limited nutrients, mitogen withdrawal, or tissue-specific signals, cells reduce biosynthetic and proliferative activity and maintain regulatory pathways that can support re-entry into the cell cycle when conditions improve. In biology, quiescence helps control tissue maintenance, stem cell activity, and recovery after stress. Studying this state also clarifies how disrupted cell-cycle control contributes to aging, impaired regeneration, and cancer.

Quiescence - Related Videos

Research

JoVE Journal - Biology

Unfractionated Bulk Culture of Mouse Skeletal Muscle to Recapitulate Niche and Stem Cell Quiescence

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Cited by 4 •

2023

Skeletal muscle comprises multiple cell types, including resident stem cells, each with a special contribution to muscle homeostasis and regeneration. Here, the 2D culture of muscle stem cells and the muscle cell niche in an ex vivo setting that preserves many of the physiological, in vivo, and environmental characteristics are described.

Analyzing Neural Stem Cell Reactivation in Cultured Drosophila Brain Explants

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2025

This video demonstrates a protocol to identify exogenous factors that initiate the reactivation of Drosophila brain neural stem cells from their quiescent state. Freshly hatched larvae are dissected to isolate their brains, which are then cultured in media with or without a test hormone to evaluate the hormone's potential to induce neural stem cell reactivation and proliferation.

An In Vitro System to Study Tumor Dormancy and the Switch to Metastatic Growth

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Cited by 39 •

2011

A modified 3-D in vitro system is presented in which growth characteristics of several tumor cell lines in reconstituted basement membrane correlate with the dormant or proliferative behavior of the tumor cells at a metastatic secondary site in vivo.

The 4-vessel Sampling Approach to Integrative Studies of Human Placental Physiology In Vivo

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Cited by 18 •

2017

We present a detailed method to study human placental physiology in vivo at term. The method combines blood sampling from the incoming and outgoing vessels on the maternal and fetal sides of the placenta with ultrasound measurements of volume blood flow and placental tissue sampling.

Research

JoVE Journal - Biology
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Isolation and Culture of Individual Myofibers and their Satellite Cells from Adult Skeletal Muscle

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Cited by 173 •

2013

Isolation and culture of myofibers is the gold standard in vitro system to study the transition of satellite cells through quiescence, activation and differentiation. Importantly, the single myofiber culture system preserves the myofiber/stem cell association, which is an essential component of the muscle stem cell niche.

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