Cell Type Recovery

Cell type recovery is the process of restoring a cell population’s viability, identity, and function after isolation, injury, or experimental manipulation. Following disruption, cells recover through coordinated survival signaling, cytoskeletal and metabolic adaptation, and reactivation of gene-regulatory programs that re-establish lineage-specific markers and behavior. In developmental biology, assessing cell type recovery helps distinguish temporary stress responses from stable changes in cell fate during differentiation, reprogramming, regeneration, and organoid culture. These analyses support accurate interpretation of developmental experiments and improve methods for maintaining or reconstructing specialized cell populations in research and regenerative medicine.

Cell Type Recovery - Related Videos

Research

JoVE EoE - Neuroimaging

Monitoring Recovery of Laser-Ablated Interneuromast Cells in Zebrafish Using Confocal Microscopy

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2025

Source: Volpe, B. A., et al. Confocal Microscope-Based Laser Ablation and Regeneration Assay in Zebrafish Interneuromast Cells. J. Vis. Exp. (2020) This video demonstrates monitoring interneuromast cell recovery in zebrafish using confocal microscopy, tracking cell death and repair through time-lapse fluorescence imaging.

Humor or Rationality? The Neural Mechanisms of How Agent Type and Language Style Influence Satisfaction with Ride-Hailing Service Failure Recovery

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2026

This study employs ERPs to investigate how agent type (human/AI) and language style (humorous/rational) influence ride-hailing service recovery satisfaction, aiming to uncover neurocognitive mechanisms.

Research

JoVE Journal - Neuroscience
Free Sample

Preparation of Acute Brain Slices Using an Optimized N-Methyl-D-glucamine Protective Recovery Method

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Cited by 346 •

2018

This protocol demonstrates the implementation of an optimized N-methyl-D-glucamine (NMDG) protective recovery method of brain slice preparation. A single media formulation is used to reliably obtain healthy brain slices from animals of any age and for diverse experimental applications.

Separation of Spermatogenic Cell Types Using STA-PUT Velocity Sedimentation

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Cited by 111 •

2013

The STA-PUT method allows for the separation of different populations of spermatogenic cells based on size and density.

Generation and Recovery of β-cell Spheroids From Step-growth PEG-peptide Hydrogels

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Cited by 5 •

2012

The following protocol provides techniques for encapsulating pancreatic β-cells in step-growth PEG-peptide hydrogels formed by thiol-ene photo-click reactions. This material platform not only offers a cytocompatible microenvironment for cell encapsulation, but also permits user-controlled rapid recovery of cell structures formed within the hydrogels.

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