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Cell Tracking for Organoids: Lessons From Developmental Biology.

Max A Betjes1, Xuan Zheng1, Rutger N U Kok1

  • 1AMOLF, Amsterdam, Netherlands.

Frontiers in Cell and Developmental Biology
|June 21, 2021
PubMed
Summary

Cell tracking microscopy reveals organoid development principles. This review highlights recent advances and future challenges in applying these powerful techniques to organoid research for understanding organogenesis.

Keywords:
cell trackingcellular dynamicsfluorescent markerslineagesorganoids

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Area of Science:

  • Developmental biology
  • Cell biology
  • Biotechnology

Background:

  • Organoids are advanced models for studying organ development and regeneration.
  • Microscopy techniques for tracking individual cells in 3D are crucial for understanding complex biological systems.
  • Cell tracking has been widely used in embryo development and 2D cultures.

Purpose of the Study:

  • To review recent studies utilizing cell tracking microscopy in organoid research.
  • To illustrate the potential of cell tracking for elucidating organoid organizational principles.
  • To discuss future directions and technical challenges in applying cell tracking to organoids.

Main Methods:

  • Review of recent scientific literature on cell tracking microscopy and organoid studies.
  • Analysis of how cell tracking reveals lineage, proliferation, and spatial distribution.
  • Examination of fluorescent markers for differentiation and cellular processes.

Main Results:

  • Cell tracking microscopy provides insights into cellular dynamics within organoids.
  • Recent studies demonstrate the utility of cell tracking for understanding organoid development.
  • The approach can map cell lineages, proliferation rates, and spatial organization.

Conclusions:

  • Cell tracking microscopy is a powerful tool for advancing organoid research.
  • Overcoming technical challenges is key to fully realizing its potential in organoid biology.
  • This technique promises to deepen our understanding of organ development and regeneration.