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Journal Article

Self-organization of organoids from endoderm-derived cells

Allison Lewis; Rashmiparvathi Keshara; Yung Hae Kim; Anne Grapin-Botton
Journal of Molecular Medicine · Vol. 99, Issue 4 · pp. 449-462 · 2021

Abstract

Organoids constitute biological systems which are used to model organ development, homeostasis, regeneration, and disease in vitro and hold promise for use in therapy. Reflecting in vivo development, organoids form from tissue cells or pluripotent stem cells. Cues provided from the media and individual cells promote self-organization of these uniform starting cells into a structure, with emergent differentiated cells, morphology, and often functionality that resemble the tissue of origin. Therefore, organoids provide a complement to two-dimensional in vitro culture and in vivo animal models of development, providing the experimental control and flexibility of in vitro methods with the three-dimensional context of in vivo models, with fewer ethical restraints than human or animal work. However, using organoids, we are only just beginning to understand on the cellular level how the external conditions and signaling between individual cells promote the emergence of cells and structures. In this review, we focus specifically on organoids derived from endodermal tissues: the starting conditions of the cells, signaling mechanisms, and external media that allow the emergence of higher order self-organization.

Bibliographic Information

JournalJournal of Molecular Medicine
PublisherSpringer
Publication Date2021-04-01
Publication Year2021
Volume99
Issue4
Pages449-462
Document TypeJournal Article
Print ISSN0946-2716
eISSN1432-1440
DOI10.1007/s00109-020-02010-w

Access Information

NARA Access Coverage1922-01-01~Current
Journal Homepagehttps://www.springer.com/journal/109
Publisher PageOpen Publisher Page
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