Chemically-defined and scalable culture system for intestinal stem cells derived from human intestinal organoids.

Kwon, Ohman; Lee, Hana; Jung, Jaeeun; Son, Ye Seul; Jeon, Sojeong; Yu, Won Dong; Son, Naeun; Jung, Kwang Bo et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Three-dimensional human intestinal organoids (hIO) are widely used as a platform for biological and biomedical research. However, reproducibility and challenges for large-scale expansion limit their applicability. Here, we establish a human intestinal stem cell (ISC) culture method expanded under feeder-free and fully defined conditions through selective enrichment of ISC populations (ISC<sup>3D-hIO</sup>) within hIO derived from human pluripotent stem cells. The intrinsic self-organisation property of ISC<sup>3D-hIO</sup>, combined with air-liquid interface culture in a minimally defined medium, forces ISC<sup>3D-hIO</sup> to differentiate into the intestinal epithelium with cellular diversity, villus-like structure, and barrier integrity. Notably, ISC<sup>3D-hIO</sup> is an ideal cell source for gene editing to study ISC biology and transplantation for intestinal diseases. We demonstrate the intestinal epithelium differentiated from ISC<sup>3D-hIO</sup> as a model system to study severe acute respiratory syndrome coronavirus 2 viral infection. ISC<sup>3D-hIO</sup> culture technology provides a biological tool for use in regenerative medicine and disease modelling.

Medical subject headings