Fully Synthetic Hydrogels Promote Robust Crypt Formation in Intestinal Organoids

E Ella A. Hushka (Department of Chemical and Biological Engineering University of Colorado Boulder Boulder CO 80309 USA) M Michael R. Blatchley (Department of Chemical and Biological Engineering, University of Colorado Boulder) L Laura J. Macdougall (Department of Chemical and Biological Engineering University of Colorado Boulder Boulder CO 80309 USA) F F. Max Yavitt (Department of Chemical and Biological Engineering, University of Colorado Boulder) B Bruce E. Kirkpatrick (Department of Chemical and Biological Engineering) K Kaustav Bera (Department of Chemical and Biological Engineering, University of Colorado Boulder) P Peter J. Dempsey (Section of Developmental Biology, Department of Pediatrics, Univeristy of Colorado School of Medicine) K Kristi S. Anseth (Department of Chemical and Biological Engineering)

Abstract

Abstract Initial landmark studies in the design of synthetic hydrogels for intestinal organoid culture identify precise matrix requirements for differentiation, namely decompression of matrix‐imposed forces and supplementation of laminin. But beyond stating the necessity of laminin, organoid‐laminin interactions have gone largely unstudied, as this ubiquitous requirement of exogenous laminin hinders investigation. In this work, a fast stress relaxing, boronate ester‐based synthetic hydrogel is used for the culture of intestinal organoids, and it is fortuitously discovered that unlike all other synthetic hydrogels to date, laminin does not need to be supplemented for crypt formation. This highly defined material provides a unique opportunity to investigate laminin‐organoid interactions and how it influences crypt evolution and organoid function. Via fluorescent labeling of non‐canonical amino acids, it is further shown that adaptable boronate ester bonds increase deposition of nascent proteins, including laminin. Collectively, these results advance the understanding of how mechanical and matricellular signaling influence intestinal organoid development.

Article Details

Volume / Issue Vol. 37, Issue 43
Published October 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (8)

E

Ella A. Hushka

Department of Chemical and Biological Engineering University of Colorado Boulder Boulder CO 80309 USA

M

Michael R. Blatchley

Department of Chemical and Biological Engineering, University of Colorado Boulder

L

Laura J. Macdougall

Department of Chemical and Biological Engineering University of Colorado Boulder Boulder CO 80309 USA

F

F. Max Yavitt

Department of Chemical and Biological Engineering, University of Colorado Boulder

B

Bruce E. Kirkpatrick

Department of Chemical and Biological Engineering

K

Kaustav Bera

Department of Chemical and Biological Engineering, University of Colorado Boulder

P

Peter J. Dempsey

Section of Developmental Biology, Department of Pediatrics, Univeristy of Colorado School of Medicine

K

Kristi S. Anseth

Department of Chemical and Biological Engineering