de novo Fabrication of Dense Collagen Matrices with Patterned Hierarchical Structures for Corneal Stromal Tissue Repair

M Miao Lei B Bing Hou S Shaohua Zhang R Ronghang Chang (Key Laboratory for Ultrafine Materials of Ministry of Education Frontiers Science Center for Materiobiology and Dynamic Chemistry School of materials science and engineering East China University of Science and Technology Shanghai 200237 China) Y Yue Ji K Kangli Chen (Key Laboratory for Ultrafine Materials of Ministry of Education Frontiers Science Center for Materiobiology and Dynamic Chemistry School of materials science and engineering East China University of Science and Technology Shanghai 200237 China) J Jianguo Sun (Department of Materials Science and Engineering) C Changsheng Liu (School of Materials Science and Engineering, Engineering Research Center for Biomedical Materials of the Ministry of Education, East China University of Science and Technology) G Gregory F. Payne (Institute for Bioscience and Biotechnology Research and Robert E. Fischell Biomedical Device Institute 5118 A. James Clark Hall College Park Maryland 20742 USA) X Xue Qu

Abstract

Abstract Collagen is a versatile biological building block that is guided by extracellular cues to self‐assemble into diverse hierarchical structures that perform various tissue functions. Here, the use of top‐down inputs and controlled contextual cues is reported for the de novo fabrication of patterned dense collagen matrices with spatially varying tailored mesoscale structures. Initially, imposed electrical inputs are used to guide collagen triple helix molecules to partially assemble into a dense metastable molten fibril state that can be induced by permissive contextual cues (especially humidity) to undergo further assembly. Spatially‐controlled optical inputs that induce riboflavin‐based photo‐crosslinking can locally‐trap partially assembled states (e.g., molten fibrils). To illustrate the potential of collagen patterning, a functional corneal stromal substitute is specifically fabricated that mimics the microstructures of collagen in cornea‐sclera and demonstrates that it can restore histological structure and function in a corneal defect rabbit model. This generic approach for the de novo fabrication of mesoscale‐structured collagen is envisioned to have broad applications in regenerative medicine.

Article Details

Volume / Issue Vol. 37, Issue 39
Published October 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (10)

M

Miao Lei

B

Bing Hou

S

Shaohua Zhang

R

Ronghang Chang

Key Laboratory for Ultrafine Materials of Ministry of Education Frontiers Science Center for Materiobiology and Dynamic Chemistry School of materials science and engineering East China University of Science and Technology Shanghai 200237 China

Y

Yue Ji

K

Kangli Chen

Key Laboratory for Ultrafine Materials of Ministry of Education Frontiers Science Center for Materiobiology and Dynamic Chemistry School of materials science and engineering East China University of Science and Technology Shanghai 200237 China

J

Jianguo Sun

Department of Materials Science and Engineering

C

Changsheng Liu

School of Materials Science and Engineering, Engineering Research Center for Biomedical Materials of the Ministry of Education, East China University of Science and Technology

G

Gregory F. Payne

Institute for Bioscience and Biotechnology Research and Robert E. Fischell Biomedical Device Institute 5118 A. James Clark Hall College Park Maryland 20742 USA

X

Xue Qu