Self‐Assembled Nanocomposite Hydrogels as Carriers for Demineralized Bone Matrix Particles and Enhanced Bone Repair

Author:

Chen Chen1,Li Zhi1,Xu Changlu1,Kang Minjee1,Lee Chung‐Sung12,Aghaloo Tara3,Lee Min14ORCID

Affiliation:

1. Division of Oral and Systemic Health Sciences School of Dentistry University of California Los Angeles CA 90095 USA

2. Department of Pharmaceutical Engineering Soonchunhyang University Asan 31538 Republic of Korea

3. Division of Diagnostic and Surgical Sciences School of Dentistry University of California Los Angeles CA 90095 USA

4. Department of Bioengineering University of California Los Angeles CA 90095 USA

Abstract

AbstractDemineralized bone matrix (DBM) has been widely used as an allogeneic alternative to autologous bone graft for bone repair. However, more extensive use of DBM is limited due to its particulate nature after demineralization and rapid particle dispersion following irrigation, resulting in unpredictable osteoinductivity. Here, a new design of injectable hydrogel carriers for DBM that combine self‐healing ability and osteogenic properties based on the self‐assembly of guanidinylated hyaluronic acid and silica‐rich nanoclays is reported. The nanoclays serve as reversible linkages to form a dynamic hydrogel network with the guanidine moieties on the polymer chains. Gelation kinetics and mechanical properties can be controlled by altering nanoclay content in the hydrogel. The resulting hydrogel exerts self‐healing ability due to its dynamic crosslinks and well retains its overall performance with high DBM loading. The hydrogel exhibits great cytocompatibility and osteogenic effects mediated by the nanoclays. In vivo delivery of DBM using the nanocomposite hydrogel further demonstrates robust bone regeneration in a mouse calvarial defect model in comparison to DBM delivered with aqueous HA. This work suggests a promising hydrogel platform for many applications including therapeutic delivery and tissue engineering.

Funder

National Institutes of Health

MTF Biologics

Publisher

Wiley

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