An Injectable Hydrogel Composing Anti‐Inflammatory and Osteogenic Therapy toward Bone Erosions Microenvironment Remodeling in Rheumatoid Arthritis

Author:

Liu Xingzhu1ORCID,Zhang Qin2,Cao Yi13,Hussain Zahid14,Xu Mingsheng14,Liu Yuanshan14,Ullah Ismat1,Lu Zhongzhong14,Osaka Akiyoshi56,Lin Jun27,Pei Renjun14ORCID

Affiliation:

1. CAS Key Laboratory for Nano‐Bio Interface Division of Nanobiomedicine Suzhou Institute of Nano‐Tech and Nano‐Bionics (SINANO) Chinese Academy of Sciences Suzhou 215123 P. R. China

2. Department of Orthopaedics First Affiliated Hospital of Soochow University Soochow University Suzhou 215006 P. R. China

3. Jiangxi Institute of Nanotechnology Nanchang 330200 P. R. China

4. School of Nano‐Tech and Nano‐Bionics University of Science and Technology of China (USTC) Hefei 230026 P. R. China

5. School of Materials Science of Engineering Henan University of Science of Technology Luoyang Henan 471023 P. R. China

6. Faculty of Engineering Okayama University 3‐1‐1 Tsushima Kita‐ku Okayama 700–8530 Japan

7. Department of Orthopaedics Fourth Affiliated of Soochow University, Suzhou Dushu Lake Hospital Medical Center of Soochow University Suzhou Jiangsu 215001 P. R. China

Abstract

AbstractHealing bone erosions in rheumatoid arthritis (RA) remains greatly challenging via biomaterial strategies. Given the unsuccessful innate bone erosion healing due to an inflammatory disorder, over‐activated osteoclasts, and impaired osteoblasts differentiation, RA pathogenesis‐guided engineering of an innovative hydrogel platform is needed for remodeling osteoimmune and osteogenic microenvironment of bone erosion healing. Herein, in situ adaptable and injectable interpenetrating polymer network (IPN) hydrogel is developed through an ingenious combination of a bio‐orthogonal reaction between hyaluronic acid (HA) and collagen, along with effective electrostatic interactions leveraging bisphosphonate (BP)‐functionalized HA macromers (HABP) and nanorod shaped zinc (Zn)‐doped biphasic calcium phosphate (ZnBCP). IPN hydrogel exhibits exceptional adaptability to the local shape complexity at bone erosions, and by integrating ZnBCP and HABP, a multi‐stage releasing platform is engineered, facilitating controlled cargo delivery for remodeling more anti‐inflammatory M2 cells and reducing over‐activated osteoclastic activities, thereby reconstructing the bone regeneration microenvironment. Sustainedly co‐delivering multiple ions (calcium and phosphate) can display excellent osteogenic properties and be conducive to the bone formation process, by effects of osteogenesis‐associated cell differentiation. Overall, the introduced bioactive IPN hydrogel therapy remodels the osteoimmune environment by synergistic pro‐inflammation‐resolving, osteogenesis, and anti‐osteoclastic activities, displaying excellent bone reconstruction in the collagen‐induced arthritis rabbit model.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

Publisher

Wiley

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