Logic‐Based Strategy for Spatiotemporal Release of Dual Extracellular Vesicles in Osteoarthritis Treatment

Author:

Li Shiyu12ORCID,Zheng Weihan12,Deng Wenfeng13,Li Ziyue12,Yang Jiaxin2,Zhang Huihui24,Dai Zhenning5,Su Weiwei12,Yan Zi12,Xue Wanting2,Yun Xinyi2,Mi Siqi2,Shen Jianlin6,Luo Xiang17,Wang Ling8,Wu Yaobin2,Huang Wenhua12

Affiliation:

1. Guangdong Medical Innovation Platform for Translation of 3D Printing Application The Third Affiliated Hospital of Southern Medical University Southern Medical University Guangzhou 510630 China

2. Guangdong Engineering Research Center for Translation of Medical 3D Printing Application Guangdong Provincial Key Laboratory of Digital Medicine and Biomechanics National Key Discipline of Human Anatomy School of Basic Medical Sciences Southern Medical University Guangzhou 510515 China

3. Department of Obstetrics and Gynecology The First Affiliated Hospital of Guangzhou Medical University Guangzhou Medical University Guangzhou 510120 China

4. Department of Burns Nanfang Hospital Southern Medical University Guangzhou 510515 China

5. Department of Stomatology Guangdong Provincial Key Laboratory of Research and Development in Traditional Chinese Medicine Guangdong Second Traditional Chinese Medicine Hospital Guangzhou 510095 China

6. Department of Orthopedics Affiliated Hospital of Putian University Putian 351100 China

7. Guangxi Clinical Research Center for Digital Medicine and 3D Printing Guigang City People's Hospital Guigang 537000 China

8. Biomaterials Research Center School of Biomedical Engineering Southern Medical University Guangzhou 510515 China

Abstract

AbstractTo effectively treat osteoarthritis (OA), the existing inflammation must be reduced before the cartilage damage can be repaired; this cannot be achieved with a single type of extracellular vesicles (EVs). Here, a hydrogel complex with logic‐gates function is proposed that can spatiotemporally controlled release two types of EVs: interleukin 10 (IL‐10)+ EVs to promote M2 polarization of macrophage, and SRY‐box transcription factor 9 (SOX9)+ EVs to increase cartilage matrix synthesis. Following dose‐of‐action screening, the dual EVs are loaded into a matrix metalloporoteinase 13 (MMP13)‐sensitive self‐assembled peptide hydrogel (KM13E) and polyethylene glycol diacrylate/gelatin methacryloyl‐hydrogel microspheres (PGE), respectively. These materials are mixed to form a “microspheres‐in‐gel” KM13E@PGE system. In vitro, KM13E@PGE abruptly released IL‐10+ EVs after 3 days and slowly released SOX9+ EVs for more than 30 days. In vivo, KM13E@PGE increased the CD206+ M2 macrophage proportion in the synovial tissue and decreased the tumor necrosis factor‐α and IL‐1β levels. The aggrecan and SOX9 expressions in the cartilage tissues are significantly elevated following inflammation subsidence. This performance is not achieved using anti‐inflammatory or cartilage repair therapy alone. The present study provides an injectable, integrated delivery system with spatiotemporal control release of dual EVs, and may inspire logic‐gates strategies for OA treatment.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

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