A Novel Cargo Delivery System‐AnCar‐ExoLaIMTS Ameliorates Arthritis via Specifically Targeting Pro‐Inflammatory Macrophages

Author:

Li Song1ORCID,Wu Ya‐ran2,Peng Xiu‐qin1,Chen Han‐gang1,Zhang Tong‐yi3,Chen Hua1,Yang Jing1,Xie Yang‐li1,Qi Hua‐bing1,Xiang Wei3,Huang Bo3,Zhou Si‐ru1,Hu Yan4,Tan Qiao‐yan1,Du Xiao‐lan1,Huang Jun‐lan1,Zhang Ruo‐bin1,Li Xiao‐hong1,Luo Feng‐tao1,Jin Min1,Su Nan1,Luo Xiao‐qing1,Huang Shuo1,Yang Peng1,Yan Xiao‐Jing5,Lian Ji‐qin2,Zhu Ying6,Xiong Yan1,Xiao Gong‐yi7,Liu Ying‐ying1,Shen Chen17,Kuang Liang1,Ni Zhen‐hong3,Chen Lin1

Affiliation:

1. Center of Bone Metabolism and repair laboratory for Prevention and rehabilitation of Training injuries State Key laboratory of Trauma Burns and combined injury Trauma center Research Institute of Surgery Daping Hospital Army Medical University (Third Military Medical University) Chongqing 400000 China

2. Department of Clinical Biochemistry Faculty of Pharmacy and Laboratory Medicine Army Medical University (Third Military Medical University) Chongqing 40000 China

3. State Key Laboratory of Trauma Burns and Combined Injury Department of Rehabilitation Medicine Daping Hospital Army Medical University (Third Military Medical University) Chongqing 400000 China

4. Department of Military Basic Training and Army Management Army Health Service Training Base Army Medical University (Third Military Medical University) Chongqing 400000 China

5. Department of Biochemistry and Molecular Biology College of Basic Medical Sciences Army Medical University (Third Military Medical University) Chongqing 400000 China

6. Department of Rehabilitation Medicine The First Affiliated Hospital of Chongqing Medical University Chongqing 400000 China

7. Center for Joint Surgery Department of Orthopedic Surgery The Second Affiliated Hospital of Chongqing Medical University Chongqing 400000 China

Abstract

AbstractMacrophages are heterogenic phagocytic cells that play distinct roles in physiological and pathological processes. Targeting different types of macrophages has shown potent therapeutic effects in many diseases. Although many approaches are developed to target anti‐inflammatory macrophages, there are few researches on targeting pro‐inflammatory macrophages, which is partially attributed to their non‐s pecificity phagocytosis of extracellular substances. In this study, a novel recombinant protein is constructed that can be anchored on an exosome membrane with the purpose of targeting pro‐inflammatory macrophages via antigen recognition, which is named AnCar‐ExoLaIMTS. The data indicate that the phagocytosis efficiencies of pro‐inflammatory macrophages for different AnCar‐ExoLaIMTS show obvious differences. The AnCar‐ExoLaIMTS3 has the best targeting ability for pro‐inflammatory macrophages in vitro and in vivo. Mechanically, AnCar‐ExoLaIMTS3 can specifically recognize the leucine‐rich repeat domain of the TLR4 receptor, and then enter into pro‐inflammatory macrophages via the TLR4‐mediated receptor endocytosis pathway. Moreover, AnCar‐ExoLaIMTS3 can efficiently deliver therapeutic cargo to pro‐inflammatory macrophages and inhibit the synovial inflammatory response via downregulation of HIF‐1α level, thus ameliorating the severity of arthritis in vivo. Collectively, the work established a novel gene/drug delivery system that can specifically target pro‐inflammatory macrophages, which may be beneficial for the treatments of arthritis and other inflammatory diseases.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Chongqing

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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