Author:
Lin Ye,Tang Yuanyuan,Yi Ouyang,Zhu Junping,Su Zhaoli,Li Gejing,Zhou Hua,Liu Liang,Liu Bin,Cai Xiong
Abstract
AbstractThe characteristic features of the rheumatoid arthritis (RA) microenvironment are synovial inflammation and hyperplasia. Therefore, there is a growing interest in developing a suitable therapeutic strategy for RA that targets the synovial macrophages and fibroblast-like synoviocytes (FLSs). In this study, we used graphene oxide quantum dots (GOQDs) for loading anti-arthritic sinomenine hydrochloride (SIN). By combining with hyaluronic acid (HA)-inserted hybrid membrane (RFM), we successfully constructed a new nanodrug system named HA@RFM@GP@SIN NPs for target therapy of inflammatory articular lesions. Mechanistic studies showed that this nanomedicine system was effective against RA by facilitating the transition of M1 to M2 macrophages and inhibiting the abnormal proliferation of FLSs in vitro. In vivo therapeutic potential investigation demonstrated its effects on macrophage polarization and synovial hyperplasia, ultimately preventing cartilage destruction and bone erosion in the preclinical models of adjuvant-induced arthritis and collagen-induced arthritis in rats. Metabolomics indicated that the anti-arthritic effects of HA@RFM@GP@SIN NPs were mainly associated with the regulation of steroid hormone biosynthesis, ovarian steroidogenesis, tryptophan metabolism, and tyrosine metabolism. More notably, transcriptomic analyses revealed that HA@RFM@GP@SIN NPs suppressed the cell cycle pathway while inducing the cell apoptosis pathway. Furthermore, protein validation revealed that HA@RFM@GP@SIN NPs disrupted the excessive growth of RAFLS by interfering with the PI3K/Akt/SGK/FoxO signaling cascade, resulting in a decline in cyclin B1 expression and the arrest of the G2 phase. Additionally, considering the favorable biocompatibility and biosafety, these multifunctional nanoparticles offer a promising therapeutic approach for patients with RA.
Graphical abstract
Funder
China Postdoctoral Science Foundation
Natural Science Foundation of Hunan
National Natural Science Foundation of China General Program
Science and Technology Innovation Program of Hunan Province
Open-competing Disciple Construction Project of Hunan University of Chinese Medicine
Postgraduate Innovation Program of Hunan University of Chinese Medicine
Furong Distinguished Scholar Program of Hunan
121 Training Project for Innovative Talents of Hunan
Chinese Academy of Engineering Academician Liang Liu’s Workstation of Hunan University of Chinese Medicine
World First-class Discipline Incubation Project of Hunan University of Chinese Medicine
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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