Exosome miR-199a-5p modulated vascular remodeling and inflammatory infiltration of Takayasu’s arteritis

IF 4.9 2区 医学 Q1 Medicine Arthritis Research & Therapy Pub Date : 2025-01-20 DOI:10.1186/s13075-025-03475-1
Shuning Guo, Jiehan Li, Shurui Pang, Jing Li, Xinping Tian
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Abstract

Advances in treatment have swiftly alleviated systemic inflammation of Takayasu’s arteritis (TAK), while subclinical vascular inflammation and the ensuing arterial remodeling continue to present unresolved challenges in TAK. The phenotypic switching of vascular smooth muscle cells (VSMC) is regarded as the first step in vascular pathology and contributes to arterial remodeling. Exosomes facilitate the transfer and exchange of proteins and specific nucleic acids, thereby playing a significant role in intercellular communication. Little is known about the modulatory role of serum exosomes in phenotypic switching of VSMC and vascular remodeling in TAK. Serum exosomes isolated from TAK patients were co-cultured with VSMC to identify the modulatory role of exosomes. VSMC were transfected with miR-199a-5p mimic and inhibitor. CCK8 assays and EdU assays were performed to measure proliferative ability. The migration of VSMC was evaluated by scratch assays and transwell migration assays. The flow cytometry was employed to identify apoptosis of VSMC. Dual-luciferase reporter assay, RNA immunoprecipitation assay and fluorescence in situ hybridization were utilized to validate the target gene of miR-199a-5p. The correlational analysis was conducted among exosome miRNA, serum MMP2, TIMP2 and clinical parameters in TAK patients. The coculture of VSMC with serum exosome mediated dedifferentiation of VSMC. Through gain- and loss-of-function approaches, miR-199a-5p over-expression significantly increased expression of VSMC marker genes and inhibited VSMC proliferation and migration, whilst the opposite effect was observed when endogenous miR-199a-5p was knocked down. The overexpression of miR-199a-5p suppressed VSMC apoptosis. Further, MMP2 serves as functional target gene of miR-199a-5p. The correlation analyses revealed an inverse correlation between Vasculitis Damage Index and exosome miR-199a-5p level or serum MMP2, which requires validation in a larger cohort. Our study indicated that the miR-199a-5p/MMP2 pathway played a role in inhibiting the migration, proliferation and apoptosis of VSMC. The decreased secretion of MMP2 may potentially prompt the intimal infiltration of inflammatory cells within the vascular wall, offering a novel therapeutic opportunity by tackling both inflammatory responses and the neointimal overgrowth associated with TAK arterial damage. Moreover, exosome miR-199a-5p and MMP2 derived from serum possess potential as future biomarkers for vascular injury.
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外泌体miR-199a-5p调节血管重塑和高松动脉炎的炎症浸润
治疗的进步迅速缓解了Takayasu动脉炎(Takayasu’s arteritis, TAK)的全身炎症,但在TAK中,亚临床血管炎症和随后的动脉重塑仍然是未解决的挑战。血管平滑肌细胞(VSMC)的表型转换被认为是血管病理的第一步,有助于动脉重塑。外泌体促进蛋白质和特定核酸的转移和交换,从而在细胞间通讯中发挥重要作用。目前对TAK患者血清外泌体在VSMC表型转换和血管重构中的调节作用知之甚少。从TAK患者分离的血清外泌体与VSMC共培养,以确定外泌体的调节作用。用miR-199a-5p模拟物和抑制剂转染VSMC。CCK8法和EdU法检测细胞增殖能力。通过划痕实验和跨井迁移实验来评估VSMC的迁移。流式细胞术检测VSMC细胞凋亡。采用双荧光素酶报告基因法、RNA免疫沉淀法和荧光原位杂交法对miR-199a-5p靶基因进行验证。对TAK患者的外泌体miRNA、血清MMP2、TIMP2与临床参数进行相关性分析。VSMC与血清外泌体介导的VSMC去分化共培养。通过功能获得和功能丧失的方法,miR-199a-5p过表达显著增加VSMC标记基因的表达,抑制VSMC的增殖和迁移,而内源性miR-199a-5p被敲低时,观察到相反的效果。miR-199a-5p过表达抑制VSMC凋亡。此外,MMP2作为miR-199a-5p的功能靶基因。相关分析显示血管炎损伤指数与外泌体miR-199a-5p水平或血清MMP2呈负相关,这需要在更大的队列中验证。我们的研究表明miR-199a-5p/MMP2通路在抑制VSMC的迁移、增殖和凋亡中发挥作用。MMP2分泌减少可能潜在地促进血管壁内炎症细胞的内膜浸润,通过解决炎症反应和与TAK动脉损伤相关的新内膜过度生长提供了新的治疗机会。此外,来自血清的外泌体miR-199a-5p和MMP2具有作为血管损伤的未来生物标志物的潜力。
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来源期刊
CiteScore
8.60
自引率
2.00%
发文量
261
审稿时长
14 weeks
期刊介绍: Established in 1999, Arthritis Research and Therapy is an international, open access, peer-reviewed journal, publishing original articles in the area of musculoskeletal research and therapy as well as, reviews, commentaries and reports. A major focus of the journal is on the immunologic processes leading to inflammation, damage and repair as they relate to autoimmune rheumatic and musculoskeletal conditions, and which inform the translation of this knowledge into advances in clinical care. Original basic, translational and clinical research is considered for publication along with results of early and late phase therapeutic trials, especially as they pertain to the underpinning science that informs clinical observations in interventional studies.
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