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通过磁性纳米颗粒增强骨髓间充质干细胞衍生的细胞外囊泡递送 miR-15b-5p 通过靶向 GFAP 减轻糖尿病性骨质疏松症。

Delivery of miR-15b-5p via magnetic nanoparticle-enhanced bone marrow mesenchymal stem cell-derived extracellular vesicles mitigates diabetic osteoporosis by targeting GFAP.

机构信息

Department of Orthopedics, Bengbu Medical University Affiliated to First Hospital, Anhui Province Key Laboratory of Tissue Transplantation (Bengbu Medical College), 2600 Donghai Avenue, No. 287, Changhuai Road, Longzihu District, Bengbu, 233000, Anhui Province, China.

Anhui Province Key Laboratory of Tissue Transplantation (Bengbu Medical College), 2600 Donghai Avenue, Bengbu, 233030, China.

出版信息

Cell Biol Toxicol. 2024 Jul 5;40(1):52. doi: 10.1007/s10565-024-09877-2.

Abstract

Diabetic osteoporosis (DO) presents significant clinical challenges. This study aimed to investigate the potential of magnetic nanoparticle-enhanced extracellular vesicles (GMNP-EVs) derived from bone marrow mesenchymal stem cells (BMSCs) to deliver miR-15b-5p, thereby targeting and downregulating glial fibrillary acidic protein (GFAP) expression in rat DO models. Data was sourced from DO-related RNA-seq datasets combined with GEO and GeneCards databases. Rat primary BMSCs, bone marrow-derived macrophages (BMMs), and osteoclasts were isolated and cultured. EVs were separated, and GMNP targeting EVs were synthesized. Bioinformatic analysis revealed a high GFAP expression in DO-related RNA-seq and GSE26168 datasets for disease models. Experimental results confirmed elevated GFAP in rat DO bone tissues, promoting osteoclast differentiation. miR-15b-5p was identified as a GFAP inhibitor, but was significantly downregulated in DO and enriched in BMSC-derived EVs. In vitro experiments showed that GMNP-EVs could transfer miR-15b-5p to osteoclasts, downregulating GFAP and inhibiting osteoclast differentiation. In vivo tests confirmed the therapeutic potential of this approach in alleviating rat DO. Collectively, GMNP-EVs can effectively deliver miR-15b-5p to osteoclasts, downregulating GFAP expression, and hence, offering a therapeutic strategy for rat DO.

摘要

糖尿病性骨质疏松症(DO)带来了重大的临床挑战。本研究旨在探讨源自骨髓间充质干细胞(BMSCs)的磁性纳米颗粒增强细胞外囊泡(GMNP-EVs)递送 miR-15b-5p 的潜力,从而靶向并下调大鼠 DO 模型中的神经胶质纤维酸性蛋白(GFAP)表达。数据来源于 DO 相关的 RNA-seq 数据集,结合 GEO 和 GeneCards 数据库。分离和培养大鼠原代 BMSCs、骨髓来源的巨噬细胞(BMMs)和破骨细胞。分离 EVs,并合成 GMNP 靶向 EVs。生物信息学分析显示,DO 相关的 RNA-seq 和 GSE26168 数据集中疾病模型的 GFAP 表达较高。实验结果证实,大鼠 DO 骨组织中 GFAP 升高,促进破骨细胞分化。miR-15b-5p 被鉴定为 GFAP 的抑制剂,但在 DO 中显著下调,并在 BMSC 衍生的 EVs 中富集。体外实验表明,GMNP-EVs 可以将 miR-15b-5p 转移到破骨细胞中,下调 GFAP 并抑制破骨细胞分化。体内试验证实了这种方法在缓解大鼠 DO 中的治疗潜力。总之,GMNP-EVs 可以有效地将 miR-15b-5p 递送到破骨细胞中,下调 GFAP 表达,从而为大鼠 DO 提供了一种治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9c2/11226493/547026ecf5a7/10565_2024_9877_Fig1_HTML.jpg

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