首页> 美国卫生研究院文献>Journal of Zhejiang University. Science. B >Novel nano-microspheres containing chitosan hyaluronic acid and chondroitin sulfate deliver growth and differentiation factor-5 plasmid for osteoarthritis gene therapy
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Novel nano-microspheres containing chitosan hyaluronic acid and chondroitin sulfate deliver growth and differentiation factor-5 plasmid for osteoarthritis gene therapy

机译:含有壳聚糖透明质酸和硫酸软骨素的新型纳米微球为骨关节炎基因治疗提供生长和分化因子5质粒

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摘要

Objective: To construct a novel non-viral vector loaded with growth and differentiation factor-5 (GDF-5) plasmid using chitosan, hyaluronic acid, and chondroitin sulfate for osteoarthritis (OA) gene therapy. Methods: Nano-microspheres (NMPs) were prepared by mixing chitosan, hyaluronic acid, and chondroitin sulfate. GDF-5 plasmid was encapsulated in the NMPs through electrostatic adsorption. The basic characteristics of the NMPs were observed, and then they were co-cultured with chondrocytes to observe their effects on extracellular matrix (ECM) protein expression. Finally, NMPs loaded with GDF-5 were injected into the articular cavities of rabbits to observe their therapeutic effects on OA in vivo. Results: NMPs exhibited good physicochemical properties and low cytotoxicity. Their average diameter was (0.61±0.20) μm, and encapsulation efficiency was (38.19±0.36)%. According to Cell Counting Kit-8 (CCK-8) assay, relative cell viability was 75%–99% when the total weight of NMPs was less than 560 μg. Transfection efficiency was (62.0±2.1)% in a liposome group, and (60.0±1.8)% in the NMP group. There was no significant difference between the two groups (P>0.05). Immunohistochemical staining results suggested that NMPs can successfully transfect chondrocytes and stimulate ECM protein expression in vitro. Compared with the control groups, the NMP group significantly promoted the expression of chondrocyte ECM in vivo (P<0.05), as shown by analysis of the biochemical composition of chondrocyte ECM. When NMPs were injected into OA model rabbits, the expression of ECM proteins in chondrocytes was significantly promoted and the progression of OA was slowed down. Conclusions: Based on these data, we think that these NMPs with excellent physicochemical and biological properties could be promising non-viral vectors for OA gene therapy.
机译:目的:利用壳聚糖,透明质酸和硫酸软骨素构建一种新型的带有生长分化因子5(GDF-5)质粒的非病毒载体,用于骨关节炎(OA)基因治疗。方法:将壳聚糖,透明质酸和硫酸软骨素混合制备纳米微球(NMP)。通过静电吸附将GDF-5质粒包裹在NMP中。观察NMP的基本特征,然后将它们与软骨细胞共培养以观察其对细胞外基质(ECM)蛋白表达的影响。最后,将载有GDF-5的NMP注射入兔的关节腔中,以观察其对体内OA的治疗作用。结果:NMPs具有良好的理化性质和低细胞毒性。它们的平均直径为(0.61±0.20)μm,并且包封效率为(38.19±0.36)%。根据细胞计数试剂盒8(CCK-8)分析,当NMP的总重量小于560μg时,相对细胞活力为75%–99%。脂质体组的转染效率为(62.0±2.1)%,NMP组为(60.0±1.8)%。两组之间无显着性差异(P> 0.05)。免疫组织化学染色结果表明,NMPs可成功转染软骨细胞并刺激体外ECM蛋白表达。软骨细胞ECM的生化组成分析表明,与对照组相比,NMP组显着促进了软骨细胞ECM的体内表达(P <0.05)。当将NMPs注射入OA模型兔体内时,软骨细胞中ECM蛋白的表达被显着促进,并且OA的进程减慢。结论:基于这些数据,我们认为这些具有良好的理化和生物学特性的NMP可能是有前景的用于OA基因治疗的非病毒载体。

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