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聚丙交酯乙交酯微球中 PTH(1-34) 的持续释放可抑制大鼠骨关节炎的进展。

Sustained release of PTH(1-34) from PLGA microspheres suppresses osteoarthritis progression in rats.

机构信息

Orthopedic Research Center, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.

出版信息

Acta Biomater. 2012 Jul;8(6):2254-62. doi: 10.1016/j.actbio.2012.03.015. Epub 2012 Mar 10.

Abstract

We previously reported that PTH(1-34) inhibits the terminal differentiation of articular chondrocytes and, in turn, suppresses the progression of osteoarthritis (OA). However, this treatment requires an injection of PTH(1-34) once every 3 days over the treatment period. In this study, we studied the effect of sustained administration of PTH(1-34) in a papain-induced OA rat model. We developed an effective controlled-release system for prolonging the treatment duration of an intra-articular injection for OA treatment in rats. The effects of released PTH(1-34) from PLGA(65:35)-encapsulated PTH(1-34) microspheres (PTH/PLGA) on papain-induced OA in rat knees were studied. Microsphere morphology was observed in vitro by scanning electron microscopy, and microsphere size was determined with a particle size analyzer. The PTH(1-34) encapsulation efficiency and release profile, as well as the toxicity of PTH/PLGA, were examined. The bioactivity of released PTH(1-34) was tested by examining cAMP levels in MC3T3E1 cells. In vivo, we evaluated the changes of localized GAG, Col II, and Col X in the articular cartilage of rat knees. Our results demonstrated that the surface of the PLGA microspheres was smooth, and the size of the microspheres was in the range of 51-127 μm. PTH/PLGA microspheres sustainably released PTH(1-34) for 19 days with a concentration range of 0.01-100 nM that covered the expected concentration of 10nM at 37°C. The cAMP levels of MC3T3E1 cells were elevated in the response to released PTH(1-34) from PTH/PLGA microspheres, indicating that the released PTH(1-34) is bioactive. Most importantly, intra-articular treatment with either PTH(1-34) (0.1-100 nM) 3 days/injection or PTH/PLGA microspheres (15 days/injection) for 5 weeks revealed the similar effect on suppressing papain-induced OA changes (decreasing GAG and Col II and increasing Col X) in rat knee cartilage. The effect of PTH/PLGA microspheres on suppressing OA progression was similar to that of a once-every-three-day injection of PTH(1-34), indicating that both the sustained and intermittent action of PTH(1-34) effectively suppress OA progression. The developed PLGA microspheres with sustained release and long-term effect may be potent carriers for PTH(1-34) used to treat early OA.

摘要

我们之前曾报道过 PTH(1-34) 可以抑制关节软骨的终末分化,从而抑制骨关节炎 (OA) 的进展。然而,这种治疗需要每 3 天注射一次 PTH(1-34),持续整个治疗过程。在这项研究中,我们研究了在木瓜蛋白酶诱导的 OA 大鼠模型中持续给予 PTH(1-34)的效果。我们开发了一种有效的控释系统,以延长关节内注射治疗 OA 的大鼠的治疗持续时间。研究了 PLGA(65:35)-包封 PTH(1-34)微球 (PTH/PLGA) 中释放的 PTH(1-34)对大鼠膝关节木瓜蛋白酶诱导的 OA 的影响。通过扫描电子显微镜观察体外微球形态,通过粒度分析仪测定微球粒径。考察了 PTH(1-34)的包封效率和释放曲线,以及 PTH/PLGA 的毒性。通过检测 MC3T3E1 细胞中环磷酸腺苷 (cAMP) 水平来测试释放的 PTH(1-34)的生物活性。在体内,我们评估了大鼠膝关节关节软骨中局部 GAG、Col II 和 Col X 的变化。我们的结果表明,PLGA 微球的表面光滑,微球的大小在 51-127 μm 范围内。PTH/PLGA 微球可持续释放 PTH(1-34)19 天,浓度范围为 0.01-100 nM,覆盖了 37°C 时预期的 10 nM 浓度。PTH/PLGA 微球释放的 PTH(1-34)可使 MC3T3E1 细胞中环磷酸腺苷 (cAMP) 水平升高,表明释放的 PTH(1-34)具有生物活性。最重要的是,关节内注射 PTH(1-34)(0.1-100 nM/3 天)或 PTH/PLGA 微球 (15 天/注射)5 周,对抑制木瓜蛋白酶诱导的 OA 变化(降低 GAG 和 Col II,增加 Col X)在大鼠膝关节软骨中具有相似的效果。PTH/PLGA 微球抑制 OA 进展的效果与 PTH(1-34)每 3 天注射一次的效果相似,表明 PTH(1-34)的持续和间歇性作用均可有效抑制 OA 进展。具有持续释放和长期作用的 PLGA 微球可能是用于治疗早期 OA 的 PTH(1-34)的有效载体。

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