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Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell

机译:可注射的Kartogenin和呼吸植物蛋白负载胶束增强了通过脂肪衍生的干细胞减轻椎间盘退化

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Cell transplantation has been proved the promising therapeutic effects on intervertebral disc degeneration (IVDD). However, the increased levels of reactive oxygen species (ROS) in the degenerated region will impede the efficiency of human adipose-derived stem cells (human ADSCs) transplantation therapy. It inhibits human ADSCs proliferation, and increases human ADSCs apoptosis. Herein, we firstly devised a novel amphiphilic copolymer PEG-PAPO, which could self-assemble into a nanosized micelle and load lipophilic kartogenin (KGN), as a single complex (PAKM). It was an injectable esterase-responsive micelle, and showed controlled release ability of KGN and apocynin (APO). Oxidative stimulation promoted the esterase activity in human ADSCs, which accelerate degradation of esterase-responsive micelle. Compared its monomer, the PAKM micelle possessed better bioactivities, which were attributed to their synergistic effect. It enhanced the viability, autophagic activation (P62, LC3 II), ECM-related transcription factor (SOX9), and ECM (Collagen II, Aggrecan) maintenance in human ADSCs. Furthermore, it is demonstrated that the injection of PAKM with human ADSCs yielded higher disc height and water content in rats. Therefore, PAKM micelles perform promoting cell survival and differentiation effects, and may be a potential therapeutic agent for IVDD.
机译:已经证明了细胞移植对椎间盘变性(IVDD)的有希望的治疗效果。然而,退化区域中的活性氧物质(ROS)的增加将妨碍人脂肪衍生的干细胞(人ADSC)移植治疗的效率。它抑制人的ADSCs增殖,增加人类ADSCs凋亡。在此,我们首先设计了一种新型两亲共聚物PEG-PAPO,其可以自组装成纳米化胶束并负载亲脂性Kartogenin(KGN),为单个络合物(PAKM)。它是一种可注射的酯酶响应胶束,并显示KGN和Apo型(APO)的控释能力。氧化刺激促进人ADSC中的酯酶活性,其加速了酯酶响应胶束的降解。比较其单体,Pakm胶束具有更好的生物活像性,归因于其协同效应。它增强了人类ADSC中的生存能力,自噬激活(P62,LC3 II),ECM相关转录因子(SOX9)和ECM(胶原II,胶囊)维持。此外,证明具有人ADSC的PAKM的注射产生较高的椎间盘高度和大鼠水含量。因此,Pakm胶束进行促进细胞存活和分化效果,并且可以是IVDD的潜在治疗剂。

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