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Sustained Release of Bone Morphogenetic Protein 2 via Coacervate improves Muscle Derived Stem Cell Mediated Cartilage Regeneration in MIA-induced Osteoarthritis

机译:通过凝聚层持续释放骨形态发生蛋白2改善了MIA诱导的骨关节炎中肌肉衍生的干细胞介导的软骨再生。

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摘要

Objectives:Individuals who participate in sports have an increased risk of osteoarthritis (OA), characterized by articular cartilage degeneration. Currently, there is no cure for OA with treatment aimed at symptom relief and improved function. Muscle-derived stem cells (MDSCs) have been shown to exhibit long-term proliferation, high self-renewal, and multipotent differentiation capabilities in vitro. Previously, we have demonstrated that murine MDSCs retrovirally transduced to express chondrogenic proteins (BMPs) differentiate into chondrocytes and enhance cartilage repair in vivo. Direct injection of therapeutic proteins can promote cartilage healing; however, they have relatively short half-lives requiring muitiple injections of high dosages. This presents a challenge in terms of maintaining adequate local BMP levels and could negatively affect both injured and normal structures and lead to side effects such as osteophyte formation. Gene therapy is a promising approach that addresses this problem; however, its utilization in clinical applications is much further down the road. In order to circumvent viral transduction of cells for cartilage regeneration, we developed a unique growth factor delivery platform comprised of native heparin and a synthetic polycation, poly(ethylene argininylaspartate diglyceride) (PEAD) incorporated with BMP2 (BMP2 coacervate). In this study, we show that sustained delivery of BMP2 via a BMP2 coacervate can induce the differentiation of MDSCs to a chondrocyte lineage for in vivo cartilage regeneration and healing in a Monoiodoacetate (MIA)-induced osteoarthritis model.
机译:目的:参加运动的人发生骨关节炎(OA)的风险增加,以关节软骨变性为特征。目前,尚无以缓解症状和改善功能为目的的OA疗法。肌肉来源的干细胞(MDSC)已显示出体外长期增殖,高自我更新和多能分化能力。以前,我们已经证明,逆转录转导表达软骨生成蛋白(BMP)的鼠MDSC分化为软骨细胞并增强体内软骨修复。直接注射治疗性蛋白质可促进软骨愈合;但是,它们的半衰期较短,需要多次大剂量注射。这对维持足够的局部BMP水平提出了挑战,并且可能对受伤的结构和正常结构产生负面影响,并导致诸如骨赘形成的副作用。基因疗法是解决这一问题的有前途的方法。但是,它在临床应用中的应用还远远不够。为了绕过细胞的病毒转导以实现软骨再生,我们开发了一个独特的生长因子递送平台,该平台由天然肝素和与BMP2(BMP2凝聚层)结合的合成聚阳离子,聚(乙二醇精氨酰天冬氨酸二甘油酯)(PEAD)组成。在这项研究中,我们表明通过BMP2凝聚层持续递送BMP2可以诱导MDSCs分化为软骨细胞谱系,以便在单碘乙酸盐(MIA)诱导的骨关节炎模型中进行体内软骨再生和愈合。

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