首页> 美国卫生研究院文献>Nanomaterials >Therapeutic Delivery of rAAV sox9 via Polymeric Micelles Counteracts the Effects of Osteoarthritis-Associated Inflammatory Cytokines in Human Articular Chondrocytes
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Therapeutic Delivery of rAAV sox9 via Polymeric Micelles Counteracts the Effects of Osteoarthritis-Associated Inflammatory Cytokines in Human Articular Chondrocytes

机译:rAAV sox9通过聚合物胶束的治疗性输送抵消了人类关节炎软骨细胞中骨关节炎相关的炎性细胞因子的影响。

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摘要

Osteoarthritis (OA) is a prevalent joint disease linked to the irreversible degradation of key extracellular cartilage matrix (ECM) components (proteoglycans, type-II collagen) by proteolytic enzymes due to an impaired tissue homeostasis, with the critical involvement of OA-associated pro-inflammatory cytokines (interleukin 1 beta, i.e., IL-1β, and tumor necrosis factor alpha, i.e., TNF-α). Gene therapy provides effective means to re-establish such degraded ECM compounds by rejuvenating the altered OA phenotype of the articular chondrocytes, the unique cell population ubiquitous in the articular cartilage. In particular, overexpression of the highly specialized SOX9 transcription factor via recombinant adeno-associated viral (rAAV) vectors has been reported for its ability to readjust the metabolic balance in OA, in particular via controlled rAAV delivery using polymeric micelles as carriers to prevent a possible vector neutralization by antibodies present in the joints of patients. As little is known on the challenging effects of such naturally occurring OA-associated pro-inflammatory cytokines on such rAAV/polymeric gene transfer, we explored the capacity of polyethylene oxide (PEO) and polypropylene oxide (PPO)-based polymeric micelles to deliver a candidate rAAV-FLAG-h construct in human OA chondrocytes in the presence of IL-1β and TNF-α. We report that effective, micelle-guided rAAV overexpression enhanced the deposition of ECM components and the levels of cell survival, while advantageously reversing the deleterious effects afforded by the OA cytokines on these processes. These findings highlight the potentiality of polymeric micelles as effective rAAV controlled delivery systems to counterbalance the specific contribution of major OA-associated inflammatory cytokines, supporting the concept of using such systems for the treatment for chronic inflammatory diseases like OA.
机译:骨关节炎(OA)是一种普遍存在的关节疾病,与组织稳态平衡受损引起的蛋白水解酶导致关键的细胞外软骨基质(ECM)成分(蛋白聚糖,II型胶原蛋白)不可逆降解有关,与OA相关的前列腺素的严重参与-炎性细胞因子(白介素1β,即IL-1β,和肿瘤坏死因子α,即TNF-α)。基因疗法通过使改变的软骨细胞(在软骨中普遍存在的独特细胞群)的OA表型恢复活力,提供了有效的方法来重建这种降解的ECM化合物。特别是,已经报道了通过重组腺相关病毒(rAAV)载体过度表达高度专门化的SOX9转录因子的能力,特别是通过使用聚合胶束作为载体控制rAAV的传递来重新调节OA中代谢平衡的能力,以防止可能通过患者关节中存在的抗体进行载体中和。关于这种天然存在的与OA相关的促炎细胞因子对此类rAAV /聚合基因转移的挑战性作用知之甚少,我们探索了基于聚环氧乙烷(PEO)和聚环氧丙烷(PPO)的聚合物胶束递送脂质体的能力。 IL-1β和TNF-α存在下人OA软骨细胞中的候选rAAV-FLAG-h构建体。我们报告说,有效的,胶束引导的rAAV过表达增强了ECM组件的沉积和细胞存活的水平,同时有利地逆转了由OA细胞因子对这些过程提供的有害作用。这些发现突显了聚合物胶束作为有效的rAAV控制的递送系统来抵消主要与OA相关的炎性细胞因子的具体贡献的潜力,支持了使用此类系统治疗诸如OA之类的慢性炎性疾病的概念。

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