Rey-Rico Ana, Venkatesan Jagadeesh K, Schmitt Gertrud, Concheiro Angel, Madry Henning, Alvarez-Lorenzo Carmen, Cucchiarini Magali
Center of Experimental Orthopedics, Saarland University Medical Center, Homburg, Germany.
Department of Pharmacology, Pharmacy and Pharmaceutical Technology, R+ DPharma Group (GI-1645), Facultad de Farmacia and Health Research Institute of Santiago de Compostela (IDIS), Universidade de Santiago de Compostela, Santiago de Compostela, Spain.
Int J Nanomedicine. 2017 Sep 19;12:6985-6996. doi: 10.2147/IJN.S144579. eCollection 2017.
Recombinant adeno-associated virus (rAAV) vectors are clinically adapted vectors to durably treat human osteoarthritis (OA). Controlled delivery of rAAV vectors via polymeric micelles was reported to enhance the temporal and spatial presentation of the vectors into their targets. Here, we tested the feasibility of delivering rAAV vectors via poly (ethylene oxide) (PEO) and poly (propylene oxide) (PPO) (poloxamer and poloxamine) polymeric micelles as a means to overexpress the therapeutic factor transforming growth factor-beta (TGF-β) in human OA chondrocytes and in experimental human osteochondral defects. Application of rAAV-human transforming growth factor-beta using such micelles increased the levels of TGF-β transgene expression compared with free vector treatment. Overexpression of TGF-β with these systems resulted in higher proteoglycan deposition and increased cell numbers in OA chondrocytes. In osteochondral defect cultures, a higher deposition of type-II collagen and reduced hypertrophic events were noted. Delivery of therapeutic rAAV vectors via PEO-PPO-PEO micelles may provide potential tools to remodel human OA cartilage.
重组腺相关病毒(rAAV)载体是临床上用于持久治疗人类骨关节炎(OA)的载体。据报道,通过聚合物胶束控制递送rAAV载体可增强载体在其靶标的时间和空间呈现。在此,我们测试了通过聚环氧乙烷(PEO)和聚环氧丙烷(PPO)(泊洛沙姆和泊洛沙明)聚合物胶束递送rAAV载体的可行性,以此作为在人OA软骨细胞和实验性人骨软骨缺损中过表达治疗因子转化生长因子-β(TGF-β)的一种手段。与游离载体处理相比,使用此类胶束应用rAAV-人转化生长因子-β可提高TGF-β转基因表达水平。用这些系统过表达TGF-β可导致OA软骨细胞中蛋白聚糖沉积增加和细胞数量增多。在骨软骨缺损培养物中,观察到II型胶原沉积增加且肥大事件减少。通过PEO-PPO-PEO胶束递送治疗性rAAV载体可能为重塑人类OA软骨提供潜在工具。