Li Lingli, Deng Fen, Qiu Haijun, Li Yao, Gong Zan, Wang Lei, Wang Jingjie, Wu Wencan, Nan Kaihui
School of Ophthalmology & Optometry, Affiliated Eye Hospital, Wenzhou Medical University Zhejiang Province P. R. China
State Key Laboratory of Ophthalmology, Optometry and Visual Science Zhejiang Province P. R. China.
RSC Adv. 2021 Jun 28;11(37):22761-22772. doi: 10.1039/d0ra10362d. eCollection 2021 Jun 25.
Traumatic optic neuropathy (TON) describes an injury to the optic nerve following either blunt or penetrating trauma, and remains an important cause of vision loss. No generalized treatment of TON has been established so far to restore the injured optic nerve. We developed an adherent drug-encapsulated bi-layered depot (DBP) as a dual drug vehicle for local treatment to protect the residual retinal ganglion cells (RGCs) and regenerate axons following optic nerve damage. The inner layer of the depot was prepared by co-electrospinning poly(d,l-lactide--glycolide acid) (PLGA: 75 : 25) and collagen (COL) with the hydrophobic corticosteroid triamcinolone acetonide (TA) loaded. The outer layer was made of PLGA and the hydrophilic neuroprotective agent Fasudil (FA). The DBP showed suitable morphology, hydrophilicity and mechanical properties, and slowly released TA and FA by undergoing time-dependent degradation and swelling. All depots showed good biocompatibility with L929 mouse fibroblasts, and DBP was helpful in maintaining the morphology of RGCs . In addition, direct implantation of DBP at the injured optic nerve in a rat model mitigated inflammation and the death of RGCs, and increased the expression of nerve growth-related protein GAP-43. Therefore, DBP maybe a promising local therapy against TON in future.
创伤性视神经病变(TON)是指钝性或穿透性创伤后对视神经造成的损伤,仍是视力丧失的重要原因。目前尚未确立恢复受损视神经的TON通用治疗方法。我们开发了一种附着有药物的双层贮库(DBP)作为局部治疗的双药载体,以保护残留的视网膜神经节细胞(RGC)并在视神经损伤后使轴突再生。贮库的内层通过将聚(d,l-丙交酯-乙交酯酸)(PLGA:75 : 25)和胶原蛋白(COL)与负载疏水皮质类固醇曲安奈德(TA)共电纺丝制备而成。外层由PLGA和亲水性神经保护剂法舒地尔(FA)制成。DBP具有合适的形态、亲水性和机械性能,并通过时间依赖性降解和肿胀缓慢释放TA和FA。所有贮库均显示出与L929小鼠成纤维细胞具有良好的生物相容性,并且DBP有助于维持RGC的形态。此外,在大鼠模型中,将DBP直接植入受损的视神经可减轻炎症和RGC的死亡,并增加神经生长相关蛋白GAP-43的表达。因此,DBP可能是未来治疗TON的一种有前景的局部疗法。