Department of Nuclear Medicine and Minnan PET Center, the First Affiliated Hospital of Xiamen University, Xiamen 316003, PR China.
College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, PR China.
J Mech Behav Biomed Mater. 2018 Jan;77:671-682. doi: 10.1016/j.jmbbm.2017.10.031. Epub 2017 Oct 27.
Chitosan/silk fibroin/glycerophosphate gels were loaded with nerve growth factor (NGF) and further processed into multi-tubule fillers. NGF was loaded into the fillers in such a way so that a NGF gradient was established longitudinally along the filler length. A type of poly(lactide-co-glycolide)(PLGA)/chitosan(CH) porous conduit was fabricated using a pre-crosslinking method. The filler was fully filled into the lumen of conduits to build multi-tubule conduit-filler constructs that are intended for long-gap peripheral nerve repair. In vitro degradation in a lysozyme-contained medium revealed that constructs had degradation-tolerant features and the optimized multi-tubule filler was capable of maintaining its multi-tubules unblocked for around 10-week. After being degraded for various periods up to 8 weeks, the optimal conduit-filler constructs showed confirmative ability to retain their compressive load, deformation recovery and tensile strength at about 80N/m, 75% and 15N/cm in wet state, respectively. The constructs were able to administer NGF release and to maintain persistent NGF gradients longitudinally distributed inside the PLGA/CH conduit for about 6 weeks or even longer. The PC12 cell neurite extension assay confirmed that the presently developed multi-tubule conduit-filler constructs were reliable for effectively preserving the bioactivity of released NGF.
壳聚糖/丝素/甘油磷酸酯水凝胶负载神经生长因子(NGF),并进一步加工成多管填充物。以这样的方式将 NGF 加载到填充物中,使得沿着填充物长度建立了 NGF 浓度梯度。使用预交联方法制备了一种聚(乳酸-共-乙醇酸)(PLGA)/壳聚糖(CH)多孔导管。将填充物完全填充到导管的内腔中,以构建用于长间隙周围神经修复的多管导管-填充物结构。在含有溶菌酶的介质中的体外降解表明,构建体具有降解耐受特性,并且优化的多管填充物能够保持其多管畅通无阻约 10 周。在降解了 8 周的各种时间段后,优化的导管-填充物结构表现出保持其压缩负载、变形恢复和湿状态下约 80N/m、75%和 15N/cm 的拉伸强度的确认能力。构建体能够进行 NGF 释放,并在 PLGA/CH 导管内保持持续的 NGF 浓度梯度分布,持续约 6 周或更长时间。PC12 细胞突起延伸测定证实,目前开发的多管导管-填充物结构可靠,能够有效地保持释放的 NGF 的生物活性。