Division of Physiology and Climatology, ICAR-Indian Veterinary Research Institute, Izatnagar, UP, 243122, India.
Biochemistry and Food Science Section, ICAR-Indian Veterinary Research Institute, Izatnagar, UP, 243122, India.
J Mater Sci Mater Med. 2017 Dec 4;29(1):4. doi: 10.1007/s10856-017-6008-2.
Sustained and controlled release of neurotrophic factors in target tissue through nanomaterial based delivery system could be a better strategy for nerve tissue regeneration. The present study aims to prepare the nerve growth factor (NGF) encapsulated chitosan nanoparticles (NGF-CNPs) and its evaluation on neuronal differentiation potentiality of canine bone marrow derived mesenchymal stem cells (cBM-MSCs). The NGF-CNPs were prepared by ionotropic gelation method with tripolyphosphate (TPP) as an ionic cross-linking agent. Observations on physiochemical properties displayed the size of nanoparticles as 80-90 nm with positive zeta potential as well as an ionic interaction between NGF and nanoparticle. NGF loading efficiency was found to be 61% while its sustained release was observed by an in vitro release kinetics study. These nanoparticles were found to be cytocompatible to cBM-MSCs when supplemented at a concentration upto 4 mg/ml in culture media. The NGF-CNP supplemented culture media was able to transdifferentiate the preinduced cBM-MSCs into neurons in a better way than unbound NGF supplementation. Further, it was also noticed that NGF-CNPs were able to transdifferentiate cBM-MSCs without any chemical based preinduction. In conclusion, our findings propose that NGF-CNPs are capable of releasing bioactive NGF with the ability to transdifferentiate mesenchymal stem cells into neurons, suggesting its potential future application in nerve tissue regeneration.
通过基于纳米材料的递药系统将神经营养因子在靶组织中持续和控制释放可能是促进神经组织再生的更好策略。本研究旨在制备神经生长因子(NGF)包封壳聚糖纳米粒(NGF-CNPs),并评价其对犬骨髓间充质干细胞(cBM-MSCs)向神经元分化潜能的影响。采用三聚磷酸钠(TPP)作为离子交联剂的离子凝胶化法制备 NGF-CNPs。对其物理化学性质的观察显示,纳米粒的粒径为 80-90nm,具有正zeta 电位,以及 NGF 与纳米粒之间的离子相互作用。NGF 载药效率为 61%,通过体外释放动力学研究观察到其持续释放。当在培养基中补充浓度高达 4mg/ml 时,这些纳米粒对 cBM-MSCs 表现出细胞相容性。补充有 NGF-CNP 的培养基能够比未结合的 NGF 更有效地诱导预诱导的 cBM-MSCs 向神经元分化。此外,还注意到 NGF-CNPs 能够在没有任何化学预诱导的情况下将 cBM-MSCs 向神经元分化。总之,我们的研究结果表明,NGF-CNPs 能够释放具有诱导间充质干细胞向神经元分化能力的生物活性 NGF,提示其在神经组织再生方面有潜在的应用前景。