Department of Spine Surgery, Nanfang Hospital Affiliated to Southern Medical University. Guangzhou, Guangdong, China.
Department of Orthopedics, The Third Affiliated Hospital of Guangzhou Medical University, Guangzhou, Guangdong, China.
J Appl Biomater Funct Mater. 2020 Jan-Dec;18:2280800020978505. doi: 10.1177/2280800020978505.
Methylprednisolone sodium phosphate (MP) is an anti-inflammatory corticosteroid which is used in the treatment of spinal cord injury (SCI), however the overdose of MP has toxic effects Therefore it is prerequisite to develop novel approaches to overcome the side effects of MP and enhance its efficacy. In the present work, we have developed alkaline phosphatase (ALP) trigger self-assembly system of oligopeptides to physically entrap and locally deliver MP. The synthesis of Nap-Phe-Phe-Tyr(HPO)-OH (1P) was achieved using solid phase peptide synthesis and was characterized using mass spectroscopy. The 1P is a hydrogelator, which in presence of ALP self-assembles to form the hydrogel. During the self-assembly of 1P, MP was physically entrapped without losing the physical strength of hydrogel as revealed in the rheology study. The consistency of this hydrogel and the structure was characterized using circular dichroism. The MP was released from the hydrogel in a sustain manner and 80% of the drug release was observed at 120 h. The MP + 1P were non-toxic to the cells at lower concentration however toxicity increases with the increase in concentration of MP. Further, the in-vivo administration of MP + 1P significantly reduces the pro-inflammatory cytokines and the histological analysis revealed improvement in the SCI. In conclusion, it could be stated that the synthesis of 1P for the delivery of MP provides the novel opportunity in for the treatment of SCI.
注射用甲泼尼龙琥珀酸钠(MP)是一种抗炎皮质类固醇,用于治疗脊髓损伤(SCI),但 MP 过量有中毒作用。因此,开发新的方法来克服 MP 的副作用并提高其疗效是前提。在本工作中,我们开发了碱性磷酸酶(ALP)触发的寡肽自组装系统,以物理包埋和局部递送 MP。采用固相肽合成法合成了 Nap-Phe-Phe-Tyr(HPO)-OH(1P),并采用质谱法进行了表征。1P 是一种水凝胶剂,在 ALP 存在下自组装形成水凝胶。在 1P 的自组装过程中,MP 被物理包埋,而不会失去水凝胶的物理强度,如流变学研究所示。该水凝胶的稠度和结构用圆二色性进行了表征。MP 以可持续的方式从水凝胶中释放出来,在 120 小时观察到 80%的药物释放。MP+1P 在较低浓度时对细胞无毒,但随着 MP 浓度的增加,毒性增加。此外,MP+1P 的体内给药可显著减少促炎细胞因子,组织学分析显示 SCI 得到改善。总之,可以说 1P 用于递送 MP 的合成提供了 SCI 治疗的新机会。