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Penetration of blood–brain barrier and antitumor activity and nerve repair in glioma by doxorubicin-loaded monosialoganglioside micelles system

机译:阿霉素负载的单唾液酸神经节苷脂微团系统渗透胶质瘤的血脑屏障和抗肿瘤活性及神经修复

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摘要

For the treatment of glioma and other central nervous system diseases, one of the biggest challenges is that most therapeutic drugs cannot be delivered to the brain tumor tissue due to the blood–brain barrier (BBB). The goal of this study was to construct a nanodelivery vehicle system with capabilities to overcome the BBB for central nervous system administration. Doxorubicin as a model drug encapsulated in ganglioside GM1 micelles was able to achieve up to 9.33% loading efficiency and 97.05% encapsulation efficiency by orthogonal experimental design. The in vitro study demonstrated a slow and sustainable drug release in physiological conditions. In the cellular uptake studies, mixed micelles could effectively transport into both human umbilical vein endothelial cells and C6 cells. Furthermore, biodistribution imaging of mice showed that the DiR/GM1 mixed micelles were accumulated sustainably and distributed centrally in the brain. Experiments on zebrafish confirmed that drug-loaded GM1 micelles can overcome the BBB and enter the brain. Among all the treatment groups, the median survival time of C6-bearing rats after administering DOX/GM1 micelles was significantly prolonged. In conclusion, the ganglioside nanomicelles developed in this work can not only penetrate BBB effectively but also repair nerves and kill tumor cells at the same time.
机译:对于神经胶质瘤和其他中枢神经系统疾病的治疗,最大的挑战之一是由于血脑屏障(BBB),大多数治疗药物无法递送至脑肿瘤组织。这项研究的目的是构建一种能够克服BBB的中枢神经系统管理能力的纳米运载工具系统。通过正交实验设计,将阿霉素作为模型药物封装在神经节苷脂GM1胶束中,能够实现高达9.33%的加载效率和97.05%的封装效率。体外研究表明,在生理条件下药物缓慢而可持续地释放。在细胞摄取研究中,混合的胶束可以有效地转运到人脐静脉内皮细胞和C6细胞中。此外,小鼠的生物分布成像显示DiR / GM1混合胶束可持续积累并集中分布在大脑中。在斑马鱼上进行的实验证实,载有药物的GM1胶束可以克服BBB并进入大脑。在所有治疗组中,给予DOX / GM1胶束的C6荷瘤大鼠中位生存时间显着延长。总之,在这项工作中开发的神经节苷脂纳米胶束不仅可以有效地穿透血脑屏障,而且可以同时修复神经并杀死肿瘤细胞。

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