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T7 Peptide-Functionalized PEG-PLGA Micelles Loaded with Carmustine for Targeting Therapy of Glioma

机译:T7肽功能的PEG-PLGA胶束加载了卡莫司汀靶向治疗胶质瘤。

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Glioma is regarded as the deadliest and most common brain tumor because of the extremely difficult surgical excision ascribed from its invasive nature. In addition, the natural blood-brain barrier (BBB) greatly restricts the therapeutics penetration into the central nervous system. Carmustine (BCNU) is a widely used antiglioma drug in clinical applications. However, its serious complications prevent it from being applied in a clinical setting to some extent. Thus, it is urgent to explore novel BCNU delivery systems specially designed for glioma. Development of polymeric nanoparticles offers a favorable alternative to serve this purpose. Particularly, use of poly(lactic-co-glycolic acid) (PLGA) has been shown to be advantageous for its favorable biodegradability and biocompatibility, which ensure safe therapies. In this study, T7 peptide-conjugated, BCNU-loaded micelles were constructed successfully via the emulsion-solvent evaporation method. The micelles were characterized by transmission electron microscopy and dynamic light scattering in detail, and the capacity of BBB crossing was studied. The in vivo detecting results of the targeting effect using the BODIPY probe evidenced that T7-modified micelles showed a more pronounced accumulation and accumulated in the tumor more efficiently than in the unconjugated probe. Meanwhile, the targeting group exhibited the best curative effect accompanied with the lowest loss in body weight, the smallest tumor size, and an obviously prolonged survival time among the groups. In the near future, we believe the targeted delivery system specially designed for BCNU is expected to provide sufficient evidence to proceed to clinical trials.
机译:胶质瘤被认为是最致命和最常见的脑肿瘤,因为其侵入性使手术切除极为困难。此外,天然血脑屏障(BBB)大大限制了治疗药物向中枢神经系统的渗透。卡莫斯汀(BCNU)是临床应用中广泛使用的抗神经胶质瘤药物。但是,它的严重并发症使它在某种程度上不能用于临床。因此,迫切需要探索专门为神经胶质瘤设计的新型BCNU递送系统。聚合物纳米颗粒的开发提供了一个有利的替代选择来实现此目的。特别地,已经显示出使用聚乳酸-乙醇酸共聚物(PLGA)由于其有利的生物降解性和生物相容性,从而确保了安全的治疗是有利的。在这项研究中,通过乳液-溶剂蒸发法成功地构建了T7肽偶联的BCNU负载胶束。通过透射电子显微镜和动态光散射对胶束进行了详细表征,并研究了BBB穿越的能力。使用BODIPY探针的体内靶向作用检测结果证明,与未结合的探针相比,T7修饰的胶束显示出更明显的累积,并且在肿瘤中的累积更为有效。同时,靶向治疗组表现出最佳的疗效,同时体重减轻最低,肿瘤大小最小,并且存活时间明显延长。我们相信,在不久的将来,专为BCNU设计的靶向递送系统有望为进行临床试验提供足够的证据。

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