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载长春碱纳米粒子:一步法分子印迹技术制备,提高肿瘤靶向效率,降低毒性。

Vinblastine-Loaded Nanoparticles with Enhanced Tumor-Targeting Efficiency and Decreasing Toxicity: Developed by One-Step Molecular Imprinting Process.

机构信息

School of Traditional Chinese Medicine , Southern Medical University , Guangzhou 510515 , China.

出版信息

Mol Pharm. 2019 Jun 3;16(6):2675-2689. doi: 10.1021/acs.molpharmaceut.9b00243. Epub 2019 May 16.

Abstract

Molecularly imprinted polymers have exhibited good performance as carriers on drug loading and sustained release. In this paper, vinblastine (VBL)-loaded polymeric nanoparticles (VBL-NPs) were prepared by a one-step molecular imprinting process, avoiding the waste and incomplete removal of the template, and evaluated as targeting carriers for VBL delivery after modification. Using acryloyl amino acid comonomers and disulfide cross-linkers, VBL-NPs were synthesized and then conjugated with poly(ethylene glycol)-folate. The dynamic size of the obtained VBL-NPs-PEG-FA was 258.3 nm (PDI = 0.250), and the encapsulation efficiency was 45.82 ± 1.45%. The nanoparticles of VBL-NPs-PEG-FA were able to completely release VBL during 48 h under a mimic tumor intracellular condition (pH 4.5, 10 mM glutathione (GSH)), displaying significant redox responsiveness, whereas the release rates were much slower in the mimic body liquid (pH 7.4, 2 μM GSH) and tumor extracellular environment (pH 6.5, 2 μM GSH). Furthermore, the carriers NPs-PEG-FA, prepared without VBL, showed satisfactory intrinsic hemocompatibility, cellular compatibility, and tumor-targeting properties: they could rapidly and efficiently accumulate to folate receptor positive Hela cells and then internalized via receptor-mediated endocytosis, and the retention in tumor tissues could last for over 48 h. Interestingly, VBL-NPs-PEG-FA could evidently increase the accumulation of VBL in tumor tissues while decreasing the distribution of VBL in organs, exert similar anticancer efficacy against Hela tumors in the xenograft model of nude mice to VBL injection, and significantly improve the abnormality of liver and spleen observed in VBL injection. VBL-NPs-PEG-FA has the potential to be the delivery carrier for VBL by enhancing the tumor-targeting efficacy of VBL and decreasing toxicity to normal tissues.

摘要

分子印迹聚合物作为药物负载和缓释的载体表现出良好的性能。在本文中,通过一步分子印迹过程制备了长春碱(VBL)负载的聚合物纳米颗粒(VBL-NPs),避免了模板的浪费和不完全去除,并在修饰后评估其作为 VBL 递送的靶向载体。使用丙烯酰基氨基酸共聚单体和二硫键交联剂,合成了 VBL-NPs,然后与聚(乙二醇)-叶酸偶联。所得 VBL-NPs-PEG-FA 的动态粒径为 258.3nm(PDI=0.250),包封效率为 45.82±1.45%。在模拟肿瘤细胞内条件(pH4.5,10mM 谷胱甘肽(GSH))下,VBL-NPs-PEG-FA 纳米颗粒在 48 小时内能够完全释放 VBL,表现出显著的氧化还原响应性,而在模拟体液(pH7.4,2μM GSH)和肿瘤细胞外环境(pH6.5,2μM GSH)中的释放速率要慢得多。此外,没有负载 VBL 的载体 NPs-PEG-FA 表现出令人满意的固有血液相容性、细胞相容性和肿瘤靶向特性:它们可以快速有效地积累到叶酸受体阳性的 Hela 细胞上,然后通过受体介导的内吞作用内化,并且在肿瘤组织中的保留时间可以持续超过 48 小时。有趣的是,VBL-NPs-PEG-FA 可以明显增加 VBL 在肿瘤组织中的积累,同时减少 VBL 在器官中的分布,在裸鼠异种移植模型中对 Hela 肿瘤发挥与 VBL 注射相似的抗癌疗效,并显著改善 VBL 注射观察到的肝脾异常。VBL-NPs-PEG-FA 有可能通过增强 VBL 的肿瘤靶向疗效和降低对正常组织的毒性,成为 VBL 的递送载体。

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