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通过一种用于肿瘤靶向细胞内药物递送的全合一聚合物-脂质缀合物构建稳定的 MMP2 响应性多功能聚合物胶束。

Building Stable MMP2-Responsive Multifunctional Polymeric Micelles by an All-in-One Polymer-Lipid Conjugate for Tumor-Targeted Intracellular Drug Delivery.

机构信息

Department of Pharmaceutical Sciences, Irma Lerma Rangel College of Pharmacy, Texas A&M University Health Science Center , Kingsville, Texas 78363, United States.

Department of Pharmaceutics, College of Pharmacy, Shenyang Pharmaceutical University , Shenyang 110016, Liaoning, China.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 27;9(38):32520-32533. doi: 10.1021/acsami.7b09511. Epub 2017 Sep 13.

DOI:10.1021/acsami.7b09511
PMID:28870072
Abstract

In this study, we described an "all-in-one" polymer-lipid conjugate (PEG2k-ppTAT-PEG1k-PE) that could self-assemble to matrix metalloproteinase 2 (MMP2)-sensitive multifunctional micelles. The assembled micelles had several key features, including a protective long chain poly(ethylene glycol) (PEG2k) (the outer shell), an MMP2-sensitive peptide linker (pp) (the tumor-targeting middle layer), a trans-activating transcriptional activator (TAT) peptide (the cell-penetrating middle layer), and a stable PEG1k-PE micelle for drug loading (the inner core). In the absence of MMP2, the PEG2k-ppTAT-PEG1k-PE micelles were intact and showed low bioactivity due to the surface-anchored PEG2k, whereas in the presence of MMP2, the pp was cleaved, resulting in the PEG2k deshielding and exposure of the previously hidden TAT for enhanced intracellular drug delivery. Even if completely cleaved by MMP2, the remaining PEG1k-PE micelles were stable and the micelles' particle size and drug release were not significantly influenced. The paclitaxel (PTX)-loaded PEG2k-ppTAT-PEG1k-PE micelles showed significant MMP2-dependent cellular uptake, tumor penetration, and anticancer activity in various cancer cells and three-dimensional multicellular spheroids. Because of the enhanced intracellular drug accumulation, these multifunctional micelles were able to sensitize the drug-resistant cancer cells and their spheroids to PTX treatments. Furthermore, in vivo tumor uptake and retention data indicated that the PEG2k-ppTAT-PEG1k-PE micelles could dramatically increase the residence time of their payloads in the tumor.

摘要

在这项研究中,我们描述了一种“一体化”的聚合物-脂质缀合物(PEG2k-ppTAT-PEG1k-PE),它可以自组装成基质金属蛋白酶 2(MMP2)敏感的多功能胶束。组装的胶束具有几个关键特征,包括一个保护性的长链聚乙二醇(PEG2k)(外壳)、一个 MMP2 敏感的肽接头(pp)(肿瘤靶向中间层)、一个转录激活因子(TAT)肽(细胞穿透中间层)和一个稳定的 PEG1k-PE 胶束用于载药(内核)。在没有 MMP2 的情况下,PEG2k-ppTAT-PEG1k-PE 胶束是完整的,由于表面锚定的 PEG2k,显示出低的生物活性,而在存在 MMP2 的情况下,pp 被切割,导致 PEG2k 去屏蔽和先前隐藏的 TAT 暴露,以增强细胞内药物传递。即使被 MMP2 完全切割,剩余的 PEG1k-PE 胶束仍然稳定,并且胶束的粒径和药物释放没有显著影响。载紫杉醇(PTX)的 PEG2k-ppTAT-PEG1k-PE 胶束在各种癌细胞和三维多细胞球体中表现出显著的 MMP2 依赖性细胞摄取、肿瘤穿透和抗癌活性。由于细胞内药物积累的增加,这些多功能胶束能够使耐药癌细胞及其球体对 PTX 治疗敏感。此外,体内肿瘤摄取和保留数据表明,PEG2k-ppTAT-PEG1k-PE 胶束可以显著增加其载药在肿瘤中的停留时间。

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