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用于细胞内递送促凋亡肽的酶可裂解聚合物胶束

Enzyme-Cleavable Polymeric Micelles for the Intracellular Delivery of Proapoptotic Peptides.

作者信息

Kern Hanna B, Srinivasan Selvi, Convertine Anthony J, Hockenbery David, Press Oliver W, Stayton Patrick S

机构信息

Department of Bioengineering and Molecular Engineering and Sciences Institute, University of Washington , Seattle, Washington 98195, United States.

Fred Hutchinson Cancer Research Center , Seattle, Washington 98108, United States.

出版信息

Mol Pharm. 2017 May 1;14(5):1450-1459. doi: 10.1021/acs.molpharmaceut.6b01178. Epub 2017 Mar 30.

Abstract

Peptides derived from the third Bcl-2 homology domain (BH3) renormalize apoptotic signaling by antagonizing prosurvival Bcl-2 family members. These potential peptide drugs exhibit therapeutic activities but are limited by barriers including short circulation half-lives and poor penetration into cells. A diblock polymeric micelle carrier for the BIM BH3 peptide was recently described that demonstrated antitumor activity in a B-cell lymphoma xenograft model [Berguig et al., Mol. Ther. 2015, 23, 907-917]. However, the disulfide linkage used to conjugate the BIM peptide was shown to have nonoptimal blood stability. Here we describe a peptide macromonomer composed of BIM capped with a four amino acid cathepsin B substrate (FKFL) that possesses high blood stability and is cleaved to release the drug inside of target cells. Employing RAFT polymerization, the peptide macromonomer was directly integrated into a multifunctional diblock copolymer tailored for peptide delivery. The first polymer block was made as a macro-chain transfer agent (CTA) and composed of a pH-responsive endosomolytic formulation of N,N-diethylaminoethyl methacrylate (DEAEMA) and butyl methacrylate (BMA). The second polymer block was a copolymer of the peptide and polyethylene glycol methacrylate (PEGMA). PEGMA monomers of two sizes were investigated (300 Da and 950 Da). Protein gel analysis, high performance liquid chromatography, and coupled mass spectrometry (MS) showed that incubation with cathepsin B specifically cleaved the FKFL linker and released active BIM peptide with PEGMA but not with PEGMA. MALDI-TOF MS showed that incubation of the peptide monomers alone in human serum resulted in partial cleavage at the FKFL linker after 12 h. However, formulation of the peptides into polymers protected against serum-mediated peptide degradation. Dynamic light scattering (DLS) demonstrated pH-dependent micelle disassembly (25 nm polymer micelles at pH 7.4 versus 6 nm unimers at pH 6.6), and a red blood cell lysis assay showed a corresponding increase in membrane destabilizing activity (<1% lysis at pH 7.4 versus 95% lysis at pH 6.6). The full carrier-drug system successfully induced apoptosis in SKOV3 ovarian cancer cells in a dose-dependent manner, in comparison to a control polymer containing a scrambled BIM peptide sequence. Mechanistic analysis verified target-dependent activation of caspase 3/7 activity (8.1-fold increase), and positive annexin V staining (72% increase). The increased blood stability of this enzyme-cleavable peptide polymer design, together with the direct polymerization approach that eliminated postsynthetic conjugation steps, suggests that this new carrier design could provide important benefits for intracellular peptide drug delivery.

摘要

源自第三个Bcl-2同源结构域(BH3)的肽通过拮抗促生存Bcl-2家族成员使凋亡信号正常化。这些潜在的肽类药物具有治疗活性,但受到包括循环半衰期短和细胞穿透性差等障碍的限制。最近描述了一种用于BIM BH3肽的双嵌段聚合物胶束载体,其在B细胞淋巴瘤异种移植模型中显示出抗肿瘤活性[Berguig等人,《分子治疗》,2015年,23卷,907 - 917页]。然而,用于连接BIM肽的二硫键显示出血液稳定性不佳。在此,我们描述了一种由BIM与四氨基酸组织蛋白酶B底物(FKFL)封端组成的肽大分子单体,其具有高血液稳定性,并在靶细胞内被切割以释放药物。采用可逆加成 - 断裂链转移(RAFT)聚合,肽大分子单体被直接整合到为肽递送量身定制的多功能双嵌段共聚物中。第一个聚合物嵌段制成宏观链转移剂(CTA),由甲基丙烯酸N,N - 二乙氨基乙酯(DEAEMA)和甲基丙烯酸丁酯(BMA)的pH响应性内溶酶制剂组成。第二个聚合物嵌段是肽与聚乙二醇甲基丙烯酸酯(PEGMA)的共聚物。研究了两种大小的PEGMA单体(300 Da和950 Da)。蛋白质凝胶分析、高效液相色谱和耦合质谱(MS)表明,与组织蛋白酶B孵育可特异性切割FKFL连接子,并释放与PEGMA结合的活性BIM肽,而与另一种PEGMA结合时则不然。基质辅助激光解吸电离飞行时间质谱(MALDI - TOF MS)表明,将肽单体单独在人血清中孵育12小时后,FKFL连接子处会发生部分切割。然而,将肽配制成聚合物可防止血清介导的肽降解。动态光散射(DLS)表明胶束具有pH依赖性解离(pH 7.4时为25 nm聚合物胶束,pH 6.6时为6 nm单体),红细胞裂解试验表明膜去稳定活性相应增加(pH 7.4时裂解率<1%,pH 时裂解率为95%)。与含有乱序BIM肽序列的对照聚合物相比,完整的载体 - 药物系统成功地以剂量依赖性方式诱导SKOV3卵巢癌细胞凋亡。机制分析证实了caspase 3/7活性的靶依赖性激活(增加8.1倍)和膜联蛋白V阳性染色(增加72%)。这种可酶切肽聚合物设计的血液稳定性提高,以及消除合成后偶联步骤的直接聚合方法,表明这种新的载体设计可为细胞内肽药物递送提供重要益处。 6.6

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