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通过与 RAFT 合成的内溶酶体聚合物缀合,将促凋亡肽递送至细胞内。

Intracellular delivery of a proapoptotic peptide via conjugation to a RAFT synthesized endosomolytic polymer.

机构信息

Department of Bioengineering, University of Washington, Seattle Washington 98195, USA.

出版信息

Mol Pharm. 2010 Apr 5;7(2):468-76. doi: 10.1021/mp9002267.

Abstract

Peptides derived from the third B-cell lymphoma 2 (Bcl-2) homology domain (BH3) can heterodimerize with antiapoptotic Bcl-2 family members to block their activity and trigger apoptosis. Use of these peptides presents a viable anticancer approach, but delivery barriers limit the broad application of intracellular-acting peptides as clinical therapeutics. Here, a novel diblock copolymer carrier is described that confers desirable pharmaceutical properties to intracellular-acting therapeutic peptides through site-specific molecular conjugation. This polymer was prepared using reversible addition-fragmentation chain transfer (RAFT) to form a pyridyl disulfide end-functionalized, modular diblock copolymer with precisely controlled molecular weight (M(n)) and low polydispersity (PDI). The diblock polymer (M(n) 19,000 g/mol, PDI 1.27) was composed of an N-(2-hydroxypropyl) methacrylamide (HPMA) first block (M(n) 13,800 g/mol, PDI 1.13) intended to enhance water solubility and circulation time. The second polymer block was a pH-responsive composition designed to enhance endosomal escape and consisted of equimolar quantities of dimethylaminoethyl methacrylate (DMAEMA), propylacrylic acid (PAA), and butyl methacrylate (BMA). A hemolysis assay indicated that the diblock polymer undergoes a physiologically relevant pH-dependent switch from a membrane inert (1% hemolysis, pH 7.4) to a membrane disruptive (61% hemolysis, pH 5.8) conformation. Thiol-disulfide exchange reactions were found to efficiently produce reversible polymer conjugates (75 mol % peptide reactivity with polymer) with a cell-internalized proapoptotic peptide. Microscopy studies showed that peptide delivered via polymer conjugates effectively escaped endosomes and achieved diffusion into the cytosol. Peptide-polymer conjugates also produced significantly increased apoptotic activity over peptide alone in HeLa cervical carcinoma cells as found using flow cytometric measurements of mitochondrial membrane depolarization (2.5-fold increase) and cell viability tests that showed 50% cytotoxicity after 6 h of treatment with 10 muM peptide conjugate. These results indicate that this multifunctional carrier shows significant promise for proapoptotic peptide cancer therapeutics and also as a general platform for delivery of peptide drugs with intracellular targets.

摘要

肽源于第三个 B 细胞淋巴瘤 2(Bcl-2)同源结构域(BH3),可与抗凋亡 Bcl-2 家族成员异二聚化,从而阻断其活性并引发细胞凋亡。使用这些肽提供了一种可行的抗癌方法,但输送障碍限制了细胞内作用肽作为临床治疗剂的广泛应用。本文描述了一种新型的嵌段共聚物载体,通过特异性分子缀合赋予细胞内作用治疗性肽所需的药学性质。该聚合物是使用可逆加成-断裂链转移(RAFT)制备的,形成具有精确控制的分子量(M(n))和低多分散性(PDI)的吡啶二硫键端功能化的模块化嵌段共聚物。嵌段聚合物(M(n) 19,000 g/mol,PDI 1.27)由 N-(2-羟丙基)甲基丙烯酰胺(HPMA)组成第一个嵌段(M(n) 13,800 g/mol,PDI 1.13),旨在提高水溶性和循环时间。第二个聚合物嵌段是一种 pH 响应性组成部分,旨在增强内体逃逸,由等摩尔量的二甲氨基乙基甲基丙烯酰胺(DMAEMA)、丙酸丙烯酯(PAA)和丁基甲基丙烯酰胺(BMA)组成。溶血试验表明,嵌段聚合物在生理相关的 pH 依赖性转换下从膜惰性(pH 7.4 时 1%溶血)转变为膜破坏(pH 5.8 时 61%溶血)构象。发现巯基-二硫键交换反应可有效地生成可还原的聚合物缀合物(聚合物中肽的反应性为 75 mol%)与细胞内化的促凋亡肽。显微镜研究表明,通过聚合物缀合物递送的肽可有效逃离内体并扩散到细胞质中。与单独使用肽相比,肽-聚合物缀合物在 HeLa 宫颈癌细胞中还产生了明显增加的凋亡活性,这是通过流式细胞术测量线粒体膜去极化(增加 2.5 倍)和细胞活力测试来发现的,在 6 小时后用 10 μM 肽缀合物处理,显示出 50%的细胞毒性。这些结果表明,这种多功能载体在促凋亡肽癌症治疗中具有很大的应用前景,并且作为具有细胞内靶标的肽药物递送的通用平台也具有很大的应用前景。

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