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由阿霉素偶联两亲性大分子自组装形成的胶束纳米载体(DOX-AM)。

Micellar nanocarriers assembled from doxorubicin-conjugated amphiphilic macromolecules (DOX-AM).

机构信息

Department of Chemistry and Chemical Biology, Rutgers University, 610 Taylor Road, Piscataway, New Jersey 08854, USA.

出版信息

Macromol Biosci. 2010 Apr 8;10(4):415-23. doi: 10.1002/mabi.200900335.

Abstract

Amphiphilic macromolecules (AMs) have unique branched hydrophobic domains attached to linear PEG chains. AMs self-assemble in aqueous solution to form micelles that are hydrolytically stable in physiological conditions (37 degrees C, pH 7.4) over 4 weeks. Evidence of AM biodegradability was demonstrated by complete AM degradation after 6 d in the presence of lipase. Doxorubicin (DOX) was chemically conjugated to AMs via a hydrazone linker to form DOX-AM conjugates that self-assembled into micelles in aqueous solution. The conjugates were compared with DOX-loaded AM micelles (i.e., physically loaded DOX) on DOX content, micellar sizes and in vitro cytotoxicity. Physically encapsulated DOX loading was higher (12 wt.-%) than chemically bound DOX (6 wt.-%), and micellar sizes of DOX-loaded AMs (approximately 16 nm) were smaller than DOX-AMs (approximately 30 nm). In vitro DOX release from DOX-AM conjugates was faster at pH 5.0 (100%) compared to pH 7.4 (78%) after 48 h, 37 degrees C. Compared to free DOX and physically encapsulated DOX, chemically bound DOX had significantly higher cytotoxicity at 10(-7) M DOX dose against human hepatocellular carcinoma cells after 72 h. Overall, DOX-AM micelles showed promising characteristics as stable, biodegradable DOX nanocarriers.

摘要

两亲性大分子 (AMs) 具有独特的支化疏水结构域,连接在线性 PEG 链上。AMs 在水溶液中自组装形成胶束,在生理条件下(37°C,pH7.4)4 周内具有水解稳定性。在存在脂肪酶的情况下,经过 6 天,AM 完全降解,证明了 AM 的生物降解性。阿霉素(DOX)通过腙键连接到 AM 上,形成 DOX-AM 缀合物,在水溶液中自组装成胶束。将这些缀合物与 DOX 负载的 AM 胶束(即物理负载的 DOX)进行比较,比较 DOX 含量、胶束大小和体外细胞毒性。物理包封的 DOX 载药量(12wt.-%)高于化学结合的 DOX(6wt.-%),DOX 负载的 AM 胶束(约 16nm)的粒径小于 DOX-AMs(约 30nm)。在 pH5.0(100%)时,DOX-AM 缀合物中的 DOX 释放速度比在 pH7.4(78%)时更快,48 小时后,37°C。与游离 DOX 和物理包封的 DOX 相比,在 10(-7)M DOX 剂量下,化学结合的 DOX 对人肝癌细胞的细胞毒性在 72 小时后显著更高。总的来说,DOX-AM 胶束作为稳定、可生物降解的 DOX 纳米载体具有良好的特性。

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