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用于细胞特异性药物靶向的抗CD20抗体减少的HPMA共聚物缀合物。I. 结合效力和细胞生长抑制活性的合成及体外评估。

HPMA copolymer conjugates with reduced anti-CD20 antibody for cell-specific drug targeting. I. Synthesis and in vitro evaluation of binding efficacy and cytostatic activity.

作者信息

Etrych Tomás, Strohalm Jirí, Kovár Lubomír, Kabesová Martina, Ríhová Blanka, Ulbrich Karel

机构信息

Institute of Macromolecular Chemistry, Academy of Sciences of the Czech Republic, Heyrovský Sq. 2, 162 06 Prague 6, Czech Republic.

出版信息

J Control Release. 2009 Nov 16;140(1):18-26. doi: 10.1016/j.jconrel.2009.07.011. Epub 2009 Jul 24.

Abstract

Synthesis, physicochemical and biological properties and preliminary anticancer activity of new star-shaped polymer-doxorubicin (DOX) conjugates targeted with anti-CD20 monoclonal antibody were investigated. Mild reduction of antibody (Ab) with dithiothreitol (DTT) resulted in introduction of thiol groups into Ab. Polymer precursors used for the synthesis of the conjugates were based on N-(2-hydroxypropyl)methacrylamide (HPMA) copolymers with a functional group at the polymer chain end. The copolymers were linked to the thiol groups of the reduced Ab via one-point attachment forming a star-shaped structure with central antibody surrounded by hydrophilic polymer chains. Neither reduction nor polymer modification of Ab influenced binding activity of the Ab to its specific cancer cell membrane antigen as it was confirmed in vitro by standard flow cytometry. The anticancer drug DOX was attached to the HPMA copolymer chain in an Ab-polymer system via a pH-labile hydrazone linkage or via an oligopeptide sequence degradable by lysosomal enzymes. Such Ab-polymer-DOX conjugates were fairly stable in aqueous solution at pH 7.4 and the drug was readily released in mildly acid environment at pH 5-5.5 by hydrolysis of hydrazone bond or more slowly by enzymolysis with lysosomal enzymes. The cytostatic activity of the anti-CD20 monoclonal Ab-targeted conjugates tested on several CD20-positive or negative human and mouse cancer cell lines confirmed considerable targeting capacity of the monoclonal Ab after its binding to the polymer carrier. New method of synthesis of star antibody-targeted polymer-drug conjugates with pH-controlled drug release described in this paper opens new perspectives for development of new therapeutics intended for cancer therapy.

摘要

研究了以抗CD20单克隆抗体为靶向的新型星形聚合物-阿霉素(DOX)偶联物的合成、理化性质、生物学性质及初步抗癌活性。用二硫苏糖醇(DTT)对抗体(Ab)进行温和还原,可将巯基引入Ab。用于合成偶联物的聚合物前体基于在聚合物链末端带有官能团的N-(2-羟丙基)甲基丙烯酰胺(HPMA)共聚物。共聚物通过单点连接与还原型Ab的巯基相连,形成一种星形结构,中心为抗体,周围是亲水性聚合物链。正如通过标准流式细胞术在体外所证实的,Ab的还原和聚合物修饰均未影响Ab与其特异性癌细胞膜抗原的结合活性。抗癌药物DOX通过pH敏感的腙键或通过溶酶体酶可降解的寡肽序列连接到Ab-聚合物体系中的HPMA共聚物链上。这种Ab-聚合物-DOX偶联物在pH 7.4的水溶液中相当稳定,在pH 5-5.5的微酸性环境中,通过腙键水解,药物可快速释放,或通过溶酶体酶的酶解作用缓慢释放。在几种CD20阳性或阴性的人和小鼠癌细胞系上测试的抗CD20单克隆抗体靶向偶联物的细胞抑制活性证实,单克隆抗体与聚合物载体结合后具有相当大的靶向能力。本文描述的具有pH控制药物释放功能的星形抗体靶向聚合物-药物偶联物的新合成方法为开发用于癌症治疗的新疗法开辟了新的前景。

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