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通过聚乙二醇间隔物将C225位点特异性缀合到聚(L-谷氨酸)上,使阿霉素靶向表皮生长因子受体。

Targeting doxorubicin to epidermal growth factor receptors by site-specific conjugation of C225 to poly(L-glutamic acid) through a polyethylene glycol spacer.

作者信息

Vega Javier, Ke Shi, Fan Zhen, Wallace Sidney, Charsangavej Chusilp, Li Chun

机构信息

Division of Diagnostic Imaging, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Pharm Res. 2003 May;20(5):826-32. doi: 10.1023/a:1023454107190.

Abstract

PURPOSE

Targeted delivery of chemotherapeutic agents through antibody-polymer conjugates has met with limited success. One of the limiting factors is the loss of antibody's binding affinity upon conjugation with polymeric carriers because of lack of control over the number and site of attachment. This study aims to synthesize monovalent polymeric immunoconjugates through site-specific conjugation and to evaluate the in vitro binding activities of the resulting construct.

METHODS

Antibody C225 against epidermal growth factor receptors was coupled to the terminus of a doxorubicin-bound block copolymer, poly(L-glutamic acid)-co-polyethylene glycol (PG-PEG). Western blot analysis, confocal fluorescent microscopy, and cytotoxicity assay were performed to confirm the specific binding of C225-PEG-PG-Dox to EGFR.

RESULTS

C225 was conjugated to PEG-PG-doxorubicin conjugates by reacting sulfhydryl group introduced to C225 with vinylsulfone group introduced at the terminus of PEG-PG block copolymer. Polymeric immunoconjugate C225-PEG-PG-Dox, but not control (i.e., conjugate without antibody), selectively bound to human vulvar squamous carcinoma A431 cells that overexpress epidermal growth factor receptors. Receptor-mediated uptake of C225-PEG-PG-Dox occurred rapidly (within 5 min), whereas nonspecific uptake of PEG-PG-Dox required an extended period of time (24 h) to internalize. Binding of C225-PEG-PG-Dox to A431 cells could be blocked by pretreatment with C225 antibody. C225-PEG-PG-Dox was more potent than free doxrubicin in inhibiting the growth of A431 cells after a 6-h exposure period.

CONCLUSION

Site-specific conjugation of a monoclonal antibody to the terminus of a polymeric carrier enhances receptor-mediated delivery of anticancer agents.

摘要

目的

通过抗体 - 聚合物偶联物实现化疗药物的靶向递送,成效有限。限制因素之一是由于缺乏对连接数量和位点的控制,抗体与聚合物载体偶联后其结合亲和力丧失。本研究旨在通过位点特异性偶联合成单价聚合物免疫偶联物,并评估所得构建体的体外结合活性。

方法

将抗表皮生长因子受体的抗体C225与阿霉素结合的嵌段共聚物聚(L - 谷氨酸)- 聚乙二醇(PG - PEG)的末端偶联。进行蛋白质免疫印迹分析、共聚焦荧光显微镜检查和细胞毒性测定,以确认C225 - PEG - PG - Dox与表皮生长因子受体的特异性结合。

结果

通过使引入C225的巯基与PEG - PG嵌段共聚物末端引入的乙烯砜基团反应,将C225偶联到PEG - PG - 阿霉素偶联物上。聚合物免疫偶联物C225 - PEG - PG - Dox,而非对照物(即无抗体的偶联物),选择性地结合到过表达表皮生长因子受体的人外阴鳞状细胞癌A431细胞上。受体介导的C225 - PEG - PG - Dox摄取迅速(5分钟内)发生,而PEG - PG - Dox的非特异性摄取需要较长时间(24小时)才能内化。用C225抗体预处理可阻断C225 - PEG - PG - Dox与A431细胞的结合。在暴露6小时后,C225 - PEG - PG - Dox在抑制A431细胞生长方面比游离阿霉素更有效。

结论

单克隆抗体与聚合物载体末端的位点特异性偶联增强了受体介导的抗癌药物递送。

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