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首页> 外文期刊>Journal of drug targeting >An in vitro demonstration of overcoming drug resistance in SKOV3 TR and MCF7 ADR with targeted delivery of polymer pro-drug conjugates
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An in vitro demonstration of overcoming drug resistance in SKOV3 TR and MCF7 ADR with targeted delivery of polymer pro-drug conjugates

机译:克服SKOV3 TR和MCF7 ADR中克服耐药性的体外展示,具有靶向递送的聚合物促药缀合物

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摘要

Drug resistance is a common phenomenon that occurs in cancer chemotherapy. Delivery of chemotherapeutic agents as polymer pro-drug conjugates (PPDCs) pretargeted with bispecific antibodies could circumvent drug resistance in cancer cells. To demonstrate this approach to overcome drug resistance, Paclitaxel (Ptxl)-resistant SKOV3 TR human ovarian- and doxorubicin (Dox)-resistant MCF7 ADR human mammary-carcinoma cell lines were used. Pre-targeting over-expressed biotin or HER2/neu receptors on cancer cells was conducted by biotinylated anti-DTPA or anti-HER2/neu affibody - anti-DTPA Fab bispecific antibody complexes. The targeting PPDCs are either D-Dox-PGA or D-Ptxl-PGA. Cytotoxicity studies demonstrate that the pretargeted approach increases cytotoxicity of Ptxl or Dox in SKOV3 TR or MCF7 ADR resistant cell lines by 5.4 and 27 times, respectively. Epifluorescent microscopy - used to track internalization of D-Dox-PGA and Dox in MCF7 ADR cells - shows that the pretargeted delivery of D-Dox-PGA resulted in a 2- to 4-fold increase in intracellular Dox concentration relative to treatment with free Dox. The mechanism of internalization of PPDCs is consistent with endocytosis. Enhanced drug delivery and intracellular retention following pretargeted delivery of PPDCs resulted in greater tumor cell toxicity in the current in vitro studies.
机译:耐药性是癌症化疗发生的常见现象。用双特异性抗体预注射化学治疗剂作为聚合物的药物缀合物(PPDC)可以在癌细胞中避免耐药性。为了证明这种克服耐药性的方法,使用紫杉醇(PTX1)-ResistantSkov3 TR人卵巢和多柔比星(DOX) - 售后MCF7 ADR人乳腺癌细胞系。通过生物素化的抗DTPA或抗HER2 / Neu Accibody - 抗DTPA Fab双特异性抗体复合物进行预靶向癌细胞上的过表达的生物素或Her2 / Neu受体。靶向PPDC是D-DOX-PGA或D-PTXL-PGA。细胞毒性研究表明,预靶向方法分别将PTX1或DOX的细胞毒性分别增加了5.4和27次。渗流显微镜 - 用于跟踪MCF7 ADR细胞中D-DOX-PGA和DOX的内化 - 显示D-DOX-PGA的预递送导致细胞内DOX浓度增加2至4倍,相对于自由处理dox。 PPDC的内化机制与内吞作用一致。在预靶向PPDC的预递送后增强药物递送和细胞内保留导致目前的体外研究中的肿瘤细胞毒性更大。

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