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首页> 外文期刊>Bioconjugate Chemistry >Development of a Folate Receptor (FR)-Targeted Indenoisoquinoline Using a pH-Sensitive N-Ethoxybenzylimidazole (NEBI) Bifunctional Cross-Linker
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Development of a Folate Receptor (FR)-Targeted Indenoisoquinoline Using a pH-Sensitive N-Ethoxybenzylimidazole (NEBI) Bifunctional Cross-Linker

机译:使用pH敏感的N-乙氧基苄基咪唑(NEBI)双功能交联剂开发针对叶酸受体(FR)的茚并异喹啉

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摘要

This Communication describes the synthesis and evaluation of a folate-conjugated drug delivery system (DDS) that incorporates an acid-sensitive N-efhoxybenzylimidazole (NEBI) bifunctional linker and a novel imidazole-containing indenoisoquinoline. Indenoisoquinolines are a class of TOPI inhibitors that exhibit broad anticancer activity. Here, we examined whether a DDS that comprised an indenoisoquinoline attached to a folate moiety could help target activity to cancer cells that naturally overexpress the folate receptor (FR), thereby increasing the specificity of these compounds. Evaluation of the DDS revealed an 11-fold increased toxicity in folate receptor (FR)-overexpressing cells compared to in FR-knockdown cancer cells. Microscopy studies demonstrate enhanced internalization and localization of the DDS in acidic lysosomal compartments of FR-overexpressing cells, supporting a receptor-mediated mechanism for uptake and activation. Together with control experiments, the results support that the cytotoxic activity of this DDS is dependent on both the presence of the folate group as well as the presence of the acid-sensitive hydrolyzable group. This work represents the first example of a cell receptor-targeted indenoisoquinoline, which could help pave the way for the use of this class of compounds in anticancer therapy.
机译:该来文描述了叶酸偶联药物递送系统(DDS)的合成和评估,该系统结合了对酸敏感的N-乙氧基苄基咪唑(NEBI)双功能接头和新型含咪唑的茚并异喹啉。茚并异喹啉是一类具有广泛抗癌活性的TOPI抑制剂。在这里,我们检查了包含连接至叶酸部分的茚并异喹啉的DDS是否可以帮助靶向天然过表达叶酸受体(FR)的癌细胞的活性,从而提高这些化合物的特异性。对DDS的评估表明,与FR-knockdown癌细胞相比,叶酸受体(FR)过表达的细胞毒性提高了11倍。显微镜研究表明,DDS在FR过表达细胞的酸性溶酶体区室中增强了内化和定位,支持了受体介导的摄取和激活机制。与对照实验一起,结果支持该DDS的细胞毒性活性取决于叶酸基团的存在以及酸敏感性可水解基团的存在。这项工作代表了以细胞受体为目标的茚并异喹啉的第一个例子,这可以为在抗癌治疗中使用此类化合物铺平道路。

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