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Design of new acid-activated cell-penetrating peptides for tumor drug delivery

机译:用于肿瘤药物递送的新型酸活化细胞穿透肽的设计

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摘要

TH(AGYLLGHINLHHLAHL(Aib)HHIL-NH2), a histidine-rich, cell-penetrating peptide with acid-activated pH response, designed and synthesized by our group, can effectively target tumor tissues with an acidic extracellular environment. Since the protonating effect of histidine plays a critical role in the acid-activated, cell-penetrating ability of TH, we designed a series of new histidine substituents by introducing electron donating groups (Ethyl, Isopropyl, Butyl) to the C-2 position of histidine. This resulted in an enhanced pH-response and improved the application of TH in tumor-targeted delivery systems. The substituents were further utilized to form the corresponding TH analogs (Ethyl-TH, Isopropyl-TH and Butyl-TH), making them easier to protonate for positive charge in acidic tumor microenvironments. The pH-dependent cellular uptake efficiencies of new TH analogs were further evaluated using flow cytometry and confocal laser scanning microscopy, demonstrating that ethyl-TH and butyl-TH had an optimal pH-response in an acidic environment. Importantly, the new TH analogs exhibited relatively lower toxicity than TH. In addition, these new TH analogs were linked to the antitumor drug camptothecin (CPT), while butyl-TH modified conjugate presented a remarkably stronger pH-dependent cytotoxicity to cancer cells than TH and the other conjugates. In short, our work opens a new avenue for the development of improved acid-activated, cell-penetrating peptides as efficient anticancer drug delivery vectors.
机译:由我们小组设计和合成的TH(AGYLLGHINLHHLAHL(Aib)HHIL-NH2)是一种富含组氨酸的细胞穿透肽,具有酸激活的pH响应,可以有效地靶向酸性细胞外环境的肿瘤组织。由于组氨酸的质子化作用在TH的酸活化细胞穿透能力中起着关键作用,因此我们通过将给电子基团(乙基,异丙基,丁基)引入到C的C-2位,设计了一系列新的组氨酸取代基。组氨酸。这导致了增强的pH响应,并改善了TH在肿瘤靶向递送系统中的应用。所述取代基还用于形成相应的TH类似物(乙基-TH,异丙基-TH和丁基-TH),使它们在酸性肿瘤微环境中更易于质子化以产生正电荷。使用流式细胞仪和共聚焦激光扫描显微镜进一步评估了新的TH类似物的pH依赖性细胞吸收效率,证明乙基TH和丁基TH在酸性环境中具有最佳的pH响应。重要的是,新的TH类似物表现出比TH低的毒性。此外,这些新的TH类似物与抗肿瘤药物喜树碱(CPT)相关,而丁基TH修饰的偶联物对癌细胞的pH依赖性细胞毒性比TH和其他偶联物强得多。简而言之,我们的工作为开发改良的酸激活的,可穿透细胞的肽作为有效的抗癌药物递送载体开辟了一条新途径。

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