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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Directional Plk1 inhibition-driven cell cycle interruption using amphiphilic thin-coated peptide-lanthanide upconversion nanomaterials as in vivo tumor suppressors
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Directional Plk1 inhibition-driven cell cycle interruption using amphiphilic thin-coated peptide-lanthanide upconversion nanomaterials as in vivo tumor suppressors

机译:使用两亲性薄涂层肽-镧系元素上转换纳米材料作为体内肿瘤抑制因子的定向Plk1抑制驱动的细胞周期中断

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摘要

Polo-like kinase 1 (Plk1) is a major serine/threonine protein kinase which regulates key mitotic events such as centrosome duplication, spindle assembly and chromosome separation. Overexpression and aberrant activities of Plk1 can be detected in different types of cancer. Given that the unique polo box domain (PBD) pocket provides an excellent drug target for Plk1 binding and inhibition, we have rationally designed multifunctional lanthanide-doped upconversion nanomaterials. NaGdF4:Yb3+, Er3+ (NaGdF4) and BaGdF5:Yb3+, Er3+ (BaGdF5) nanoparticles of two different sizes (60 nm and 10 nm, respectively) have been thin-coated with Plk1 specific peptides (-P-1 = PLHSpT, -P-2 = PLHSD, and -P-3 = GGPLHSpT) to prepare novel nanomaterials. Comparative studies on cellular uptake, anti-cancer activity and imaging properties were then carried out. The experimental data obtained support our original hypothesis that the designed nanomaterials can successfully deliver Plk1 specific peptides into cancer cells causing Plk1 inhibition while simultaneously allowing direct NIR imaging and monitoring. Among the NaGdF4-P-n and BaGdF5-P-n nanoparticle series prepared in this study, NaGdF4-P-1 emerged as the best candidate for Plk1 binding and imaging. NaGdF4-P-1 can effectively exert cell cycle G2/M arrest and thus selective tumor inhibition both in vitro and in vivo and as such it offers a potentially interesting system for the development of new cancer therapies.
机译:Polo样激酶1(Plk1)是一种主要的丝氨酸/苏氨酸蛋白激酶,它调节关键的有丝分裂事件,如中心体复制,纺锤体组装和染色体分离。可以在不同类型的癌症中检测到Plk1的过度表达和异常活动。鉴于独特的polo box结构域(PBD)口袋为Plk1的结合和抑制提供了极好的药物靶标,我们已经合理设计了掺杂镧系元素的多功能上转换纳米材料。分别用两种Plk1特异肽(-P-1 = PLHSpT,-P -2 = PLHSD,-P-3 = GGPLHSpT)以制备新型纳米材料。然后进行了细胞摄取,抗癌活性和成像特性的比较研究。获得的实验数据支持我们最初的假设,即所设计的纳米材料可以成功地将Plk1特异性肽传递到癌细胞中,从而引起Plk1抑制,同时允许直接进行近红外成像和监测。在这项研究中制备的NaGdF4-P-n和BaGdF5-P-n纳米粒子系列中,NaGdF4-P-1成为Plk1结合和成像的最佳候选者。 NaGdF4-P-1可以有效地发挥细胞周期G2 / M抑制作用,从而在体内和体外均具有选择性抑制肿瘤的作用,因此,它为开发新的癌症疗法提供了潜在的有趣系统。

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