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Gold nanoparticle conjugated Rad6 inhibitor induces cell death in triple negative breast cancer cells by inducing mitochondrial dysfunction and PARP-1 hyperactivation: Synthesis and characterization

机译:金纳米粒子缀合的Rad6抑制剂通过诱导线粒体功能障碍和PARP-1过度活化来诱导三阴性乳腺癌细胞死亡:合成与表征

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摘要

We recently developed a small molecule inhibitor SMI#9 for Rad6, a protein overexpressed in aggressive breast cancers and involved in DNA damage tolerance. SMI#9 induces cytotoxicity in cancerous cells but spares normal breast cells; however, its therapeutic efficacy is limited by poor solubility. Here we chemically modified SMI#9 to enable its conjugation and hydrolysis from gold nanoparticle (GNP). SMI#9-GNP and parent SMI#9 activities were compared in mesenchymal and basal triple negative breast cancer (TNBC) subtype cells. Whereas SMI#9 is cytotoxic to all TNBC cells, SMI#9-GNP is endocytosed and cytotoxic only in mesenchymal TNBC cells. SMI#9-GNP endocytosis in basal TNBCs is compromised by aggregation. However, when combined with cisplatin, SMI#9-GNP is imported and synergistically increases cisplatin sensitivity. Like SMI#9, SMI#9-GNP spares normal breast cells. The released SMI#9 is active and induces cell death via mitochondrial dysfunction and PARP-1 stabilization/hyperactivation. This work signifies the development of a nanotechnology-based Rad6-targeting therapy for TNBCs.
机译:我们最近为Rad6开发了一种小分子抑制剂SMI#9,Rad6是一种在侵略性乳腺癌中过表达并参与DNA损伤耐受的蛋白质。 SMI#9在癌细胞中诱导细胞毒性,但保留正常的乳腺细胞;然而,其治疗功效受到溶解性差的限制。在这里,我们对SMI#9进行了化学修饰,以使其与金纳米颗粒(GNP)结合和水解。在间质和基底三阴性乳腺癌(TNBC)亚型细胞中比较了SMI#9-GNP和父SMI#9活性。 SMI#9对所有TNBC细胞都具有细胞毒性,而SMI#9-GNP仅在间充质TNBC细胞中具有胞吞作用和细胞毒性。基底TNBC中的SMI#9-GNP内吞作用受聚集影响。但是,与顺铂组合使用时,会导入SMI#9-GNP,并协同增加顺铂敏感性。与SMI#9一样,SMI#9-GNP可以保留正常的乳腺细胞。释放的SMI#9具有活性,并通过线粒体功能障碍和PARP-1稳定/过度激活诱导细胞死亡。这项工作标志着针对TNBC的基于纳米技术的Rad6靶向疗法的发展。

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