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Mitochondria targeting IR780-based nanoGUMBOS for enhanced selective toxicity towards cancer cells

机译:靶向基于IR780的nanoGUMBOS的线粒体可增强对癌细胞的选择性毒性

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摘要

Herein, a simple counter-ion variation strategy is proposed and demonstrated for design of an array of near infrared IR780-based nanoGUMBOS (nanomaterials from a Group of Uniform Materials Based on Organic Salts) to produce enhanced anticancer activity. These nanomaterials were synthesized by direct nanoengineering of IR780-based GUMBOS using a reprecipitation method, without addition of any other materials. Thus, these novel nanomaterials can serve as carrier-free nanodrugs, providing several distinct advantages over conventional chemotherapeutics. Examination of the size and stability of these nanoGUMBOS indicates formation of approximately 100 nm nanoparticles that are stable under biological conditions. Interestingly, in vitro chemotherapeutic applications of these nanoGUMBOS indicate two to four-fold enhanced toxicity towards breast cancer cells as compared to the parent dye, while still maintaining minimal toxicity towards normal cells. The mechanism of cancer toxicity for these nanoGUMBOS was also examined by a study of their sub-cellular localization as well as using a mitochondrial toxicity assay. Analyses of data from these studies revealed that all nanoGUMBOS primarily accumulate in the mitochondria of cancer cells and produce dysfunction in the mitochondria to induce cell death. Using these studies, we demonstrate tunable properties of IR780-based nanoGUMBOS through simple variation of counter-ions, thus providing a promising strategy for future design of better nanomedicines to be used for cancer therapy.
机译:本文中,提出并展示了一种简单的抗衡离子变化策略,用于设计基于红外IR780的nanoGUMBOS(来自基于有机盐的均匀材料组的纳米材料)阵列,以产生增强的抗癌活性。这些纳米材料是通过使用再沉淀方法,对基于IR780的GUMBOS进行直接纳米工程而合成的,无需添加任何其他材料。因此,这些新颖的纳米材料可以用作无载体的纳米药物,与常规化学疗法相比具有几个明显的优势。检查这些nanoGUMBOS的大小和稳定性表明形成了在生物条件下稳定的约100 nm纳米颗粒。有趣的是,与亲本染料相比,这些nanoGUMBOS的体外化学疗法应用对乳腺癌细胞的毒性提高了2到4倍,而对正常细胞的毒性却保持最小。还通过研究它们的亚细胞定位以及使用线粒体毒性测定法检查了这些nanoGUMBOS的癌症毒性机制。对这些研究数据的分析表明,所有nanoGUMBOS主要在癌细胞的线粒体中积累,并在线粒体中产生功能异常,从而诱导细胞死亡。通过这些研究,我们通过简单地改变抗衡离子就证明了基于IR780的nanoGUMBOS的可调谐特性,从而为将来设计用于癌症治疗的更好的纳米药物提供了有希望的策略。

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