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A magnetic anti-cancer compound for magnet-guided delivery and magnetic resonance imaging

机译:磁性抗癌化合物用于磁导递送和磁共振成像

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摘要

Research on controlled drug delivery for cancer chemotherapy has focused mainly on ways to deliver existing anti-cancer drug compounds to specified targets, e.g., by conjugating them with magnetic particles or encapsulating them in micelles. Here, we show that an iron-salen, i.e., μ-oxo N,N'- bis(salicylidene)ethylenediamine iron (Fe(Salen)), but not other metal salen derivatives, intrinsically exhibits both magnetic character and anti-cancer activity. X-Ray crystallographic analysis and first principles calculations based on the measured structure support this. It promoted apoptosis of various cancer cell lines, likely, via production of reactive oxygen species. In mouse leg tumor and tail melanoma models, Fe(Salen) delivery with magnet caused a robust decrease in tumor size, and the accumulation of Fe(Salen) was visualized by magnetic resonance imaging. Fe(Salen) is an anti-cancer compound with magnetic property, which is suitable for drug delivery and imaging. We believe such magnetic anti-cancer drugs have the potential to greatly advance cancer chemotherapy for new theranostics and drug-delivery strategies.
机译:用于癌症化学疗法的受控药物递送的研究主要集中于将现有抗癌药物化合物递送至特定靶标的方法,例如通过将它们与磁性颗粒缀合或将其封装在胶束中。在这里,我们显示了铁salen(即μ-氧代N,N'-双(水杨基)乙二胺铁(Fe(Salen)),而不是其他金属salen衍生物,本质上既具有磁性又具有抗癌活性。 X射线晶体学分析和基于所测结构的第一性原理计算都支持这一点。它可能通过产生活性氧来促进各种癌细胞系的凋亡。在小鼠腿部肿瘤和尾部黑色素瘤模型中,用磁铁递送Fe(Salen)会导致肿瘤大小显着减小,并且通过磁共振成像可以看到Fe(Salen)的积累。 Fe(Salen)是具有磁性的抗癌化合物,适用于药物输送和成像。我们相信,这种磁性抗癌药有潜力极大地推进癌症化疗,以用于新的治疗学和药物递送策略。

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