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Enhancing the photodynamic therapy efficacy of black phosphorus nanosheets by covalently grafting fullerene C60

机译:通过共价嫁接富勒烯C60增强黑磷纳米片的光动力治疗疗效

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Few-layer black phosphorus (BP) nanosheets show potential application in biomedicine such as photodynamic therapy (PDT), and are therefore commonly used in anticancer therapy and nanomedicine due to being relatively less invasive. However, they suffer from low ambient stability and poor therapeutic efficacy. Herein, C _(60) was covalently grafted onto the edges of BP nanosheets, and the resultant BP-C _(60) hybrid was applied as a novel endocytosing photosensitizer, resulting in not only significantly enhanced PDT efficacy relative to that of the pristine BP nanosheets, but also drastically improved stability in a physiological environment, as confirmed by both in vitro and in vivo studies. Such improved stability was due to shielding effect of the stable hydrophobic C _(60) molecules. The enhanced PDT efficacy is interpreted from the photoinduced electron transfer from BP to C _(60) , leading to the promoted generation of ˙OH radicals, acting as a reactive oxygen species (ROS) that is effective in killing tumor cells. Furthermore, the BP-C _(60) hybrid exhibited low systemic toxicity in the major organs of mice. The BP-C _(60) hybrid represents the first BP-fullerene hybrid nanomaterial fulfilling promoted ROS generation and consequently enhanced PDT efficacy.
机译:少数黑磷(BP)纳米片显示在生物医学中的潜在应用,例如光动力治疗(PDT),因此由于相对较少的侵袭性,通常用于抗癌治疗和纳米医生。然而,它们患有低环境稳定性和治疗效果差。这里,将C _(60)共价接枝到BP纳米片的边缘上,并将所得的BP-C _(60)杂交物作为新型内织细胞光敏剂施加,导致相对于原始的PDT功效不仅显着增强了显着增强的PDT功效BP Nanosheets,但在体外和体内研究证实,在生理环境中稳定性地提高了生理环境中的稳定性。这种改善的稳定性是由于稳定的疏水性C _(60)分子的屏蔽效果。增强的PDT功效是从来自BP到C _(60)的光诱导的电子转移来解释,导致促进的OH自由基的产生,作为有效杀死肿瘤细胞的反应性氧物质(ROS)。此外,BP-C _(60)杂种在小鼠的主要器官中表现出低的全身毒性。 BP-C _(60)杂种代表第一BP-富勒烯杂交纳米材料填充促进的ROS产生,从而提高了PDT功效。

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