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Platinum(IV) prodrug conjugated Pd@Au nanoplates for chemotherapy and photothermal therapy

机译:铂(IV)前体药物共轭Pd@Au nanoplates对化疗和光照疗法

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摘要

Owing to the excellent near infrared (NIR) light absorption and efficient passive targeting toward tumor tissue, two-dimensional (2D) core-shell PEGylated Pd@Au nanoplates have great potential in both photothermal therapy and drug delivery systems. In this work, we successfully conjugate Pd@Au nanoplates with a platinum(IV) prodrug c,c,t-[Pt(NH3)(2)Cl-2(O2CCH2CH2CO2H)(2)] to obtain a nanocomposite (Pd@Au-PEG-Pt) for combined photothermal-chemotherapy. The prepared Pd@Au-PEG-Pt nanocomposite showed excellent stability in physiological solutions and efficient Pt(IV) prodrug loading. Once injected into biological tissue, the Pt(IV) prodrug was easily reduced by physiological reductants (e.g. ascorbic acid or glutathione) into its cytotoxic and hydrophilic Pt(II) form and released from the original nanocomposite, and the NIR laser irradiation could accelerate the release of Pt(II) species. More importantly, Pd@Au-PEG-Pt has high tumor accumulation (29%ID per g), which makes excellent therapeutic efficiency at relatively low power density possible. The in vivo results suggested that, compared with single therapy the combined thermo-chemotherapy treatment with Pd@Au-PEG-Pt resulted in complete destruction of the tumor tissue without recurrence, while chemotherapy using Pd@Au-PEG-Pt without irradiation or photothermal treatment using Pd@Au-PEG alone did not. Our work highlights the prospects of a feasible drug delivery strategy of the Pt prodrug by using 2D Pd@Au nanoplates as drug delivery carriers for multimode cancer treatment.
机译:由于优秀的近红外(NIR)光吸收和有效的被动定位的方向肿瘤组织,二维(2 d)核壳聚乙二醇Pd@Au nanoplates有巨大的潜力在光照治疗和药物输送系统。Pd@Au nanoplates铂(IV)前体药物c、c、t -[葡文(NH3) (2) Cl-2 (O2CCH2CH2CO2H) (2)]获得纳米复合材料(Pd@Au-PEG-Pt)photothermal-chemotherapy相结合。Pd@Au-PEG-Pt纳米复合材料表现出优秀的生理上的解决方案和稳定高效的Pt (IV)前体药物装载。生物组织,Pt (IV)前体药物很容易减少生理的还原剂(如。抗坏血酸或谷胱甘肽)的细胞毒性和亲水性Pt (II)和发布形式原始的纳米复合材料,和近红外激光辐射会加速释放Pt (II)的物种。具有较高的肿瘤积累(29% id / g),哪个让优秀的治疗效率相对较低的功率密度。体内的结果表明,相比之下,单身治疗联合thermo-chemotherapy治疗Pd@Au-PEG-Pt导致完成肿瘤组织的破坏使用Pd@Au-PEG-Pt复发,而化疗没有辐照或光照治疗单独使用Pd@Au-PEG没有。突出了一个可行的药物的前景交付使用2 d Pt前体药物的战略Pd@Au nanoplates作为药物输送载体多模癌症治疗。

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