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Folic acid-functionalized graphene oxide nanosheets via plasma etching as a platform to combine NIR anticancer phototherapy and targeted drug delivery

机译:叶酸功能化的氧化石墨烯纳米片通过等离子刻蚀为平台,将近红外抗癌光疗与靶向药物输送相结合

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摘要

PEGylated graphene oxide (GO) has shown potential as NIR converting agent to produce local heat useful in breast cancer therapy, since its suitable photothermal conversion, high stability in physiological fluids, biocompatibility and huge specific surface. GO is an appealing nanomaterial for potential clinical applications combining drug delivery and photothermal therapy in a single nano-device capable of specifically targeting breast cancer cells. However, native GO sheets have large dimensions (0.5-5 mu m) such that tumor accumulation after a systemic administration is usually precluded. Herein, we report a step-by-step synthesis of folic acid-functionalized PEGylated GO, henceforth named GO-PEG-Fol, with small size and narrow size distribution (similar to 30 +/- 5 nm), and the ability of efficiently converting NIR light into heat. GO-PEG-Fol consists of a nano-GO sheet, obtained by fragmentation of GO by means of non-equilibrium plasma etching, fully functionalized with folic acid-terminated PEG(2000) chains through amidic coupling and azide-alkyne click cycloaddition, which we showed as active targeting agents to selectively recognize breast cancer cells such as MCF7 and MDA-MB-231. The GO-PEG-Fol incorporated a high amount of doxorubicin hydrochloride (Doxo) (> 33%) and behaves as NIR-light-activated heater capable of triggering sudden Doxo delivery inside cancer cells and localized hyperthermia, thus provoking efficient breast cancer death. The cytotoxic effect was found to be selective for breast cancer cells, being the IC50 up to 12 times lower than that observed for healthy fibroblasts. This work established plasma etching as a cost-effective strategy to get functionalized nano-GO with a smart combination of properties such as small size, good photothermal efficiency and targeted cytotoxic effect, which make it a promising candidate as photothermal agent for the treatment of breast cancer.
机译:聚乙二醇化氧化石墨烯(GO)已显示出作为NIR转化剂的潜力,可产生可用于乳腺癌治疗的局部热量,因为它具有合适的光热转化率,在生理液中的高稳定性,生物相容性和巨大的比表面积。 GO是一种具有吸引力的纳米材料,可在单个能够特异性靶向乳腺癌细胞的纳米设备中将药物输送和光热疗法相结合的潜在临床应用。然而,天然GO片材具有大尺寸(0.5-5μm),从而通常排除了全身给药后的肿瘤积累。本文中,我们报告了叶酸官能化的聚乙二醇化GO的分步合成方法,此后称为GO-PEG-Fol,具有小尺寸和窄尺寸分布(类似于30 +/- 5 nm),并且具有高效的能力将近红外光转化为热量。 GO-PEG-Fol由纳米GO片组成,该纳米GO片是通过非平衡等离子体刻蚀将GO碎裂而获得的,并通过酰胺偶联和叠氮化物-炔键环加成反应,以叶酸封端的PEG(2000)链完全功能化。我们表现​​出作为选择性靶向识别乳腺癌细胞(如MCF7和MDA-MB-231)的有效靶向剂。 GO-PEG-Fol掺入了大量的盐酸阿霉素(Doxo)(> 33%),并且具有NIR光激活加热器的功能,能够触发癌细胞内Doxo的突然释放和局部热疗,从而导致乳腺癌有效死亡。发现细胞毒性作用对乳腺癌细胞具有选择性,IC50较健康成纤维细胞低约12倍。这项工作将等离子蚀刻确定为一种具有成本效益的策略,以实现具有小尺寸,良好的光热效率和靶向细胞毒作用等特性的智能组合的功能化纳米GO,这使其成为治疗乳房的光热剂的有希望的候选者癌症。

著录项

  • 来源
    《Materials science & engineering》 |2020年第2期|110201.1-110201.14|共14页
  • 作者单位

    Univ Palermo Dept Sci & Tecnol Biol Chim & Farmaceut STEBICEF Lab Biocompatible Polymers Via Archirafi 32 I-90123 Palermo Italy|Fdn Umberto Veronesi Piazza Velasca 5 I-20122 Milan Italy;

    Univ Palermo Dept Sci & Tecnol Biol Chim & Farmaceut STEBICEF Lab Biocompatible Polymers Via Archirafi 32 I-90123 Palermo Italy;

    Univ Palermo Dept Fis & Chim Emilio Segre Via Archirafi 36 I-90123 Palermo Italy;

    Univ Palermo Dept Sci & Tecnol Biol Chim & Farmaceut STEBICEF Lab Biocompatible Polymers Via Archirafi 32 I-90123 Palermo Italy|Italian Natl Res Council Inst Biophys Via Ugo La Malfa 153 I-90146 Palermo Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Graphene oxide; Breast cancer; Doxorubicin; Folic acid; Phototherapy;

    机译:氧化石墨烯;乳腺癌;阿霉素叶酸;光疗;

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