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Cryogenic Exfoliation of 2D Stanene Nanosheets for Cancer Theranostics

机译:癌症治疗癌症2D氧化锡纳米烯的低温剥离

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摘要

Stanene(Sn)-based materials have been extensively applied in industrial production and daily life,but their potential biomedical application remains largely unexplored,which is due to the absence of the appropriate and effective methods for fabricating Sn-based biomaterials.Herein,we explored a new approach combining cryogenic exfoliation and liquid-phase exfoliation to successfully manufacture two-dimensional(2D)Sn nanosheets(SnNSs).The obtained SnNSs exhibited a typical sheet-like structure with an average size of~100 nm and a thickness of~5.1 nm.After PEGylation,the resulting PEGylated SnNSs(SnNSs@PEG)exhibited good stability,superior biocompatibility,and excellent photothermal performance,which could serve as robust photothermal agents for multi-modal imaging(fluorescence/photoacoustic/photothermal imaging)-guided photothermal elimination of cancer.Furthermore,we also used first-principles density functional theory calculations to investigate the photothermal mechanism of SnNSs,revealing that the free electrons in upper and lower layers of SnNSs contribute to the conversion of the photo to thermal.This work not only introduces a new approach to fabricate 2D SnNSs but also establishes the SnNSs-based nanomedicines for photonic cancer theranostics.This new type of SnNSs with great potential in the field of nanomedicines may spur a wave of developing Sn-based biological materials to benefit biomedical applications.
机译:基于天坛(SN)的材料已广泛应用于工业生产和日常生活,但它们的潜在生物医学应用仍然很大程度上是未开发的,这是由于没有适当和有效的制造SN系生物材料的方法。我们探索了一种新的方法,将低温剥离和液相去角质组合成成功制造二维(2D)Sn纳米片(SNNS)。所获得的SNNSS表现出典型的片状结构,平均尺寸为约100nm,厚度为〜5.1 PEG化后,所得的聚乙二醇化的SNNS(SNNSS @ PEG)表现出良好的稳定性,优异的生物相容性和优异的光热性能,其可作为多模态成像的鲁棒光热试剂(荧光/光声/光热成像) - 导光热量消除癌症。繁殖,我们还使用了初始原则的密度函数理论计算来研究SNNSS的光热机制,Rev Ealing,SNNS的上层和下层中的自由电子有助于将照片转换为热量。这项工作不仅介绍了制造2D SNNS的新方法,而且还建立了用于光子癌症的基于SNNSS的纳米内氨酸。这类在纳米美食林根领域具有巨大潜力的SNNS可以促使浪潮开发基于SN的生物材料,以便利用生物医学应用。

著录项

  • 来源
    《纳微快报:英文版》 |2021年第006期|P.108-125|共18页
  • 作者单位

    The First Affiliated Hospital Department of Chemistry Jinan University Guangzhou 510632 Guangdong People’s Republic of ChinaCenter for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USACollege of Chemistry and Chemical Engineering Central South University Changsha 410083 Hunan People’s Republic of China;

    College of Chemistry and Chemical Engineering Central South University Changsha 410083 Hunan People’s Republic of China;

    School of Chemistry and Environmental Engineering Changchun University of Science and Technology Changchun 130022 Jilin Province People’s Republic of China;

    Center for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USA;

    Center for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USA;

    Center for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USA;

    Center for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USA;

    College of Chemistry and Chemical Engineering Central South University Changsha 410083 Hunan People’s Republic of China;

    Center for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USA;

    The First Affiliated Hospital Department of Chemistry Jinan University Guangzhou 510632 Guangdong People’s Republic of China;

    College of Chemistry and Chemical Engineering Central South University Changsha 410083 Hunan People’s Republic of China;

    Center for Nanomedicine and Department of Anesthesiology Brigham and Women’s Hospital Harvard Medical School Boston MA 02115 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 工程材料学;
  • 关键词

    Stanene; Two-dimensional; Cryogenic exfoliation; Cancer theranostics; Nanomedicine;

    机译:斯坦恩;二维;低温剥离;癌症治疗;纳米医生;
  • 入库时间 2022-08-19 04:58:23
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