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Two-Photon Photosensitizer Polymer Conjugates for Combined Cancer Cell Death Induction and Two-Photon Fluorescence Imaging: Structure/Photodynamic Therapy Efficiency Relationship

机译:用于组合癌细胞死亡诱导和双光子荧光成像的双光子光敏剂聚合物缀合物:结构/光动力治疗效率关系

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摘要

One of the challenges of photodynamic therapy is to increase the penetration depth of light irradiation in the tumor tissues. Although two-photon excitation strategies have been developed, the two-photon absorption cross sections of clinically used photosensitizers are generally low (below 300 GM). Besides, photosensitizers with high cross section values are often non-water-soluble. In this research work, a whole family of photosensitizer-polymer conjugates was synthesized via the covalent binding of a photosensitizer with a relatively high cross section along a biocompatible copolymer chain. The resulting photosensitizer-polymer conjugates were water-soluble and could be imaged in cellulo by two-photon microscopy thanks to their high two-photon absorption cross sections (up to 2600 GM in water, in the NIR range). In order to explore the structure/photodynamic activity relationship of such macromolecular photosensitizers, the influence of the polymer size, photosensitizer density, and presence of charges along the polymer backbone was investigated (neutral, anionic, cationic, and zwitterionic conjugates were compared). The macromolecular photosensitizers were not cytotoxic in the absence of light irradiation. Their kinetics of cellular uptake in the B16-F10 melanoma cell line were followed by flow cytometry over 24 h. The efficiency of cell death upon photoactivation was found to be highly correlated to the cellular uptake in turn correlated to the global charge of the macromolecular photosensitizer which appeared as the determining structural parameter.
机译:光动力治疗的挑战之一是增加肿瘤组织中的光照射的渗透深度。虽然已经开发了双光子励磁策略,但临床使用的光敏剂的双光子吸收横截面通常低(300克)。此外,具有高横截面值的光敏剂通常是非水溶性的。在该研究工作中,通过沿着生物相容性共聚物链的相对高的横截面通过光敏剂的共价结合合成全族光敏剂 - 聚合物缀合物。所得到的光敏剂 - 聚合物缀合物是水溶性的,并且由于其高二光子吸收横截面(在水中,在NIR范围内,通过双光子显微镜(高达2600克),可以在纤维素中成像。为了探讨这种大分子光敏的结构/光动力活动关系,研究了聚合物尺寸,光敏剂密度和沿着聚合物主链的电荷的影响(中性,阴离子,阳离子和两性离子缀合物进行了比较)。在没有光照射的情况下,大分子光敏剂不是细胞毒性。它们在B16-F10黑色素瘤细胞系中的细胞摄取动力学随后是24小时的流式细胞术。发现电池死亡时的细胞死亡效率与又与常压光敏剂的全球电荷相关的蜂窝摄取的高度相关,这是作为确定结构参数的全部电荷。

著录项

  • 来源
    《Biomacromolecules》 |2017年第12期|共12页
  • 作者单位

    Univ Lyon ENS Lyon CNRS Lab Joliot Curie F-69364 Lyon France;

    Univ Lyon ENS Lyon CNRS Lab Joliot Curie F-69364 Lyon France;

    Univ Lyon ENS Lyon CNRS Lab Joliot Curie F-69364 Lyon France;

    Univ Lyon ENS Lyon CNRS Lab Joliot Curie F-69364 Lyon France;

    Univ Claude Bernard Univ Lyon ENS Lyon CNRS Lab Chim Site Monod 46 Allee Italie F-69364 Lyon France;

    Univ Claude Bernard Univ Lyon ENS Lyon CNRS Lab Chim Site Monod 46 Allee Italie F-69364 Lyon France;

    Univ Claude Bernard Univ Lyon ENS Lyon CNRS Lab Chim Site Monod 46 Allee Italie F-69364 Lyon France;

    Univ Claude Bernard Univ Lyon ENS Lyon CNRS Lab Chim Site Monod 46 Allee Italie F-69364 Lyon France;

    Univ Claude Bernard Univ Lyon ENS Lyon INSERM CNRS CIRI U1111 F-69007 Lyon France;

    Univ Lyon ENS Lyon CNRS Lab Joliot Curie F-69364 Lyon France;

    Univ Claude Bernard Univ Lyon ENS Lyon INSERM CNRS CIRI U1111 F-69007 Lyon France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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