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Pharmaceutical micelles featured with singlet oxygen-responsive cargo release and mitochondrial targeting for enhanced photodynamic therapy

机译:药物胶束采用单线氧响应性货物释放和线粒体靶向增强的光动力疗法

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摘要

The efficacy of nanoparticulate photodynamic therapy is often compromised by the short life time and limited diffusion radius of singlet oxygen as well as uncontrolled intracellular distribution of photosensitizer. It was hypothesized that rapid photosensitizer release upon nanoparticle internalization and its preferred accumulation in mitochondria would address the above problems. Hence, the aim of this study was to engineer a multifunctional micellar nanosystem featured with singlet oxygen-responsive cargo release and mitochondria-targeting. An imidazole-bearing amphiphilic copolymer was employed as the micelle building block to encapsulate triphenylphosphonium-pyropheophorbide a (TPP-PPa) conjugate or PPa. Upon laser irradiation, the singlet oxygen produced by TPP-PPa/PPa oxidized the imidazole moiety to produce hydrophilic urea, leading to micelle disassembly and rapid cargo release. The colocalization analysis showed that the TPP moiety significantly enhanced the photosensitizer uptake by mitochondria, improved mitochondria depolarization upon irradiation, and hence boosted the cytotoxicity in 4T1 cells. The targeting strategy also dramatically reduced the intracellular ATP concentration as a consequence of mitochondria injury. The mitochondria damage was accompanied with the activation of the apoptosis signals (caspase 3 and caspase 9), whose level was directly correlated to the apoptosis extent. The current work provides a facile and robust means to enhance the efficacy of photodynamic therapy.
机译:纳米颗粒光动力治疗的功效通常通过短的寿命和单线氧的短寿命和有限的扩散半径来损害,以及光敏剂的不受控制的细胞内分布。假设纳米粒子内化时快速光敏剂释放及其在线粒体中的优选积累将解决上述问题。因此,本研究的目的是工程师用单线氧响应性货物释放和线粒体靶向的多功能胶束纳米系统。含咪唑的两亲性共聚物用作胶束结构块,用于包封三苯基鏻 - 焦泡醇A(TPP-PPA)缀合物或PPA。在激光照射时,TPP-PPA / PPA产生的单次氧氧化咪唑部分以产生亲水尿素,导致胶束拆卸和快速的货物释放。分层化分析表明,TPP部分显着增强了线粒体的光敏剂吸收,在照射时改善了线粒体去极化,因此促进了4T1细胞中的细胞毒性。由于线粒体损伤,靶向策略也显着降低了细胞内ATP浓度。线粒体损伤伴随着凋亡信号(Caspase 3和Caspase 9)的激活,其水平与细胞凋亡程度直接相关。目前的工作提供了一种容易和强大的方法,以增强光动力疗法的功效。

著录项

  • 来源
    《Nanotechnology》 |2018年第25期|共13页
  • 作者单位

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Pharmaceut Sci &

    Technol Tianjin Key Lab Modern Drug Delivery &

    High Effic 92 Weijin Rd Tianjin 300072 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    micelles; photodynamic therapy; stimuli-responsive; mitochondrial targeting; controlled release;

    机译:胶束;光动力疗法;刺激响应;线粒体靶向;控释;

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