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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Hypoxia-triggered gene therapy: a new drug delivery system to utilize photodynamic-induced hypoxia for synergistic cancer therapy
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Hypoxia-triggered gene therapy: a new drug delivery system to utilize photodynamic-induced hypoxia for synergistic cancer therapy

机译:缺氧触发的基因治疗:一种新的药物递送系统,用于利用光动力诱导的缺氧进行协同癌症治疗

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摘要

The therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT process is dependent on O _(2) concentration. Based on this, a new living drug delivery system integrated PDT and hypoxia-triggered gene therapy is proposed, which is made up of three primary constituents: hypoxia-induced cleaved azobenzene (Azo) bridges, HIF-1α-against antisense oligonucleotide (ASO)/G4-constituted double-stranded DNA/RNA hybridization complex (DRHC) and the photosensitizer TMPyP4. During PDT, the continuous consumption of oxygen could remarkably facilitate an intracellular low-oxygen microenvironment. Then, the hypoxia-responsive Azo bridges were reduced by the highly expressed reductases to amines under the oxygen-deficient environment, resulting in a hypoxia-triggered ASO release and providing a synergistic therapy with PDT for suppression of tumor growth. This new drug delivery system opens a new avenue for the design and fabrication of smart drug delivery methods, which can deliver and release drugs according to the specific biological microenvironment in the body.
机译:光动力治疗(PDT)的治疗效果受癌症缺氧的限制,因为PDT工艺依赖于O _(2)浓度。基于这一点,提出了一种新的活性药物递送系统集成的PDT和缺氧触发的基因治疗,其由三个主要成分组成:缺氧诱导的切割的偶氮苯(AZO)桥,HIF-1α - 反义寡核苷酸(ASO) / G4构成的双链DNA / RNA杂交复合物(DRHC)和光敏剂TMPYP4。在PDT期间,氧的连续消耗可以显着促进细胞内低氧微环境。然后,通过高氧缺氧环境中的高氧响应偶氮桥减少了缺氧的偶氮桥,导致缺氧触发的ASO释放,并提供抑制肿瘤生长的PDT协同疗法。这种新的药物交付系统为智能药物递送方法的设计和制作开辟了新的途径,可根据体内的特定生物微环境提供和释放药物。

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    State Key Laboratory of Chemo/Biosensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha China;

    State Key Laboratory of Chemo/Biosensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha China;

    State Key Laboratory of Chemo/Biosensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha China;

    State Key Laboratory of Chemo/Biosensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha China;

    State Key Laboratory of Chemo/Biosensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha China;

    State Key Laboratory of Chemo/Biosensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha China;

    School of Chemistry and Biological Engineering Changsha University of Science and Technology Changsha China;

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  • 正文语种 eng
  • 中图分类 分析化学;
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