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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Tailoring of Au-TiO2 nanoparticles conjugated with doxorubicin for their synergistic response and photodynamic therapy applications
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Tailoring of Au-TiO2 nanoparticles conjugated with doxorubicin for their synergistic response and photodynamic therapy applications

机译:剪裁与多柔比星缀合的Au-TiO2纳米颗粒,用于其协同反应和光动力治疗应用

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摘要

Au-TiO2 nanoparticles conjugated with doxorubicin (DOX) were synthesized for new photodynamic therapy (PDT) plans and for comprehensive and reliable treatment of breast cancer-related acute diseases. The anatase/ruffle phase junction effect combined with plasmonic resonance is amplified in Au-TiO2 conjugated with DOX, leading to a synergistic response of PDT. Au-TiO2 plays a key role in photocatalytic activity via the development of a new energy bandgap in the composite. The capsules of Au-TiO2@DOX can readily diffuse into the tumor's vicinity because of the acidic environment of the tissue core, where DOX acts as a photosensitizing agent when Au-TiO2 is excited by an optimal dose of ultraviolet (UV) light, and it demonstrated that a cancer-cell viability loss of up to 70%. This was confirmed by various analytic techniques: reactive oxygen species (ROS) fluorescence, cell mortality assay, MTT assay, apoptosis detection assay, and membrane integrity assay. Furthermore, empirical modeling was performed for statistical analysis of biotoxicity towards the breast cancer cell line. The results acclaim the targeted photokilling efficacy of Au-TiO2@DOX nanocomposites for breast malignancy treatment, as well as in vivo applications, owing to their biocompatible properties for healthy tissues, and as an embattled weapon for breast cancer. After vigilant investigation, it is expected that these ongoing research outcomes will contribute significantly to actual treatment of breast cancer.
机译:与多柔比星(DOX)缀合的Au-TiO2纳米颗粒用于新的光动力疗法(PDT)计划,并综合且可靠地治疗乳腺癌相关的急性疾病。与等离子体共振结合的锐钛矿/皱褶相结合在与DOX缀合的Au-TiO 2中扩增,导致PDT的协同反应。 Au-TiO2通过在复合材料中开发新能量带隙来在光催化活动中发挥关键作用。 Au-TiO2 @ Dox的胶囊由于组织芯的酸性环境,可以容易地扩散到肿瘤附近,其中当Au-TiO 2通过最佳剂量的紫外线(UV)光激发时,Dox充当光敏剂,它证明癌细胞活力损失高达70%。这通过各种分析技术证实:反应性氧物质(ROS)荧光,细胞死亡测定,MTT测定,凋亡检测测定和膜完整性测定。此外,对乳腺癌细胞生物毒性的生物毒性进行统计分析进行了经验建模。结果适应了Au-TiO2 @ Dox纳米复合材料的靶向照相功效,用于乳腺恶性治疗,并且在体内应用,由于其生物相容性组织,以及作为乳腺癌的腐败武器。经过警惕的调查,预计这些正在进行的研究结果将大大促进乳腺癌的实际治疗。

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