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Bimetallic nanoparticles enhance photoactivity of conjugated photosensitizer

机译:双金属纳米颗粒增强了共轭光敏剂的光接触

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摘要

Although photodynamic therapy (PDT) of cancer has been continuously improved, its efficiency is still limited by the high toxicity in the absence of irradiation, aggregation and deactivation by biomolecules of the most common photosensitizers (PS). The association of PS to nanoparticles (NPs) can be a promising tool to overcome these limitations and also to enhance PS tumoral selectivity. In addition, the association of PS to metallic NPs may provide the modulation of PS fluorescence and also the enhancement of PS photoactivity due to the electronic coupling with NPs plasmon effect. Adversely to the innumerous work on the coupling of PS to metallic NPs, the application of bimetallic NPs with this goal has not been explored yet. In this work we investigated the physicochemical properties and cytotoxicity of bimetallic gold-platinum NPs (AuPtNPs) conjugated to a chlorin molecule modified with a thiol group. Additionally, chlorin was coupled to AuNPs for comparative purposes since these have been the most commonly used NPs in PDT. The results showed that both platforms promoted the chlorin solubility in water which is crucial in biological applications. Despite the enhancement of photoactivity promoted by both NPs in comparison with chlorin in solution, chlorin-conjugated with AuPtNPs proved to be a more suitable platform for PDT application, since it showed a lower dark citotoxicity, as well as a higher generation of singlet oxygen and cell internalization compared with chlorin-conjugated AuNPs. It is important to highlight that this is the first work reporting on the enhancement of PS photoactivity by its conjugation to AuPtNPs.
机译:虽然癌症的光动力治疗(PDT)持续改善,但其效率仍然受到在没有辐照,聚集和通过最常见的光敏剂(PS)的生物分子的辐射,聚集和失活的高毒性的限制。 PS至纳米颗粒(NPS)的关联可以是克服这些限制的有希望的工具,也可以增强PS肿瘤选择性。另外,PS至金属NPS的关联可以提供PS荧光的调节以及由于具有NPS等离子体效应的电子耦合而引起的PS光度的增强。对PS对金属NPS耦合的无意识的工作对偶联的,尚未探讨与此目标的双金属NPS的应用。在这项工作中,我们研究了与用硫醇组改性的氯分子缀合的双金属金 - 铂NPS(Auptnps)的物理化学性质和细胞毒性。另外,氯联与AUNPS一起偶联以进行比较目的,因为这些是PDT中最常用的NPS。结果表明,两台平台都促进了在生物应用中至关重要的水中的氯溶性。尽管与溶液中的氯含量相比,尽管均有NPS促进的光度促进,但与Auptnps的氯缀合物被证明是一种更合适的PDT应用平台,因为它显示出较低的黑暗冠状性,以及更高产生的单线氧细胞内化与氯共轭AUNP相比。重要的是要强调这是第一个关于通过与Auptnps的缀合来增强PS Photoactivity的第一工作。

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