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Combined near infrared photothermolysis and photodynamic therapyby association of gold nanoparticles and an organic dye

机译:金纳米颗粒和有机染料结合近红外光热解和光动力学治疗。

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We investigated the combination of near infrared (NIR) photothermolysis and photodynamic therapy against different models of bacteria (S. aureus, S. epidermidis both methicillin susceptible and resistant), in order to discover possible synergistic pathways in the fight against cancer. Photothermolysis was mediated by NIR light absorption from gold nanorods, which were coated with polyethylene glycol to gain biocompatibility and provide for a convenient interface with the bacterial cell walls. At the same time photodynamic therapy was delivered by administration of Indocyanine Green (ICG), whose spectrum of molecular excitation overlaps the plasmonic oscillations of gold nanorods 800 nm). Therefore irradiation with NIR light from a low power diode laser resulted into simultaneous photothermolysis and generation of reactive oxygen species and cytotoxic byproducts of ICG. We assessed the inhibition of the bacterial colony forming ability under different NIR light exposures, and compared the performance of the combined treatment (gold nanorods plus ICG) with the projected addition of the separate treatments (either gold nanorods or ICG). Our preliminary results may originate from the interplay of synergistic and conflicting interactions, which may include e.g. the enhanced intake of cytotoxic species due to permeabilization of the bacterial cell walls, quenching of ICG and modification of the bleaching of ICG due to the noble metal surface.
机译:我们研究了近红外(NIR)光热解和光动力治疗对不同模型的近红外(NIR)的组合(S.UUREUS,S.表皮均甲氧西林易感和抗性),以便在抗击癌症中发现可能的协同途径。通过来自金纳米棒的Nir光吸收介导的光热解,其涂覆聚乙二醇以获得生物相容性,并提供与细菌细胞壁的方便的界面。同时通过施用吲哚菁绿(ICG)来递送光动力治疗,其分子激发的光谱与金纳米棒800nm的等离子体振荡重叠。因此,用来自低功率二极管激光的NIR光照射导致同时的光热解和产生反应性氧物质和ICG细胞毒性副产物。我们评估了不同鼻炎光曝光下的细菌菌落形成能力的抑制,并将组合处理(金纳米棒加ICG)的性能与突出的单独处理(金纳米棒或ICG)进行了比较。我们的初步结果可能来自协同和冲突的相互作用的相互作用,这可能包括例如e。由于细菌细胞壁的透化,ICG的淬火和ICG漂白引起的细胞毒性物质的增强摄入增强了细胞毒性物质。由于贵金属表面,ICG的改变。

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