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Targeted photothermal tumor therapy using metal nanoshells

机译:使用金属纳米壳的靶向光热肿瘤疗法

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Complications associated with invasive malignant tumor excision have led to alternative treatment methods including chemotherapy, photodynamic therapy, and thermal coagulation. Metal nanoshells, which are a new class of optically active nanoparticles, may provide a novel means of targeted photothermal therapy in tumor tissue, minimizing damage to surrounding healthy tissue. Metal nanoshells possess a strong tunable absorption, which can be placed in the near IR where maximal penetration of light through tissue is achieved. When conjugated with a tumor-specific protein, these nanoshells could be systemically injected, but preferentially bound to the tumor site. Near IR light administered at the site would heat the localized nanoshells, killing the tumor. We have successfully conjugated antibodies against oncoproteins to nanoshells and demonstrated specific binding to tumor cells. Furthermore, we have demonstrated photothermally-induced death of nanoshell-bound carcinoma cells in vitro, as well as in vivo. These studies utilized an 821 nm diode laser, and nanoshells fabricated with their plasmon resonance at 821 nm. Cell death was limited to the laser spot, and under control conditions (no nanoshells or no light), no cell death or tissue damage was observed.
机译:与浸润性恶性肿瘤切除相关的并发症已导致其他治疗方法,包括化学疗法,光动力疗法和热凝。金属纳米壳是一类新型的光学活性纳米粒子,可以为肿瘤组织提供靶向光热疗法的新方法,从而最大程度地减少对周围健康组织的损害。金属纳米壳具有很强的可调吸收能力,可以将其放置在近红外处,从而获得最大的光穿透组织的穿透力。当与肿瘤特异性蛋白缀合时,这些纳米壳可被全身性注射,但优先结合至肿瘤部位。在该部位施用的近红外光会加热局部的纳米壳,从而杀死肿瘤。我们已经成功地将抗癌蛋白的抗体偶联到了纳米壳上,并证明了与肿瘤细胞的特异性结合。此外,我们已经证明了在体外以及体内光热诱导的纳米壳结合癌细胞的死亡。这些研究利用了821 nm的二极管激光器,并制造了在821 nm处具有等离子体共振的纳米壳。细胞死亡仅限于激光点,在对照条件下(无纳米壳或无光),未观察到细胞死亡或组织损伤。

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