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首页> 外文期刊>Bioconjugate Chemistry >Intracellular Assembly of Nuclear-Targeted Gold Nanosphere Enables Selective Plasmonic Photothermal Therapy of Cancer by Shifting Their Absorption Wavelength toward Near-Infrared Region
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Intracellular Assembly of Nuclear-Targeted Gold Nanosphere Enables Selective Plasmonic Photothermal Therapy of Cancer by Shifting Their Absorption Wavelength toward Near-Infrared Region

机译:通过将吸收波长移向近红外区域,核目标金纳米纳米纳米纳米纳米纳米颈纳米球的细胞内容能够通过向近红外区域移位

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Despite the important applications of near-infrared (NIR) absorbing nanomaterials in plasmonic photothermal therapy (PPT), their high yield synthesis and nonspecific heating during the active- and passive-targeted cancer therapeutic strategies remain challenging. In the present work, we systematically demonstrate that in situ aggregation of typical non-NIR absorbing plasmonic nanoparticles at the nuclear region of the cells could translate them into an effective NIR photoabsorber in plasmonic photothermal therapy of cancer due to a significant shift of the plasmonic absorption band to the NIR region. We evaluated the potential of nuclear targeted AuNSs as photoabsorber at various stages of endocytosis by virtue of their inherent in situ assembling capabilities at the nuclear region of the cells, which has been considered as one of the most thermolabile structures within the cells, to selectively destruct cancer cells with minimal damage to healthy cells. Various plasmonic nanoparticles such as rods and cubes have been exploited to elucidate the role of plasmonic field coupling in assembled nanoparticles and their subsequent killing efficiency. The NIR absorbing capabilities of aggregated AuNSs have been further demonstrated both experimentally and theoretically using discrete dipolar approximation (DDA) techniques, which was in concordance with the observed results in plasmonic photothermal therapeutic studies. While the current work was able to demonstrate the utility of non-NIR absorbing plasmonic nanoparticles as a potential alternative for plasmonic photothermal therapy by inducing localized plasmonic heating at the nuclear region of the cells, these findings could potentially open up new possibilities in developing more efficient nanoparticles for efficient cancer treatment modalities.
机译:尽管近红外(NIR)吸收纳米材料在等离子体光热疗法(PPT)中的重要应用,但它们在活性和被动靶向癌症治疗策略期间的高产合成和非特异性加热仍然具有挑战性。在本作本作中,我们系统地证明,由于等离子体吸收的显着转变,在细胞核区域的典型非NIR吸收等离子体纳米颗粒的原位聚集在细胞核区域上可以将它们转化为癌症的血浆光热疗法的有效的NIR光吸收。乐队到NIR地区。我们通过在细胞核区域的核区域的原位组装能力的固有,在细胞的固有状态下,我们评估了核目标AUNS的潜在阶段作为摄影吸引人的潜力,这被认为是细胞内最热力的结构之一,选择性地破坏癌细胞对健康细胞损害最小。已经利用各种等离子体纳米颗粒,例如杆和立方体,以阐明代案纳米颗粒中等离子体场偶联的作用及其随后的杀伤效率。已经使用离散的偶极近似(DDA)技术在实验和理论上进行了实验和理论地证明了聚集肛门的NIR吸收能力,这与观察到的等离子体光热治疗研究结果一致。虽然目前的工作能够证明非NIR吸收等离子体纳米粒子的效用作为迫使细胞核区域核区域的局部等离子体加热来表明诸如等离子体光热疗法的潜在替代方案,但这些结果可能会开辟更高效的新可能性纳米粒子用于高效癌症治疗方式。

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