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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Comparative effect of gold nanorods and nanocages for prostate tumor hyperthermia
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Comparative effect of gold nanorods and nanocages for prostate tumor hyperthermia

机译:金纳米棒和纳米笼对前列腺肿瘤热疗的比较效果

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Gold nanoparticles have been investigated as photothermal agents, drug delivery carriers, diagnostics, and theranostics. As long-term accumulation of nanoparticles in nontarget tissues is a growing concern, it is vital to establish biodistribution profiles, tumor uptake, and tissue residence times for each nano-based system. This study aimed to investigate the prostate tumor uptake, photothermal therapy mediated macromolecular delivery, acute and chronic biodistribution profiles, and organ residence time differences between two nanoparticles, i.e., gold nanocages and gold nanorods. These particles have tunable surface plasmon resonances in the near infrared, but dissimilar shapes. Gold nanocages and nanorods had very different light to heat transduction efficiencies, with gold nanocages requiring 18.4 times fewer particles and approximately half the gold mass of gold nanorods to achieve the same heating profile given a constant laser intensity. It was also observed that while the photothermal macromolecular delivery enhancements were similar for the two systems when dosed by optical density, the tumoral uptake and biodistribution profiles for each of these shapes differed, with the nanocages residing in the liver, kidneys and spleen for less time than the nanorods. Additionally, it was observed that the nanocages were excreted from the body at a higher percentage of injected dose than the nanorods at both the 7 and 28 day time points. These findings have implications for the use of these constructs in diagnostic and therapeutic applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经研究了金纳米颗粒作为光热剂,药物输送载体,诊断剂和诊断学。随着纳米粒子在非目标组织中的长期积累越来越受到关注,对于每个基于纳米的系统,建立生物分布曲线,肿瘤吸收和组织停留时间至关重要。这项研究旨在研究前列腺肿瘤的吸收,光热疗法介导的大分子传递,急性和慢性生物分布特征以及两种纳米颗粒(即金纳米笼和金纳米棒)之间的器官停留时间差异。这些粒子在近红外区域具有可调的表面等离子体共振,但形状不同。金纳米笼和纳米棒对光的热传导效率非常不同,在恒定的激光强度下,金纳米笼所需的颗粒数减少了18.4倍,金质量约为纳米棒的一半。还观察到,当通过光密度给药时,两个系统的光热大分子传递增强相似,但每种形状的肿瘤吸收和生物分布特征均不同,纳米笼在肝脏,肾脏和脾脏中停留的时间更少比纳米棒。另外,观察到在7天和28天的时间点,纳米笼以高于纳米棒的注射剂量百分比从体内排泄。这些发现暗示了这些构建体在诊断和治疗应用中的用途。 (C)2015 Elsevier B.V.保留所有权利。

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