金纳米棒用于基于光的肺癌治疗诊断。

Gold Nanorods for Light-Based Lung Cancer Theranostics.

机构信息

School of Electronic and Electrical Engineering, University of Leeds, Leeds LS2 9JT, UK.

Leeds Institute of Cancer and Pathology, University of Leeds, Leeds LS9 7TF, UK.

出版信息

Int J Mol Sci. 2018 Oct 25;19(11):3318. doi: 10.3390/ijms19113318.

Abstract

Gold nanorods (AuNRs) have the potential to be used in photoacoustic (PA) imaging and plasmonic photothermal therapy (PPTT) due to their unique optical properties, biocompatibility, controlled synthesis, and tuneable surface plasmon resonances (SPRs). Conventionally, continuous-wave (CW) lasers are used in PPTT partly due to their small size and low cost. However, if pulsed-wave (PW) lasers could be used to destroy tissue then combined theranostic applications, such as PA-guided PPTT, would be possible using the same laser system and AuNRs. In this study, we present the effects of AuNR size on PA response, PW-PPTT efficacy, and PA imaging in a tissue-mimicking phantom, as a necessary step in the development of AuNRs towards clinical use. At equivalent NP/mL, the PA signal intensity scaled with AuNR size, indicating that overall mass has an effect on PA response, and reinforcing the importance of efficient tumour targeting. Under PW illumination, all AuNRs showed toxicity at a laser fluence below the maximum permissible exposure to skin, with a maximum of 80% cell-death exhibited by the smallest AuNRs, strengthening the feasibility of PW-PPTT. The theranostic potential of PW lasers combined with AuNRs has been demonstrated for application in the lung.

摘要

金纳米棒(AuNRs)由于其独特的光学性质、生物相容性、可控合成和可调谐表面等离子体共振(SPRs),有望用于光声(PA)成像和等离子体光热治疗(PPTT)。传统上,由于体积小、成本低,连续波(CW)激光被用于 PPTT。然而,如果可以使用脉冲波(PW)激光来破坏组织,那么结合 PA 引导的 PPTT 等治疗诊断应用,就可以使用相同的激光系统和 AuNRs。在这项研究中,我们研究了 AuNR 尺寸对 PA 响应、PW-PPTT 疗效和组织模拟体中 PA 成像的影响,这是 AuNR 向临床应用发展的必要步骤。在相同的 NP/mL 下,PA 信号强度与 AuNR 尺寸成正比,表明总体质量对 PA 响应有影响,这也加强了高效肿瘤靶向的重要性。在 PW 照射下,所有 AuNRs 在激光通量低于皮肤最大允许暴露量的情况下都显示出毒性,最小的 AuNRs 表现出最大 80%的细胞死亡,这增强了 PW-PPTT 的可行性。PW 激光与 AuNRs 的联合治疗诊断潜力已在肺部应用中得到证明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bef/6274674/db384c9c35f8/ijms-19-03318-g001.jpg

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