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用于光热应用的混合等离子体共轭物中的协同效应。

Synergistic Effect in Hybrid Plasmonic Conjugates for Photothermal Applications.

作者信息

Savchuk Viktoriia, Wang Ruizheng, Small Lyle, Pinchuk Anatoliy

机构信息

Department of Physics and Energy Science, University of Colorado Colorado Springs, 1420 Austin Bluffs Parkway, Colorado Springs, Colorado 80918, United States.

Biofrontiers Institute and Department of Physics and Energy Science, University of Colorado Colorado Springs, 1420 Austin Bluffs Pkwy, Colorado Springs, Colorado 80918, United States.

出版信息

ACS Omega. 2024 Nov 19;9(48):47436-47441. doi: 10.1021/acsomega.4c05068. eCollection 2024 Dec 3.

Abstract

Photothermal conversion efficiency (η) plays a crucial role in selecting suitable gold nanoparticles for photothermal therapeutic applications. The photothermal efficiency depends on the material used for the nanoparticles as well as their various parameters, such as size and shape. By maximizing the light-to-heat conversion efficiency (η), one can reduce the concentration of nanoparticle drugs for photothermal cancer treatment and apply lower laser power to irradiate the tumor. In our study, we explored a new hybrid plasmonic conjugate for theranostic (therapy + diagnostic) applications. We conjugated PEG-functionalized 20 nm gold nanospheres with cyanine IR dyes via a PEG linker. The resulting conjugates exhibited significantly enhanced photothermal properties compared with bare nanoparticles. We experimentally showed that a proposed new hybrid plasmonic conjugate can achieve almost four times larger conversion efficiency (47.7%) than 20 nm gold nanospheres (12%). The enhanced photothermal properties of these gold conjugates can provide the required temperature for the photothermal treatment of cancer cells with lower concentrations of gold nanoparticles injected in the body as well as with lower applied incident laser power density. Moreover, the improved photothermal properties of the conjugates can be explained by a synergistic effect that has not been observed in the past. This effect results from the coupling between the metal nanosphere and the organic dye.

摘要

光热转换效率(η)在选择适用于光热治疗应用的金纳米颗粒方面起着至关重要的作用。光热效率取决于用于纳米颗粒的材料及其各种参数,如尺寸和形状。通过最大化光热转换效率(η),可以降低用于光热癌症治疗的纳米颗粒药物浓度,并施加较低的激光功率来照射肿瘤。在我们的研究中,我们探索了一种用于治疗诊断(治疗+诊断)应用的新型混合等离子体共轭物。我们通过聚乙二醇(PEG)连接体将聚乙二醇功能化的20纳米金纳米球与花菁红外染料共轭。与裸纳米颗粒相比,所得共轭物表现出显著增强的光热性能。我们通过实验表明,一种新型混合等离子体共轭物的转换效率(47.7%)几乎是20纳米金纳米球(12%)的四倍。这些金共轭物增强的光热性能可以在向体内注射较低浓度的金纳米颗粒以及施加较低的入射激光功率密度的情况下,为癌细胞的光热治疗提供所需的温度。此外,共轭物光热性能的改善可以用过去未观察到的协同效应来解释。这种效应源于金属纳米球与有机染料之间的耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ead3/11618431/2f8df8f16de6/ao4c05068_0001.jpg

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