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用于近红外IIb波段按需上转换光动力治疗和高对比度近红外成像的解耦稀土纳米颗粒

Decoupled Rare-Earth Nanoparticles for On-Demand Upconversion Photodynamic Therapy and High-Contrast Near Infrared Imaging in NIR IIb.

作者信息

Raab Micah, Skripka Artiom, Bulmahn Julia, Pliss Artem, Kuzmin Andrey, Vetrone Fiorenzo, Prasad Paras

机构信息

Institute for Lasers, Photonics, and Biophotonics, University at Buffalo (SUNY), Buffalo, New York 14260-4200, United States.

Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, New York 14260, United States.

出版信息

ACS Appl Bio Mater. 2022 Sep 26. doi: 10.1021/acsabm.2c00675.

Abstract

Rare-earth doped multi-shell nanoparticles slated for theranostic applications produce a variety of emission bands upon near-infrared (NIR) excitation. Their downshifting emission is useful for high-contrast NIR imaging, while the upconversion light can induce photodynamic therapy (PDT). Unfortunately, integration of imaging and therapy is challenging. These modalities are better to be controlled independently so that, with the help of imaging, selective delivery of a theranostic agent at the site of interest could be ensured prior to on-demand PDT initiation. We introduce here multi-shell rare-earth doped nanoparticles (RENPs) arranged in a manner to produce only downshifting emission for NIR imaging when excited at one NIR wavelength and upconversion emission for therapeutic action by using a different excitation wavelength. In this work, multi-shell RENPs with a surface-bound sensitizer have been synthesized for decoupled 1550 nm downshifting emission upon 800 nm excitation and 550 nm upconversion emission caused by 980 nm irradiation. The independently controlled emission bands allow for high-contrast NIR imaging in NIR-IIb of optical transparency that gives high-contrast images due to significantly reduced light scattering. This can be conducted prior to PDT using 980 nm to produce upconverted light at 550 nm that excites the RENP surface-bound photosensitizer, Rose Bengal (RB), to effect photodynamic therapy with high specificity and safer theranostics.

摘要

用于诊疗应用的稀土掺杂多壳层纳米颗粒在近红外(NIR)激发下会产生多种发射带。它们的向下转换发射可用于高对比度近红外成像,而上转换光可诱导光动力疗法(PDT)。不幸的是,成像与治疗的整合具有挑战性。最好能独立控制这些模式,以便在成像的帮助下,在按需启动光动力疗法之前确保在感兴趣部位选择性递送诊疗剂。我们在此介绍一种多壳层稀土掺杂纳米颗粒(RENPs),其排列方式是在一个近红外波长激发时仅产生用于近红外成像的向下转换发射,而在使用不同激发波长时产生用于治疗作用的上转换发射。在这项工作中,合成了具有表面结合敏化剂的多壳层RENPs,在800 nm激发下实现解耦的1550 nm向下转换发射,并在980 nm照射下产生550 nm上转换发射。独立控制的发射带允许在光学透明度高的近红外IIb波段进行高对比度近红外成像,由于光散射显著减少,可提供高对比度图像。这可以在使用980 nm进行光动力疗法之前进行,以产生550 nm的上转换光,激发RENPs表面结合的光敏剂孟加拉玫瑰红(RB),从而实现具有高特异性和更安全的诊疗效果的光动力疗法。

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