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用于光激活肿瘤治疗的功能化上转换纳米粒子的最新进展

Recent advances in functionalized upconversion nanoparticles for light-activated tumor therapy.

作者信息

Chu Hongqian, Cao Tingming, Dai Guangming, Liu Bei, Duan Huijuan, Kong Chengcheng, Tian Na, Hou Dailun, Sun Zhaogang

机构信息

Translational Medicine Center, Beijing Chest Hospital, Capital Medical University Beijing 101149 PR China

Beijing Key Laboratory in Drug Resistant Tuberculosis Research, Beijing Tuberculosis and Thoracic Tumor Research Institute Beijing 101149 PR China.

出版信息

RSC Adv. 2021 Nov 3;11(56):35472-35488. doi: 10.1039/d1ra05638g. eCollection 2021 Oct 28.

Abstract

Upconversion nanoparticles (UCNPs) are a class of optical nanocrystals doped with lanthanide ions that offer great promise for applications in controllable tumor therapy. In recent years, UCNPs have become an important tool for studying the treatment of various malignant and nonmalignant cutaneous diseases. UCNPs convert near-infrared (NIR) radiation into shorter-wavelength visible and ultraviolet (UV) radiation, which is much better than conventional UV activated tumor therapy as strong UV-light can be damaging to healthy surrounding tissue. Moreover, UV light generally does not penetrate deeply into the skin, an issue that UCNPs can now address. However, the current studies are still in the early stage of research, with a long way to go before clinical implementation. In this paper, we systematically analysed recent advances in light-activated tumor therapy using functionalized UCNPs. We summarized the purpose and mechanism of UCNP-based photodynamic therapy (PDT), gene therapy, immunotherapy, chemo-therapy and integrated therapy. We believe the creation of functional materials based on UCNPs will offer superior performance and enable innovative applications, increasing the scope and opportunities for cancer therapy in the future.

摘要

上转换纳米粒子(UCNPs)是一类掺杂镧系离子的光学纳米晶体,在可控肿瘤治疗应用方面具有巨大潜力。近年来,UCNPs已成为研究各种恶性和非恶性皮肤疾病治疗的重要工具。UCNPs将近红外(NIR)辐射转换为波长更短的可见光和紫外线(UV)辐射,这比传统的紫外线激活肿瘤治疗要好得多,因为强紫外线会对周围健康组织造成损害。此外,紫外线通常不能深入穿透皮肤,而UCNPs现在可以解决这个问题。然而,目前的研究仍处于早期阶段,距离临床应用还有很长的路要走。在本文中,我们系统地分析了使用功能化UCNPs进行光激活肿瘤治疗的最新进展。我们总结了基于UCNP的光动力疗法(PDT)、基因疗法、免疫疗法、化学疗法和综合疗法的目的和机制。我们相信,基于UCNPs的功能材料的创造将提供卓越的性能,并实现创新应用,增加未来癌症治疗的范围和机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae55/9043211/0317792a4298/d1ra05638g-f1.jpg

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