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上转换纳米材料掺杂 AuNPs 的光动力治疗及多模态成像。

Photodynamic Therapy and Multi-Modality Imaging of Up-Conversion Nanomaterial Doped with AuNPs.

机构信息

Beijing Key Laboratory of Electrochemical Process and Technology of Materials, School of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

State Key Laboratory of Organic-Inorganic Composites, School of Chemical Engineering, School of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Int J Mol Sci. 2022 Jan 22;23(3):1227. doi: 10.3390/ijms23031227.

Abstract

Two key concerns exist in contemporary cancer chemotherapy in clinic: limited therapeutic efficiency and substantial side effects in patients. In recent years, researchers have been investigating a revolutionary cancer treatment technique, and photodynamic therapy (PDT) has been proposed by many scholars. A drug for photodynamic cancer treatment was synthesized using the hydrothermal method, which has a high efficiency to release reactive oxygen species (ROS). It may also be utilized as a clear multi-modality bioimaging platform for photoacoustic imaging (PAI) due to its photothermal effect, computed tomography (CT), and magnetic resonance imaging (MRI). When compared to single-modality imaging, multi-modality imaging delivers far more thorough and precise details for cancer diagnosis. Furthermore, Au-doped up-conversion nanoparticles (UCNPs) have an exceptionally high luminous intensity. The Au-doped UCNPs, in particular, are non-toxic to tissues without laser at an 808 nm wavelength, endowing the as-prepared medications with outstanding therapeutic efficacy but exceptionally low side effects. These findings may encourage fresh effective imaging-guided approaches to meet the goal of photodynamic cancer therapy to be created.

摘要

在当代癌症化疗临床中存在两个主要问题

患者的治疗效率有限和严重的副作用。近年来,研究人员一直在探索一种革命性的癌症治疗技术,光动力疗法(PDT)已经被许多学者提出。一种用于光动力癌症治疗的药物是通过水热法合成的,该方法具有高效释放活性氧(ROS)的特点。由于其光热效应、计算机断层扫描(CT)和磁共振成像(MRI),它也可用作清晰的多模态生物成像平台用于光声成像(PAI)。与单模态成像相比,多模态成像为癌症诊断提供了更全面、更精确的细节。此外,金掺杂上转换纳米粒子(UCNPs)具有极高的发光强度。特别是金掺杂的 UCNPs 在 808nm 波长的激光下对组织无毒,赋予了所制备的药物优异的治疗效果和极低的副作用。这些发现可能会鼓励新的有效的成像引导方法的创建,以实现光动力癌症治疗的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bae/8835744/90f59d21c4cc/ijms-23-01227-g009.jpg

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