磁性纳米乳的合成与表征及其在癌症治疗中的应用前景

P. P. Macaroff, F. L. Primo, R. Azevedo, E. Lima, P. Morais, A. Tedesco
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引用次数: 17

摘要

在这项研究中,我们合成并表征了一种名为磁性纳米乳(MNE)的新型药物递送系统,它允许PDT和HPT治疗的联合作用,以协同方式工作,在最小剂量的散热和/或可见光光敏后导致预期的肿瘤损伤增强。本研究中使用的MNPs表面涂有磷酸盐(PPT),使用的光敏剂是酞菁锌衍生物(ZnPC)。透射电镜观察了MNEs的形态特征。为了评价PS在MNEs上的捕获效率,我们采用了紫外-可见光谱技术。利用时间分辨光谱技术研究了MNE/ZnPC、MNE/PPT和MNE/ZnPC/PPT的光物理性质(三重态寿命和单线态氧量子产率)。用三态-三态吸收闪光光解法测定了三态寿命。在355 nm Nd-YAG激光激发下,测量了MNE/ZnPC和MNE/ZnPC/PPT在480 nm处的衰减曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and Characterization of a Magnetic Nanoemulsion as a Promissing Candidate for Cancer Treatment
In this study, we performed the synthesis and characterization of a new class of drug delivery system denominated magnetic nanoemulsion (MNE), which allows the combined action of PDT and HPT therapies, designed to work in a synergic way, leading to an expected enhancement of the tumor damage after minimum doses of heat dissipation and/or visible light photosensitization. The MNPs used in this work are surface-coated with phosphate (PPT) and the photosensitizer used is Zinc phthalocyanine derivative (ZnPC). The morphologic characteristics of MNEs were investigated by transmission electron microscopy. In order to evaluate the entrapment efficiency of PS present on MNEs, we used the UV-vis spectroscopic technique. Photophysical properties of MNE/ZnPC, MNE/PPT and MNE/ZnPC/PPT were studied by time-resolved spectroscopic techniques (triplet lifetimes and singlet oxygen quantum yields). The triplet lifetimes were measured by triplet-triplet absorption flash photolysis.The decay profiles of the MNE/ZnPC and MNE/ZnPC/PPT were measured at 480 nm, under 355 nm Nd-YAG laser excitation.
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