Shi Jinjin, Zhang Hongling, Chen Zhaoyang, Xu Lihua, Zhang Zhenzhong
School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, China.
Asian J Pharm Sci. 2017 May;12(3):235-249. doi: 10.1016/j.ajps.2016.12.001. Epub 2016 Dec 21.
Nanomaterials with multiple functions have become more and more popular in the domain of cancer research. MoS has a great potential in photothermal therapy, X-ray/CT imaging and drug delivery. In this study, a water soluble MoS nanosystem (MoS-PEG) was synthesized and explored in drug delivery, photothermal therapy (PTT) and X-ray imaging. Doxorubicin (DOX) was loaded onto MoS-PEG with a high drug loading efficiency (~69%) and obtained a multifunctional drug delivery system (MoS-PEG/DOX). As the drug delivery, MoS-PEG/DOX could efficiently cross the cell membranes, and escape from the endosome via NIR light irradiation, lead to more apoptosis in MCF-7 cells, and afford higher antitumor efficacy without obvious toxic effects to normal organs owing to its prolonged blood circulation and 11.6-fold higher DTX uptake of tumor than DOX. Besides, MoS-PEG/DOX not only served as a drug delivery system, but also as a powerful PTT agent for thermal ablation of tumor and a strong X-ray contrast agent for tumor diagnosis. In the and studies, MoS-PEG/DOX exhibited excellent tumor-targeting efficacy, outstanding synergistic anti-cancer effect of photothermal and chemotherapy and X-ray imaging property, demonstrating that MoS-PEG/DOX had a great potential for simultaneous diagnosis and photothermal-chemotherapy in cancer treatment.
具有多种功能的纳米材料在癌症研究领域越来越受欢迎。二硫化钼在光热疗法、X射线/CT成像和药物递送方面具有巨大潜力。在本研究中,合成了一种水溶性二硫化钼纳米系统(MoS-PEG),并对其在药物递送、光热疗法(PTT)和X射线成像方面进行了探索。将阿霉素(DOX)以高载药效率(约69%)负载到MoS-PEG上,得到一种多功能药物递送系统(MoS-PEG/DOX)。作为药物递送载体,MoS-PEG/DOX能够有效穿过细胞膜,并通过近红外光照射从内体中逃逸,导致MCF-7细胞中更多的细胞凋亡,且由于其血液循环时间延长以及肿瘤对多西他赛(DTX)的摄取比阿霉素高11.6倍,在对正常器官无明显毒性作用的情况下具有更高的抗肿瘤疗效。此外,MoS-PEG/DOX不仅作为药物递送系统,还作为用于肿瘤热消融的强大光热治疗剂和用于肿瘤诊断的强X射线造影剂。在体内和体外研究中,MoS-PEG/DOX表现出优异的肿瘤靶向疗效、光热与化疗的出色协同抗癌效果以及X射线成像特性,表明MoS-PEG/DOX在癌症治疗的同步诊断和光热化疗方面具有巨大潜力。