Department of Pharmaceutics and Nanotechnology, School of Pharmacy, Shahid Beheshti University of Medical Sciences, Tehran, Iran; Institute of Nanoscience and Nanotechnology, Razi University, Kermanshah, Iran.
Pharmacology and Toxicolgoy, School of Pharmacy, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Toxicol In Vitro. 2018 Aug;50:318-327. doi: 10.1016/j.tiv.2018.02.016. Epub 2018 Mar 2.
Different sunscreens are employed to prevent photo damage (cancer, inflammation, etc.), including ZnO. ZnO is safe when applied as micro-size particle. To overcome some visual problems of ZnO micro-size particles, this sunscreen has been introduced as nano-size particles. Unfortunately, ZnO nanoparticles have raised some health concerns, due to Zn release. On the other hand, it has been shown that ZnO metallic lattice change by metal doping decreases its solubility and toxicity. Therefore, we have decided here to develop new ZnO metallic lattice to reduce its cytotoxicity. In this study, Ag-promoted Zn-based nanocompounds [Zn(O):Ag] were synthesized as a novel compound and were characterized. XRD analysis showed that Ag ion percolates into ZnO crystalline lattice and changes its lattice properties (strength bond, vacancies, and etc.). Cell culture studies and MTT assay on human skin (HFF-1) cells exposed to UVA radiation showed that [Zn(O):Ag] was increased cells viability in the presence of UVA radiation compared to ZnO. Actually, Ag ion has catalyzed photoactivity of ZnO compound. UV-blocking tests showed that UVA-absorbance of [Zn(O):Ag] has increased compared to ZnO. Dichlorofluoroscein diacetate-ROS assay and Zn release experiments in the presence of cells showed that [Zn(O):Ag] has reduced Zn ions release into culture medium and its toxicity. Our study shows that doped ZnO nanostructure has the potential to be applied as a safe and effective nanoparticulate sunscreen.
不同的防晒霜被用于预防光损伤(癌症、炎症等),包括 ZnO。当 ZnO 以微尺寸颗粒形式使用时是安全的。为了克服 ZnO 微尺寸颗粒的一些视觉问题,这种防晒霜已被引入纳米尺寸颗粒。不幸的是,由于 Zn 释放,ZnO 纳米颗粒引起了一些健康问题。另一方面,已经表明通过金属掺杂改变 ZnO 金属晶格可以降低其溶解度和毒性。因此,我们在这里决定开发新的 ZnO 金属晶格以降低其细胞毒性。在这项研究中,Ag 促进的 Zn 基纳米复合物 [Zn(O):Ag] 被合成并进行了表征。XRD 分析表明,Ag 离子渗透到 ZnO 晶格中并改变其晶格性质(键强度、空位等)。细胞培养研究和 MTT assay 表明,与 ZnO 相比,暴露于 UVA 辐射下的人皮肤(HFF-1)细胞中的 [Zn(O):Ag] 增加了细胞活力。实际上,Ag 离子催化了 ZnO 化合物的光活性。UV 阻断测试表明,[Zn(O):Ag] 的 UVA 吸收率比 ZnO 有所增加。二氯荧光素二乙酸酯-ROS assay 和细胞存在下的 Zn 释放实验表明,[Zn(O):Ag] 减少了 Zn 离子向培养基中的释放及其毒性。我们的研究表明,掺杂 ZnO 纳米结构有可能作为安全有效的纳米颗粒防晒霜。