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光整饰:UV-C 辐射对 -介导的单金属(Ag 和 ZnO)和双金属(Ag-ZnO)纳米粒子的生物合成、形貌和临床活性的影响。

Light Tailoring: Impact of UV-C Irradiation on Biosynthesis, Physiognomies, and Clinical Activities of -Mediated Monometallic (Ag and ZnO) and Bimetallic (Ag-ZnO) Nanoparticles.

机构信息

Department of Biotechnology, Kinnaird College for Women, 93-Jail Road, Lahore 54000, Pakistan.

Laboratoire de Biologie des Ligneux et des Grandes Cultures, INRAE USC1328, University of Orléans, CEDEX 2, 45067 Orléans, France.

出版信息

Int J Mol Sci. 2021 Oct 19;22(20):11294. doi: 10.3390/ijms222011294.

Abstract

A nano-revolution based on the green synthesis of nanomaterials could affect all areas of human life, and nanotechnology represents a propitious platform for various biomedical applications. During the synthesis of nanoparticles, various factors can control their physiognomies and clinical activities. Light is one of the major physical factors that can play an important role in tuning/refining the properties of nanoparticles. In this study, biocompatible monometallic (AgNPs and ZnONPs) and bimetallic Ag-ZnONPs (0.1/0.1 and 0.1/0.5) were synthesized under UV-C light irradiation from the leaf extract of , which possesses enriched TPC (4.238 ± 0.26 mg GAE/g DW) and TFC (1.073 ± 0.18 mg QE/g DW), as well as strong FRSA (82.39%). These green synthesized NPs were evaluated for their anti-diabetic, anti-glycation, and biocompatibility activities. Furthermore, their anti-cancerous activity against HepG2 cell lines was assessed in terms of cell viability, production of reactive oxygen/nitrogen species, mitochondrial membrane potential, and apoptotic caspase-3/7 expression and activity. Synthesized NPs were characterized by techniques including ultraviolet-visible spectroscopy, SEM, EDX, FTIR, and XRD. UV-C mediated monometallic and bimetallic NPs showed well-defined characteristic shapes with a more disperse particle distribution, definite crystalline structures, and reduced sizes as compared to their respective controls. In the case of clinical activities, the highest anti-diabetic activity (67.77 ± 3.29% against α-amylase and 35.83 ± 2.40% against α-glucosidase) and anti-glycation activity (37.68 ± 3.34% against pentosidine-like AGEs and 67.87 ± 2.99% against vesperlysine-like AGEs) was shown by UV-C mediated AgNPs. The highest biocompatibility (IC = 14.23 ± 1.68 µg/mL against brine shrimp and 2.48 ± 0.32% hemolysis of human red blood cells) was shown by UV-C mediated ZnONPs. In the case of anti-cancerous activities, the lowest viability (23.45 ± 1.40%) with enhanced ROS/NOS production led to a significant disruption of mitochondrial membrane potential and greater caspase-3/7 gene expression and activity by UV-C mediated bimetallic Ag-ZnONPs (0.1/0.5). The present work highlights the positive effects of UV-C light on physico-chemical physiognomies as well as the clinical activities of NPs.

摘要

基于纳米材料绿色合成的纳米革命可能会影响人类生活的各个领域,而纳米技术代表了各种生物医学应用的有利平台。在纳米粒子的合成过程中,各种因素可以控制它们的形貌和临床活性。光就是可以在调节/改善纳米粒子性质方面发挥重要作用的主要物理因素之一。在这项研究中,通过从富含 TPC(4.238 ± 0.26 mg GAE/g DW)和 TFC(1.073 ± 0.18 mg QE/g DW)以及具有强大 FRSA(82.39%)的叶提取物中在 UV-C 光照射下合成了单金属(AgNPs 和 ZnONPs)和双金属 Ag-ZnONPs(0.1/0.1 和 0.1/0.5)。评估了这些绿色合成的 NPs 的抗糖尿病、抗糖化和生物相容性活性。此外,还根据细胞活力、活性氧/氮物种的产生、线粒体膜电位以及凋亡 caspase-3/7 表达和活性来评估它们对 HepG2 细胞系的抗癌活性。通过包括紫外-可见光谱、SEM、EDX、FTIR 和 XRD 在内的技术对合成的 NPs 进行了表征。与各自的对照相比,UV-C 介导的单金属和双金属 NPs 显示出定义明确的特征形状,具有更分散的颗粒分布、确定的结晶结构和更小的尺寸。就临床活性而言,UV-C 介导的 AgNPs 表现出最高的抗糖尿病活性(对α-淀粉酶为 67.77 ± 3.29%,对α-葡萄糖苷酶为 35.83 ± 2.40%)和抗糖化活性(对戊糖赖氨酸样 AGEs 为 37.68 ± 3.34%,对戊二胺赖氨酸样 AGEs 为 67.87 ± 2.99%)。UV-C 介导的 ZnONPs 表现出最高的生物相容性(对盐水虾的 IC = 14.23 ± 1.68 μg/mL,对人红细胞的溶血率为 2.48 ± 0.32%)。就抗癌活性而言,UV-C 介导的双金属 Ag-ZnONPs(0.1/0.5)导致最低的活力(23.45 ± 1.40%),同时产生更多的 ROS/NOS,导致线粒体膜电位显著破坏,以及 caspase-3/7 基因表达和活性显著增强。本工作强调了 UV-C 光对 NPs 的物理化学形貌以及临床活性的积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b42/8540622/225dff0d64ac/ijms-22-11294-g001.jpg

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