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由路易波士茶合成的植物介导的银和金纳米颗粒的细胞毒性作用,以及阿萨伊因。

Cytotoxic Effects of Phytomediated Silver and Gold Nanoparticles Synthesised from Rooibos ), and Aspalathin.

作者信息

Akinfenwa Akeem O, Abdul Naeem S, Docrat Fathima T, Marnewick Jeanine L, Luckay Robbie C, Hussein Ahmed A

机构信息

Department of Chemistry, Cape Peninsula University of Technology, Bellville 7535, South Africa.

Applied Microbial and Health Biotechnology Institute, Cape Peninsula University of Technology, Bellville 7535, South Africa.

出版信息

Plants (Basel). 2021 Nov 15;10(11):2460. doi: 10.3390/plants10112460.

Abstract

The green chemistry approach has continuously been applied for the synthesis of functional nanomaterials to reduce waste, environmental hazards, and the use of toxic chemicals among other reasons. Bioactive natural compounds have been found great potential in this regard and are used to improve the stability, activity, and biodistribution of metal nanoparticles (MNPs). Aspalathin (ASP) from (rooibos) has a well-defined pharmacological profile and functional groups capable of both reducing and capping agents in the synthesis of metallic nanoparticles (NP). This study provides the first report of the phytomediated synthesis of gold and silver nanoparticles (AuNPs/AgNPs) via ASP and the green rooibos (GR) extract. The study demonstrated a green chemistry approach to the biosynthesis of nanoparticles of GR-AuNPs, ASP-AuNPs, GR-AgNPs, and ASP-AgNPs. The results showed that GR and ASP could act both as reducing and stabilising agents in the formation of crystalline, with different shapes and dispersity of NPs in the ranges of 1.6-6.7 nm for AgNPs and 7.5-12.5 nm for the AuNPs. However, the ASP NPs were less stable in selected biogenic media compared to GR NPs and were later stabilised with polyethene glycol. The cytotoxicity studies showed that GR-AgNPs were the most cytotoxic against SH-SY5Y and HepG2 with IC 108.8 and 183.4 μg/mL, respectively. The cellular uptake analysis showed a high uptake of AuNPs and indicated that AgNPs of rooibos at a lower dose (1.3-1.5 μg/mL) is favourable for its anticancer potential. This study is a contribution to plant-mediated metallic nanoparticles using a pure single compound that can be further developed for targeted drug delivery for cancer cells treatments in the coming years.

摘要

绿色化学方法已不断应用于功能纳米材料的合成,以减少废物、环境危害以及有毒化学品的使用等。在这方面,生物活性天然化合物已显示出巨大潜力,并被用于改善金属纳米颗粒(MNPs)的稳定性、活性和生物分布。来自南非红叶茶(路易波士茶)的阿萨伊因(ASP)具有明确的药理特性和官能团,能够在金属纳米颗粒(NP)的合成中充当还原剂和封端剂。本研究首次报道了通过ASP和绿色路易波士茶(GR)提取物进行植物介导的金和银纳米颗粒(AuNPs/AgNPs)的合成。该研究展示了一种绿色化学方法用于生物合成GR - AuNPs、ASP - AuNPs、GR - AgNPs和ASP - AgNPs纳米颗粒。结果表明,GR和ASP在形成晶体过程中既可以充当还原剂又可以充当稳定剂,所形成的纳米颗粒具有不同形状,AgNPs的粒径范围为1.6 - 6.7 nm,AuNPs的粒径范围为7.5 - 12.5 nm。然而,与GR纳米颗粒相比,ASP纳米颗粒在选定的生物介质中稳定性较差,随后用聚乙二醇进行了稳定化处理。细胞毒性研究表明,GR - AgNPs对SH - SY5Y和HepG2细胞的细胞毒性最大,IC50分别为108.8和183.4 μg/mL。细胞摄取分析表明AuNPs具有较高的摄取量,并且表明较低剂量(1.3 - 1.5 μg/mL)的路易波士茶AgNPs有利于其抗癌潜力。本研究为利用纯单一化合物进行植物介导的金属纳米颗粒研究做出了贡献,该研究成果在未来几年可进一步开发用于癌细胞治疗的靶向药物递送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce1d/8620073/0b9e651d19e7/plants-10-02460-g001.jpg

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