Suppr超能文献

基于铁氧化物的利用橙废料仿生合成磁性纳米粒子及其作为光激活型抗菌剂的应用。

Bioinspired Synthesis of Magnetic Nanoparticles Based on Iron Oxides Using Orange Waste and Their Application as Photo-Activated Antibacterial Agents.

机构信息

Department of Materials, Escuela Politécnica Nacional (EPN), Quito 170525, Ecuador.

Laboratorio de Investigación en Citogenética y Biomoléculas de Anfibios (LICBA), Centro de Investigación para la Salud en América Latina (CISeAL), Facultad de Ciencias Exactas y Naturales, Pontificia Universidad Católica del Ecuador (PUCE), Quito 170143, Ecuador.

出版信息

Int J Mol Sci. 2023 Mar 1;24(5):4770. doi: 10.3390/ijms24054770.

Abstract

Magnetic nanoparticles based on iron oxides (MNPs-Fe) have been proposed as photothermal agents (PTAs) within antibacterial photothermal therapy (PTT), aiming to counteract the vast health problem of multidrug-resistant bacterial infections. We present a quick and easy green synthesis (GS) to prepare MNPs-Fe harnessing waste. Orange peel extract (organic compounds) was used as a reducing, capping, and stabilizing agent in the GS, which employed microwave (MW) irradiation to reduce the synthesis time. The produced weight, physical-chemical features and magnetic features of the MNPs-Fe were studied. Moreover, their cytotoxicity was assessed in animal cell line ATCC RAW 264.7, as well as their antibacterial activity against and . We found that the 50GS-MNPs-Fe sample (prepared by GS, with 50% v/v of NHOH and 50% v/v of orange peel extract) had an excellent mass yield. Its particle size was ~50 nm with the presence of an organic coating (terpenes or aldehydes). We believe that this coating improved the cell viability in extended periods (8 days) of cell culture with concentrations lower than 250 µg·mL, with respect to the MNPs-Fe obtained by CO and single MW, but it did not influence the antibacterial effect. The bacteria inhibition was attributed to the plasmonic of 50GS-MNPs-Fe (photothermal effect) by irradiation with red light (630 nm, 65.5 mW·cm, 30 min). We highlight the superparamagnetism of the 50GS-MNPs-Fe over 60 K in a broader temperature range than the MNPs-Fe obtained by CO (160.09 K) and MW (211.1 K). Therefore, 50GS-MNPs-Fe could be excellent candidates as broad-spectrum PTAs in antibacterial PTT. Furthermore, they might be employed in magnetic hyperthermia, magnetic resonance imaging, oncological treatments, and so on.

摘要

基于氧化铁的磁性纳米粒子(MNPs-Fe)已被提议作为光热剂(PTAs)用于抗菌光热治疗(PTT),旨在对抗多药耐药细菌感染这一巨大的健康问题。我们提出了一种快速简便的绿色合成(GS)方法,利用废物制备 MNPs-Fe。橙皮提取物(有机化合物)被用作 GS 的还原剂、封端剂和稳定剂,采用微波(MW)辐射来缩短合成时间。研究了 MNPs-Fe 的产率、物理化学特性和磁特性。此外,还在动物细胞系 ATCC RAW 264.7 中评估了它们的细胞毒性,以及它们对 和 的抗菌活性。我们发现,50GS-MNPs-Fe 样品(通过 GS 制备,NHOH 和橙皮提取物的体积比为 50:50)具有优异的质量产率。其粒径约为 50nm,表面存在有机涂层(萜烯或醛类)。我们认为,与 CO 和单 MW 获得的 MNPs-Fe 相比,这种涂层在细胞培养延长至 8 天、浓度低于 250μg·mL 的情况下,提高了细胞存活率,但不影响抗菌效果。细菌抑制归因于 50GS-MNPs-Fe 的等离子体(光热效应)通过红光(630nm,65.5mW·cm,30min)照射。与 CO (160.09K)和 MW (211.1K)获得的 MNPs-Fe 相比,50GS-MNPs-Fe 在更宽的温度范围内具有超顺磁性,超过 60K。因此,50GS-MNPs-Fe 可以作为抗菌 PTT 的广谱 PTAs。此外,它们可能用于磁热疗、磁共振成像、肿瘤治疗等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8497/10002579/6768a1678816/ijms-24-04770-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验