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用金纳米颗粒对硒化碲纳米棒进行功能化以增强抗菌和抗癌活性。

Functionalization of Se-Te Nanorods with Au Nanoparticles for Enhanced Anti-Bacterial and Anti-Cancer Activities.

作者信息

Khan Shahin Shah, Ullah Irfan, Zada Shah, Ahmad Aftab, Ahmad Waqar, Xu Haijun, Ullah Sadeeq, Liu Luo

机构信息

College of Life Science and Technology, Beijing University of Chemical Technology, Beijing 100029, China.

Beijing Key Laboratory for Bioengineering and Sensing Technology, Research Center for Bioengineering and Sensing Technology, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

Materials (Basel). 2022 Jul 10;15(14):4813. doi: 10.3390/ma15144813.

Abstract

The use of medical devices for therapeutic and diagnostic purpose is globally increasing; however, bacterial colonization on therapeutic devices can occur, causing severe infections in the human body. It has become an issue for public health. It is necessary to develop a nanomaterial based on photothermal treatment to kill toxic bacterial strains. Appropriately, high photothermal conversion and low-cost powerful photothermal agents have been investigated. Recently, gold nanocomposites have attracted great interest in biological applications. Here, we prepared rod-shaped Se-Te@Au nanocomposites of about 200 nm with uniform shape and surface-coated with gold nanoparticles for the first time showing high anti-bacterial and anti-cancer activities. Se-Te@Au showed proper structural consistency and natural resistance to bacterial and cancer cells. The strong absorption and high photothermal conversion efficacy made it a good photothermal agent material for the photothermal treatment of bacterial and cancer cells. The Se-Te@Au rod showed excellent anti-bacterial efficacy against Gram-negative and Gram-positive with highest recorded inhibition zones of 25 ± 2 mm and 22 ± 2 mm, respectively. More than 99% of both types of strains were killed after 5 min with a near-infrared (NIR) laser at the very low concentration of 48 µg/mL. The Se-Te@Au rod's explosion in HeLa cells was extensively repressed and demonstrated high toxicity at 100 µg/mL for 5 min when subjected to an NIR laser. As a result of its high photothermal characteristics, the exceptional anti-bacterial and anti-cancer effects of the Se-Te@Au rod are considerably better than those of other methods previously published in articles. This study could open a new framework for sterilization applications on the industrial level.

摘要

用于治疗和诊断目的的医疗设备在全球范围内的使用正在增加;然而,治疗设备上可能会发生细菌定植,从而在人体中引起严重感染。这已成为一个公共卫生问题。有必要开发一种基于光热处理的纳米材料来杀死有毒细菌菌株。相应地,人们已经研究了高光热转换和低成本的强大光热剂。最近,金纳米复合材料在生物应用中引起了极大的兴趣。在这里,我们首次制备了形状均匀、表面包覆金纳米颗粒的约200nm棒状Se-Te@Au纳米复合材料,其显示出高抗菌和抗癌活性。Se-Te@Au表现出适当的结构一致性以及对细菌和癌细胞的天然抗性。强烈的吸收和高光热转换效率使其成为用于细菌和癌细胞光热处理的良好光热剂材料。Se-Te@Au棒对革兰氏阴性菌和革兰氏阳性菌均表现出优异的抗菌效果,记录到的最大抑菌圈分别为25±2mm和22±2mm。在极低浓度48μg/mL下用近红外(NIR)激光照射5分钟后,两种菌株的杀灭率均超过99%。当在NIR激光照射下,Se-Te@Au棒在HeLa细胞中的增殖受到广泛抑制,并在100μg/mL浓度下照射5分钟时显示出高毒性。由于其高光热特性,Se-Te@Au棒卓越的抗菌和抗癌效果比之前文章中发表的其他方法要好得多。这项研究可以为工业层面的杀菌应用开辟一个新的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbe1/9316951/d38f898d7422/materials-15-04813-g001.jpg

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