量子点作为钩端螺旋体活细胞成像的荧光标记工具。

IF 5.8 3区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Pub Date : 2024-07-05 DOI:10.1039/d4nr00543k
Yotsakorn Tantiapibalkun, Sopon Nuchpun, Wid Mekseriwattana, Sukhonta Limsampan, Galayanee Doungchawee, Kulachart Jangpatarapongsa, Toemsak Srikhirin, Kanlaya Prapainop Katewongsa
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引用次数: 0

摘要

钩端螺旋体病是由属于钩端螺旋体属的革兰氏阴性致病菌引起的全球公共卫生问题。这种疾病通过受感染动物的尿液传播,尿液污染了水和土壤,导致其他动物和人类感染。目前,已有几种方法可以检测这些细菌,但还需要一种新的灵敏方法来对钩端螺旋体进行活细胞成像。在这项研究中,我们报告了碲化镉量子点(CdTe QDs)的绿色合成方法,这是一种独特的荧光纳米晶体,具有高荧光量子产率,能够修饰细胞表面,并且与细胞具有生物相容性。镉碲 QDs 是一种独特的荧光纳米晶体,具有高荧光量子产率,能够修饰细胞表面,并且与细胞具有生物相容性。将 QDs 与一种碳水化合物结合凝集素和已知的革兰氏阴性细菌生物探针--凝集素 A(ConA)--结合,制备出的 ConA-QDs 能够有效地与钩端螺旋体结合,并在简单的荧光显微镜下显示出强烈的荧光,从而能够对细菌进行活细胞成像。总之,我们完成了 ConA-QDs 的简单合成,并证明了其作为多功能荧光探针用于钩端螺旋体活细胞成像的潜力。这项技术可进一步应用于追踪钩端螺旋体细胞和研究其感染机制,从而有助于更透彻地了解钩端螺旋体病以及未来如何控制该病。
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Quantum dots as a fluorescent labeling tool for live-cell imaging of Leptospira.

Leptospirosis is a global public health problem caused by Gram-negative pathogenic bacteria belonging to the genus Leptospira. The disease is transmitted through the urine of infected animals, which contaminates water and soil, leading to the infection of other animals and humans. Currently, several approaches exist to detect these bacteria; however, a new sensitive method for the live-cell imaging of Leptospira is required. In this study, we report the green synthesis of cadmium telluride quantum dots (CdTe QDs) which are unique fluorescent nanocrystals with a high fluorescence quantum yield capable of modifying cell surfaces and are biocompatible with cells. The fabrication of QDs with concanavalin A (ConA), a carbohydrate-binding lectin and known biological probe for Gram-negative bacteria, produced ConA-QDs which can effectively bind on Leptospira and exhibit strong fluorescence under simple fluorescence microscopy, allowing the live-cell imaging of the bacteria. Overall, we performed the simple synthesis of ConA-QDs and demonstrated their potential use as versatile fluorescent probes for the live-cell imaging of Leptospira. This technique could be further applied to track leptospiral cells and study the infection mechanism, contributing to a more thorough understanding of leptospirosis and how to control it in the future.

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来源期刊
Nanoscale
Nanoscale CHEMISTRY, MULTIDISCIPLINARY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
12.10
自引率
3.00%
发文量
1628
审稿时长
1.6 months
期刊介绍: Nanoscale is a high-impact international journal, publishing high-quality research across nanoscience and nanotechnology. Nanoscale publishes a full mix of research articles on experimental and theoretical work, including reviews, communications, and full papers.Highly interdisciplinary, this journal appeals to scientists, researchers and professionals interested in nanoscience and nanotechnology, quantum materials and quantum technology, including the areas of physics, chemistry, biology, medicine, materials, energy/environment, information technology, detection science, healthcare and drug discovery, and electronics.
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