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用于病毒控制和荧光检测的萘酰亚胺功能化沸石咪唑酯骨架-8的可行性制备:模型研究的优化

Feasible Preparation of Naphthalimide-Functionalized Zeolitic Imidazolate Framework-8 for Control, and Fluorescence Detection of Virus: Optimization of Model Study.

作者信息

Al-Shwaiman Hind A, Zairov Rustem R, Syed Asad, Subramaniam Manjula, Verma Meenakshi, Janani Baadal Jushi, Amer Ramadan Fallah

机构信息

Department of Botany and Microbiology, College of Science, King Saud University, P.O. 2455, Riyadh, 11451, Saudi Arabia.

Alexander Butlerov Institute of Chemistry, Kazan Federal University, 1/29 Lobachevskogo Str, Kazan, 420008, Russian Federation.

出版信息

J Fluoresc. 2024 Dec 3. doi: 10.1007/s10895-024-04042-8.

Abstract

The onset of the coronavirus has highlighted the critical need to swift diagnostic techniques to identify the virus. Metal Organic Frameworks (MOFs) have attracted considerable attention in the field of sensing due to the remarkable characteristics. The present research examines the microwave preparation of naphthalimide-functionalized zeolitic imidazolate framework-8 (NI/ZIF-8) to the detection of coronavirus as a probe. The microwave synthesis approach facilitates an environmentally sustainable, and effective production of NI/ZIF-8. Characterization techniques have validated the material's high crystallinity and thermal behaviour. In order to enhance the performance of the probe, a 2 factorial model is implemented. This model facilitates the influences of control parameters, including NI/ZIF-8 dose, solution temperature, and buffer pH, on quenching response. The findings indicate the 27 °C, pH 8.2, and a NI/ZIF-8 dose of 0.6 mg/mL yields the maximum quenching response (83.21%). Additionally, it has been determined that photo electron transfer plays a significant role within the quenching process. The sensor demonstrated remarkable sensitivity to the COVID-19 RNA, achieving an exceptionally detection limit of 5.45 pM and a quick sense (20 min), alongside a high detection selectivity of RNA. This project underscores the applicability of NI/ZIF-8 as an effective and eco-friendly sustainable substance for the rapid and accurate detection of RNA of COVID-19.

摘要

冠状病毒的爆发凸显了对快速诊断技术以识别该病毒的迫切需求。金属有机框架(MOFs)因其卓越的特性在传感领域引起了相当大的关注。本研究考察了微波制备萘二甲酰亚胺功能化沸石咪唑酯骨架-8(NI/ZIF-8)作为检测冠状病毒的探针。微波合成方法有助于实现环境可持续且高效地生产NI/ZIF-8。表征技术验证了该材料的高结晶度和热行为。为了提高探针的性能,实施了一个二因素模型。该模型有助于研究包括NI/ZIF-8剂量、溶液温度和缓冲液pH值等控制参数对猝灭响应的影响。研究结果表明,在27°C、pH 8.2以及NI/ZIF-8剂量为0.6mg/mL时,可产生最大猝灭响应(83.21%)。此外,已确定光电子转移在猝灭过程中起重要作用。该传感器对COVID-19 RNA表现出显著的灵敏度,实现了5.45 pM的极低检测限和快速检测(20分钟),同时对RNA具有高检测选择性。该项目强调了NI/ZIF-8作为一种有效且环保的可持续物质用于快速准确检测COVID-19 RNA的适用性。

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