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基于磁铁矿的生物传感器和分子逻辑门:从磁铁矿合成到应用。

Magnetite-Based Biosensors and Molecular Logic Gates: From Magnetite Synthesis to Application.

机构信息

Bar-Ilan Institute of Nanotechnology & Advanced Materials (BINA), Bar Ilan University, Ramat Gan 5290002, Israel.

Faculty of Engineering and Bar-Ilan Institute of Nanotechnology & Advanced Materials (BINA), Bar Ilan University, Ramat Gan 5290002, Israel.

出版信息

Biosensors (Basel). 2023 Feb 21;13(3):304. doi: 10.3390/bios13030304.

Abstract

In the last few decades, point-of-care (POC) sensors have become increasingly important in the detection of various targets for the early diagnostics and treatment of diseases. Diverse nanomaterials are used as building blocks for the development of smart biosensors and magnetite nanoparticles (MNPs) are among them. The intrinsic properties of MNPs, such as their large surface area, chemical stability, ease of functionalization, high saturation magnetization, and more, mean they have great potential for use in biosensors. Moreover, the unique characteristics of MNPs, such as their response to external magnetic fields, allow them to be easily manipulated (concentrated and redispersed) in fluidic media. As they are functionalized with biomolecules, MNPs bear high sensitivity and selectivity towards the detection of target biomolecules, which means they are advantageous in biosensor development and lead to a more sensitive, rapid, and accurate identification and quantification of target analytes. Due to the abovementioned properties of functionalized MNPs and their unique magnetic characteristics, they could be employed in the creation of new POC devices, molecular logic gates, and new biomolecular-based biocomputing interfaces, which would build on new ideas and principles. The current review outlines the synthesis, surface coverage, and functionalization of MNPs, as well as recent advancements in magnetite-based biosensors for POC diagnostics and some perspectives in molecular logic, and it also contains some of our own results regarding the topic, which include synthetic MNPs, their application for sample preparation, and the design of fluorescent-based molecular logic gates.

摘要

在过去几十年中,即时检测(POC)传感器在各种目标物的检测中变得越来越重要,用于疾病的早期诊断和治疗。各种纳米材料被用作开发智能生物传感器的构建块,其中包括磁铁矿纳米颗粒(MNPs)。MNPs 的固有特性,例如其大的表面积、化学稳定性、易于功能化、高饱和磁化强度等,意味着它们在生物传感器中有很大的应用潜力。此外,MNPs 的独特特性,例如对外磁场的响应,使其能够在流体介质中轻松地被操纵(浓缩和再分散)。由于 MNPs 被生物分子功能化,它们对目标生物分子的检测具有高灵敏度和选择性,这意味着它们在生物传感器的开发中具有优势,并能实现对目标分析物的更敏感、快速和准确的识别和定量。由于功能化 MNPs 的上述特性及其独特的磁性特性,它们可以用于创建新的 POC 设备、分子逻辑门和新的基于生物分子的生物计算接口,这些接口将建立在新的思想和原理之上。本综述概述了 MNPs 的合成、表面覆盖和功能化,以及基于磁铁矿的生物传感器在 POC 诊断方面的最新进展和分子逻辑方面的一些观点,还包含了我们自己在这一主题上的一些研究成果,包括合成的 MNPs、它们在样品制备中的应用以及荧光分子逻辑门的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45c7/10046048/ea1807c38322/biosensors-13-00304-g001.jpg

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