基于 CRISPR 的动物健康电化学生物传感器:最新进展。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Anil Gattani , Sanju Mandal , Aditya Agrawal , Pragati Patel , Anand Kumar Jain , Purnima Singh , Akshay Garg , Aditya Mishra
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引用次数: 0

摘要

动物疾病是关系到动物福利、人类健康和全球经济的重大问题。这些动物疾病的早期检测、预防和控制对于确保畜牧业的可持续发展、减少农场损失和保护公众健康至关重要。护理点(POC)设备是一种小型便携式仪器,可提供快速检测结果,从而降低疾病传播的风险,实现早期干预。基于 CRISPR 的诊断因其反应迅速、可检测极低水平的病原生物或疾病标记物以及特异性,为监测动物健康提供了更准确、更高效的解决方案。这些诊断方法在资源有限或无法获得普通诊断方法的地区特别有用,尤其是在发展中国家。电化学传感器能够准确检测极低浓度的分析物,因此适用于 POC 诊断和现场应用。以 CRISPR 为基础的电化学生物传感器在彻底改变疾病检测和诊断(包括动物健康)方面显示出巨大的潜力。然而,要提高这些生物传感器的竞争力,还需要应对各种挑战,如实现选择性和灵敏度。目前,基于 CRISPR 的生物测定研究大多侧重于核酸目标检测,但研究人员也在探索如何监测毒素和蛋白质等有机/无机非核酸小分子。以 CRISPR-Cas 系统为中心的新兴诊断技术将提供巨大的潜力,作为一种准确、特异和有效的手段,用于识别与各种动物健康疾病相关的微生物、病毒、毒素、小分子、肽和核酸,尤其是在集成到电化学生物传感平台时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CRISPR-based electrochemical biosensors for animal health: Recent advances

Animal diseases are a major concern to animal welfare, human health and the global economy. Early detection, prevention and control of these animal diseases are crucial to ensure sustainability of livestock sector, to reduce farm losses and protecting public health. Points of care (POC) devices are small, portable instruments that provide rapid results thus reduce the risk of disease transmission and enable early intervention. CRISPR based diagnostics offer more accurate and efficient solution for monitoring animal health due to their quick response, can detect very low level of pathogenic organism or disease markers and specificity. These diagnostics are particularly useful in the in area with limited resources or access to common diagnostic methods, especially in developing countries. The ability of electrochemical sensors to detect accurately very low analyte concentration makes them suitable for POC diagnostics and field application. CRISPR base electrochemical biosensors show great potential in revolutionizing disease detection and diagnosis including animal health. However, challenges, such as achieving selectivity and sensitivity, need to be addressed to enhance the competitiveness of these biosensors. Currently, most CRISPR based bioassay research focuses on nucleic acid target detection, but researchers exploring to monitor small organic/inorganic non-nucleic acid molecules like toxins and proteins. Emerging diagnostics would be centered on CRISPR-Cas system will offer great potential as an accurate, specific and effective means to identify microorganism, virus, toxins, small molecules, peptides and nucleic acid related to various animal health disorders particularly when integrated into electrochemical biosensing platform.

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CiteScore
7.20
自引率
4.30%
发文量
567
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