多路复用
适体
食品安全
诺如病毒
纳米技术
计算机科学
生化工程
生物技术
计算生物学
生物
工程类
病毒学
材料科学
生物信息学
病毒
遗传学
食品科学
作者
Annu Mishra,Annu Mishra,Souradeep Roy,Naasrin Shaikh,Pooja Malave,Ankita Mishra,Ankita Mishra,Md. Anish Alam,Yashswee Ghorpade,Mohd. Rahil Hasan,Anam Nizam
标识
DOI:10.1016/j.biosx.2023.100417
摘要
Food-borne pathogens pose significant risks to public health and food safety, necessitating the development of rapid, sensitive, and multiplex detection techniques. Biosensor is one of the important tool to detect the analyte with high sensitivity. Now a days multiplex based approaches were in high demands due to its various advantages. One of the important advantages of multiplex aptasensor is it can detects various food borne pathogens on a single platform which also reduced the coast of detection and shows high selectivity due to integration of multiplex platform with aptamer. The emergence of aptamers as versatile recognition elements is discussed, emphasizing their advantages over antibodies in terms of stability, cost-effectiveness, and ease of synthesis. A critical analysis of state-of-the-art multiplex aptasensor platforms is then presented. These platforms encompass a wide range of detection modalities, such as electrochemical, optical, and microfluidic systems. Moreover, the review explores recent examples of multiplex aptasensor applications for detecting a variety of Food-borne pathogens, including bacteria (e.g., Salmonella, Escherichia coli, Listeria) and viruses (e.g., Norovirus, Hepatitis A). The discussion encompasses both in vitro and on-site detection scenarios, demonstrating the versatility and potential impact of multiplex aptasensors across different stages of the food supply chain. The paper concludes by highlighting the transformative potential of multiplex aptasensor detection techniques in enhancing food safety, public health, and surveillance strategies.
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