生物传感器
纳米技术
软件可移植性
生化工程
海洋毒素
微流控
计算机科学
工程类
生物
材料科学
生物化学
毒素
程序设计语言
作者
Ali A. Shati,F. Al-dolaimy,Mohammad Y. Alfaifi,R. Z. Sayyed,Sofiene Mansouri,Zafar Aminov,Raaid Alubady,Kumaraswamy Gandla,Ahmed Hussien Radie Alawady,Ali Hashiem Alsaalamy
标识
DOI:10.1016/j.microc.2023.109500
摘要
Marine Toxins (MTs) have received worldwide attention owing to their pose a threat to human health and food safety. In many cases, numerous species of algae can produce MTs, which can accumulate in shellfish such as mussels, oysters, and scallops. The consumption of these contaminated foods can cause several health problems or even different types of syndromes. Thereby, affordable and convenient biosensing platforms must be taken into account in terms of the detection of MTs. Recently, the rapid development of analytical methods has led to the introduction of biosensors, as an efficient biosensing approach, which can broaden scholars’ horizons about the high potential of these methods for MTs determination. However, most biosensors suffer from a lack of portability ability. In order to address this problem, novel portable biosensors have been presented by numerous researchers. Among them, microfluidics systems, lateral flow assays (LFAs), smartphone-based biosensors, and screen-printed electrodes (SPE) boost this field. This review focuses on the most recent advances in the fabrication of novel and portable biosensors for marine toxin quantification. In addition, the role of the bioreceptors, nanomaterials and transduction were discussed. In order to complete our review, the future development trends and current challenges of portable biosensors for MTs determination are discussed.
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