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分离适体的获取机制及其在抗生素检测中的应用:综述。

Split aptamer acquisition mechanisms and current application in antibiotics detection: a short review.

机构信息

School of Grain Science and Technology, Jiangsu University of Science and Technology, Zhenjiang, China.

Department of Food Science & Technology, National University of Singapore, Singapore, Singapore.

出版信息

Crit Rev Food Sci Nutr. 2023;63(28):9098-9110. doi: 10.1080/10408398.2022.2064810. Epub 2022 May 4.

Abstract

Antibiotic contamination is becoming a prominent global issue. Therefore, sensitive, specific and simple technology is desirable the demand for antibiotics detection. Biosensors based on split aptamer has gradually attracted extensive attention for antibiotic detection due to its higher sensitivity, lower cost, false positive/negative avoidance and flexibility in sensor design. Although many of the reported split aptamers are antibiotics aptamers, the acquisition and mechanism of splitting is still unknow. In this review, six reported split aptamers in antibiotics are outlined, including Enrofloxacin, Kanamycin, Tetracycline, Tobramycin, Neomycin, Streptomycin, which have contributed to promote interest, awareness and thoughts into this emerging research field. The study introduced the pros and cons of split aptamers, summarized the assembly principle of split aptamer and discussed the intermolecular binding of antibiotic-aptamer complexes. In addition, the recent application of split aptamers in antibiotic detection are introduced. Split aptamers have a promising future in the design and development of biosensors for antibiotic detection in food and other field. The development of the antibiotic split aptamer meets many challenges including mechanism discovery, stability improvement and new biosensor development. It is believed that split aptamer could be a powerful molecular probe and plays an important role in aptamer biosensor.

摘要

抗生素污染正成为一个突出的全球性问题。因此,人们希望有一种敏感、特异、简单的技术来检测抗生素。基于分裂适体的生物传感器因其更高的灵敏度、更低的成本、避免假阳性/阴性以及传感器设计的灵活性,逐渐引起了广泛的关注,可用于抗生素检测。尽管许多报道的分裂适体都是抗生素适体,但分裂的获取和机制仍然未知。在这篇综述中,概述了六种已报道的抗生素分裂适体,包括恩诺沙星、卡那霉素、四环素、妥布霉素、新霉素、链霉素,这有助于促进人们对这一新兴研究领域的兴趣、认识和思考。该研究介绍了分裂适体的优缺点,总结了分裂适体的组装原理,并讨论了抗生素-适体复合物的分子间结合。此外,还介绍了分裂适体在抗生素检测中的最新应用。分裂适体在食品等领域的抗生素检测生物传感器的设计和开发中具有广阔的前景。抗生素分裂适体的发展面临着许多挑战,包括机制发现、稳定性提高和新生物传感器的开发。相信分裂适体可以作为一种强大的分子探针,并在适体生物传感器中发挥重要作用。

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