Chen Junhua, Shi Gu, Yan Chong
National-Regional Joint Engineering Research Center for Soil Pollution Control and Remediation in South China, Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management, Institute of Eco-environmental and Soil Sciences, Guangdong Academy of Sciences, Guangzhou 510650, China.
National-Regional Joint Engineering Research Center for Soil Pollution Control and Remediation in South China, Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management, Institute of Eco-environmental and Soil Sciences, Guangdong Academy of Sciences, Guangzhou 510650, China.
Sci Total Environ. 2023 May 10;872:162279. doi: 10.1016/j.scitotenv.2023.162279. Epub 2023 Feb 16.
On-site and cost-effective monitoring of antibiotic residue in water samples using a ubiquitous device that is readily available to the general public is a big challenge. Herein, we developed a portable biosensor for kanamycin (KAN) detection based on a glucometer and CRISPR-Cas12a. The aptamer-KAN interactions liberate the trigger C strand, which can initiate the hairpin assembly to produce numerous double-stranded DNA. After recognition by CRISPR-Cas12a, Cas12a can cleave the magnetic bead and invertase-modified single-stranded DNA. After magnetic separation, the invertase can convert sucrose into glucose, which can be quantified by a glucometer. The linear range of the glucometer biosensor is from 1 pM to 100 nM and the detection limit is 1 pM. The biosensor also exhibited high selectivity and the nontarget antibiotics had no significant interference with KAN detection. The sensing system is robust and can work in complex samples with excellent accuracy and reliability. The recovery values were in the range of 89-107.2 % for water samples and 86-106.5 % for milk samples. The relative standard deviation (RSD) was below 5 %. With the advantages of simple operation, low cost, and easy accessibility to the public, this portable pocket-sized sensor can realize the on-site detection of antibiotic residue in resource-limited settings.
利用一种普通大众都容易获得的通用设备对水样中的抗生素残留进行现场且经济高效的监测是一项巨大挑战。在此,我们基于血糖仪和CRISPR-Cas12a开发了一种用于检测卡那霉素(KAN)的便携式生物传感器。适配体与KAN的相互作用会释放触发C链,该链可启动发夹组装以产生大量双链DNA。经CRISPR-Cas12a识别后,Cas12a可切割磁珠和转化酶修饰的单链DNA。磁分离后,转化酶可将蔗糖转化为葡萄糖,葡萄糖可通过血糖仪进行定量。血糖仪生物传感器的线性范围为1 pM至100 nM,检测限为1 pM。该生物传感器还表现出高选择性,非目标抗生素对KAN检测无明显干扰。该传感系统性能稳健,可在复杂样品中工作,具有出色的准确性和可靠性。水样的回收率在89 - 107.2%范围内,牛奶样品的回收率在86 - 106.5%范围内。相对标准偏差(RSD)低于5%。凭借操作简单、成本低和公众易于使用的优点,这种便携式袖珍传感器可在资源有限的环境中实现抗生素残留的现场检测。