Yangyang Li, Zhengwei Zhu, Wenli Qu, Qing Yang, Yan Liu, Qiaotong Wang, Shuo Duan, Jin Wu, Zhiyong Gong, Lin Xu
{"title":"定向抗体通用探针改进克氏原螯虾中铅离子的免疫层析分析","authors":"Yangyang Li, Zhengwei Zhu, Wenli Qu, Qing Yang, Yan Liu, Qiaotong Wang, Shuo Duan, Jin Wu, Zhiyong Gong, Lin Xu","doi":"10.1093/fqsafe/fyad015","DOIUrl":null,"url":null,"abstract":"\n \n \n Based on the information from the random inspection of foods by the China Food and Drug Administration in 2022, the contamination levels of lead ions are high in many edible products. Traditional methods of detecting lead ions cannot meet the requirements of on-site analysis of food due to the need for large equipment. The immunochromatographic assay (ICA) is an effective, rapid, on-site analytical technique for determining lead ions in foods. However, the performance of ICA based on the traditional probe (AuNP-mAb) is limited by ignoring the influence of the antibody orientation.\n \n \n \n In this study, we developed an efficient technology for constructing a universal probe (AuNP-PrA-mAb) based on oriented immobilization of antibody. The performance of ICA was largely improved due to specific binding of the Fc region of the antibody with recombinant protein A (PrA) on the surface of a gold nanoparticle (AuNP). The ICA based on a universal probe was applied for the qualitative and quantitative detection of lead ions in Procambarus clarkii within 30 min. Meanwhile, a simple and fast pretreatment method based on dilute acid extraction was developed for pretreating the Procambarus clarkii containing lead ions.\n \n \n \n The visual limit of detection (vLOD) and the scanning limit of quantization (sLOQ) of the developed ICA strip for lead ions were 0.5 ng/mL and 0.28 ng/mL, respectively. The sensitivity of ICA based on universal probe was 10-fold higher than that of the ICA using traditional probe. Furthermore, the detection results had no obvious difference between the ICA and ICP-MS with T-test statistical method.\n \n \n \n The developed ICA that is based on a universal probe presented broad application prospects in detecting contaminants in foods.\n","PeriodicalId":12427,"journal":{"name":"Food Quality and Safety","volume":" ","pages":""},"PeriodicalIF":3.0000,"publicationDate":"2023-02-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"Universal probe with oriented antibody to improve the immunochromatographic assay of lead ions in Procambarus clarkii\",\"authors\":\"Yangyang Li, Zhengwei Zhu, Wenli Qu, Qing Yang, Yan Liu, Qiaotong Wang, Shuo Duan, Jin Wu, Zhiyong Gong, Lin Xu\",\"doi\":\"10.1093/fqsafe/fyad015\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"\\n \\n \\n Based on the information from the random inspection of foods by the China Food and Drug Administration in 2022, the contamination levels of lead ions are high in many edible products. Traditional methods of detecting lead ions cannot meet the requirements of on-site analysis of food due to the need for large equipment. The immunochromatographic assay (ICA) is an effective, rapid, on-site analytical technique for determining lead ions in foods. However, the performance of ICA based on the traditional probe (AuNP-mAb) is limited by ignoring the influence of the antibody orientation.\\n \\n \\n \\n In this study, we developed an efficient technology for constructing a universal probe (AuNP-PrA-mAb) based on oriented immobilization of antibody. The performance of ICA was largely improved due to specific binding of the Fc region of the antibody with recombinant protein A (PrA) on the surface of a gold nanoparticle (AuNP). The ICA based on a universal probe was applied for the qualitative and quantitative detection of lead ions in Procambarus clarkii within 30 min. Meanwhile, a simple and fast pretreatment method based on dilute acid extraction was developed for pretreating the Procambarus clarkii containing lead ions.\\n \\n \\n \\n The visual limit of detection (vLOD) and the scanning limit of quantization (sLOQ) of the developed ICA strip for lead ions were 0.5 ng/mL and 0.28 ng/mL, respectively. The sensitivity of ICA based on universal probe was 10-fold higher than that of the ICA using traditional probe. 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Universal probe with oriented antibody to improve the immunochromatographic assay of lead ions in Procambarus clarkii
Based on the information from the random inspection of foods by the China Food and Drug Administration in 2022, the contamination levels of lead ions are high in many edible products. Traditional methods of detecting lead ions cannot meet the requirements of on-site analysis of food due to the need for large equipment. The immunochromatographic assay (ICA) is an effective, rapid, on-site analytical technique for determining lead ions in foods. However, the performance of ICA based on the traditional probe (AuNP-mAb) is limited by ignoring the influence of the antibody orientation.
In this study, we developed an efficient technology for constructing a universal probe (AuNP-PrA-mAb) based on oriented immobilization of antibody. The performance of ICA was largely improved due to specific binding of the Fc region of the antibody with recombinant protein A (PrA) on the surface of a gold nanoparticle (AuNP). The ICA based on a universal probe was applied for the qualitative and quantitative detection of lead ions in Procambarus clarkii within 30 min. Meanwhile, a simple and fast pretreatment method based on dilute acid extraction was developed for pretreating the Procambarus clarkii containing lead ions.
The visual limit of detection (vLOD) and the scanning limit of quantization (sLOQ) of the developed ICA strip for lead ions were 0.5 ng/mL and 0.28 ng/mL, respectively. The sensitivity of ICA based on universal probe was 10-fold higher than that of the ICA using traditional probe. Furthermore, the detection results had no obvious difference between the ICA and ICP-MS with T-test statistical method.
The developed ICA that is based on a universal probe presented broad application prospects in detecting contaminants in foods.
期刊介绍:
Food quality and safety are the main targets of investigation in food production. Therefore, reliable paths to detect, identify, quantify, characterize and monitor quality and safety issues occurring in food are of great interest.
Food Quality and Safety is an open access, international, peer-reviewed journal providing a platform to highlight emerging and innovative science and technology in the agro-food field, publishing up-to-date research in the areas of food quality and safety, food nutrition and human health. It promotes food and health equity which will consequently promote public health and combat diseases.
The journal is an effective channel of communication between food scientists, nutritionists, public health professionals, food producers, food marketers, policy makers, governmental and non-governmental agencies, and others concerned with the food safety, nutrition and public health dimensions.
The journal accepts original research articles, review papers, technical reports, case studies, conference reports, and book reviews articles.