1.北京信息科技大学 传感器重点实验室,北京 100101
2.北京信息科技大学 现代测控技术教育部 重点实验室,北京 100192
3.深圳大学 生物医学工程学院,广东 深圳 518060
李延生,博士,副研究员,研究方向:便携自助式传感器,E-mail:lys2019@bistu.edu.cn
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韩文浩,李延生,高国伟等.适配体生物传感器在黄曲霉毒素B1检测中的应用[J].分析测试学报,2023,42(03):368-374.
HAN Wen-hao,LI Yan-sheng,GAO Guo-wei,et al.Application of Aptamer Biosensor in Detection of Aflatoxin B1[J].Journal of Instrumental Analysis,2023,42(03):368-374.
韩文浩,李延生,高国伟等.适配体生物传感器在黄曲霉毒素B1检测中的应用[J].分析测试学报,2023,42(03):368-374. DOI: 10.19969/j.fxcsxb.22101402.
HAN Wen-hao,LI Yan-sheng,GAO Guo-wei,et al.Application of Aptamer Biosensor in Detection of Aflatoxin B1[J].Journal of Instrumental Analysis,2023,42(03):368-374. DOI: 10.19969/j.fxcsxb.22101402.
该文首先对黄曲霉毒素B1(AFB1)的相关性质及其传统检测方法进行了介绍,随后概述了近年来基于光学、电化学以及微流控芯片的适配体生物传感器的构建及其在AFB1检测领域中的应用,旨为适配体生物传感器的实际应用提供参考;并通过探讨目前开发的检测方法存在的问题,对适配体生物传感器前景和未来趋势进行了展望。
Aflatoxin B1(AFB1) has strong toxicity and carcinogenicity,and its dose exceeding the standard will seriously endanger the health of organisms.The development of new AFB1 detection methods is of great significance for the prevention and control of its harm.The traditional method for AFB1 detection is mature and reliable,with low detection limit,but relying on professional equipment and professionals.It cannot meet the needs of on-site detection.Aptamer biosensors have the advantages of high sensitivity,high specificity and simple operation,which have attracted attention in the detection of AFB1.Meanwhile,researchers have developed many new methods based on different principles.The related properties of AFB1 and its traditional detection methods are firstly introduced in this paper,and then the construction of aptamer biosensors based on optical,electrochemical and microfluidic chips in recent years as well as their applications in the field of AFB1 detection are summarized.It provides a reference for the development of practical application of aptamer biosensors,and discusses the development prospects and future trends of aptamer biosensors by discussing the problems in the currently developed detection methods.
黄曲霉毒素B1适配体生物传感器应用
aflatoxin B1aptamerbiosensorapplication
Pietri A,Fortunati P,Mulazzi A,Bertuzzi T.Food Chem.,2016,192:235-241.
Liu X H,Bai Y Z,Yue X F,Wang H,Zhang Q,Li P W.Chin. J. Oil Crop Sci. (刘晓晗,白艺珍,岳晓凤,王弘,张奇,李培武.中国油料作物学报),2022,44(4):729-738.
Fouad A M,Ruan D,El-Senousey H K,Chen W,Jiang S,Zheng C.Toxins,2019,11(3):176.
Ji N,Diao E J,Li X Y,Zhang Z,Dong H Z.J. Sci. Food Agric.,2016,96(12):4009-4014.
Benkerroum N.Int. J. Environ. Res. Public Health,2020,17(4):1215.
Zhao M,Gao J,Chu H S,Liang Z H.Food Sci. (赵萌,高婧,褚华硕,梁志宏.食品科学),2019,40(11):235-245.
Gilbert-Sandoval I,Wesseling S,Rietjens I M C M.Mol. Nutr. Food Res.,2020,64(13):e2000063.
Taghizadeh S F,Rezaee R,Davarynejad G,Asili J,Nemati S H,Goumenou M,Tsakiris I,Tsatsakis A M,Shirani K,Karimi G.Environ. Toxicol. Pharmacol.,2018,61:61-66.
Kotinagu K,Mohanamba T,Kumari L R.Vet. World,2015,8(12):1396-1399.
Manousi N,Tzanavaras P D,Zacharis C K.Molecules,2020,25(9):2096.
Ouakhssase A,Fatini N,Addi E A.Food Addit. Contam. A,2021,38(9):1561-1570.
Yan T T,Zhu J,Li Y,He T,Yang Y H,Liu M L.Talanta,2022,239:123125.
Cigić I K,Prosen H.Int. J. Mol. Sci.,2009,10(1):62-115.
Wu Z H,Sun D W,Pu H B,Wei Q Y,Lin X R.Food Chem.,2022,372:131293.
Wang Q,Yang Q L,Wu W.Front. Microbiol.,2020,11:408.
Yu X H,Zhang S Q,Guo W Q,Li B X,Yang Y,Xie B Q,Li K,Zhang L.Sensors,2021,21(21):7109.
Lyu C,Khan I M,Wang Z P.Talanta,2021,229:122274.
Wang B.Front. Chem.,2020,8:475.
Mahmoudpour M,Ding S C,Lyu Z Y,Ebrahimi G,Du D,Dolatabadi J E N,Mohammadali T,Lin Y H.Nano Today,2021,39:101177.
Brody E N,Gold L.J. Biotechnol.,2000,74(1):5-13.
Zahra Q U A,Khan Q A,Luo Z F.Front. Oncol.,2021,11:632165.
Sharma R,Ragavan K V,Thakur M S,Raghavarao K S M S.Biosens. Bioelectron.,2015,74:612-627.
Pehlivan Z S,Torabfam M,Kurt H,Ow-Yang C,Hildebrandt N,Yüce M.Microchim. Acta,2019,186(8):1-22.
Lee E S,Lee J M,Kim H J,Kim Y P.Chemosensors,2021,9(3):54.
Hong L P,Pan M F,Xie X Q,Liu K X,Yang J Y,Wang S N,Wang S.Foods,2021,10(11):2598.
Jia Y M,Zhou G H,Wang X D,Zhang Y Z,Li Z G,Liu P L,Yu B,Zhang J.Talanta,2020,219:121342.
Wang C,Li Y P,Zhou C,Zhao Q.Mikrochim. Acta,2019,186(11):1-5.
Yu M Q,Wang H,Fu F,Li L Y,Li J,Li G,Song Y,Swihart M T,Song E Q.Anal. Chem.,2017,89(7):4085-4090.
Chinnathambi S,Shirahata N.Sci. Technol. Adv. Mat.,2019,20(1):337-355.
Sabet F S,Hosseini M,Khabbaz H,Dadmehr M,Ganjali M R.Food Chem.,2017,220:527-532.
Levent S,Olcay O.Biosens. Bioelectron.,2014,59:64-74.
Zhao Y,Liu H M,Lu J H,Lu A X,Luan Y X.J. Food Saf. Qual. (赵颖,刘洪美,卢静华,陆安祥,栾云霞.食品安全质量检测学报),2018,9(22):5806-5815.
He Q,Xia X H,Deng R J.J. Xihua Univ.:Nat. Sci. Ed. (何强,夏许寒,邓锐杰.西华大学学报:自然科学版),2020,39(5):49-56.
Zhang C,Dou X W,Zhang L,Sun M F,Zhao M,Ouyang Z,Kong D D,Antonio F L,Yang M H.Toxins,2018,10(3):101.
Fukuhara G.J. Photoch. Photobio. C,2020,42:100340.
Setlem K,Mondal B,Shylaja R,Parida M.Anal. Biochem.,2020,608:113874.
Song M Y,Khan I M,Wang Z P.Food Anal. Methods,2021,14(10):2136-2151.
Shahi S C,Dadmehr M,Korouzhdehi B,Tavassoli A.Nanotechnology,2021,32(50):505503.
Goud K Y,Reddy K K,Satyanarayana M,Kummari S,Gobi K V.Mikrochim. Acta,2019,187(1):1-32.
Ong J Y,Pike A,Tan L L.Food(Basel,Switzerland),2021,10(7):1437.
Kaya S I,Cetinkaya A,Ozkan S A.Crit. Rev. Anal. Chem.,2021,52(6):1223-1243.
Wang C,Li Y P,Zhao Q.Biosens. Bioelectron.,2019,144:111641.
Wang C,Zhao Q.Biosens. Bioelectron.,2020,167:112478.
Peng L,Feng A C,Wang H,Zhang H J,Yuan J Y.Prog. Chem. (彭了,冯岸超,王宏,张慧娟,袁金颖.化学进展),2013,25(11):1942-1950.
Wu S S,Wei M,Wei W,Liu Y,Liu S Q.Biosens. Bioelectron.,2019,129:58-63.
Liu B,Zhao Y S,Qin Y,Wang Y,Zhu Y J,Wang S.Electrochemistry(刘冰,赵耀帅,秦月,王怡,朱艳杰,王硕.电化学),2020,26(3):422-430.
Chai C,Oh S W.Food Sci. Biotechnol.,2020,29(7):879-887.
Goud K Y,Catanante G,Hayat A,Satyanarayana M,Gobi K V,Marty J L.Sens. Actuators B,2016,235:466-473.
Guo W J,Umar A,Algadi H,Albargi H,Ibrahim A A,Cui K L,Wang L Y,Pei M S,Wang Y.Microchem. J.,2021,169:106548.
Gao H W,Yan C L,Wu W,Li J.Sensors,2020,20(6):1792.
Lee V B C,Mohd-Naim N F,Tamiya E,Ahmed M U.Anal. Sci.,2018,34(1):7-18.
Jiang C,Li Y S,Wang H,Chen D S,Wen Y Q.Sens. Actuators B,2020,307:127625.
Li Y S,Chen P,Gao G W,Qin L,Yang H J,Zhang X J.Biosens. Bioelectron.,2022,211:114341.
Li Y S,Ma Y L,Jiao X Y,Li T Y,Lv Z H,Yang C Y,Zhang X J,Wen Y Q.Nat. Commun.,2019,10(1):1-8.
Ma Y L,Mao Y,Huang D,He Z,Yan J M,Tian T,Shi Y Z,Song Y L,Li X R,Zhu Z,Zhou L J,Yang C J.Lab Chip,2016,16(16):3097-3104.
Mettakoonpitak J,Khongsoun K,Wongwan N,Kaewbutdee S,Siripinyanond A,Kuharuk A,Henry C S.Sens. Actuators B,2021,331:129463.
Guo Q.Rapid Detection of Food Safety Based on Paper-based Microfluidic Bio-nanosensing Technology. Chengdu:University of Electronic Science and Technology of China(郭倩.基于纸基微流控生物纳米传感技术的食品安全快速检测. 成都:电子科技大学),2021.
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