集美大学 水产学院,鳗鲡现代产业技术教育部工程研究中心,农业部东海海水健康养殖重点实验室, 福建 厦门 361021
林鹏,博士,教授,研究方向:病原微生物检测,E-mail:linpeng@jmu.edu.cn
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张世佳,冯建军,郭松林等.滚环扩增技术在病原微生物检测中的应用[J].分析测试学报,2021,40(10):1538-1544.
ZHANG Shi-jia,FENG Jian-jun,GUO Song-lin,et al.Application of Rolling Ring Amplification in the Detection of Pathogenic Microorganism[J].Journal of Instrumental Analysis,2021,40(10):1538-1544.
张世佳,冯建军,郭松林等.滚环扩增技术在病原微生物检测中的应用[J].分析测试学报,2021,40(10):1538-1544. DOI: 10.19969/j.fxcsxb.21051002.
ZHANG Shi-jia,FENG Jian-jun,GUO Song-lin,et al.Application of Rolling Ring Amplification in the Detection of Pathogenic Microorganism[J].Journal of Instrumental Analysis,2021,40(10):1538-1544. DOI: 10.19969/j.fxcsxb.21051002.
滚环扩增(RCA)技术是一种简单的恒温DNA扩增技术,在DNA聚合酶的催化下通过扩增闭合环状模板产生成千上万的重复序列。相较于变温核酸扩增技术如聚合酶链式反应(PCR),RCA无需昂贵的变温仪器,更适合现场检测。该文介绍了RCA技术的原理和分类,综述了其在细菌、病毒以及其它病原微生物检测方面的应用现状,并展望了RCA检测病原微生物的应用前景。RCA在检测病原微生物领域有着巨大潜力,同时可为新型冠状病毒(SARS-CoV-2)的快速检测提供思路和补充。
Rolling circle amplification(RCA) is a simple and isothermal DNA amplification technique that is used to generate thousands of repeating DNA sequences using circular templates under the catalysis of DNA polymerase.Compared to alternating temperature nucleic acid amplification such as polymerase chain reaction(PCR) amplification,RCA is more suitable for on-spot detection with no need of the expensive thermal circulation meter.In this paper,the principle and classification of RCA are introduced,and the applications of RCA in the detections of bacteria,viruses and other pathogenic microorganisms are reviewed.Finally,the perspectives of RCA in the detection of pathogenic microorganisms are anticipated.The RCA method has great potentials in the detection of pathogenic microorganisms.Furthermore,it also could be used in the detection of severe acute respiratory syndrome coronavirus 2.
滾环扩增锁式探针病原微生物检测
rolling circle amplificationpadlock probepathogenic microorganismdetection
Liu P,Zheng L K,Chen Y F,Xu Y,Lin Y,Huang W C,Chen W,Tang S R.Chin. J. Anal. Lab.
刘萍,郑龙坤,陈一峰,许铱,林颖,黄伟成,陈伟,唐淑榕.分析试验室),2019,38(3):275-278.
Nilsson M,Malmgren H,Samiotaki M,Kwiatkowski M,Chowdhary B P,Landegren U.Science,1994,265(5181):2085-2088.
Xu S Y,Lou Z P.ACS Omega,2021,6(9):6460-6465.
Li S Y,Jiang Y Q,Yang X Y,Lin M,Dan H H,Zou S,Cao X D.Anal. Chim. Acta,2021,doi:10.1016/j.aca.2021.338229http://dx.doi.org/10.1016/j.aca.2021.338229.
Wang Z L,Zong S F,Liu Y,Qian Z T,Zhu K,Yang Z Y,Wang Z Y,Cui Y P.Nanotechnology,2021,doi:10.1088/1361-6528/abc7d4http://dx.doi.org/10.1088/1361-6528/abc7d4.
Yang K,Yu W J,Huang G R,Zhou J,Yang X,Fu W L.RSC Adv.,2020,10:26824-26833.
Liu J,Liang T B,Xu H Y.J. Instrum. Anal. (刘巨,梁涛波,许恒毅.分析测试学报),2020,39(12):1556-1560.
Qing M,Chen S L,Sun Z,Fan Y,Luo H Q,Li N B.Anal. Chem.,2021,93(20):7499-7507.
Marano J M,Chuong C,Weger-Lucarelli J.Virology,2020,551(15):58-63.
Sasaki N,Kase C,Sato K.Anal. Sci.,2021,37(5):727-732.
He L Y,Shen Z P,Cao Y T,Li T H,Wu D Z,Dong Y R,Gan N.Analyst,2019,144(8):2755-2764.
Khoothiam K,Treerattrakoon K,Iempridee T,Luksirikul P,Dharakul T,Japrung D.Analyst,2019,144(14):4180-4187.
Li D X,Zhang T T,Yang F,Yuan R,Xiang Y.Anal. Chem.,2020,92(2):2074-2079.
He Y H,Cheng L J,Yang Y Y,Chen P,Qiu B,Guo L H,Wang Y,Lin Z Y,Hong G L.Sens. Actuators B,2020,doi:10.1016/j.snb.2020.128407http://dx.doi.org/10.1016/j.snb.2020.128407.
Gong B L,Zhang S R,Liu X G,Chen K Z.Glob. Food Secur.-Agr.,2021,doi:10.1016/j.gfs.2020.100463http://dx.doi.org/10.1016/j.gfs.2020.100463.
Vidyadharani G,Bhavadharani H K V,Sathishnath P,Ramanathan S,Sariga P,Sandhya A,Subikshaa S,Sugumar S.J. Food Sci. Technol. Mys.,2021,doi:10.1007/s13197-021-05130-4http://dx.doi.org/10.1007/s13197-021-05130-4.
Xie D Q,Feng J J,Guo S L,Wang Y L,Wang S H,Lin P.Chin. J. Anal. Lab. (谢东琴,冯建军,郭松林,王艺磊,王淑红,林鹏.分析试验室),2021,40(3):286-290.
Gallo D,Penning L M,Diggs J L,Hanson C V.J. Clin. Microbiol.,2020,32(10):2464-2467.
Boss M,Arenz C.Chembiochem,2020,21(6):793-796.
Huang G J,Yin Y P,Zhang L,Li X J,Ge J J,Chen H J,Wang Z K.Acta Microbiol. Sin. 黄冠军,殷幼平,张仑,李小焦,葛建军,陈洪俊,王中康.微生物学报),2008,48(3):375-379.
Zhang Y Z,Yuan N,Li J Y,Zhang M Z,Ma X Y,Zhang W.Chin. Inst. Food Sci. Technol. (张蕴哲,苑宁,李靳影,张梦泽,马晓燕,张伟.中国食品学报),2020,20(9):304-311.
Milton A A P,Momin K M,Priya G B,Ghatak S,Das S,Gandhale P N,Angappan M,Sen A.J. Appl. Microbiol.,2021,doi:10.1111/jam.15099http://dx.doi.org/10.1111/jam.15099.
Yuan N,Zhang Y Z,Xu H,Zhou Z J,Lu X,Chen T T,Yang Q,Tan J X,Zhang W.J. Agric. Food Chem.,2020,68(15):4538-4545.
Chen M,He Q D,Tong Y L,Chen Z G.Sens. Actuators B,2021,doi:10.1016/j.snb.2021.129436http://dx.doi.org/10.1016/j.snb.2021.129436.
Sun X,Wang Y,Zhang L,Liu S,Zhang M,Wang J,Ning B A,Peng Y,He J,Hu Y G,Gao Z X.Anal. Chem.,2020,92(4):3032-3041.
Liu J,Zhan Z X,Liang T B,Xie G Y,Aguilar Z P,Xu H Y.J. Dairy Sci.,2020,103(4):3055-3065.
Zhang Z G,Li H,Liu J,Xie G Y,Xiao F B,Wu X,Aguilar Z P.Food Control,2020,doi:10.1016/j.foodcont.2019.106806http://dx.doi.org/10.1016/j.foodcont.2019.106806.
Xu J G,Guo J,Maina S W,Yang Y M,Hu Y M,Li X X,Qiu J R,Xin Z H.Anal. Biochem.,2018,549:136-142.
Zhou H,Duan S Y,Huang J,He F J.Chem. Commun.,2020,56(46):6273-6276.
Li Y,Liu H M,Huang H,Deng J,Fang L C,Luo J,Zhang S,Huang J,Liang W B,Zheng J S.Biosens. Bioelectron.,2020,doi:10.1016/j.bios.2019.111752http://dx.doi.org/10.1016/j.bios.2019.111752.
Aissa A B,Madaboosi N,Nilsson M,Pividori M I.Sensors,2021,doi:10.3390/s21051749http://dx.doi.org/10.3390/s21051749.
Kordas A,Papadakis G,Milionia D,Champ J,Descroix S,Gizeli E.Sens. Bio-Sens. Res.,2016,11:121-127.
Huang M Q,Liu F,Zhou X M.Acta Laser Biol. Sin. (黄梦琪,刘芳,周小明.激光生物学报),2017,26(6):527-533.
Zhang T,Tao Q,Bian X J,Chen Q,Yan J.Chin. J. Anal. Chem.,2021,49(3):377-386.
Yang J H,Kong W Q.Mol. Plant Breed. (杨金宏,孔卫青.分子植物育种),2018,16(3):898-902.
Jia W,Li W S,Li J Q,Tao B B,Xu Y Q,Li H J,Lu A P,Sun S G.Sens. Actuators B,2016,227:655-659.
Hamidi S V,Ghourchian H.Biosens. Bioelectron.,2015,72:121-126.
He Y H,Liu Y H,Cheng L J,Yang Y Y,Qiu B,Guo L H, Wang Y,Lin Z Y,Hong G L.ACS Appl. Mater. Interfaces,2021,13(1):298-305.
Wang B,Potter S J,Lin Y G,Cunningham A L,Dwyer D E,Su Y L,Ma X J,Hou Y D,Saksena N K.J. Clin. Microbiol.,2005,43(5):2339-2344.
Najafzadeh M J,Dolatabadi S,Keisari M S,Naseri A,Feng P,de Hoog G S.J. Microbiol. Methods,2013,94(3):338-342.
Wang H,Zhou X Y,Kong F R,Wang W Z,Duan Y Q.Chin. J. Microbiol. Immunol. (王辉,周小勇,孔繁荣,王玮蓁,段逸群.中华微生物学和免疫学杂志),2010,30(10):949-952.
Liu F G,Zhang C Y,Zheng H W,Yang Y C,Zang D Y,Wang Y Y,Chen G F.Environ. Sci. Pollut. Res.,2021,doi:10.1007/s11356-021-13673-4http://dx.doi.org/10.1007/s11356-021-13673-4.
Qin Y,Zhang C Y,Liu F G,Chen Q X, Yang Y C,Wang Y Y,Chen G F.Harmful Algae,2020,doi:10.1016/j.hal.2020.101857http://dx.doi.org/10.1016/j.hal.2020.101857.
Nie X L,Zhang C Y,Wang Y Y,Guo C L,Zhou J,Chen G F.Environ. Sci. Pollut. Res.,2017,24(18):15678-15688.
Zhang C Y,Sun R,Wang Y Y,Chen G F,Guo C L,Zhou J.J. Appl. Phycol.,2019,31(1):505-518.
Wen Z Y,Liang H,Gu Y X,Ju C Y,Ma Y P,Duan Y X,Zhang M J.J. Pathogen Biol. 闻子钰,梁昊,顾一心,鞠长燕,马艳萍,段永翔,张茂俊.中国病原生物学杂志),2019,14(6):621-624.
Lin D Y,Zhang K P,Xu J,Yan L X,Luo X L,Liu Y H.Chin. J. Clin. Exp. Pathol. (林丹义,张科平,许洁,颜黎栩,骆新兰,刘艳辉.临床与实验病理学杂志),2017,33(12):1398-1399.
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