[1] BAO M, PIERCE G J, STRACHAN N J C, et al.Human health, legislative and socioeconomic issues caused by the fish-borne zoonotic parasite Anisakis:Challenges in risk assessment[J].Trends in Food Science & Technology, 2019, 86:298-310.
[2] CAI J N, LEUNG P.Unlocking the potential of aquatic foods in global food security and nutrition:A missing piece under the lens of seafood liking index[J].Global Food Security, 2022, 33:100641.
[3] RAMOS P.Parasites in fishery products-Laboratorial and educational strategies to control[J].Experimental Parasitology, 2020, 211:107865.
[4] STRYIŃSKI R, ŁOPIEŃSKA-BIERNAT E, CARRERA M.Proteomic insights into the biology of the most important foodborne parasites in Europe[J].Foods, 2020, 9(10):1403.
[5] YU C P, CHOU Y C, WU D C, et al.Surveillance of foodborne diseases in Taiwan A retrospective study[J].Medicine, 2021, 100(5):e24424.
[6] TORGERSON P R, DEVLEESSCHAUWER B, PRAET N, et al.World health organization estimates of the global and regional disease burden of 11 foodborne parasitic diseases, 2010:A data synthesis[J].PLoS Medicine, 2015, 12(12):e1001920.
[7] GUARDONE L, MALANDRA R, COSTANZO F, et al.Assessment of a sampling plan based on visual inspection for the detection of anisakid larvae in fresh anchovies (Engraulis encrasicolus).A first step towards official validation?[J].Food Analytical Methods, 2016, 9(5):1418-1427.
[8] 缪峰, 张本光, 刘新, 等.山东黄海海域水产品异尖线虫感染情况调查[J].寄生虫病与感染性疾病, 2014, 12(4):189-190.
MIU F, ZHANG B G, LIU X, et al.Investigation on the infection of Anisakis in aquatic products in the Yellow Sea of Shandong Province[J].Parasitic Diseases and Infectious Diseases, 2014, 12(4):189-190.
[9] LEVSEN A, LUNESTAD B T, BERLAND B.Low detection efficiency of candling as a commonly recommended inspection method for nematode larvae in the flesh of pelagic fish[J].Journal of Food Protection, 2005, 68(4):828-832.
[10] 马雪莲, 谭峰, 潘长旺.广州管圆线虫中间宿主福寿螺感染检测方法的比较[J].中国病原生物学杂志, 2008, 3(2):130-132.
MA X L, TAN F, PAN C W.Comparison of detection methods for the third larvae of Angiostrongylus cantonensis in Ampullaria gigas[J].Journal of Pathogen Biology, 2008, 3(2):130-132.
[11] LLARENA-REINO M, PIÑEIRO C, ANTONIO J, et al.Optimization of the pepsin digestion method for anisakids inspection in the fishing industry[J].Veterinary Parasitology, 2013, 191(3-4):276-283.
[12] MAZIDUR RAHMAN S M, CHOI M H, BAE Y M, et al.Coproantigen capture ELISA for detection of Clonorchis sinensis infection in experimentally infected rats[J].Parasitology International, 2012, 61(1):203-207.
[13] XU X, SUI J X, CAO L M, et al.Direct competitive enzyme-linked immunosorbent assay (ELISA) for rapid screening of anisakid larvae in seafood[J].Journal of the Science of Food and Agriculture, 2010, 90(5):877-881.
[14] KOCHANOWSKI M, RÓŻYCKI M, DĄBROWSKA J, et al.Development and application of novel chemiluminescence immunoassays for highly sensitive detection of Anisakis simplex proteins in thermally processed seafood[J].Pathogens, 2020, 9(10):777.
[15] THIRUPPATHIRAJA C, KAMATCHIAMMAL S, ADAIKKAPPAN P, et al.An advanced dual labeled gold nanoparticles probe to detect Cryptosporidium parvum using rapid immuno-dot blot assay[J].Biosensors and Bioelectronics, 2011, 26(11):4624-4627.
[16] MÜLLER B, SCHMIDT J, MEHLHORN H.Sensitive and species-specific detection of Clonorchis sinensis by PCR in infected snails and fishes[J].Parasitology Research, 2007, 100(4):911-914.
[17] MATTIUCCI S, CIPRIANI P, WEBB S C, et al.Genetic and morphological approaches distinguish the three sibling species of the Anisakis simplex species complex, with a species designation as Anisakis berlandi n.sp.for A.simplex sp.C (Nematoda:Anisakidae)[J].The Journal of Parasitology, 2014, 100(2):199-214.
[18] TIMI J T, PAOLETTI M, CIMMARUTA R, et al.Molecular identification, morphological characterization and new insights into the ecology of larval Pseudoterranova cattani in fishes from the Argentine coast with its differentiation from the Antarctic species, P.decipiens sp.E (Nematoda:Anisakidae)[J].Veterinary Parasitology, 2014, 199(1-2):59-72.
[19] 魏纪玲, 周卫川, 邵碧英, 等.PCR检测螺类感染广州管圆线虫方法的建立与应用[J].中国人兽共患病学报, 2008, 24(12):1136-1140.
WEI J L, ZHOU W C, SHAO B Y, et al.Establishment of a PCR assay for detection of snails infected with Angiostrongylus cantonensis[J].Chinese Journal of Zoonoses, 2008, 24(12):1136-1140.
[20] LE T H, VAN DE N, BLAIR D, et al.Clonorchis sinensis and Opisthorchis viverrini:Development of a mitochondrial-based multiplex PCR for their identification and discrimination[J].Experimental Parasitology, 2006, 112(2):109-114.
[21] 张子群, 韩彩霞, 谢晓峰, 等.多重PCR检测三种食源性寄生虫方法的建立[C].中国动物学会寄生虫学专业委员会第十三次全国学术会议暨第四次国际寄生虫学学术研讨会.中国广西壮族自治区南宁, 2011.
ZHANG Z Q, HAN C X, XIE X F, et al.Establishment of multiple PCR detection methods for three foodborne parasites[C].The 13th National Academic Conference and the 4th International Symposium on Parasitology of the Professional Committee of Parasitology of the Chinese Zoological Society.Nanning, Guangxi Zhuang Autonomous Region, China, 2011.
[22] 李树清, 李雯雯, 张鸿满, 等.多重PCR鉴定三种颚口线虫方法的建立[J].中国动物传染病学报, 2014, 22(6):38-45.
LI S Q, LI W W, ZHANG H M, et al.Development of a multiplex pcr assay to identify Gnathostoma spinigerum, Gnathostoa nipponicum and Gnathostoma doloresi[J].Chinese Journal of Animal Infectious Diseases, 2014, 22(6):38-45.
[23] CAI X Q, YU H Q, BAI J S, et al.Development of a TaqMan based real-time PCR assay for detection of Clonorchis sinensis DNA in human stool samples and fishes[J].Parasitology International, 2012, 61(1):183-186.
[24] KIM E M, VERWEIJ J J, JALILI A, et al.Detection of Clonorchis sinensis in stool samples using real-time PCR[J].Annals of Tropical Medicine and Parasitology, 2009, 103(6):513-518.
[25] PAOLETTI M, MATTIUCCI S, COLANTONI A, et al.Species-specific Real Time-PCR primers/probe systems to identify fish parasites of the Genera Anisakis, Pseudoterranova and Hysterothylacium (Nematoda:Ascaridoidea)[J].Fisheries Research, 2018, 202:38-48.
[26] FANG W Z, LIU F, ZHANG S L, et al.Anisakis pegreffii:A quantitative fluorescence PCR assay for detection in situ[J].Experimental Parasitology, 2011, 127(2):587-592.
[27] CAI X Q, XU M J, WANG Y H, et al.Sensitive and rapid detection of Clonorchis sinensis infection in fish by loop-mediated isothermal amplification (LAMP)[J].Parasitology Research, 2010, 106(6):1379-1383.
[28] 张森, 邓艳, 黄燕琼, 等.环介导等温扩增法检测棘颚口线虫方法的建立[J].现代食品科技, 2016, 32(12):308-313;297.
ZHANG S, DENG Y, HUANG Y Q, et al.Sensitive and rapid detection of Gnathostoma spinigerum by loop-mediated isothermal amplification(LAMP)[J].Modern Food Science and Technology, 2016, 32(12):308-313;297.
[29] TONG Q B, CHEN R, ZHANG Y, et al.A new surveillance and response tool:Risk map of infected Oncomelania hupensis detected by loop-mediated isothermal amplification (LAMP) from pooled samples[J].Acta Tropica, 2015, 141:170-177.
[30] CAMMILLERI G, FERRANTELLI V, PULVIRENTI A, et al.Validation of a commercial loop-mediated isothermal amplification (LAMP) assay for the rapid detection of Anisakis spp.DNA in processed fish products[J].Foods, 2020, 9(1):92.
[31] 乔艳, 周前进, 李孝军, 等.环介导等温扩增联合横向流动试纸条检测简单异尖线虫/派氏异尖线虫方法的建立[J].海洋与湖沼, 2019, 50(2):324-335.
QIAO Y, ZHOU Q J, LI X J, et al.A loop-mediated isothermal amplification technique combined with a lateral flow dipstick for the detection of Anisakis simplex sensu stricto/Anisakis pegreffii in commercial fish[J].Oceanologia et Limnologia Sinica, 2019, 50(2):324-335.
[32] CHEN M X, AI L, ZHANG R L, et al.Sensitive and rapid detection of Paragonimus westermani infection in humans and animals by loop-mediated isothermal amplification (LAMP)[J].Parasitology Research, 2011, 108(5):1193-1198.
[33] SUN K, XING W W, YU X L, et al.Recombinase polymerase amplification combined with a lateral flow dipstick for rapid and visual detection of Schistosoma japonicum[J].Parasites & Vectors, 2016, 9(1):476.
[34] XING W W, YU X L, FENG J T, et al.Field evaluation of a recombinase polymerase amplification assay for the diagnosis of Schistosoma japonicum infection in Hunan Province of China[J].BMC Infectious Diseases, 2017, 17(1):164.
[35] POULTON K, WEBSTER B.Development of a lateral flow recombinase polymerase assay for the diagnosis of Schistosoma mansoni infections[J].Analytical Biochemistry, 2018, 546:65-71.
[36] WU Y D, XU M J, WANG Q Q, et al.Recombinase polymerase amplification (RPA) combined with lateral flow (LF) strip for detection of Toxoplasma gondii in the environment[J].Veterinary Parasitology, 2017, 243:199-203.
[37] 朱志伟, 赵金红.环介导等温扩增技术在寄生虫检测中的应用进展[J].热带病与寄生虫学, 2020, 18(4):234-238;233.
ZHU Z W, ZHAO J H.Application progress of loop-mediated isothermal amplification technology in the diagnosis of human parasitic diseases[J].Journal of Tropical Diseases and Parasitology, 2020, 18(4):234-238;233.
[38] CASTELLANOS-GONZALEZ A, WHITE A C, MELBY P, et al.Molecular diagnosis of protozoan parasites by Recombinase Polymerase Amplification[J].Acta Tropica, 2018, 182:4-11.
[39] LI J, MACDONALD J, VON STETTEN F.Review:A comprehensive summary of a decade development of the recombinase polymerase amplification[J].The Analyst, 2018, 144(1):31-67.
[40] PIEPENBURG O, WILLIAMS C H, STEMPLE D L, et al.DNA detection using recombination proteins[J].PLoS Biology, 2006, 4(7):e204.
[41] 梁芳芳, 张浩, 王帅, 等.重组酶聚合酶扩增技术在寄生虫快速检测中的应用[J].中国热带医学, 2021, 21(9):894-899.
LIANG F F, ZHANG H, WANG S, et al.Application of recombinase polymerase amplification technology in the rapid detection of parasites[J].China Tropical Medicine, 2021, 21(9):894-899.
[42] ASADI R, MOLLASALEHI H.The mechanism and improvements to the isothermal amplification of nucleic acids, at a glance[J].Analytical Biochemistry, 2021, 631:114260.
[43] TAN M Y, LIAO C, LIANG L N, et al.Recent advances in recombinase polymerase amplification:Principle, advantages, disadvantages and applications[J].Frontiers in Cellular and Infection Microbiology, 2022, 12:1019071.
[44] LOBATO I M, O’SULLIVAN C K.Recombinase polymerase amplification:Basics, applications and recent advances[J].TrAC Trends in Analytical Chemistry, 2018, 98:19-35.
[45] 韩利. 牛丸无牛肉虾丸中掺鸭 成都:公司掺假掺杂被罚40万[J].广西质量监督导报, 2016(12):35-36.
HAN L.Duck adulteration in beef balls and shrimp balls without beef Chengdu-the company was fined 400, 000 Yuan for adulteration[J].Guangxi Quality Supervision Guide Periodical, 2016(12):35-36.
[46] 刘爽, 黄广涛, 龚雅利, 等.基于重组酶聚合酶扩增技术建立实时荧光法快速检测鲍曼不动杆菌的研究[J].中国病原生物学杂志, 2019, 14(3):311-314.
LIU S, HUANG G T, GONG Y L, et al.Rapid detection of Acinetobacter baumannii by real-time fluorescence method based on recombinase polymerase amplification[J].Journal of Pathogen Biology, 2019, 14(3):311-314.
[47] MA B, FANG J H, LIN W, et al.A simple and efficient method for potential point-of-care diagnosis of human papillomavirus genotypes:Combination of isothermal recombinase polymerase amplification with lateral flow dipstick and reverse dot blot[J].Analytical and Bioanalytical Chemistry, 2019, 411(28):7451-7460.
[48] CHEN J S, MA E B, HARRINGTON L B, et al.CRISPR-Cas12a target binding unleashes indiscriminate single-stranded DNase activity[J].Science, 2018, 360(6387):436-439.
[49] LIU H B, ZANG Y X, DU X J, et al.Development of an isothermal amplification-based assay for the rapid visual detection of Salmonella bacteria[J].Journal of Dairy Science, 2017, 100(9):7016-7025.
[50] AOKI M N, DE OLIVEIRA COELHO B, GÓES L G B, et al.Colorimetric RT-LAMP SARS-CoV-2 diagnostic sensitivity relies on color interpretation and viral load[J].Scientific Reports, 2021, 11:9026.
[51] GARG N, AHMAD F J, KAR S.Recent advances in loop-mediated isothermal amplification (LAMP) for rapid and efficient detection of pathogens[J].Current Research in Microbial Sciences, 2022, 3:100120.