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中国生物工程杂志

CHINA BIOTECHNOLOGY
中国生物工程杂志  2022, Vol. 42 Issue (12): 69-78    DOI: 10.13523/j.cb.2206003
综述     
核酸试纸条检测方法研究进展*
孙萌1,2,郜晶1,2,秦雪怡1,2,郭颖然3,贾蕊1,侯立功1,罗淑颖1,张耀东1,2,张现伟1,张万存1,2,**()
1 郑州大学附属儿童医院 河南省儿童遗传代谢性疾病重点实验室 郑州 450018
2 河南省儿童医院郑州儿童医院生物样本库 郑州 450018
3 濮阳市中医院检验科 濮阳 457001
Progress of Nucleic Acid Detection Strip Detection Approaches
SUN Meng1,2,GAO Jing1,2,QIN Xue-yi1,2,GUO Ying-ran3,JIA Rui1,HOU Li-gong1,LUO Shu-ying1,ZHANG Yao-dong1,2,ZHANG Xian-wei1,ZHANG Wan-cun1,2,**()
1 Henan Key Laboratory of Children’s Genetics and Metabolic Diseases, Children’s Hospital Affiliated to Zhengzhou University, Zhengzhou 450018, China
2 Department of Biobank, Henan Children’s Hospital Zhengzhou Children’s Hospital, Zhengzhou 450018, China
3 Chinese Medicine Hospital of Puyang, Clinical Laboratory, Puyang 457001, China
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摘要:

凝胶电泳、实时荧光PCR等常规核酸检测方法存在操作繁琐、设备昂贵、反应时间长等局限性。随着核酸检测市场规模的大幅提升,常规检测方法已无法满足临床诊断、检验检疫的需求。核酸试纸条(nucleic acid detection strip,NADS)是一种新兴的核酸检测方法,具有灵敏度高、操作便捷、结果可视化、成本低且耗时短等优势,在基础研究与临床诊断等领域受到广泛关注。综述近年来NADS的检测方法及研究进展,系统总结该技术的原理、应用及临床潜在转化价值,以期为NADS的进一步开发、利用提供借鉴。

关键词: 核酸试纸条核酸检测灵敏度可视化检测    
Abstract:

With the growth of the nucleic acid testing market, conventional nucleic acid detection approaches such as gel electrophoresis and quantitative real-time PCR (qPCR) have gradually failed to meet the needs of clinical analysis, inspection and quarantine due to their limitations (cumbersome operation, expensive equipment, long reaction time and so on). Nucleic acid detection strip (NADS), a new nucleic acid detection approach with the advantages of high sensitivity, convenient operation, visualization of results, low cost and short time consuming, has attracted extensive attention in basic research and clinical diagnosis. The new progress of NADS in the past ten years was systematically introduced. Meanwhile, the principle, advantages and clinical potential translation value of NADS were summarized in order to provide reference for the further development and utilization of nucleic acid detection strip.

Key words: Nucleic acid detection strip (NADS)    Nucleic acid detection    Sensitivity    Visualization detection
收稿日期: 2022-06-01 出版日期: 2023-01-05
ZTFLH:  R446  
基金资助: *中国博士后科学基金面上项目(2020M672301);河南省科技攻关计划资助项目(222102310109);河南省科技攻关计划资助项目(222102310270)
通讯作者: 张万存     E-mail: zhangwancun@126.com
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孙萌
郜晶
秦雪怡
郭颖然
贾蕊
侯立功
罗淑颖
张耀东
张现伟
张万存

引用本文:

孙萌,郜晶,秦雪怡,郭颖然,贾蕊,侯立功,罗淑颖,张耀东,张现伟,张万存. 核酸试纸条检测方法研究进展*[J]. 中国生物工程杂志, 2022, 42(12): 69-78.

SUN Meng,GAO Jing,QIN Xue-yi,GUO Ying-ran,JIA Rui,HOU Li-gong,LUO Shu-ying,ZHANG Yao-dong,ZHANG Xian-wei,ZHANG Wan-cun. Progress of Nucleic Acid Detection Strip Detection Approaches. China Biotechnology, 2022, 42(12): 69-78.

链接本文:

https://manu60.magtech.com.cn/biotech/CN/10.13523/j.cb.2206003        https://manu60.magtech.com.cn/biotech/CN/Y2022/V42/I12/69

结构 功能
NC膜 层析试纸条最核心的部分,承载显示实验最终结果的质控线和检测线
样品垫 样本滴加区域,是试纸条检测系统中第一个与样本接触的部分,常用磷酸缓冲盐溶液浸润,以便将样本顺利、均匀运送至结合垫
结合垫 信号探针附着的载体,可以直接影响试纸条的功能和灵敏度,具有均一的层析性能、较低的阻逆性等特性,可保证样品均一转移至NC膜上
吸水垫 位于试纸条的末端,具有强大的吸水能力和较大的吸水体积,可以吸收NC膜反应后剩余的样本,避免样本反向流动造成假阳性
底板 耗材的载体,一般为聚氯乙烯材质,具有一定的机械强度和支撑性
表1  试纸条的结构和功能
图1  抗体无关型NADS及抗体依赖型NADS检测原理
检测靶标 灵敏度 特异性 检测时间 参考文献
YMDD基序1) 103 copies/mL 15 min [15]
PEDV N基序 5.39×107 copies/mL 1 min [23]
CyHV-3胸苷激酶(thymidine kinase,TK)基因 10 fg 5 min [17]
D-loop基因序列2) 0.1 ng/μL 3~5 min [22]
结核分枝杆菌IS6110基因 104 copies/μL 15 min [24]
表2  核酸试纸条检测靶标、灵敏度、特异性
[1] Aveyard J, Mehrabi M, Cossins A, et al. One step visual detection of PCR products with gold nanoparticles and a nucleic acid lateral flow (NALF) device. Chemical Communications (Cambridge, England), 2007(41): 4251-4253.
[2] 陈阳, 任星彤, 贾世龙, 等. 基于双拖尾重组聚合酶恒温扩增技术的核酸杂交试纸条快速检测驴肉中的马源性成分. 食品安全质量检测学报, 2022, 13(11): 3467-3474.
Chen Y, Ren X T, Jia S L, et al. Rapid determination of horse-derived components in donkey meat by nucleic acid hybridization strip based on double trailing recombinant polymerase constant temperature amplification technology. Journal of Food Safety & Quality, 2022, 13(11): 3467-3474.
[3] 王之莹, 于文杰, 谢瑞彬, 等. 利用侧流核酸试纸条快速检测非洲猪瘟病毒. 农业工程学报, 2020, 36(4): 294-299.
Wang Z Y, Yu W J, Xie R B, et al. Rapid detection of African swine fever virus based on lateral flow nucleic acid assay. Transactions of the Chinese Society of Agricultural Engineering, 2020, 36(4): 294-299.
[4] 俞禄珍, 张博文, 焦彬彬, 等. 剪股颖粒线虫环介导等温扩增检测技术研究. 植物检疫, 2019, 33(5): 27-31.
Yu L Z, Zhang B W, Jiao B B, et al. Detection of Anguina agrostis by loop-mediated isothermal amplification method. Plant Quarantine, 2019, 33(5): 27-31.
[5] 周峰, 王志宇, 张梅, 等. 绵羊痘病毒和山羊痘病毒通用RPA检测方法的建立与优化. 中国兽医科学, 2022, 52(7): 830-836.
Zhou F, Wang Z Y, Zhang M, et al. Establishment and optimization of a RPA diganostic method for sheep pox virus and goat pox virus. Chinese Veterinary Science, 2022, 52(7): 830-836.
[6] 霍亚云, 张永江, 李为民, 等. 黄瓜绿斑驳花叶病毒核酸试纸条检测技术的建立. 北方园艺, 2017(10): 100-103.
Huo Y Y, Zhang Y J, Li W M, et al. Development of nucleic acid test strip for detection of cucumber green mottle mosaic virus. Northern Horticulture, 2017(10): 100-103.
[7] 王丽萍, 吕超, 秦志强, 等. 基于重组酶聚合酶扩增的曼氏血吸虫核酸可视化检测技术的建立及初步评价. 中国寄生虫学与寄生虫病杂志, 2022, 40(3): 337-343.
Wang L P, Lv C, Qin Z Q, et al. Establishment and preliminary evaluation of a visualized detection technique for Schistosoma mansoni nucleic acid based on recombinase polymerase amplification. Chinese Journal of Parasitology and Parasitic Diseases, 2022, 40(3): 337-343.
[8] 吴晓芳, 沈月华, 徐德顺, 等. 环介导等温扩增-核酸试纸条快速检测牛肉源性成分. 中国卫生检验杂志, 2021, 31(17): 2073-2075.
Wu X F, Shen Y H, Xu D S, et al. Rapid detection of beef derived component by loop-mediated isothermal amplification method combining nucleic acid test strip. Chinese Journal of Health Laboratory Technology, 2021, 31(17): 2073-2075.
[9] 田卓, 曹际娟, 崔妍, 等. PCR-核酸试纸条法快速检测鸽子源性成分. 安徽农业科学, 2016, 44(20): 83-85, 117.
Tian Z, Cao J J, Cui Y, et al. Rapid detection of dove origin ingredients by PCR-nucleic acid test paper. Journal of Anhui Agricultural Sciences, 2016, 44(20): 83-85, 117.
[10] 冯涛, 李素芳, 毛梦娇, 等. 交叉引物等温扩增检测猪肉源性成分. 食品与生物技术学报, 2018, 37(11): 1207-1212.
Feng T, Li S F, Mao M J, et al. Cross priming amplification with nucleic acid test strip analysis of pork in meat mixtures. Journal of Food Science and Biotechnology, 2018, 37(11): 1207-1212.
[11] 赵良娟, 张霞, 刘国红, 等. 可视化核酸试纸条法快速检测肉及肉制品中鸭源成分. 食品研究与开发, 2018, 39(2): 155-158.
Zhao L J, Zhang X, Liu G H, et al. Visual nucleic acid test strips for rapid detection of duck ingredient in meat and meat products. Food Research and Development, 2018, 39(2): 155-158.
[12] 房敬真, 房保海, 徐守振. 迟缓爱德华氏菌可视化核酸试纸条检测方法的研究. 青岛农业大学学报(自然科学版), 2018, 35(3): 220-223.
Fang J Z, Fang B H, Xu S Z. Research on a visual nucleic acid dipstick assay for rapid detection of Edwardsiella tarda. Journal of Qingdao Agricultural University (Natural Science), 2018, 35(3): 220-223.
[13] 陆璐, 邱万伟, 丁巧玲, 等. 基于核酸等温扩增的侧流层析试纸条在病原微生物检测中的研究进展. 食品安全质量检测学报, 2022, 13(5): 1462-1470.
Lu L, Qiu W W, Ding Q L, et al. Research progress of side flow chromatography strip based on isothermal amplification of nucleic acid in the detection of pathogenic microorganisms. Journal of Food Safety & Quality, 2022, 13(5): 1462-1470.
[14] 姜海瀛, 张志杰, 王艳双, 等. 牛肉PCR-核酸试纸条快速鉴定方法的建立及试剂盒的研制. 食品与发酵工业, 2021, 47(18): 275-281.
Jiang H Y, Zhang Z J, Wang Y S, et al. Establishment of a rapid identification method on PCR-nucleic acid strip for beef and development of kits. Food and Fermentation Industries, 2021, 47(18): 275-281.
[15] Xu G L, You Q M, Pickerill S, et al. Application of PCR-LDR-nucleic acid detection strip in detection of YMDD mutation in hepatitis B patients treated with lamivudine. Journal of Medical Virology, 2010, 82(7): 1143-1149.
doi: 10.1002/jmv.21811 pmid: 20513076
[16] 潘克女, 张永乐, 张辉. 核酸试纸条法检测HBV基因型方法的建立. 中华微生物学和免疫学杂志, 2010, 30(8): 768-770.
Pan K N, Zhang Y L, Zhang H. Development of an HBV genotyping method by nucleic acid strip. Chinese Journal of Microbiology and Immunology, 2010, 30(8): 768-770.
[17] Soliman H, El-Matbouli M. Loop mediated isothermal amplification combined with nucleic acid lateral flow strip for diagnosis of cyprinid Herpes virus-3. Molecular and Cellular Probes, 2010, 24(1): 38-43.
doi: 10.1016/j.mcp.2009.09.002 pmid: 19781627
[18] Wang F X, Yuan D Y, Jin Y N, et al. Reverse transcription cross-priming amplification-nucleic acid test strip for rapid detection of porcine epidemic diarrhea virus. Scientific Reports, 2016, 6: 24702.
doi: 10.1038/srep24702
[19] 张力支, 魏亚楠, 王雪辉, 等. 基于纳米金核酸探针的新型试纸条对灿烂弧菌快速检测. 生物工程学报, 2021, 37(9): 3323-3333.
Zhang L Z, Wei Y N, Wang X H, et al. A novel test strip assay based on gold nanoparticles-labeled nucleic acid probe for rapid detection of Vibrio splendidus. Chinese Journal of Biotechnology, 2021, 37(9): 3323-3333.
[20] Xu C P, Wang H L, Jin H L, et al. Visual detection of Ebola virus using reverse transcription loop-mediated isothermal amplification combined with nucleic acid strip detection. Archives of Virology, 2016, 161(5): 1125-1133.
doi: 10.1007/s00705-016-2763-5 pmid: 26831931
[21] 刘敏. 交叉引物等温扩增-核酸试纸条技术检测蜡样芽孢杆菌. 食品安全导刊, 2018(33): 185-186.
Liu M. Development of bacillus cereus by isothermal amplification with cross primers and nucleic acid test strip technique. China Food Safety Magazine, 2018(33): 185-186.
[22] 冯涛, 杨韩, 张颖洁, 等. CPA-核酸试纸条检测鸭肉源性成分方法的建立和优化. 核农学报, 2016, 30(11): 2151-2159.
doi: 10.11869/j.issn.100-8551.2016.11.2151
Feng T, Yang H, Zhang Y J, et al. Cross priming amplification and nucleic acid test strip analysis of duck meat in meat mixtures. Journal of Nuclear Agricultural Sciences, 2016, 30(11): 2151-2159.
doi: 10.11869/j.issn.100-8551.2016.11.2151
[23] Wang F X, Yuan D Y, Jin Y N, et al. Reverse transcription cross-priming amplification-nucleic acid test strip for rapid detection of porcine epidemic diarrhea virus. Scientific Reports, 2016, 6: 24702.
doi: 10.1038/srep24702
[24] 陈淑丹, 罗鹏, 吴亦斐, 等. 核酸试纸条法检测结核分枝杆菌的初步研究. 中国口岸科学技术, 2021, 3(5): 45-50.
Chen S D, Luo P, Wu Y F, et al. Preliminary study on a nucleic acid strip assay for Mycobacterium tuberculosis detection. China Port Science and Technology, 2021, 3(5): 45-50.
[25] 周朴帆, 陈丽丽. 金纳米颗粒的生物检测应用. 中国生物制品学杂志, 2018, 31(7): 792-796.
Zhou P F, Chen L L. Application of gold nanoparticles in biological detection. Chinese Journal of Biologicals, 2018, 31(7): 792-796.
[26] 黄欢, 李朔, 孙丽洲, 等. 长引物快速PCR结合核酸试纸条法可视化检测四种病原体. 标记免疫分析与临床, 2013, 20(6): 436-439.
doi: 10.11748/bjmy.issn.1006-1703.2013.06.022
Huang H, Li S, Sun L Z, et al. Development of a long-primer fast PCR coupled with visual nucleic acid dipstick assay for detection of four pathogens. Labeled Immunoassays and Clinical Medicine, 2013, 20(6): 436-439.
doi: 10.11748/bjmy.issn.1006-1703.2013.06.022
[27] 徐苗苗, 李健, 李桂玲, 等. CPA-核酸试纸条快速检测副溶血性弧菌(Vibrio parahaemolyticus)方法的建立及其在海产品检测中的应用. 海洋与湖沼, 2016, 47(3): 681-688.
Xu M M, Li J, Li G L, et al. Development of cross priming amplification combined with nucleic acid strip for detection of Vibrio parahaemolyticus. Oceanologia et Limnologia Sinica, 2016, 47(3): 681-688.
[28] 郑若彤. 碳基量子点的制备与修饰探讨. 现代商贸工业, 2019, 40(12): 197-198.
Zheng R T. Preparation and ornament of carbon - based quantum dots. Modern Business Trade Industry, 2019, 40(12): 197-198.
[29] 邓熙蕾. 基于碲化镉量子点-核酸探针的试纸条传感器检测疾病相关基因的研究. 武汉: 湖北大学, 2018.
Deng X L. Detection of genes via lateral flow biosensors of diseases based on CdTe QD-DNA probes. Wuhan: Hubei University, 2018.
[30] 张玮航, 宫俊霞, 张艳, 等. 金纳米花材料在肿瘤诊疗领域应用的研究进展. 中国实验诊断学, 2015, 19(12): 2153-2155.
Zhang W H, Gong J X, Zhang Y, et al. Research progress of gold nanofabrous materials in the field of cancer diagnosis and treatment. Chinese Journal of Laboratory Diagnosis, 2015, 19(12): 2153-2155.
[31] Qi L J, Yang M T, Chang D R, et al. A DNA nanoflower-assisted separation-free nucleic acid detection platform with a commercial pregnancy test strip. Angewandte Chemie International Edition, 2021, 60(47): 24823-24827.
[32] 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. 分析测试学报, 2021, 40(10): 1538-1544.
Zhang S J, Feng J J, Guo S L, et al. Application of rolling ring amplification in the detection of pathogenic microorganism. Journal of Instrumental Analysis, 2021, 40(10): 1538-1544.
[33] 孙亚军, 王亮, 蔡俊. 滚环扩增技术最新研究动态及展望. 生物技术进展, 2016, 6(2): 130-136.
Sun Y J, Wang L, Cai J. Progress and prospects of rolling circle amplification. Current Biotechnology, 2016, 6(2): 130-136.
[34] 刘巨, 梁涛波, 许恒毅. 滚环扩增介导的核酸信号放大策略在生物传感器中的应用研究进展. 分析测试学报, 2020, 39(12): 1556-1560, 1566.
Liu J, Liang T B, Xu H Y. Advances on application of rolling circle amplification-mediated nucleic acid signal amplification strategy in biosensors. Journal of Instrumental Analysis, 2020, 39(12): 1556-1560, 1566.
[35] 梁海燕, 刘文鑫, 杨志刚. 等温核酸扩增技术进展. 中国医学创新, 2017, 14(16): 145-148.
Liang H Y, Liu W X, Yang Z G. Progress of isothermal nucleic acid amplification techniques. Medical Innovation of China, 2017, 14(16): 145-148.
[36] 高瑶, 孟星宇, 罗玉子, 等. 等温扩增技术的原理及其在病原检测中的应用. 动物医学进展, 2017, 38(8): 103-109.
Gao Y, Meng X Y, Luo Y Z, et al. Application of isothermal amplification technology in detecting pathogens. Progress in Veterinary Medicine, 2017, 38(8): 103-109.
[37] 钟海霞, 周寒嫣, 罗欢, 等. 等温扩增技术在食源性致病菌检测中的研究进展. 食品工业科技, 2019, 40(7): 362-367.
Zhong H X, Zhou H Y, Luo H, et al. Research progress of isothermal amplification in the detection of pathogenic bacteria in food. Science and Technology of Food Industry, 2019, 40(7): 362-367.
[38] 秦强, 朱金玲. CPA-核酸试纸条快速检测霍乱弧菌方法的建立与优化. 生物技术通报, 2013(7): 167-171.
Qin Q, Zhu J L. Establishment and optimization of CPA-nucleic acid test strip for rapid detection of Vibrio cholerae. Biotechnology Bulletin, 2013(7): 167-171.
[39] 张永乐, 厉小玉, 潘克女, 等. 甲型H1N1流感病毒快速诊断核酸试纸条的研制及应用. 中华医院感染学杂志, 2011, 21(14): 2871-2873.
Zhang Y L, Li X Y, Pan K N, et al. Development and application of a rapid nucleic acid diagnostic strip for influenza A(H1N1) virus. Chinese Journal of Nosocomiology, 2011, 21(14): 2871-2873.
[40] 叶钰滢, 赵松, 刘燕红, 等. 基于重组酶介导核酸等温扩增技术的日本血吸虫特异性基因片段核酸试纸条检测方法的建立. 中国血吸虫病防治杂志, 2021, 33(4): 334-338, 395.
doi: 10.16250/j.32.1374.2021016 pmid: 34505438
Ye Y Y, Zhao S, Liu Y H, et al. Establishment of a nucleic acid dipstick test for detection of Schistosoma japonicum specific gene fragments based on the recombinase-aided isothermal amplification assay. Chinese Journal of Schistosomiasis Control, 2021, 33(4): 334-338, 395.
doi: 10.16250/j.32.1374.2021016 pmid: 34505438
[41] 尹新颖, 朴永哲, 白璐, 等. 黄瓜绿斑驳花叶病毒分子检测技术研究进展. 植物检疫, 2021, 35(3): 13-17.
Yin X Y, Piao Y Z, Bai L, et al. Advances in molecular detection of cucumber green mottle mosaic virus. Plant Quarantine, 2021, 35(3): 13-17.
[42] 林炳辉, 吕婷云. 聚合酶链式反应(PCR)的原理和应用. 生物技术通报, 1990(5): 1-5.
Lin B H, Lv T Y. Principles and applications of polymerase chain reaction. Biotechnology Bulletin, 1990(5): 1-5.
[43] 邵慧珍. PCR的原理和应用. 现代医学仪器与应用, 1992(4): 15-16.
Shao H Z. The principle and application of PCR. Journal of Molecular Diagnostics and Therapy, 1992(4): 15-16.
[44] 覃德文, 云朝光, 秦武明, 等. PCR技术发展状况研究. 林业实用技术, 2013(6): 6-8.
Qin D W, Yun C G, Qin W M, et al. Research on the development of PCR technology. Practical Forestry Technology, 2013(6): 6-8.
[45] 肖生祥. PCR原理及应用中存在的问题. 中国皮肤性病学杂志, 1998, 12(4): 245-244.
Xiao S X. Principles of PCR and problems existing in its application. The Chinese Journal of Dermatovenereology, 1998, 12(4): 245-244.
[46] 张裕君, 贺艳, 赵卫东, 等. PCR核酸试纸条法检测转基因黑曲霉. 食品研究与开发, 2013, 34(20): 62-64, 111.
Zhang Y J, He Y, Zhao W D, et al. The method of PCR and nucleic acid strips to detect transgenic Aspergillus niger. Food Research and Development, 2013, 34(20): 62-64, 111.
[47] 龚真莉, 蒋韬, 祁淑芸, 等. 口蹄疫病毒核酸试纸条检测方法的建立. 中国畜牧兽医, 2015, 42(9): 2292-2297.
Gong Z L, Jiang T, Qi S Y, et al. Development of nucleic acid lateral flow immunoassay detection method for foot-and-mouth disease virus. China Animal Husbandry & Veterinary Medicine, 2015, 42(9): 2292-2297.
[48] Wang C F, Zhang L F, Shen X M. Development of a nucleic acid lateral flow strip for detection of hepatitis C virus (HCV) core antigen. Nucleosides, Nucleotides & Nucleic Acids, 2013, 32(2): 59-68.
[49] Kolm C, Martzy R, Führer M, et al. Detection of a microbial source tracking marker by isothermal helicase-dependent amplification and a nucleic acid lateral-flow strip test. Scientific Reports, 2019, 9: 393.
doi: 10.1038/s41598-018-36749-7 pmid: 30674936
[50] 陈诗胜, 张正荣, 任建鸾, 等. 奶牛乳房炎四种致病菌PCR核酸免疫层析试纸条快速检测方法的建立及应用. 中国兽医科学, 2020, 50(3): 283-293.
Chen S S, Zhang Z R, Ren J L, et al. Establishment and application of PCR nucleic acid immunochromatographic strip for rapid detection of four pathogenic bacteria in dairy cow mastitis. Chinese Veterinary Science, 2020, 50(3): 283-293.
[51] He Z S, Ni Q, Song Y, et al. Development of a nucleic acid lateral flow strip for rapid, visual detection of Nosema bombycis in silkworm eggs. Journal of Invertebrate Pathology, 2019, 164: 59-65.
doi: 10.1016/j.jip.2019.04.004
[52] 张裕君, 王金成, 魏亚东. 可视化核酸试纸条法快速检测松材线虫. 植物保护, 2013, 39(4): 94-98.
Zhang Y J, Wang J C, Wei Y D. Visual nucleic acid test strips for rapid detection of Bursaphelenchus xylophilus. Plant Protection, 2013, 39(4): 94-98.
[53] 丁建松, 朱玲玲, 宋凌浩, 等. 血液疟原虫快速核酸检测技术研究. 中国保健营养, 2016, 26(20): 2-3.
Ding J S, Zhu L L, Song L H, et al. Rapid nucleic acid detection of Plasmodium in blood. China Health Care & Nutrition, 2016, 26(20): 2-3.
[54] 张洁, 曹军军, 祝明松, 等. 绵羊肺炎支原体环介导等温扩增联合横向流动试纸条可视化检测方法的建立. 动物医学进展, 2019, 40(3): 1-8.
Zhang J, Cao J J, Zhu M S, et al. Establishment of loop-mediated isothermal amplification-lateral-flow dipstick for detecting Mycoplasma ovi. Progress in Veterinary Medicine, 2019, 40(3): 1-8.
[55] Zheng F Y, Li S F, Wang S N, et al. Cross-priming isothermal amplification combined with nucleic acid test strips for detection of meat species. Analytical Biochemistry, 2020, 597: 113672.
doi: 10.1016/j.ab.2020.113672
[56] 汪琳, 罗英, 周琦, 等. 核酸试纸条在检测转EPSPS基因作物中的应用. 生物技术通讯, 2011, 22(2): 238-242.
Wang L, Luo Y, Zhou Q, et al. Application of nucleic acid strips in the detection of transgenic EPSPS crops. Letters in Biotechnology, 2011, 22(2): 238-242.
[57] 贾玄, 李凯, 董美, 等. 转基因水稻PA110-15基于RPA等温扩增及DNA试纸条联检的品系特异性检测方法. 分子植物育种, 2017, 15(12): 5210-5215.
Jia X, Li K, Dong M, et al. The event-specific detection of transgenic rice PA110- 15 based on recombinase polymerase amplification coupled with DNA lateral flow strip. Molecular Plant Breeding, 2017, 15(12): 5210-5215.
[58] 李亚茹, 孙淼, 刘琳, 等. 哈蟆油快速鉴定的开发与应用. 中药材, 2022, 45(3): 555-560.
Li Y R, Sun M, Liu L, et al. Development and application of rapid identification of ranae oviduetus. Journal of Chinese Medicinal Materials, 2022, 45(3): 555-560.
[59] 贾子冬, 徐高连, 钟华燕, 等. PCR-LDR-核酸试纸条检测法在结核分枝杆菌katG基因315位密码子突变检测中的应用. 临床肺科杂志, 2011, 16(11): 1721-1723.
Jia Z D, Xu G L, Zhong H Y, et al. Application of PCR-LDR-nucleic acid detection strip in detection of KatG315-mutation in TB. Journal of Clinical Pulmonary Medicine, 2011, 16(11): 1721-1723.
[60] 朱传新, 郑文力, 吴矛矛, 等. 环介导核酸恒温扩增结合试纸条技术快速筛查沙门菌的方法. 上海预防医学, 2021, 33(6): 492-495.
Zhu C X, Zheng W L, Wu M M, et al. Rapid screening of Salmonella by loop-mediated isothermal amplification combined with lateral flow dipstick. Shanghai Journal of Preventive Medicine, 2021, 33(6): 492-495.
[61] He Y Q, Zhang S Q, Zhang X B, et al. Ultrasensitive nucleic acid biosensor based on enzyme-gold nanoparticle dual label and lateral flow strip biosensor. Biosensors and Bioelectronics, 2011, 26(5): 2018-2024.
doi: 10.1016/j.bios.2010.08.079 pmid: 20875950
[1] 王静,许鑫,王雪雨,姚伦广,阚云超,冀君. 环介导等温扩增技术检测食品安全的研究进展 *[J]. 中国生物工程杂志, 2018, 38(11): 84-91.
[2] 夏启玉, 李美英, 杨小亮, 肖苏生, 贺萍萍, 郭安平. 免疫层析试纸条技术及其在转基因检测中的应用[J]. 中国生物工程杂志, 2017, 37(2): 101-110.
[3] 姚雪, 刘琪琦, 赵青, 陈苏红. 应用可视化基因芯片技术检测幽门螺杆菌感染个体化药物治疗相关基因[J]. 中国生物工程杂志, 2013, 33(4): 92-100.
[4] 王欣荣,刘锋,刘建华,韩泽广. 一种改进的双向电泳染色方法[J]. 中国生物工程杂志, 2006, 26(06): 71-74.
[5] 赵学明, 朱士恩, 侯云鹏, 周光斌. 双重套式PCR对不同取样胚胎性别鉴定灵敏度测试[J]. 中国生物工程杂志, 2005, 25(3): 17-22.
[6] 张先恩. 压电生物传感器与光生物传感器[J]. 中国生物工程杂志, 1992, 12(4): 37-40.
[7] 张先恩. 压电生物传感器与光生物传感器[J]. 中国生物工程杂志, 1992, 12(3): 37-40.
[8] 刘国诠. 制备液相色谱技术[J]. 中国生物工程杂志, 1990, 10(2): 15-18.