中国激光, 2020, 47 (2): 0207026, 网络出版: 2020-02-21   

基于SERS光谱技术的甲胎蛋白超灵敏定量检测 下载: 1397次

Ultrasensitive Quantitative Detection of Alpha-Fetoprotein Based on SERS Spectroscopy
作者单位
1 福建师范大学光电与信息工程学院, 福建 福州 350007
2 医学光电科学与技术教育部重点实验室, 福建 福州 350007
引用该论文

王廷银, 王运燚, 林学亮, 许云超, 林惠晶, 刘晓坤, 冯尚源. 基于SERS光谱技术的甲胎蛋白超灵敏定量检测[J]. 中国激光, 2020, 47(2): 0207026.

Wang Tingyin, Wang Yunyi, Lin Xueliang, Xu Yunchao, Lin Huijing, Liu Xiaokun, Feng Shangyuan. Ultrasensitive Quantitative Detection of Alpha-Fetoprotein Based on SERS Spectroscopy[J]. Chinese Journal of Lasers, 2020, 47(2): 0207026.

参考文献

[1] 周晓萍, 张玲. 血清甲胎蛋白检测方法及临床应用研究进展[J]. 内科, 2015, 10(2): 264-266.

    Zhou X P, Zhang L. Progress in detection and clinical application of serum AFP[J]. Internal Medicine of China, 2015, 10(2): 264-266.

[2] Guo Y L, Zhang Y L, Zhu J Q. Prognostic value of serum α-fetoprotein in ovarian yolk sac tumors:a systematic review and meta-analysis[J]. Molecular and Clinical Oncology, 2015, 3(1): 125-132.

[3] 万晓华, 文江平, 宋新. 正常单胎妊娠与双胎妊娠孕妇孕中期AFP、β-hCG和uE3水平分析[J]. 中国妇幼保健, 2011, 26(36): 5750-5751.

    Wan X H, Wen J P, Song X. Analysis of AFP, β-hCG and uE3 levels in pregnant women during normal singleton pregnancy and twin pregnancy[J]. Maternal and Child Health Care of China, 2011, 26(36): 5750-5751.

[4] 何素琼. 156例孕妇血清AFP水平研究[J]. 中国现代医生, 2010, 48(7): 28-29.

    He S Q. Study of serum AFP level with pregnant women[J]. China Modern Doctor, 2010, 48(7): 28-29.

[5] 王燕华. 甲胎蛋白不同血清学检测方法的临床效果比较[J]. 检验医学与临床, 2012, 9(5): 598-599.

    Wang Y H. Comparison of clinical effects of different serological tests for alpha-fetoprotein[J]. Laboratory Medicine and Clinic, 2012, 9(5): 598-599.

[6] 杨凤爱, 林荣军, 茹辽金, 等. 时间分辨荧光免疫分析法与放射免疫分析法检测甲胎蛋白的效能比较[J]. 广东医学院学报, 2009, 27(4): 391-392.

    Yang F A, Lin R J, Ru L J, et al. Comparison of the efficacy of time-resolved fluorescence immunoassay and radioimmunoassay for detection of α-fetoprotein[J]. Journal of Guangdong Medical College, 2009, 27(4): 391-392.

[7] 陈海蔚, 伍勇. 3种不同方法检测甲胎蛋白的比较[J]. 重庆医科大学学报, 2008, 33(5): 629-630, 640.

    Chen H W, Wu Y. Determination of serum α-fetoprotein by TRFIA, RIA and ELISA[J]. Journal of Chongqing Medical University, 2008, 33(5): 629-630, 640.

[8] 陈卫文, 刘雪辉, 吴丽美, 等. 不同方法检测正常人群血清甲胎蛋白比较[J]. 中国医学创新, 2013, 10(16): 67-68.

    Chen W W, Liu X H, Wu L M, et al. The comparability of AFP in health with different method[J]. Medical Innovation of China, 2013, 10(16): 67-68.

[9] 黄晓华. 探讨金标法和免疫发光法检测甲胎蛋白在健康体检中的应用[J]. 中国医药指南, 2013, 11(24): 34-35.

    Huang X H. Explore the gold standard method and immune chemiluminescence detection of AFP in healthy application[J]. Guide of China Medicine, 2013, 11(24): 34-35.

[10] Fleischmann M, Hendra P J. McQuillan AJ. Raman spectra of pyridine adsorbed at a silver electrode[J]. Chemical Physics Letters, 1974, 26(2): 163-166.

[11] Morton S M, Ewusi-Annan E, Jensen L. Controlling the non-resonant chemical mechanism of SERS using a molecular photoswitch[J]. Physical Chemistry Chemical Physics, 2009, 11(34): 7424-7429.

[12] Liu X J, Liu M M, Lu Y D, et al. Facile Ag-film based surface enhanced Raman spectroscopy using DNA molecular switch for ultra-sensitive mercury ions detection[J]. Nanomaterials, 2018, 8(8): 596.

[13] 董子豪, 刘晔, 秦琰琰, 等. 激光诱导液面自组装法制备光纤SERS探针及其农药残留检测应用[J]. 中国激光, 2018, 45(8): 0804009.

    Dong Z H, Liu Y, Qin Y Y, et al. Fabrication of fiber SERS probes by laser-induced self-assembly method in a meniscus and its applications in trace detection of pesticide residues[J]. Chinese Journal of Lasers, 2018, 45(8): 0804009.

[14] 席刚琴, 陈燕坪, 陈刚, 等. 基于表面增强拉曼光谱的结肠癌组织免疫分析[J]. 中国激光, 2011, 38(9): 0904001.

    Xi G Q, Chen Y P, Chen G, et al. Surface-enhanced Raman scattering spectroscopic assay of immunohistochemically stained human colon cancer tissue[J]. Chinese Journal of Lasers, 2011, 38(9): 0904001.

[15] Feng S Y, Zheng Z C, Xu Y J, et al. A noninvasive cancer detection strategy based on gold nanoparticle surface-enhanced Raman spectroscopy of urinary modified nucleosides isolated by affinity chromatography[J]. Biosensors and Bioelectronics, 2017, 91: 616-622.

[16] Lin X L, Wang L N, Lin H J, et al. A novel urine analysis technique combining affinity chromatography with Au nanoparticle based surface enhanced Raman spectroscopy for potential applications in non-invasive cancer screening[J]. Journal of Biophotonics, 2019, 12(4): e201800327.

[17] Liu M, Liu X, Huang Z, et al. Rapid discrimination of colon cancer cells with single base mutation in KRAS gene segment using laser tweezers Raman spectroscopy[J]. Journal of Biophotonics, 2019, 12(3): e201800332.

[18] Lin D, Lin Y C, Yang S W, et al. Organometallic-constructed tip-based dual chemical sensing by tip-enhanced Raman spectroscopy for diabetes detection[J]. ACS Applied Materials & Interfaces, 2018, 10(49): 41902-41908.

[19] Lin D, Gong T X, Hong Z Y, et al. Metal carbonyls for the biointerference-free ratio metric surface-enhanced Raman spectroscopy-based assay for cell-free circulating DNA of Epstein-Barr virus in blood[J]. Analytical Chemistry, 2018, 90(12): 7139-7147.

[20] 陈阳, 严霞, 张旭, 等. 基于支持向量机算法的多环芳烃表面增强拉曼光谱的定量分析[J]. 中国激光, 2019, 46(3): 0311005.

    Chen Y, Yan X, Zhang X, et al. Surface-enhanced Raman spectroscopy quantitative analysis of polycyclic aromatic hydrocarbons based on support vector machine algorithm[J]. Chinese Journal of Lasers, 2019, 46(3): 0311005.

[21] 沈大娲, 郑菲, 吴娜, 等. 拉曼光谱在文物考古领域的应用态势分析[J]. 光谱学与光谱分析, 2018, 38(9): 2657-2664.

    Shen D W, Zheng F, Wu N, et al. Trend analysis of Raman application in cultural relics and archaeological research[J]. Spectroscopy and Spectral Analysis, 2018, 38(9): 2657-2664.

[22] 药瑛, 孙樯. 应用于流体包裹体CO2碳同位素组成的拉曼光谱定量研究探讨[J]. 地球科学进展, 2016, 31(10): 1032-1040.

    Yao Y, Sun Q. Raman quantitative measurements for carbon isotopic composition in CO2-rich fluid inclusion: a preliminary study[J]. Advances in Earth Science, 2016, 31(10): 1032-1040.

[23] Nie S, Emory S R. Probing single molecules and single nanoparticles by surface-enhanced Raman scattering[J]. Science, 1997, 275(5303): 1102-1106.

[24] Osborne S E, Ellington A D. Nucleic acid selection and the challenge of combinatorial chemistry[J]. Chemical Reviews, 1997, 97(2): 349-370.

[25] Mairal T, Özalp V C, Sánchez P L, et al. Aptamers: molecular tools for analytical applications[J]. Analytical and Bioanalytical Chemistry, 2008, 390(4): 989-1007.

[26] Lee P C, Meisel D. Adsorption and surface-enhanced Raman of dyes on silver andgold sols[J]. The Journal of Physical Chemistry, 1982, 86(17): 3391-3395.

[27] Liu B W, Liu J W. Freezing directed construction of bio/nano interfaces: reagentless conjugation, denser spherical nucleic acids, and better nanoflares[J]. Journal of the American Chemical Society, 2017, 139(28): 9471-9474.

[28] Agnihotri S, Mukherji S, Mukherji S. Size-controlled silver nanoparticles synthesized over the range 5-100 nm using the same protocol and their antibacterial efficacy[J]. RSC Advances, 2014, 4(8): 3974-3983.

[29] Guerrini L, Pazos E, Penas C, et al. Highly sensitive SERS quantification of the oncogenic protein c-Jun in cellular extracts[J]. Journal of the American Chemical Society, 2013, 135(28): 10314-10317.

[30] Meng X Y, Wang H Y, Chen N, et al. A graphene-silver nanoparticle-silicon sandwich SERS chip for quantitative detection of molecules and capture, discrimination, and inactivation of bacteria[J]. Analytical Chemistry, 2018, 90(9): 5646-5653.

[31] 刘杉, 雷培芸, 熊丰. 化学发光法检测重庆地区6个月至2岁健康儿童甲胎蛋白含量及参考值范围的确定[J]. 儿科药学杂志, 2017, 23(6): 3-5.

    Liu S, Lei P Y, Xiong F. Investigation of the alpha fetoprotein content and reference value range of 6 months to 2 years old healthy children in Chongqing with chemiluminescence[J]. Journal of Pediatric Pharmacy, 2017, 23(6): 3-5.

[32] Xia Y F, Gao P Y, Qiu X W, et al. Aptasensor based on triplex switch for SERS detection of cytochrome c[J]. Analyst, 2012, 137(24): 5705-5709.

王廷银, 王运燚, 林学亮, 许云超, 林惠晶, 刘晓坤, 冯尚源. 基于SERS光谱技术的甲胎蛋白超灵敏定量检测[J]. 中国激光, 2020, 47(2): 0207026. Wang Tingyin, Wang Yunyi, Lin Xueliang, Xu Yunchao, Lin Huijing, Liu Xiaokun, Feng Shangyuan. Ultrasensitive Quantitative Detection of Alpha-Fetoprotein Based on SERS Spectroscopy[J]. Chinese Journal of Lasers, 2020, 47(2): 0207026.

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