Chinese Journal of Lasers, Volume. 47, Issue 2, 207026(2020)
Ultrasensitive Quantitative Detection of Alpha-Fetoprotein Based on SERS Spectroscopy
[1] Zhou X P, Zhang L. Progress in detection and clinical application of serum AFP[J]. Internal Medicine of China, 10, 264-266(2015).
[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, 3, 125-132(2015).
[3] 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, 26, 5750-5751(2011).
[4] He S Q. Study of serum AFP level with pregnant women[J]. China Modern Doctor, 48, 28-29(2010).
[5] Wang Y H. Comparison of clinical effects of different serological tests for alpha-fetoprotein[J]. Laboratory Medicine and Clinic, 9, 598-599(2012).
[6] 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, 27, 391-392(2009).
[7] Chen H W, Wu Y. Determination of serum α-fetoprotein by TRFIA, RIA and ELISA[J]. Journal of Chongqing Medical University, 33, 629-630, 640(2008).
[8] 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, 10, 67-68(2013).
[9] Huang X H. Explore the gold standard method and immune chemiluminescence detection of AFP in healthy application[J]. Guide of China Medicine, 11, 34-35(2013).
[10] Fleischmann M, Hendra P J. McQuillan AJ. Raman spectra of pyridine adsorbed at a silver electrode[J]. Chemical Physics Letters, 26, 163-166(1974).
[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, 11, 7424-7429(2009).
[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, 8, 596(2018).
[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, 91, 616-622(2017).
[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, 12, e201800327(2019).
[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, 12, e201800332(2019).
[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, 10, 41902-41908(2018).
[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, 90, 7139-7147(2018).
[22] Yao Y, Sun Q. Raman quantitative measurements for carbon isotopic composition in CO2-rich fluid inclusion: a preliminary study[J]. Advances in Earth Science, 31, 1032-1040(2016).
[23] Nie S, Emory S R. Probing single molecules and single nanoparticles by surface-enhanced Raman scattering[J]. Science, 275, 1102-1106(1997).
[24] Osborne S E, Ellington A D. Nucleic acid selection and the challenge of combinatorial chemistry[J]. Chemical Reviews, 97, 349-370(1997).
[25] Mairal T, Özalp V C, Sánchez P L et al. Aptamers: molecular tools for analytical applications[J]. Analytical and Bioanalytical Chemistry, 390, 989-1007(2008).
[26] Lee P C, Meisel D. Adsorption and surface-enhanced Raman of dyes on silver andgold sols[J]. The Journal of Physical Chemistry, 86, 3391-3395(1982).
[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, 139, 9471-9474(2017).
[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, 135, 10314-10317(2013).
[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, 90, 5646-5653(2018).
[31] 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, 23, 3-5(2017).
Get Citation
Copy Citation Text
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): 207026
Category: biomedical photonics and laser medicine
Received: Oct. 8, 2019
Accepted: --
Published Online: Feb. 21, 2020
The Author Email: Shangyuan Feng (syfeng@fjnu.edu.cn)