Tag-femtosecond laser-induced breakdown spectroscopy for the sensitive detection of cancer antigen 125 in blood plasma
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  • 作者:Yuri Markushin (1)
    Poopalasingam Sivakumar (1)
    Denise Connolly (2)
    Noureddine Melikechi (1)

    1. Optical Science Center for Applied Research and Applications and Department of Physics and Engineering
    ; Delaware State University ; Dover ; DE ; 19901 ; USA
    2. Fox Chase Cancer Center
    ; Philadelphia ; PA ; 19111 ; USA
  • 关键词:Femtosecond laser ; induced breakdown spectroscopy ; Ovarian cancer biomarker ; CA 125 ; In vitro diagnostics ; Element encoded immunoassay ; Magnetic separation
  • 刊名:Analytical and Bioanalytical Chemistry
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:407
  • 期:7
  • 页码:1849-1855
  • 全文大小:668 KB
  • 参考文献:1. Jemal A, Siegel R, Xu J, Ward E (2010) Cancer statistics. CA Cancer J Clin 60:277鈥?00 CrossRef
    2. American Cancer Society (2012). Cancer facts & figures 2012. American Cancer Society, Atlanta
    3. Sturgeon CM, Duffy MJ, Stenman UH, Lilja H, Br眉nner N, Chan DW, Babaian R, Bast RC Jr, Dowell B, Esteva FJ, Haglund C, Harbeck N, Hayes DF, Holten-Andersen M, Klee GG, Lamerz R, Looijenga LH, Molina R, Nielsen HJ, Rittenhouse H, Semjonow A, Shih IM, Sibley P, S枚l茅tormos G, Stephan C, Sokoll L, Hoffman BR, Diamandis EP (2008) National academy of clinical biochemistry laboratory medicine practice guidelines for use of tumor markers in testicular prostate, colorectal breast ovarian cancers. Clin Chem 55:e11鈥揺79 CrossRef
    4. McGuire V, Whittemore AS, Norris R, Oakley-Girvan I (2000) Survival in epithelial ovarian cancer patients with prior breast cancer. Am J Epidemiol 152:528鈥?32 CrossRef
    5. Lutz AM, Willmann JK, Drescher CW, Ray P, Cochran FV, Urban N et al (2011) Continuing medical education: early diagnosis of ovarian carcinoma: is a solution in sight? Radiology 259:329鈥?45 CrossRef
    6. Yurkovetsky Z, Skates S, Lomakin A, Nolen B, Pulsipher T, Modugno F, Marks J, Godwin A, Gorelik E, Jacobs I, Menon U, Lu K, Badgwell D, Bast RC Jr, Lokshin AE (2010) Development of a multimarker assay for early detection of ovarian cancer. J Clin Oncol 28:2159鈥?166 1200/JCO.2008.19.2484" target="_blank" title="It opens in new window">CrossRef
    7. Davies C (2013) Principles of competitive and immunometric assays (including ELISA). In: Wild D, Kodak E, Squibb BM (eds) The immunoassay handbook: theory and applications of ligand binding, ELISA and related techniques, 4th edn. Elsevier, Oxford
    8. Smith AM, Dave S, Nie S, True L, Gao X (2006) Multicolor quantum dots for molecular diagnostics of cancer. Expert Rev Mol Diagn 6:231鈥?44 CrossRef
    9. Freeman RG, Raju PA, Norton SM, Walton ID, Smith PC, He L, Natan MJ, Sha MY, Penn SG (2005) Use of nanobarcodes particles in bioassays. In: Rosenthal SJ, Wright DW (eds) Methods in molecular biology. Humana Press Inc, Totowa
    10. Fulton RJ, McDade RL, Smith PL, Kienker LJ, Kettman JR (1997) Advanced multiplexed analysis with the FlowMetrix system. Clin Chem 43:1749鈥?756
    11. Ahrends R, Pieper S, K眉hn A, Weisshoff H, Hamester M, Lindemann T, Scheler C, Lehmann K, Taubner K, Linscheid MW (2007) A metal-coded affinity tag approach to quantitative proteomics. Mol Cell Proteomics 6:1907鈥?916 CrossRef
    12. Koivunen ME, Krogsrud RL (2006) Principles of immunochemical techniques used in clinical laboratories. Lab Med 37:490鈥?97 CrossRef
    13. Markushin Y, Melikechi N (2012) Sensitive detection of epithelial ovarian cancer biomarkers using tag-laser induced breakdown spectroscopy. In: Farghaly SA (ed) Ovarian cancer鈥攂asic science perspective. InTech, Croatia
    14. Markushin Y, Melikechi N, Marcano A, Rock S, Henderson E, Connolly D (2009) LIBS-based multi-element coded assay for ovarian cancer application. Proc SPIE 7190:719015 12.810247" target="_blank" title="It opens in new window">CrossRef
    15. Boumans PWJM (1987) Inductively coupled plasma emission spectroscopy. Part II: applications and fundamentals. Volume 2. Wiley, New York
    16. Miziolek AW, Palleschi V, Schechter I (2006) Laser-induced breakdown spectroscopy: fundamentals and applications. Cambridge University Press, Cambridge 1261" target="_blank" title="It opens in new window">CrossRef
    17. Gurevich EL, Hergenroeder R (2007) Femtosecond laser-induced breakdown spectroscopy: physics, applications, and perspectives. Appl Spectrosc 61:233A鈥?42A CrossRef
    18. Eland KL, Stratis DN, Gold DM, Goode SR, Angel SM (2001) Energy dependence of emission intensity and temperature in a LIBS plasma using femtosecond excitation. Appl Spectrosc 55:286鈥?91 CrossRef
    19. Baudelet M, Guyon L, Yu J, Wolf JP, Amodeo T, Fr茅jafon E, Laloi P (2006) Femtosecond time-resolved laser-induced breakdown spectroscopy for detection and identification of bacteria: a comparison to the nanosecond regime. J Appl Phys 99:084701 CrossRef
    20. Gunaratne T, Kangas M, Singh S, Gross A, Dantus M (2006) Influence of bandwidth and phase shaping on laser induced breakdown spectroscopy with ultrashort laser pulses. Chem Phys Lett 423:197鈥?01 CrossRef
    21. Rohwetter P, Stelmaszczyk K, W枚ste L, Ackermann R, M茅jean G, Salmon E et al (2005) Filament-induced remote surface ablation for long range laser-induced breakdown spectroscopy operation. Spectrochim Acta Part B Atom Spectrosc 60:1025鈥?033 CrossRef
    22. Niloff JM, Bast RC, Schaetzl EM, Knapp RC (1985) Predictive value of CA 125 antigen levels in second-look procedures for ovarian cancer. Am J Obstet Gynecol 151:981鈥?86 CrossRef
    23. Thomas CM, Massuger LF, Segers MF, Schijf CP, Doesburg WH, Wobbes T (1995) Analytical and clinical performance of improved Abbott IMx CA 125 assay: comparison with Abbott CA 125 RIA. Clin Chem 41:221鈥?16
    24. Yin BWT, Lloyd KO (2001) Molecular cloning of the CA125 ovarian cancer antigen. J Biol Chem 276:27371鈥?7375 CrossRef
    25. Drapkin R, Clauss A, Skates S (2008) Urokinase-type plasminogen activator receptor: a beacon of malignancy? Clin Cancer Res 14:5643鈥?645 CrossRef
    26. Sivakumar P, Taleh L, Markushin Y, Melikechi N, Lasue J (2013) An experimental observation of the different behavior of ionic and neutral lines of iron as a function of number density in a binary carbon鈥搃ron mixture. Spectrochim Acta Part B 82:76鈥?2 12.11.006" target="_blank" title="It opens in new window">CrossRef
    27. Wisbrun R, Schechter I, Niessner R, Schr枚eder H, Kompa KL (1994) Detector for trace elemental analysis of solid environmental samples by laser plasma spectroscopy. Anal Chem 66:2964鈥?975 CrossRef
    28. Saarelainen SK, Peltonen N, Lehtimaki T, Perheentupa A, Vuento MH, Maenpaa JU (2013) Predictive value of serum HE4 and CA125 concentrations in endometrial carcinoma. Am J Obstet Gynecol 209:142e1鈥?42e6 CrossRef
    29. Bulatov V, Schechter I (2006) Plasma morphology. In: Vincenzo P, Israel S, Andrzej WM (eds) Laser-induced breakdown spectroscopy fundamental application. Cambridge University Press, Cambridge
    30. Cremers DA, Radziemski LJ (2006) History and fundamentals of LIBS. In: Vincenzo P, Israel S, Andrzej WM (eds) Laser-induced breakdown spectroscopy fundamental application. Cambridge University Press, Cambridge CrossRef
    31. Wiklund M, Nord O, Gothall R, Chernyshev AV, Nygren PA, Hertz HM (2005) Fluorescence-microscopy-based image analysis for analyte-dependent particle doublet detection in a single-step immunoagglutination assay. Anal Biochem 338:90鈥?01 CrossRef
    32. Chunara R, Godin M, Knudsen SM, Manalisa SR (2007) Mass-based readout for agglutination assays. Appl Phys Lett 91:193902 CrossRef
    33. Butch AW (2000) Dilution protocols for detection of hook effects/prozone phenomenon. Clin Chem 46:1719鈥?721
    34. Schelp C, Pauly HE (2001) Detection methods. US20100311185 A1
    35. Gubbels JAA, Belisle J, Onda M, Rancourt C, Migneault M, Ho M et al (2006) Mesothelin-MUC16 binding is a high affinity, N-glycan dependent interaction that facilitates peritoneal metastasis of ovarian tumors. Mol Cancer 5:50 CrossRef
    36. UniProtKB/Swiss-Prot protein data base (2014) http://www.uniprot.org/uniprot/Q8WXI7. Accessed 5 Sept 2014
    37. Lutz AM, Willmann JK, Cochran FV, Ray P, Gambhir SS (2008) Cancer screening: a mathematical model relating secreted blood biomarker levels to tumor sizes. PLoS Med 5:e170 CrossRef
    38. Mongia SK, Rawlins ML, Owen WE, Roberts WL (2006) Performance characteristics of seven automated CA 125 assays. Am J Clin Pathol 125:921鈥?27 12W0LANRXYH9" target="_blank" title="It opens in new window">CrossRef
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Analytical Chemistry
    Food Science
    Inorganic Chemistry
    Physical Chemistry
    Monitoring, Environmental Analysis and Environmental Ecotoxicology
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1618-2650
文摘
Successful treatment of cancers requires detecting early signs of the disease. One promising way to approach this is to develop minimally invasive tests for the sensitive and specific detection of biomarkers in blood. Irrespective of the detection approach one uses, this remains a challenging task because biomarkers are typically present in low concentrations and there are signals that interfere strongly with prevailing compounds of human fluids. In this paper, we show that elemental encoded particle assay coupled with femtosecond laser-induced breakdown spectroscopy for simultaneous multi-elemental analysis can significantly improve biomarker detectability. An estimated near single molecule per particle efficiency of this method leads to sensitive detection of ovarian cancer biomarker CA125 in human blood plasma. This work opens new ways for earlier detection of cancers and for multiplex assay developments in various analytical applications from proteomics, genomics, and neurology fields.

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