DOI QR코드

DOI QR Code

Comparison of Methods for Measuring Histamine by ELISA and HPLC-MS Assay In Vitro

In Vitro에서 히스타민 측정 시 ELISA법과 HPLC-MS 분석법의 비교

  • Lee, In Hee (Department of Microbiology, Dankook University) ;
  • Kim, Yoo Hyun (Department of Clinical Laboratory Science, Wonkwang Health Science University)
  • 이인희 (단국대학교 미생물학과) ;
  • 김유현 (원광보건대학교 임상병리학과)
  • Received : 2015.10.16
  • Accepted : 2015.11.09
  • Published : 2015.12.30

Abstract

The measurement of histamine is to determine the degree of allergy because the allergic reaction can lead to the release of histamine. In general, the antigen-antibody reaction was quantified by measuring absorbance using a microplate reader. In this study, we compare the method using a general antigen-antibody reaction and the method using a high performance liquid chromatography mass spectrometer (HPLC-MS) of chemical analysis in the measurement of histamine secretion. The cell line used was RBL-2H3, an allergic reaction was induced by stimulation with C48/80 (compound 48/80). Allergy-induced cells degranulation rate was confirmed by measurement of ${\beta}$-hexosaminidase and cytotoxicity was performed for the validity of the experiment. The quantitative determination of histamine showed a significant difference, since the quantitative limit of the measurement by the antigen-antibody reaction was 10.257 ppm while the quantitative limit of the measurement by HPLC-MS was 0.020 ppm. Measurement of histamine in allergic activity and anti-allergy tests showed that the HPLC-MS analysis rather than the analysis of the antigen-antibody reaction is a more precise and accurate test.

알러지 반응이 일어나면 histamine이 방출되기 때문에 histamine을 정량 측정함으로써 유발된 알러지의 정도를 확인 할 수 있다. 일반적으로는 항원-항체반응으로 microplate reader를 이용하여 흡광도를 측정하여 정량 한다. 본 연구에서는 histamine 방출량을 측정함에 있어서 일반적인 항원-항체반응과 분석 화학적인 방법으로 HPLC-MS를 이용한 방법을 비교하였다. 세포주는 RBL-2H3를 사용하였고, C48/80으로 자극시켜 알러지를 유발하였다. 유발된 알러지는 ${\beta}$-hexosaminidase의 측정으로 탈 과립을 확인하였으며 실험의 정당성을 위하여 세포독성 능을 확인하였다. Histamine 정량에서 항원-항체반응에 의한 측정의 정량한계는 10.257 ppm이었고, HPLC-MS에 의한 정량한계는 0.020 ppm으로 현저한 차이를 보였다. 알러지 활성 및 항 알러지 실험에 있어서 histamine의 측정은 HPLC-MS를 이용한 분석이 더 정밀하고 정확한 실험인 것을 확인하였다.

Keywords

References

  1. Baltes E, Coupez R, Giezek H. Absorption and disposition of levocetirizine, the eutomer of cetirizine, administered alone or as cetirizine to healthy volunteers. Fundam Clin Pharmacol. 2001,15:269-277. https://doi.org/10.1046/j.1472-8206.2001.00035.x
  2. Bartra J, Valero AL, del Cuvillo A, Davila I, Jauregui I, Montoro J, et al. Interactions of the H1 anti-histamines. J Investig Allergol Clin Immunol. 2006,16:29-36.
  3. Calull M, Marce RM, Gabregas J, Borrull F. A method for the determination of histamine in wine by HPLC with precolumn derivatization with phenylisothiocyanate. Chromatographia. 1991,31:133-136. https://doi.org/10.1007/BF02274560
  4. Choi YH, Yan GH, Chai OH, Song CH. Inhibitory effects of curcumin on passive cutaneous anaphylactoid response and compound 48/80-induced mast cell activation. Anat Cell Biol. 2010,43:36-43. https://doi.org/10.5115/acb.2010.43.1.36
  5. Cooper KD. Atopy dermatitis. Recent trends in pathogenesis and therapy. J Invest Dermatol. 1994,102:28-137. https://doi.org/10.1111/1523-1747.ep12388434
  6. Hasan S, Al Ali H, Al-Qubaisi M, Zobir Hussein M, Ismail M, Zainal Z, et al. Controlled-release formulation of antihistamine based on cetirizine zinc-layered hydroxide nanocomposites and its effect on histamine release from basophilic leukemia (RBL-2H3) cells. International Journal of Nanomedicine. 2012,7:3351-3363.
  7. Jo KW, Lee SH, Shin W, Kim YR, Oh WY, Lim SM, et al. Drug test method validation guidelines (Revised). 2012.
  8. Jung AN, Lee SR, Kim SY, Kang HJ, Lee KH, Cho YS. Analysis of MAST test result for 1 year. Korean J Clin Lab Sci. 1998,30:162-168.
  9. Kim HY, Park JH. Inhibitory effect of saingheylyunbooem on compound 48/80 stimulated allergic reaction. Korean J Oriental Physiology & Pathology. 2010,24:48-54.
  10. Kim JH, Shin IS, Lee YK, Oh HJ, Ban SJ. Improved HPLC method using 2, 3-naphthalenedicarboxaldehyde as fluorescent labeling agent for quantification of histamine in human immunoglobulin preparations. Osong Public Health and Research Perspectives. 2011,2:127-134. https://doi.org/10.1016/j.phrp.2011.07.003
  11. Marshall JS. Mast cell responses to pathogens. Nat Rev Immunol. 2004,4:787-799. https://doi.org/10.1038/nri1460
  12. Mekori YA, Metcalfe DD. Mast cells in innate immunity. Immunol Rev. 2000,173:131-140. https://doi.org/10.1034/j.1600-065X.2000.917305.x
  13. Moon SH, Ko EY, Awraris DA, Park SW. HPLC method validation of naringin determination in Goheung yuzu extract as a functional ingredient. J Korean Soc Food Sci Nutr. 2014,43:1737-1741. https://doi.org/10.3746/jkfn.2014.43.11.1737
  14. Mosman TR, Cherwinski HM, Bond MW, Giedlin MA, Coffman RL. Two types of murine helper T cell clones. I. Definition according to profiles of lymphokine activities and secreted proteins. J Immunol. 1986,136:2348-2357.
  15. Muscarella M, Iammarino M, Centonze, Palermo C. Measurement of histamine in seafood by HPLC, CE, and ELISA: Comparison of three techniques. Veterinary Research Communications. 2005,29:343-346. https://doi.org/10.1007/s11259-005-0077-2
  16. Naclerio RM, Hubbard W, Lichtenstein LM. Clinical aspects of allergic disease. Origin of late phase histamine release. J Allergy Clin Immunol. 1996,98:721-723. https://doi.org/10.1016/S0091-6749(96)70118-5
  17. Nadler MJ, Matthews SA, Turner H, Kinet JP. Signal transduction by the high-affinity immunoglobulin E receptor $Fc{\varepsilon}RI$: Coupling form to function. Adv Immunol. 2000,76:325-355.
  18. Park JS, Lee TY, Choi SH, Kim HJ, Choi YJ. Characteristics of allergic patients in Soonchunhyang University Cheonan Hospital. Korean J Clin Lab Sci. 2007,39:104-112.
  19. Peters SP, Kagey-Sobotka A, MacGlashan DW, Lichtenstein LM. Effect of prostaglandin $D_2$ in modulating histamine release from human basophils. J Pharmacol Exp Ther. 1984,228:400-406.
  20. Petersen LJ, Mosbech H, Skov PS. Allergen-induced histamine release in intact human skin in vivo assessed by skin microdialysis technique: Characterization of factors influencing histamine releasability. J Allergy Clin Immun. 1996,97:672-679. https://doi.org/10.1016/S0091-6749(96)70313-5
  21. Roitt I, Brostoff J, Male D. Immunology. 6th ed. 2001, p323-383. Mosby, New York.
  22. Schayer RW. Formation and biding of histamine by free mast cells of rat peritoneal fluid. AM J physiol. 1956,186:199-202. https://doi.org/10.1152/ajplegacy.1956.186.2.199
  23. Schwartz LB, Austen KF, Wasserman SI. Immunologic release of ${\beta}$-hexosaminidase from purified rat serosal mast cells. J immunol. 1979,123:1445-1450.
  24. Sydbom A, Kumlin M, Dahln S. Stimulus-dependence and timecourse of histamine and leukotriene release from chopped and dispersed human lung tissue. Agents Actions. 1987,20:198-201. https://doi.org/10.1007/BF02074668
  25. Tasaka K, Mio M, Izushi K, Aoki I. Role of the cytoskeletons on Ca2+ release from the intracellular Ca2+ store of rat peritoneal mast cell. Skin Pharmacol. 1991,4:43-52. https://doi.org/10.1159/000210982
  26. Vida S, Paw D. Use of small diameter column particles to enhance HPLC determination of histamine and other biogenic amines in seafood. LWT-Food Science and Technology. 2011,44:399-406. https://doi.org/10.1016/j.lwt.2010.08.011
  27. Yan GH, Choi YH, Chai OH, Song CH. Inhibitory effect of bear bile on compound 48/80-induced mast cell activation and IgEmediated vascular permeability. Korean J Phys Anthropol. 2009,22:71-83. https://doi.org/10.11637/kjpa.2009.22.1.71
  28. Yoshii N, Mio M, Akagi M, Tasaka K. Role of endoplasmic reticulum, an intracellular Ca2+ store, in histamine release from rat peritoneal mast cell. Immunopharmacol. 1991,21:13-21. https://doi.org/10.1016/0162-3109(91)90003-H
  29. Yoshitake T, Ichinose F, Yoshida H, Todoroki K, Kehr J, Inoue O, et al. A sensitive and selective determination method of histamine by HPLC with intramolecular excimer-forming derivatization and fluorescence detection. Biomed Chromatogr. 2003,17:509-516. https://doi.org/10.1002/bmc.264

Cited by

  1. Configurational Simulations and Theoretical Calculations of Molecularly Imprinted Polymers of Histamine and 2-(Trifluoromethyl)acrylic Acid Based on Computational Chemistry : Configurational Simulatio vol.64, pp.4, 2015, https://doi.org/10.1002/jccs.201600282
  2. 경쟁적 ELISA를 이용한 도파민과 세로토닌의 검출 vol.49, pp.3, 2015, https://doi.org/10.15324/kjcls.2017.49.3.220