Skip Navigation
Skip to contents

PHRP : Osong Public Health and Research Perspectives

OPEN ACCESS
SEARCH
Search

Search

Page Path
HOME > Search
1 "2,3-naphthalenedi-carboxaldehye (NDA)"
Filter
Filter
Article category
Keywords
Publication year
Authors
Original Article
Improved HPLC Method Using 2,3-naphthalenedicarboxaldehyde as Fluorescent Labeling Agent for Quantification of Histamine in Human Immunoglobulin Preparations
Jung-Hwan Kim, In Soo Shin, Yoo Kyoung Lee, Ho Jung Oh, Sang Ja Ban
Osong Public Health Res Perspect. 2011;2(2):127-134.   Published online June 30, 2011
DOI: https://doi.org/10.1016/j.phrp.2011.07.003
  • 3,364 View
  • 15 Download
  • 18 Crossref
AbstractAbstract PDF
Objectives
To develop and optimize quantitative HPLC method using 2,3-naphthalenedicarboxaldehyde (NDA) after simple and efficient solid phase extraction to determine the histamine in a biopharmaceutical (Histobulin™).
Methods
The HPLC method was established using NDA-induced Histobulin and compared with the recently reported HPLC method using o-phthaldehyde (OPA). The validated NDA-applied HPLC method was adjusted to 15 lots of Histobulin and compared by the current lot-release-test method using fluorimetry in recovery of histamine and reproducibility.
Results
Analyses of six HPLC chromatograms using NDA and OPA each were compared. NDA produced a more stable chromatogram baseline than OPA, and showed better stability. The HPLC analysis was validated in accuracy (91–103%), precision (interday/intraday assay CV ≤2.30%), and linearity of dose–response curve (R2 ≥ 0.9919). The detection limit was 0.0076 μg/mL and the quantitative limit was 0.0229 μg/mL. The amount of histamine per 12 mg of immunoglobulin was determined to be 0.17 ± 0.016 μg by the HPLC and 0.025 ± 0.013 μg by the current lot-release-test method using fluorimetry.
Conclusion
NDA derivatization showed better stability compared with the OPA method. Therefore the newly established NDA-derivatizated HPLC method may be more suitable than the fluorimetric method in lot-release-tests of biopharmaceuticals.

Citations

Citations to this article as recorded by  
  • DNAzyme-based and smartphone-assisted colorimetric biosensor for ultrasensitive and highly selective detection of histamine in meats
    Junjun Wang, Yue Tang, Jia Zheng, Zhengmin Xie, Jianli Zhou, Yuangen Wu
    Food Chemistry.2024; 435: 137526.     CrossRef
  • Effects of the immunoglobulin/histamine complex on panic disorder concurrent with chronic spontaneous urticaria: a case report
    Hyuk Soon Kim, Geunwoong Noh
    Journal of Medical Case Reports.2023;[Epub]     CrossRef
  • Rapid detection of histamine in fish based on the fluorescence characteristics of carbon nitride
    Xiaobin Lin, Chengyi Hong, Zhengzhong Lin, Zhiyong Huang
    Journal of Food Composition and Analysis.2022; 112: 104659.     CrossRef
  • Immunotherapy using Histobulin™ in psoriasis: A case report
    Hyuk Soon Kim, Geunwoong Noh
    Clinical Case Reports.2022;[Epub]     CrossRef
  • Histobulin as a complementary but essential therapeutic for Intravenous Immune Globulin Therapy of Pfeiffer‐Weber‐Christian disease with multiple allergic diseases and its effects on allergic disease: A case report
    Geunwoong Noh
    Clinical Case Reports.2021; 9(2): 966.     CrossRef
  • Immunotherapy using Histobulin in atopic dermatitis
    Geunwoong Noh
    Clinical Case Reports.2021; 9(1): 113.     CrossRef
  • Colorimetric sensing of histamine in aqueous solution by a system composed of alizarin complexone and Ni2+ complex via indicator displacement approach
    Yasumasa Fukushima, Shunichi Aikawa
    Tetrahedron Letters.2021; 72: 153088.     CrossRef
  • Induction of remission in chronic urticaria by immunotherapy using immunoglobulin/histamine complex (Histobulin™): a case report
    Hyuk Soon Kim, Geunwoong Noh
    Allergy, Asthma & Clinical Immunology.2021;[Epub]     CrossRef
  • Motion sickness-relieving effects of Tamzin, a herbal formulation: In vitro and in vivo studies
    N. Ilaiyaraja, Dongzagin Singsit, Mahantesh M Patil, S. Priyadharshini, V. Rashmi, Farhath Khanum
    Food Bioscience.2020; 35: 100595.     CrossRef
  • Trends in the Analysis of Biopharmaceuticals by HPLC
    Angela Tartaglia, Marcello Locatelli, Victoria Samanidou
    Current Analytical Chemistry.2020; 16(1): 52.     CrossRef
  • Validation of HPLC Method for Determination of Histamine in Human Immunoglobulin Formulations
    Michikazu Tanio, Toru Nakamura, Hideki Kusunoki, Kyohei Ideguchi, Kazuyuki Nakashima, Isao Hamaguchi
    Journal of AOAC INTERNATIONAL.2020; 103(5): 1223.     CrossRef
  • 4-Methoxy-ortho-phthalaldehyde: a promising derivatizing agent for the fluorimetric evaluation of histamine in seafood
    Clémence Moitessier, Khémesse Kital, Pierre-Edouard Danjou, Francine Cazier-Dennin
    Talanta Open.2020; 2: 100014.     CrossRef
  • A novel biomimetic immunoassay method based on Pt nanozyme and molecularly imprinted polymer for the detection of histamine in foods
    Xiaofeng Wang, Xiaoqing Song, Lin Si, Longhua Xu, Zhixiang Xu
    Food and Agricultural Immunology.2020; 31(1): 1036.     CrossRef
  • Development of a Rapid and Eco-Friendly UHPLC Analytical Method for the Detection of Histamine in Fish Products
    Antonello Cicero, Francesco Giuseppe Galluzzo, Gaetano Cammilleri, Andrea Pulvirenti, Giuseppe Giangrosso, Andrea Macaluso, Antonio Vella, Vincenzo Ferrantelli
    International Journal of Environmental Research an.2020; 17(20): 7453.     CrossRef
  • Silver nanoparticles decorated graphene nanoribbon modified pyrolytic graphite sensor for determination of histamine
    Neeraj Kumar, Rajendra N. Goyal
    Sensors and Actuators B: Chemical.2018; 268: 383.     CrossRef
  • Amperometric Biosensor Based on Diamine Oxidase/Platinum Nanoparticles/Graphene/Chitosan Modified Screen-Printed Carbon Electrode for Histamine Detection
    Irina Apetrei, Constantin Apetrei
    Sensors.2016; 16(4): 422.     CrossRef
  • Comparison of Methods for Measuring Histamine by ELISA and HPLC-MS Assay In Vitro
    In Hee Lee, Yoo Hyun Kim
    Korean Journal of Clinical Laboratory Science.2015; 47(4): 306.     CrossRef
  • UPLC versus HPLC on Drug Analysis: Advantageous, Applications and Their Validation Parameters
    Mehmet Gumustas, Sevinc Kurbanoglu, Bengi Uslu, Sibel A. Ozkan
    Chromatographia.2013; 76(21-22): 1365.     CrossRef

PHRP : Osong Public Health and Research Perspectives