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"Chein-Soo Hong"

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"Chein-Soo Hong"

Original Articles
IgE Binding Reactivity of Peptide Fragments of Bla g 4, a Major German Cockroach Allergen
Kwang Hyun Shin, Kyoung Yong Jeong, Chein-Soo Hong, Tai-Soon Yong
Korean J Parasitol 2009;47(1):31-36.
Published online March 12, 2009
DOI: https://doi.org/10.3347/kjp.2009.47.1.31

Cockroaches have been recognized as a major cause of asthma. Bla g 4 is one of the most important German cockroach allergens. The aim of this study is to investigate IgE reactivity to the recombinant Bla g 4 (rBla g 4) in the sera of allergic patients and identify linear IgE binding epitope. For protein expression, full-length Bla g 4 (EF202172) was divided into 5 overlapping peptide fragments (E1: aa 1-100, E2: aa 34-77, E3: aa 74-117, E4: aa 114-156, and E5: aa 153-182). The full-length and 5 peptide fragments of Bla g 4 was generated by PCR and over-expressed in E. coli BL21 (DE3). The IgE binding reactivities of the full-length and peptide fragments were measured by ELISA using 32 serum samples of cockroach allergy. The sera of 8 patients (25%) reacted with rBla g 4. Four sera (100%) showed IgE-binding reactivity to full-length and peptide fragment 4, and 2 sera (50%) reacted with peptide fragment 2. One (20%) serum reacted with peptide fragment 3. The results of ELISA using overlapping recombinant fragments indicated that the epitope region was located at amino acid sequences 34-73 and 78-113, and major IgE epitope of Bla g 4 was located at amino acid sequences 118-152 of C-terminal. B-cell epitope analysis of German cockroach allergen Bla g 4 could contribute to the strategic development of more specific and potentially efficacious immunotherapy.

Citations

Citations to this article as recorded by  Crossref logo
  • Variability in German Cockroach Extract Composition Greatly Impacts T Cell Potency in Cockroach-Allergic Donors
    Giovanni Birrueta, April Frazier, Anna Pomés, Jill Glesner, Stephanie Filep, Coby Schal, Kyoung Yong Jeong, Curtis McMurtrey, Thomas Vander Schans, William H. Hildebrand, Paula Busse, Avraham Beigelman, Leonard B. Bacharier, Bjoern Peters, Alessandro Sett
    Frontiers in Immunology.2019;[Epub]     CrossRef
  • Insect (food) allergy and allergens
    Steffie de Gier, Kitty Verhoeckx
    Molecular Immunology.2018; 100: 82.     CrossRef
  • Cockroach allergen exposure and risk of asthma
    D. C. Do, Y. Zhao, P. Gao
    Allergy.2016; 71(4): 463.     CrossRef
  • IgE-Binding Epitope Mapping and Tissue Localization of the Major American Cockroach Allergen Per a 2
    Mey-Fann Lee, Chia-Wei Chang, Pei-Pong Song, Guang-Yuh Hwang, Shyh-Jye Lin, Yi-Hsing Chen
    Allergy, Asthma & Immunology Research.2015; 7(4): 376.     CrossRef
  • Different Bla‐g T cell antigens dominate responses in asthma versus rhinitis subjects
    M. B. C. Dillon, V. Schulten, C. Oseroff, S. Paul, L. M. Dullanty, A. Frazier, X. Belles, M.‐D. Piulachs, C. Visness, L. Bacharier, G. R. Bloomberg, P. Busse, J. Sidney, B. Peters, A. Sette
    Clinical & Experimental Allergy.2015; 45(12): 1856.     CrossRef
  • The major cockroach allergen Bla g 4 binds tyramine and octopamine
    Lesa R. Offermann, Siew Leong Chan, Tomasz Osinski, Yih Wan Tan, Fook Tim Chew, J. Sivaraman, Yu-Keung Mok, Wladek Minor, Maksymilian Chruszcz
    Molecular Immunology.2014; 60(1): 86.     CrossRef
  • Environmental assessment and exposure reduction of cockroaches: A practice parameter
    Jay Portnoy, Ginger L. Chew, Wanda Phipatanakul, P. Brock Williams, Carl Grimes, Kevin Kennedy, Elizabeth C. Matsui, J. David Miller, David Bernstein, Joann Blessing-Moore, Linda Cox, David Khan, David Lang, Richard Nicklas, John Oppenheimer, Christopher
    Journal of Allergy and Clinical Immunology.2013; 132(4): 802.     CrossRef
  • Identification of Novel Allergenic Components from German Cockroach Fecal Extract by a Proteomic Approach
    Kyoung Yong Jeong, Chung-ryul Kim, Jina Park, In-Soo Han, Jung-Won Park, Tai-Soon Yong
    International Archives of Allergy and Immunology.2013; 161(4): 315.     CrossRef
  • The Cockroach and Allergic Diseases
    Myung Hyun Sohn, Kyu-Earn Kim
    Allergy, Asthma & Immunology Research.2012; 4(5): 264.     CrossRef
  • Der-p2 (Dermatophagoides pteronyssinus) allergen-like protein from the hard tickIxodes ricinus– a novel member of ML (MD-2-related lipid-recognition) domain protein family
    J. HORÁČKOVÁ, N. RUDENKO, M. GOLOVCHENKO, L. GRUBHOFFER
    Parasitology.2010; 137(7): 1139.     CrossRef
  • Household Arthropod Allergens in Korea
    Tai-Soon Yong, Kyoung Yong Jeong
    The Korean Journal of Parasitology.2009; 47(Suppl): S143.     CrossRef
  • 9,881 View
  • 79 Download
  • Crossref
Reactivity of German Cockroach Allergen, Bla g 2, Peptide Fragments to IgE Antibodies in Patients' Sera
Haeseok Lee, Kyoung Yong Jeong, Kwang Hyun Shin, Myung-hee Yi, Darambazar Gantulaga, Chein-Soo Hong, Tai-Soon Yong
Korean J Parasitol 2008;46(4):243-246.
Published online December 20, 2008
DOI: https://doi.org/10.3347/kjp.2008.46.4.243

Bla g 2 is a cockroach allergen of great importance. This study was conducted to identify IgE-binding epitope(s) of Bla g 2 using the recombinant protein technique. Approximately 50% of tested sera showed IgE reactivity to Pichia-expressed Bla g 2 (PrBla g 2) and E. coli-expressed Bla g 2 (ErBla g 2). Only 5.3% of serum samples showed stronger reactivity to PrBla g 2 than ErBla g 2, indicating that serum was reactive to conformational or carbohydrate epitopes. The full-length and 5 peptide fragments of Bla g 2 were produced in E. coli. All fragments showed IgE-binding activity to the cockroach-allergy patients' sera. Specifically, peptide fragments of amino acid residue 1-75 and 146-225 appeared to be important for IgE-binding. The information about the IgE-binding epitope of Bla g 2 can aid in the diagnosis and treatment for cockroach allergies.

Citations

Citations to this article as recorded by  Crossref logo
  • Cross-reactive IgE responses to cockroach, house dust mite, and seafood allergens in patients with allergic rhinitis
    Sakinah Mohamad, V Sha Kri Eh Dam, Asma Abdullah Nurul, Fook Tim Chew, Baharudin Abdullah
    Expert Review of Clinical Immunology.2025; 21(9): 1307.     CrossRef
  • Edible insects as ingredients in food products: nutrition, functional properties, allergenicity of insect proteins, and processing modifications
    Jing Yang, Shuling Zhou, Hong Kuang, Chunhong Tang, Jiajia Song
    Critical Reviews in Food Science and Nutrition.2024; 64(28): 10361.     CrossRef
  • Cockroach allergen exposure and risk of asthma
    D. C. Do, Y. Zhao, P. Gao
    Allergy.2016; 71(4): 463.     CrossRef
  • Pulmonary α-1,3-Glucan–Specific IgA-Secreting B Cells Suppress the Development of Cockroach Allergy
    Preeyam S Patel, R Glenn King, John F Kearney
    The Journal of Immunology.2016; 197(8): 3175.     CrossRef
  • IgE-Binding Epitope Mapping and Tissue Localization of the Major American Cockroach Allergen Per a 2
    Mey-Fann Lee, Chia-Wei Chang, Pei-Pong Song, Guang-Yuh Hwang, Shyh-Jye Lin, Yi-Hsing Chen
    Allergy, Asthma & Immunology Research.2015; 7(4): 376.     CrossRef
  • Different Bla‐g T cell antigens dominate responses in asthma versus rhinitis subjects
    M. B. C. Dillon, V. Schulten, C. Oseroff, S. Paul, L. M. Dullanty, A. Frazier, X. Belles, M.‐D. Piulachs, C. Visness, L. Bacharier, G. R. Bloomberg, P. Busse, J. Sidney, B. Peters, A. Sette
    Clinical & Experimental Allergy.2015; 45(12): 1856.     CrossRef
  • Preparation and Characterization of an Extract of German Cockroach From a Korean Source
    Kyoung Yong Jeong, Soo-Young Choi, Jae-Hyun Lee, Joo-Shil Lee, Tai-Soon Yong, Chein-Soo Hong, Jung-Won Park
    Allergy, Asthma & Immunology Research.2013; 5(2): 102.     CrossRef
  • Identification of Novel Allergenic Components from German Cockroach Fecal Extract by a Proteomic Approach
    Kyoung Yong Jeong, Chung-ryul Kim, Jina Park, In-Soo Han, Jung-Won Park, Tai-Soon Yong
    International Archives of Allergy and Immunology.2013; 161(4): 315.     CrossRef
  • The Cockroach and Allergic Diseases
    Myung Hyun Sohn, Kyu-Earn Kim
    Allergy, Asthma & Immunology Research.2012; 4(5): 264.     CrossRef
  • Validation of a Phage Display and Computational Algorithm by Mapping a Conformational Epitope of Bla g 2
    Ruby Tiwari, Surendra S. Negi, Benjamin Braun, Werner Braun, Anna Pomés, Martin D. Chapman, Randall M. Goldblum, Terumi Midoro-Horiuti
    International Archives of Allergy and Immunology.2012; 157(4): 323.     CrossRef
  • Sensitization to per a 2 of the American cockroach correlates with more clinical severity among airway allergic patients in Taiwan
    Mey-Fann Lee, Pei-Peng Song, Guang-Yuh Hwang, Shyh-Jye Lin, Yi-Hsing Chen
    Annals of Allergy, Asthma & Immunology.2012; 108(4): 243.     CrossRef
  • Household Arthropod Allergens in Korea
    Tai-Soon Yong, Kyoung Yong Jeong
    The Korean Journal of Parasitology.2009; 47(Suppl): S143.     CrossRef
  • 8,572 View
  • 86 Download
  • Crossref
Effectiveness of education for control of house dust mites and cockroaches in Seoul, Korea
Kyoung Yong Jeong, In-Yong Lee, Jongweon Lee, Han-Il Ree, Chein-Soo Hong, Tai-Soon Yong
Korean J Parasitol 2006;44(1):73-79.
Published online March 20, 2006
DOI: https://doi.org/10.3347/kjp.2006.44.1.73

We evaluated the efficacy of health education in reducing indoor arthropod allergens in Seoul. The mite control measures comprised the use of mite-proof mattress and pillow coverings, regular washing of potentially infested materials, maintenance of a low humidity, removal of carpets, and frequent vacuum cleaning. Cockroach control measures included trapping, application of insecticides, and protecting food. Of 201 homes enrolled in October 1999, 63 volunteers were included in a 2-year follow-up survey between April 2000 and January 2002. Before intervention, the density of mites/g of dust varied greatly; 27.1/g in children's bedding, 20/g in adult bedding, 7.2/g on the floors of children's bedrooms, 6.8/g in sofas, 5.9/g on the floors of adult's bedrooms, 3.9/g on living room floors, 3.7/g in carpets, and 1.9 mites/g on kitchen floors. The predominant mite species and house percentages infested were; Dermatophagoides farinae 93%, D. pteronyssinus 9%, and Tyrophagus putrescentiae 8%. Comparing 1999 and 2001 infestations, before and after 25 mo of education, mite abundance was reduced by 98%, from 23.7 to 0.57 mites/g of dust. In 1999, cockroaches were detected in 62% homes: 36% Blattella germanica and 35% Periplaneta spp., including 9% double infestations of B. germanica and P. americana. Following intervention, cockroach infestation rates decreased to 22% of houses in 2000 and 23% in 2001. We conclude that continuous and repetitive health education resulted in the effective control of domestic arthropods.

Citations

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  • The storage mite Tyrophagus putrescentiae induces greater lung inflammation than house dust mites in mice
    Eun-Min Kim, Ju Yeong Kim, You Shine Kwak, Myung-Hee Yi, Tai-Soon Yong
    Parasites, Hosts and Diseases.2024; 62(3): 365.     CrossRef
  • Investigating the microbiome of house dust mites in South Korea
    Myung-hee Yi, Myungjun Kim, Tai-Soon Yong, Ju Yeong Kim
    Frontiers in Allergy.2023;[Epub]     CrossRef
  • Microbiome and mycobiome interaction in house dust mites and impact on airway cells
    Ju Yeong Kim, Myung‐hee Yi, Seogwon Lee, In‐Yong Lee, Dongeun Yong, Sang Sun Yoon, Tai‐Soon Yong
    Clinical & Experimental Allergy.2021; 51(12): 1592.     CrossRef
  • Detection of American cockroach allergens as environmental markers using rapid competitive lateral flow tests
    Mey-Fann Lee, Yi-Hsing Chen, Shyh-Jye Lin, Hsin-Chun Liu, Tzu-Mei Lin
    Annals of Allergy, Asthma & Immunology.2019; 123(3): 301.     CrossRef
  • Infestation of cockroaches (Insecta: Blattaria) in the human dwelling environments: A systematic review and meta-analysis
    Hassan Nasirian
    Acta Tropica.2017; 167: 86.     CrossRef
  • Effectiveness of essential oils of medicinal plants at reducing the amounts of allergen produced by the European house dust mite, Dermatophagoides pteronyssinus (Trouessart)
    Ammorn INSUNG, Jarongsak PUMNUAN, Vanna MAHAKITTIKUN, Teerapong WANGAPAI
    Journal of the Acarological Society of Japan.2016; 25(Supplement): S179.     CrossRef
  • The effects of a newsletter on bedding control on house dust mite allergen concentrations in childcare centers in Korea
    Jeonghoon Kim, Kyoung Yong Jeong, Ho-Jang Kwon, Heasuk Yang, Hye Yung Yum, Seon Ah Lee, Chae-Bong Kim, Hyunjung Kim, Wan Ryung Lim, Soyoung Hong, Kyoosang Kim
    Environmental Health and Toxicology.2015; 30: e2015008.     CrossRef
  • Investigating cockroach allergens: Aiming to improve diagnosis and treatment of cockroach allergic patients
    Anna Pomés, Luisa Karla Arruda
    Methods.2014; 66(1): 75.     CrossRef
  • IgE reactivity to Acarus siro extract in Korean dust mite allergic patients
    Mina Son, Kyoung Yong Jeong, Bum Joon Kim, Kook-Jin Lim, Jae-Hyun Lee, Jung-Won Park
    Experimental and Applied Acarology.2014; 63(1): 57.     CrossRef
  • The differences of clinical profiles by house dust mite sensitization in patients with asthmatics in Soonchunhyang University Hospital cohort
    Jung-Hyun Kim, An-Soo Jang, Shin-Ok Jeong, Young-Seok Ji, Hyun-Jung Seo, Jae-Hyung Nam, Jong-Joo Moon, Ae-Rin Baek, Jong-Sook Park, June-Hyuk Lee, Sung-Woo Park, Do-Jin Kim, Choon-Sik Park
    Allergy Asthma & Respiratory Disease.2013; 1(1): 50.     CrossRef
  • Preparation and Characterization of an Extract of German Cockroach From a Korean Source
    Kyoung Yong Jeong, Soo-Young Choi, Jae-Hyun Lee, Joo-Shil Lee, Tai-Soon Yong, Chein-Soo Hong, Jung-Won Park
    Allergy, Asthma & Immunology Research.2013; 5(2): 102.     CrossRef
  • Effect of a commercial air ionizer on dust mites Dermatophagoides pteronyssinus and Dermatophagoides farinae (Acari: Pyroglyphidae) in the laboratory
    Suhaili Zainal Abidin, Ho Tze Ming
    Asian Pacific Journal of Tropical Biomedicine.2012; 2(2): 156.     CrossRef
  • The Cockroach and Allergic Diseases
    Myung Hyun Sohn, Kyu-Earn Kim
    Allergy, Asthma & Immunology Research.2012; 4(5): 264.     CrossRef
  • Group 10 Allergens (Tropomyosins) from House-Dust Mites May Cause Covariation of Sensitization to Allergens from Other Invertebrates
    Rubaba Hamid Shafique, Muhammad Inam, Muhammad Ismail, Farhana Riaz Chaudhary
    Allergy & Rhinology.2012;[Epub]     CrossRef
  • Review on Ecology of House Dust Mites in Korea and Suggestion of a Standard Survey Method
    Tai-Soon Yong, Kyoung-Yong Jeong
    Pediatric Allergy and Respiratory Disease.2011; 21(1): 4.     CrossRef
  • Household Arthropod Allergens in Korea
    Tai-Soon Yong, Kyoung Yong Jeong
    The Korean Journal of Parasitology.2009; 47(Suppl): S143.     CrossRef
  • 10,265 View
  • 96 Download
  • Crossref
Identification of Chironomus kiiensis allergens, a dominant species of non-biting midges in Korea
Tai-Soon Yong, Jong-Seok Lee, In-Yong Lee, Soon-Jung Park, Gab-Man Park, Han-Il Ree, Jung-Won Park, Chein-Soo Hong, Hae-Sim Park
Korean J Parasitol 1999;37(3):171-179.
Published online September 30, 1999
DOI: https://doi.org/10.3347/kjp.1999.37.3.171

Non-biting midges are known to contain potent inhalant allergens. IgE antibody responses to the crude extract of Chironomus kiiensis adults, a dominant chironomid species in Korea, were examined. With the IgE-ELISA or passive cutaneous anaphylaxis reactions, increased levels of chironomid-specific IgE were detected in the skin test positive human sera, or immunized BALB/c mouse sera with the crude extract adsorbed to alum. IgE-immunoblot analysis showed major IgE-reacting protein band patterns, which reacted with more than 50% of the skin test positive human sera, at 110, 80, 73, 46, 40, 37, 34, and 31 kDa. The reactive band patterns were largely similar between skin test positive humans and immune BALB/c mice. However, the bands of 55, 31, 27, 26, 24, and 23 kDa were found only in sensitized humans, but not in immunized mice.

Citations

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    Z. Bensakhri, K. Zerguine, I. Bouguenoun, D. Bendjeddou
    Revue Française d'Allergologie.2014; 54(7): 485.     CrossRef
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    Entomological Research.2013; 43(6): 322.     CrossRef
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    Han-Il Ree, Sung-Hyun Nam, Kyoung-Yong Jeong
    Animal Systematics, Evolution and Diversity.2012; 28(1): 2.     CrossRef
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    Han Il Ree
    Animal Systematics, Evolution and Diversity.2012; 28(4): 241.     CrossRef
  • Household Arthropod Allergens in Korea
    Tai-Soon Yong, Kyoung Yong Jeong
    The Korean Journal of Parasitology.2009; 47(Suppl): S143.     CrossRef
  • Molecular Cloning and Characterization of Tropomyosin, a Major Allergen of Chironomus kiiensis , a Dominant Species of Nonbiting Midges in Korea
    Kyoung Yong Jeong, Hye-Yung Yum, In-Yong Lee, Han-Il Ree, Chein-Soo Hong, Dong Soo Kim, Tai-Soon Yong
    Clinical and Vaccine Immunology.2004; 11(2): 320.     CrossRef
  • 9,139 View
  • 59 Download
  • Crossref
Monoclonal antibodies to recombinant Der p 2, a major house dust mite allergen: specificity, epitope analysis and development of two-site capture ELISA
Tai-Soon Yong, Sang-Mi Lee, Gab-Man Park, In-Yong Lee, Han-Il Ree, Kyung-Sup Kim, Sang-Hwan Oh, Jung-Won Park, Chein-Soo Hong
Korean J Parasitol 1999;37(3):163-169.
Published online September 20, 1999
DOI: https://doi.org/10.3347/kjp.1999.37.3.163

House dust mite allergens have been well established as sensitizing agents that are important in the induction of allergic diseases. In order to analyze epitopes of the allergen and to develop a quantitative method of the allergen exposure, monoclonal antibodies against a recombinant Der p 2 (rDer p 2), one of the major allergens of Dermatophagoides pteronyssinus, were produced. Four monoclonal antibodies produced were species-specific and did not cross-react to the D. farinae crude extract. Two of the monoclonal antibodies were found to be IgG1 and the others were IgM. For the analysis of epitopes, a Der p 2 cDNA encoding 126 amino acids (aa) was dissected into three fragments with several overlapping peptides, A (aa residues 1-49), B (44-93), and C fragment (84-126). Three monoclonal antibodies showed reactivities to the recombinant B fragment and to the full-length rDer p 2, but one monoclonal antibody reacted only with the full-length rDer p 2. Two-site capture ELISA was developed using two different monoclonal antibodies for quantitating Der p 2 in house dust. The sensitivity limit was 4 ng/ml with rDer p 2 and 8 ?g/ml with the D. pteronyssinus crude extract. The result suggested that the assay using monoclonal antibodies against rDer p 2 could be useful for the environmental studies and for the standardization of mite allergen extracts.

Citations

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  • Determination of immunogenic epitopes in major house dust mite allergen, Der p 2, via nanoallergens
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  • Review on Ecology of House Dust Mites in Korea and Suggestion of a Standard Survey Method
    Tai-Soon Yong, Kyoung-Yong Jeong
    Pediatric Allergy and Respiratory Disease.2011; 21(1): 4.     CrossRef
  • Monoclonal antibodies against recombinant Der f 3 reveal localization of Der f 3 in the gut and faecal pellets of Dermatophagoides farinae
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    The Korean Journal of Parasitology.2009; 47(Suppl): S143.     CrossRef
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  • Monoclonal antibodies to recombinant Der f 2 and development of a two-site ELISA sensitive to major Der f 2 isoallergen in Korea
    K.Y. Jeong, H.S. Jin, S.H. Oh, C.-S. Hong, I.-Y. Lee, H.-I. Ree, T.-S. Yong
    Allergy.2002; 57(1): 29.     CrossRef
  • Localization of Der f 2 in the gut and fecal pellets of Dermatophagoides farinae
    K. Y. Jeong, I.‐Y. Lee, H.‐I. Ree, C.‐S. Hong, T.‐S. Yong
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  • Localization of a major allergen, Der p 2, in the gut and faecal pellets of Dermatophagoides pteronyssinus
    Park, Lee, Lee, Ree, Kim, Hong, Yong
    Clinical & Experimental Allergy.2000; 30(9): 1293.     CrossRef
  • 9,141 View
  • 77 Download
  • Crossref