• Title/Summary/Keyword: Specific IgE

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The Change of Cell Distribution in the lung and the Expression Pattern of IL-4 and IL-10 in Asthma Induced Mouse (천식유발 마우스에서의 폐 내 세포조성 변화와 IL-4 및 IL-10의 발현 양상)

  • Lee, Soo-Jin;Park, Se-Jong;Li, Tian-Zhu;Jang, Yang-Ho;Choe, Nong-Hoon
    • Journal of Life Science
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    • v.16 no.5
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    • pp.780-787
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    • 2006
  • Asthma is a chronic inflammatory disorder of the airways, which characterized by bronchial hyperresponsiveness, reversible airflow limitation and respiratory symptoms. Internationally, the prevalence of asthma has been increased over last 3 decades. Recently, several studies of asthma have been reported with gradually increasing importance. To tesify the hypothesis that interleukin (IL)-4 and IL-10 may be an important determinant of the severity of airway inflammation, their expression was studied in mouse model of asthma. BALB/c mouse, IL-4 Knockout (KO) mouse and IL-10 KO mouse were sensitized with intraperitoneal injection of ovalbumin adsorbed to aluminum potassium sulfate, followed by challenges with intranasal ovalbumin on 3 consecutive days. The severity of pulmonary inflammation was assessed by eosinophilia in BAL fluid, number of total BAL cells, histopathological changes in lung tissues, and immunohistochemical staining against IL-4 and IL-10. In BAL fluid, the number of total cells was significantly increased in asthma induced mouse compare to the control. In asthma induced mouse, eosinophil was increased to 56% and neutrophil was 0.2%. In H &E stains, eosinophilic infiltration and epithelium hyperplasia were clearly noticed in asthma induced mouse. In immunohistochemical staining for IL-4 and IL-10, there was no positive reaction in control group. However, very strong reactions were appeared in asthma induced group. In this research, IL-4 and IL-10, which seem to play a central role in allergic asthma, KO mouse was utilized to test the causative relationship between airway inflammation and role of specific cytokine. Asthma induced IL-4 and IL-10 KO mice showed much decreased inflammatory reactions in the number of total BAL cells, in eosinophilic infiltration, and in immunohistochemical stains against diverse inflammatory proteins. These results suggest that IL-4 and IL-10 increase the asthmatic reactions in vivo mice model.

Analysis of the association between bronchial hyperresponsiveness and genetic polymorphism of β2-adrenoceptor in adolescents with long-term asthma remission (장기간 천식 관해 청소년에서 지속되는 기관지 과민성과 β2-아드레날린 수용체 유전자 다형과의 연관성 분석)

  • Kang, Hee;Koh, Young Yull
    • Clinical and Experimental Pediatrics
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    • v.50 no.6
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    • pp.556-564
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    • 2007
  • Purpose : We hypothesized that the persisting bronchial hyperresponsiveness (BHR) of adolescents with asthma remission may be controlled mainly by genetic factors, and the BHR of symptomatic asthma by airway inflammation. ${\beta}_2$-adrenoceptor gene is considered to be a candidate gene in the development of BHR. Thus, ${\beta}_2$-adrenoceptor gene polymorphism may be associated with the BHR of adolescents with asthma remission, but not with the BHR of symptomatic asthma. To evaluate this hypothesis, ${\beta}_2$-adrenoceptor gene polymorphism at 2 sites (Arg16-Gly, Gln27-Glu) were examined. Methods : Two hundred two adolescents with BHR ($PC_{20}<18\;mg/mL$) and long term remission (neither asthma-related symptoms nor medication during the previous 2 years) of their asthma (remission group), 182 adolescents with symptomatic asthma (symptomatic group), and 200 healthy adolescents (control group) were studied. Asthma phenotypes were determined using methacholine bronchial provocation test and skin prick test. Genotypes of ${\beta}_2$-adrenoceptor polymorphism were evaluated by PCR-based methods. Results : Gly/Gly allele and Gly16-Gln27 haplotype were more prevalent in the remission group than in the control group (P=0.01, P=0.02), although there was no difference between the symptomatic group and the control group. In the remission group, there was significant difference in geometric mean of $PC_{20}$ among the 3 groups subdivided by the number of Gly16-Gln27 haplotype, showing that the Gly16-Gln27 haplotype was positively associated with BHR. However, no association was found between Gly16-Gln27 haplotype and BHR in the symptomatic group. Conclusion : This study demonstrates that ${\beta}_2$-adrenoceptor polymorphism at amino acid 16 and 27 was associated with BHR persisting in adolescents with asthma remission.

OECD High Production Volume Chemicals Program: Ecological Risk Assessment of Copper Cyanide (대량생산화학물질 초기위해성평가: 시안화구리의 초기 생태위해성평가)

  • Baek, Yong-Wook;Kim, Eun-Ju;Yoo, Sun-Kyoung;Ro, Hee-Young;Kim, Hyun-Mi;Eom, Ig-Chun;Kim, Pil-Je
    • Korean Journal of Ecology and Environment
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    • v.44 no.3
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    • pp.272-279
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    • 2011
  • Copper cyanide is a chemical produced in large quantities with 2,500 tonnes being produced in 2006. It is mainly used for electroplating copper, particularly alkali-Cu plate and brass plating. The purpose of this study is to reassess the physicochemical properties and environmental fate of copper cyanide based on reliable data and and to conduct an ecotoxicity test according to the OECD test guidelines as an initial environmental risk assessment (need to state where this was done). Metal containing inorganic substances are not subject to degradation, biodegradation or hydrolysis. Aquatic toxicity tests of copper cyanide were conducted according to OECD test guideline 201, 202 and 203 for green algae, daphnia, and fish, respectively. The following acute toxicity test results were obtained for aquatic species: 0.089 mg $L^{-1}$ (Algae, 72 Hr-$EC_{50}$); 0.21 mg $L^{-1}$ (flea, 48 Hr-$LC_{50}$); 0.62 mg $L^{-1}$ (Fish, 96 Hr-$ErC_{50}$). The chemical possesses properties indicating a hazard for the aquatic environment (acute toxicity in fish, daphnia and algae below 1.0 mg $L^{-1}$). As a result of this study, copper cyanide has become a candidate for detailed risk assessment. Countries that produce this chemical in significant quantities are recommended to perform specific assessments.