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      KCI등재 SCOPUS

      The effect of rhinovirus on airway inflammation in a murine asthma model

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      https://www.riss.kr/link?id=A104552189

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      다국어 초록 (Multilingual Abstract)

      Purpose: The aim of the present study was to investigate the differences in lower airway inflammatory immune responses, including cellular responses and responses in terms of inflammatory mediators in bronchoalveolar lavage fluid (BALF) and the airway...

      Purpose: The aim of the present study was to investigate the differences in lower airway inflammatory immune responses, including cellular responses and responses in terms of inflammatory mediators in bronchoalveolar lavage fluid (BALF) and the airway, to rhinovirus (RV) infection on asthma exacerbation by comparing a control and a murine asthma model, with or without RV infection.
      Methods: BALB/c mice were intraperitoneally injected with a crude extract of Dermatophagoides farinae (Df ) or phosphate buffered saline (PBS) and were subsequently intranasally treated with a crude extract of Df or PBS. Airway responsiveness and cell infiltration, differential cell counts in BALF,and cytokine and chemokine concentrations in BALF were measured 24 hours after intranasal RV1B infection.
      Results: RV infection increased the enhanced pause (Penh) in both the Df sensitized and challenged mice (Df mice) and PBS-treated mice (PBS mice) (P<0.05). Airway eosinophil infiltration increased in Df mice after RV infection (P<0.05). The levels of interleukin (IL) 13, tumor necrosis factor alpha, and regulated on activation, normal T cells expressed and secreted (RANTES) increased in response to RV infection in Df mice, but not in PBS mice (P<0.05). The level of IL-10 significantly decreased following RV infection in Df mice (P<0.05).
      Conclusion: Our findings suggest that the augmented induction of proinflammatory cytokines, Th2cytokines, and chemokines that mediate an eosinophil response and the decreased induction of regulatory cytokines after RV infection may be important manifestations leading to airway inflammation with eosinophil infiltration and changes in airway responsiveness in the asthma model.

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      참고문헌 (Reference)

      1 Hutchison S, "Tumour necrosis factor-alpha blockade suppresses murine allergic airways inflammation" 151 : 114-122, 2008

      2 Underwood S, "Timecourse of antigen-induced airway inflammation in the guinea-pig and its relationship to airway hyperresponsiveness" 8 : 2104-2113, 1995

      3 Wilson EB, "The role of IL-10 in regulating immunity to persistent viral infections" 350 : 39-65, 2011

      4 Silkoff PE, "The relationship of induced-sputum inflammatory cells to BAL and biopsy" 123 (123): 371S-372S, 2003

      5 Berg K, "The regulation of rhinovirus infection in vitro by IL-8, HuIFN-alpha, and TNF-alpha" 112 : 172-182, 2004

      6 Message SD, "Rhinovirus-induced lower respiratory illness is increased in asthma and related to virus load and Th1/2 cytokine and IL-10 production" 105 : 13562-13567, 2008

      7 Laza-Stanca V, "Rhinovirus replication in human macrophages induces NF-kappaB-dependent tumor necrosis factor alpha production" 80 : 8248-8258, 2006

      8 Nagarkar DR, "Rhinovirus infection of allergen-sensitized and -challenged mice induces eotaxin release from functionally polarized macrophages" 185 : 2525-2535, 2010

      9 McDougall CM, "Neutrophil airway inflammation in childhood asthma" 61 : 739-741, 2006

      10 Bartlett NW, "Mouse models of rhinovirus-induced disease and exacerbation of allergic airway inflammation" 14 : 199-204, 2008

      1 Hutchison S, "Tumour necrosis factor-alpha blockade suppresses murine allergic airways inflammation" 151 : 114-122, 2008

      2 Underwood S, "Timecourse of antigen-induced airway inflammation in the guinea-pig and its relationship to airway hyperresponsiveness" 8 : 2104-2113, 1995

      3 Wilson EB, "The role of IL-10 in regulating immunity to persistent viral infections" 350 : 39-65, 2011

      4 Silkoff PE, "The relationship of induced-sputum inflammatory cells to BAL and biopsy" 123 (123): 371S-372S, 2003

      5 Berg K, "The regulation of rhinovirus infection in vitro by IL-8, HuIFN-alpha, and TNF-alpha" 112 : 172-182, 2004

      6 Message SD, "Rhinovirus-induced lower respiratory illness is increased in asthma and related to virus load and Th1/2 cytokine and IL-10 production" 105 : 13562-13567, 2008

      7 Laza-Stanca V, "Rhinovirus replication in human macrophages induces NF-kappaB-dependent tumor necrosis factor alpha production" 80 : 8248-8258, 2006

      8 Nagarkar DR, "Rhinovirus infection of allergen-sensitized and -challenged mice induces eotaxin release from functionally polarized macrophages" 185 : 2525-2535, 2010

      9 McDougall CM, "Neutrophil airway inflammation in childhood asthma" 61 : 739-741, 2006

      10 Bartlett NW, "Mouse models of rhinovirus-induced disease and exacerbation of allergic airway inflammation" 14 : 199-204, 2008

      11 김우경, "Human rhinoviruses and asthma in children" 대한소아과학회 53 (53): 129-135, 2010

      12 Kelly JT, "Host immune responses to rhinovirus: mechanisms in asthma" 122 : 671-682, 2008

      13 Grünberg K, "Experimental rhinovirus 16 infection. Effects on cell differentials and soluble markers in sputum in asthmatic subjects" 156 (156): 609-616, 1997

      14 Crapster-Pregont M, "Dendritic cells and alveolar macrophages mediate IL-13-induced airway inflammation and chemokine production" 129 : 1621-, 2012

      15 Newcomb DC, "Cooperative effects of rhinovirus and TNF- {alpha} on airway epithelial cell chemokine expression" 293 : 1021-1028, 2007

      16 Johnston SL, "Community study of role of viral infections in exacerbations of asthma in 9-11 year old children" 310 : 1225-1229, 1995

      17 Pacifico L, "Chemokine concentrations in nasal washings of infants with rhinovirus illnesses" 31 : 834-838, 2000

      18 Xatzipsalti M, "Cellular and animals models for rhinovirus infection in asthma" 14 : 33-41, 2007

      19 Kim HK, "Biphasic late airway hyperresponsiveness in a murine model of asthma" 160 : 173-183, 2013

      20 Spahn JD, "Asthma biomarkers in sputum" 32 : 387-399, 2012

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-15 학술지명변경 한글명 : Korean Journal of Pediatrics -> Clinical and Experimental Pediatrics
      외국어명 : Korean Journal of Pediatrics -> Clinical and Experimental Pediatrics
      KCI등재
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2019-07-16 학회명변경 한글명 : 대한소아과학회 -> 대한소아청소년과학회 KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-30 학술지명변경 한글명 : 소아과 -> Korean Journal of Pediatrics KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.18 0.18 0.16
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.17 0.2 0.369 0.06
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