• 제목/요약/키워드: Airway Inflammation

검색결과 244건 처리시간 0.031초

기관지천식 환자에서 유도객담으로 평가한 기도염증과 기관지 과민성과의 관계 (Relationship Between Airway Inflammation Assessed by Induced Sputum and Airway Hyperresponsiveness in Asthmatic Patient)

  • 정이영;김현진;정경원;강미정;김휘종;정효영;이종덕;황영실
    • Tuberculosis and Respiratory Diseases
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    • 제47권4호
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    • pp.517-524
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    • 1999
  • 배 경: 기관지천식은 만성적인 기도염증질환으로서 기도염증으로 인해 기도 과민성과 가역적인 기도폐쇄양상을 나타내는 것으로 알려져 있다. 기도염증의 정도를 측정하는데 있어서 유도객담이 내시경을 이용한 방법보다 비침습적이고 안전하며 반복적으로 시행할 수 있는 믿을 만한 검사 방법으로 인정을 받고 있다. 그래서 본 연구에서는 유도객담을 이용하여 기도염증과 기관지 과민성간의 상관관계를 관찰하였다. 방 법 : 기관지천식의 기왕력이 있는 17명의 환자를 대상으로 검사 시작 4주 이내에 호흡기 감염이 있었거나 객담을 배출할 수 없는 환자는 제외시켜 15명이 연구에 참가하였다. 기도염증의 정도를 측정하기 위해 고장성 생리식염수(3%)로 유도객담을 채취한 후 타액과 분리한 객담 1cc를 pippet을 사용하여 15ml conical tube에 옮긴다. 4cc의 dithiothreitol 0.1%용액(Sputalysin 10%, Calbiochem Corp., San Diego, California.)과 이 용액의 완충제인 Dulbecco's phosphate buffered saline 4cc를 사용하여 처리한 다음 염증세포수와 ECP를 측정하였다. 기관지 과민성을 알기 위해 메타콜린 기관지 유발시험을 시행하여 $PC_{20}$을 구하였다. 결 과 : 기저치 폐기능검사상 $FEV_1$은 예측치의 $76.3{\pm}30.3%$였고 유도객담 검사상 대식세포 수, 호중구, 호산구, 림프구는 각각 $39.1{\pm}27.0%$, $29.6{\pm}21.0%$, $28.8{\pm}18.8%$, $1.3{\pm}3.1%$였다. 유도객담 내의 ECP농도는 평균 $1,101{\pm}833\;{\mu}g/L$였고, 기하평균 $PC_{20}$은 0.56 mg/mL로 나왔다. 유도객담 내의 ECP농도는 유도객담 내의 호산구 수와 유의한 양의 상관관계(r=0.81, p<0.05)가 있었고, 가저치 폐기능검사 결과($FEV_1$)와는 유의한 역상관관계(r=-0.62, p<0.05)를 보였다. 유도객담 내 호산구 수와 메타콜린 기관지 유발시험에 의한 $PC_{20}$간에는 유의한 역상관관계(r=-0.78, p<0.05)를 보였으나, 호중구 수와 $PC_{20}$사이에는 유의한 상관관계(r=0.11, p=0.69)를 나타내지 않았다. 결 론 : 유도객담은 천식환자에서 기도염증의 정도를 반영하는 안전하면서도 유용한 검사이며 호산구의 침윤으로 인한 기도염증이 기관지천식 환자에서 기관지 과민성을 유발시키는 주요한 원인인자로서 관여할 것으로 생각된다.

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미세먼지 유도 기도염증에 대한 배암차즈기 추출물의 호흡기 보호 효과 (Respiratory Protective Effect of Salvia plebeia R. Br. Extracts against Ambient Particulate Matter-induced Airway Inflammation)

  • 송형우;지건영;김복규;양원경;한창균;신한재;박양춘;황지숙;강형식;김승형
    • 한국약용작물학회지
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    • 제25권5호
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    • pp.269-281
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    • 2017
  • Background: Small particles increase airway inflammation upon reaching the alveoli. Here, we investigated the protective or therapeutic effects of Salvia plebeia R. Br. (SP_R) extracts on airway inflammation. Methods and Results: To investigate the anti-inflammatory activity of SP_R extracts, we measured their inhibitory effect on the production of reactive oxygen species (ROS) expression of inflammatory mediators, and immune cell infiltration in MH-S alveolar macrophage cells and in the ambient particulate matter (APM)-exposed airway inflammation mice model. The SP_R extracts inhibited the production of ROS and expression of IL-4, IL-10, IL-15, and IL-17A mRNA in APM-stimulated MH-S cells. Oral administration of SP_R extracts suppressed APM-induced inflammatory symptoms, such as high alveolar wall thickness, excess collagen fibers, decreased mRNA expression of chemokines (Ccr9, Ccl5, Ccr3), inflammatory cytokines (IL-15, TNF-${\alpha}$), and IL-4 Th2 cytokine in the lung. The SP_R extracts also inhibited ROS production, granulocyte ($CD11b^+Gr-1^+$) infiltration, IL-17A, TNF-${\alpha}$, macrophage inflammatory protein (Mip-2), and chemokine (C-X-C motif) ligand 1 (Cxcl-1) production in the airway. The specific compounds in the SR-R extracts that mediate the anti-inflammatory effects were identified. Conclusions: In this study, SP_R extracts effectively inhibited airway inflammatory responses, such as ROS production and granulocyte infiltration into the airway, by regulating the expression of chemokines and inflammatory cytokines.

Trichostatin A Attenuates Airway Inflammation in Mouse Asthma Model

  • Park, Jae-hoon;Oh, Se-woong;Kang, Min-soo;Kwon, Ho-jeong;Oh, Goo-taeg;Kim, Dae-yong
    • 한국수의병리학회:학술대회논문집
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    • 한국수의병리학회 2003년도 추계학술대회초록집
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    • pp.10-10
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    • 2003
  • Histone deacetylase (HDAC) inhibition has been demonstrated to change the expressions of a restricted set of cellular genes, T cells have an essential role in the pathogenesis of allergen-induced airway inflammation [1]. In recent studies, it has been demonstrated that treatment with HDAC inhibitors induces a T cell-suppressive effect [2]. The purpose of this study was to determine whether treatment with trichostatin A (TSA), a representative HDAC inhibitor, would reduce the allergen-induced airway inflammation in a mouse asthma model. (omitted)

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Pectolinarigenin ameliorated airway inflammation and airway remodeling to exhibit antitussive effect

  • Quan He;Weihua Liu;Xiaomei Ma;Hongxiu Li;Weiqi Feng;Xuzhi Lu;Ying Li;Zi Chen
    • The Korean Journal of Physiology and Pharmacology
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    • 제28권3호
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    • pp.229-237
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    • 2024
  • Cough is a common symptom of several respiratory diseases. However, frequent coughing from acute to chronic often causes great pain to patients. It may turn into cough variant asthma, which seriously affects people's quality of life. For cough treatment, it is dominated by over-the-counter antitussive drugs, such as asmeton, but most currently available antitussive drugs have serious side effects. Thus, there is a great need for the development of new drugs with potent cough suppressant. BALB/c mice were used to construct mice model with cough to investigate the pharmacological effects of pectolinarigenin (PEC). Hematoxylin-eosin and Masson staining were used to assess lung injury and airway remodeling, and ELISA was used to assess the level of inflammatory factor release. In addition, inflammatory cell counts were measured to assess airway inflammation. Airway hyperresponsiveness assay was used to assess respiratory resistance in mice. Finally, we used Western blotting to explore the potential mechanisms of PEC. We found that PEC could alleviate lung tissue injury and reduce the release of inflammatory factors, inhibit of cough frequency and airway wall collagen deposition in mice model with cough. Meanwhile, PEC inhibited the Ras/ERK/c-Fos pathway to exhibit antitussive effect. Therefore, PEC may be a potential drug for cough suppression.

Immunity and asthma: friend or foe?

  • Mehta, Anita;Gohil, Priyanshee
    • Advances in Traditional Medicine
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    • 제8권1호
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    • pp.1-16
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    • 2008
  • Immunity is responsible for the defense mechanism of the body but in case of autoimmune diseases, its role gets diverted. Like so many other diseases, asthma is also considered as one of the most common autoimmune diseases to be occurring in community. Asthma is defined as a chronic inflammatory airway disease that is characterized by airway hyper reactivity and mucus hypersecretion that result in intermittent airway obstruction. The incidence of allergic asthma has almost doubled in the past two decades. Although, precise causative mechanism of asthma is unknown, but several mechanisms have been proposed that is immunological, pharmacological and genetic mechanisms, and airway and neurogenic inflammation. The inflammatory process observed in the asthmatic patients is the final result of a complex network of interactions between various immunological cell lineages, its mediators and secreted substances. Thus, among the mechanisms proposed, the immunological one plays a key role. Through this article, we have tried to provide some insight into immunological mechanisms in pathogenesis of asthma.

Compound K ameliorates airway inflammation and mucus secretion through the regulation of PKC signaling in vitro and in vivo

  • Lee, Jae-Won;Kim, Mun-Ock;Song, Yu Na;Min, Jae-Hong;Kim, Seong-Man;Kang, Myung-Ji;Oh, Eun Sol;Lee, Ro Woon;Jung, Sunin;Ro, Hyunju;Lee, Jae Kyoung;Ryu, Hyung Won;Lee, Dae Young;Lee, Su Ui
    • Journal of Ginseng Research
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    • 제46권3호
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    • pp.496-504
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    • 2022
  • Background: Cigarette smoke (CS) is considered a principal cause of chronic obstructive pulmonary disease (COPD) and is associated with mucus hypersecretion and airway inflammation. Ginsenoside compound K (CK), a product of ginsenoside metabolism, has various biological activities. Studies on the effects of CK for the treatment of COPD and mucus hypersecretion, including the underlying signaling mechanism, have not yet been conducted. Methods: To study the protective effects and molecular mechanism of CK, phorbol 12-myristate 13-acetate (PMA)-induced human airway epithelial (NCI-H292) cells were used as a cellular model of airway inflammation. An experimental mouse COPD model was also established via CS inhalation and intranasal administration of lipopolysaccharide. Mucin 5AC (MUC5AC), monocyte chemoattractant protein-1, tumor necrosis factor-α (TNF-α), and interleukin-6 secretion, as well as elastase activity and reactive oxygen species production, were determined through enzyme-linked immunosorbent assay. Inflammatory cell influx and mucus secretion in mouse lung tissues were estimated using hematoxylin and eosin and periodic acid-schiff staining, respectively. PKCδ and its downstream signaling molecules were analyzed via western blotting. Results: CK prevented the secretion of MUC5AC and TNF-α in PMA-stimulated NCI-H292 cells and exhibited a protective effect in COPD mice via the suppression of inflammatory mediators and mucus secretion. These effects were accompanied by an inactivation of PKCδ and related signaling in vitro and in vivo. Conclusion: CK suppressed pulmonary inflammation and mucus secretion in COPD mouse model through PKC regulation, highlighting the compound's potential as a useful adjuvant in the prevention and treatment of COPD.

Respiratory protective effects of Korean Red Ginseng in a mouse model of particulate matter 4-induced airway inflammation

  • Won-Kyung Yang;Sung-Won Kim;Soo Hyun Youn;Sun Hee Hyun;Chang-Kyun Han;Yang-Chun Park;Young-Cheol Lee;Seung-Hyung Kim
    • Journal of Ginseng Research
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    • 제47권1호
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    • pp.81-88
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    • 2023
  • Background: Air pollution has led to an increased exposure of all living organisms to fine dust. Therefore, research efforts are being made to devise preventive and therapeutic remedies against fine dust-induced chronic diseases. Methods: Research of the respiratory protective effects of KRG extract in a particulate matter (PM; aerodynamic diameter of <4 ㎛) plus diesel exhaust particle (DEP) (PM4+D)-induced airway inflammation model. Nitric oxide production, expression of pro-inflammatory mediators and cytokines, and IRAK-1, TAK-1, and MAPK pathways were examined in PM4-stimulated MH-S cells. BALB/c mice exposed to PM4+D mixture by intranasal tracheal injection three times a day for 12 days at 3 day intervals and KRGE were administered orally for 12 days. Histological of lung and trachea, and immune cell subtype analyses were performed. Expression of pro-inflammatory mediators and cytokines in bronchoalveolar lavage fluid (BALF) and lung were measured. Immunohistofluorescence staining for IRAK-1 localization in lung were also evaluated. Results: KRGE inhibited the production of nitric oxide, the expression of pro-inflammatory mediators and cytokines, and expression and phosphorylation of all downstream factors of NF-κB, including IRAK-1 and MAPK/AP1 pathway in PM4-stimulated MH-S cells. KRGE suppressed inflammatory cell infiltration and number of immune cells, histopathologic damage, and inflammatory symptoms in the BALF and lungs induced by PM4+D; these included increased alveolar wall thickness, accumulation of collagen fibers, and TNF-α, MIP2, CXCL-1, IL-1α, and IL-17 cytokine release. Moreover, PM4 participates induce alveolar macrophage death and interleukin-1α release by associating with IRAK-1 localization was also potently inhibited by KRGE in the lungs of PM4+D-induced airway inflammation model. KRGE suppresses airway inflammatory responses, including granulocyte infiltration into the airway, by regulating the expression of chemokines and inflammatory cytokines via inhibition of IRAK-1 and MAPK pathway. Conclusion: Our results indicate the potential of KRGE to serve as an effective therapeutic agent against airway inflammation and respiratory diseases.

Inflammation, Injury and Transcription Factors in Chronic Lung Diseases: Therapeutic Targets

  • Rahman, Irfan
    • 대한약학회:학술대회논문집
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    • 대한약학회 2002년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2
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    • pp.175-176
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    • 2002
  • Airway inflammation is a characteristic of many lung disorders including asthma, chronic obstructive pulmonary disease (COPD) and idiopathic pulmonary fibrosis. All these diseases involve the recruitment of immune and inflammatory cells to the lungs leading to systemic and local chronic inflammation and oxidative stress. (omitted)

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생쥐에서 ovalbumin과 디젤배기가스 입자로 유도된 기도염증과 기도 과민성에 대한 반하 물 추출물의 항천식 효과 (Antiasthmatic effects on Pinellia ternate Breitenbach(PTB) water extracts against airway inflammation and hyperresponsiveness induced by diesel exhaust particles with ovalbumin sensitization in BALB/c mice)

  • 김승형;임흥빈
    • 대한본초학회지
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    • 제28권1호
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    • pp.65-71
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    • 2013
  • Objectives : Asthma is a chronic, complex respiratory disease, caused by airway obstruction, airway eosinophilic inflammation(AEI), and airway hyperresponsiveness(AHR). This study was conducted to determine whether oral administration of crude water extracts of Pinellia ternate Breitenbach(PTB) has an antiasthmatic potential in the treatment of asthma in mice. Methods : Asthmatic AEI and AHR were induced by systemic sensitization to ovalbumin(OVA) by intratracheal instillation with 0.1 mg/mL suspension of diesel exhaust particles(DEP) once a week for 10 weeks in BALB/c mice. Crude PTB water extracts(50 mg/kg and 200 mg/kg) were orally administered 5 times a week for 10 weeks. Cyclosporin(10 mg/kg) was administrered the same manner as a positive control. Results : Long-term treatment with crude PTB water extracts suppressed the infiltration of inflammatory cells, including eosinophils, into airways from blood. It also reduced asthmatic AEI and AHR by attenuating the increase in the levels of cytokines such as interleukin(IL)-4, IL-5 and IL-13 in bronchoalveolar lavage fluid(BALF), as well as the levels of histamine and OVA-specific IgE in blood. However, the effect of crude PTB water extracts(200 mg/kg) was not likely to be stronger than that of cyclosporin(10 mg/kg). Conclusion : These results suggest that crude PTB water extracts have inhibitory effects on AEI and AHR in a mouse model of asthma and may act as a potential Th2 cytokine antagonist, and have a therapeutic effect on allergic asthma.

Saponin attenuates diesel exhaust particle (DEP)-induced MUC5AC expression and pro-inflammatory cytokine upregulation via TLR4/TRIF/NF-𝛋B signaling pathway in airway epithelium and ovalbumin (OVA)-sensitized mice

  • Jo, Sooyeon;Na, Hyung Gyun;Choi, Yoon Seok;Bae, Chang Hoon;Song, Si-Youn;Kim, Yong-Dae
    • Journal of Ginseng Research
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    • 제46권6호
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    • pp.801-808
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    • 2022
  • Background: Diesel exhaust particle (DEP) is a harmful kind of particulate matter known to exacerbate pre-existing respiratory diseases. Although their adverse effects on airway pathologies have been widely studied, the mechanistic analysis of signaling pathways and potential targets in reducing DEP-induced mucin secretion and pro-inflammatory cytokine production remain elusive. We, for the first time, investigated the effects of Korean Red Ginseng (KRG) extracts on mucin overproduction and airway inflammation induced by DEP. Methods: The effects of KRG and saponin on DEP-induced expression of MUC5AC and interleukin (IL)-6/8 were examined by real-time polymerase chain reaction (PCR) and enzyme-linked immunosorbent assay (ELISA) in human airway epithelial NCI-H292 cells. We conducted Western blotting analysis to analyze the associated signaling pathways. To evaluate the effects of saponin treatment on DEP-induced MUC5AC expression and inflammatory cell infiltrations in ovalbumin (OVA)-sensitized mice, immunohistochemical (IHC) staining and real-time PCR were implemented. Results: The KRG extracts markedly attenuated DEP-induced MUC5AC expression in vitro by inhibiting the TLR4/TRIF/NF-𝛋B pathway. Furthermore, KRG and saponin inhibited DEP-induced pro-inflammatory cytokine IL-6/8 production. The in vivo study revealed that saponin blocked DEP-induced inflammation, mucin production and MUC5AC expression. Conclusion: Our study revealed that KRG extracts have inhibitory effects on DEP-induced expression of MUC5AC and the production of pro-inflammatory cytokines. This finding provides novel insights into the mechanism by which saponin alleviates diesel-susceptible airway inflammation, elucidating its potential as a phytotherapeutic agent for inflammatory pathologies of airway.