• Title/Summary/Keyword: acute lung injury

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Effect of Apocynin on Acute Lung Injury in Rats Given Interleukin-$1{\alpha}$ Intratracheally

  • Lee, Young-Man
    • Tuberculosis and Respiratory Diseases
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    • v.70 no.6
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    • pp.482-489
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    • 2011
  • Background: Based on the assertion that apocynin diminishes acute lung injury (ALI) by inhibition of NADPH oxidase, the effect of apocynin was tested in interleukin-$1{\alpha}$ (IL-1)-induced ALI in rats. Methods: IL-1 was insufflated into the trachea of Sprague-Dawley rats to induce ALI, and apocynin (8 mg/kg) was given intravenously for inhibition of NADPH oxidase. In addition, we determined whether apocynin inhibited generation of superoxide anions from isolated human neutrophils. Five hours after IL-1 instillation, lung injury parameters, expression of cytosolic phospholipase A2 (cPLA2) by cells from bronchoalveolar lavage (BAL), an index of oxidative stress in lung tissues (${\gamma}$-glutamyltranspeptidase, activity), and ultrastructure of alveolar type II (AT II) cells were evaluated. Results: Apocynin decreased the generation of free radicals from phorbol myristate (PMA)-activated neutrophils in vitro, but did not ameliorate ALI. IL-1 induced enhancement of the expression of cPLA2 on neutrophils was not altered by apocynin. Conclusion: Apocynin induced suppression of the generation of superoxide anions from neutrophils by inhibition of NADPH oxidase does not attenuate IL-1-induced ALI in rats.

Diosmetin Alleviates Lipopolysaccharide-Induced Acute Lung Injury through Activating the Nrf2 Pathway and Inhibiting the NLRP3 Inflammasome

  • Liu, Qinmei;Ci, Xinxin;Wen, Zhongmei;Peng, Liping
    • Biomolecules & Therapeutics
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    • v.26 no.2
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    • pp.157-166
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    • 2018
  • Acute lung injury (ALI)/acute respiratory distress syndrome (ARDS) is a common clinical syndrome of diffuse lung inflammation with high mortality rates and limited therapeutic methods. Diosmetin, an active component from Chinese herbs, has long been noticed because of its antioxidant and anti-inflammatory activities. The aim of this study was to evaluate the effects of diosmetin on LPS-induced ALI model and unveil the possible mechanisms. Our results revealed that pretreatment with diosmetin effectively alleviated lung histopathological changes, which were further evaluated by lung injury scores. Diosmetin also decreased lung wet/dry ratios, as well as total protein levels, inflammatory cell infiltration and proinflammatory cytokine (eg. $TNF-{\alpha}$, $IL-1{\beta}$ and IL-6) overproduction in bronchoalveolar lavage fluid (BALF). Additionally, increased MPO, MDA and ROS levels induced by LPS were also markly suppressed by diosmetin. Furthermore, diosmetin significantly increased the expression of Nrf2 along with its target gene HO-1 and blocked the activation of NLRP3 inflammasome in the lung tissues, which might be central to the protective effects of diosmetin. Further supporting these results, in vitro experiments also showed that diosmetin activated Nrf2 and HO-1, as well as inhibited the NLRP3 inflammasome in both RAW264.7 and A549 cells. The present study highlights the protective effects of diosmetin on LPS-induced ALI via activation of Nrf2 and inhibition of NLRP3 inflammasome, bringing up the hope of its application as a therapeutic drug towards LPS-induced ALI.

PAF in Pulmonary Surfactant Contributes to Neutrophilic Oxidative Stress-Induced Acute Lung Injury of Rats Given LPS Intratracheally (흰쥐에서 내독소로 유도된 급성폐손상에서 surfactant내 PAF의 역할)

  • Lee, Young-Man
    • Journal of Life Science
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    • v.22 no.10
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    • pp.1352-1358
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    • 2012
  • In acute lung injury (ALI) by lipopolysaccharide (LPS), the underlying cause of infiltration and migration of neutrophils into the alveoli is considered to be from increased production of platelet-activating factor (PAF) in the pulmonary surfactant lining the alveolar lumen. In this study I partially confirmed this concept. LPS increased lung leak and the infiltration of neutrophils in the lung of rats given LPS intratracheally. The migration of neutrophils into the lung, which had caused oxidative stress, was also morphologically identified. I verified that the metabolism of the pulmonary surfactant was affected and that there was increased production of PAF in the pulmonary surfactant, both of which are considered to contribute to ALI by LPS in rats.

An Acute Pathophysiology of Environmental Strains of Cryptococcus neoformans Isolated from a Park in Busan

  • Choi, Seok-Cheol
    • Biomedical Science Letters
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    • v.16 no.3
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    • pp.139-149
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    • 2010
  • The present study was carried out to elucidate whether an environmental strain of Cryptococcus neoformans (environmental C. neoformans) isolated from an environmental source in a park of Busan has an acute pathophysiological effect in rats. On the second day after peritoneal inoculation of environmental C. neoformans, adverse effects occurred from the viewpoint of hematology and biochemistry. Eosinophil damages and crystal formations were found in the blood. Disturbances in cytokines production were observed in the cerebral and pulmonary tissues. Fungal budding existed in the brain, lung, liver and kidney. Tissue injury findings such as inflammation, leukocyte infiltration, bleeding, or degeneration were found in the brain, lung, liver and kidney. The present data suggest that the environmental C. neoformans can cause systematically harmful effects even for short periods of infection (two days of cryptococcal infection) and the adverse effects are summarized as immune derangements and biochemical and/or histological dysfunction and injury on major organ such as the brain, lung, liver and kidney in the immunocompetent hosts. Further studies should be focused on comparing the differences between environmental and clinical strains of C. neoformans.

Involvement of Protein Kinase C-δ in Vascular Permeability in Acute Lung Injury

  • Ahn, Jong J.;Jung, Jong P.;Park, Soon E.;Lee, Minhyun;Kwon, Byungsuk;Cho, Hong R.
    • IMMUNE NETWORK
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    • v.15 no.4
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    • pp.206-211
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    • 2015
  • Pulmonary edema is a major cause of mortality due to acute lung injury (ALI). The involvement of protein kinase C-${\delta}$ (PKC-${\delta}$) in ALI has been a controversial topic. Here we investigated PKC-${\delta}$ function in ALI using PKC-${\delta}$ knockout (KO) mice and PKC inhibitors. Our results indicated that although the ability to produce proinflammatory mediators in response to LPS injury in PKC-${\delta}$ KO mice was similar to that of control mice, they showed enhanced recruitment of neutrophils to the lung and more severe pulmonary edema. PKC-${\delta}$ inhibition promoted barrier dysfunction in an endothelial cell layer in vitro, and administration of a PKC-${\delta}$-specific inhibitor significantly increased steady state vascular permeability. A neutrophil transmigration assay indicated that the PKC-${\delta}$ inhibition increased neutrophil transmigration through an endothelial monolayer. This suggests that PKC-${\delta}$ inhibition induces structural changes in endothelial cells, allowing extravasation of proteins and neutrophils.

The Change of Secretory Activity of the Alveolar Type ll Cell During Acute Alveolar Injury Induced by N-Nitroso-N-Methylurethane

  • Lee, Young-Man;Bang, In-Sook;Lee, Suck-Kang
    • The Korean Journal of Physiology
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    • v.28 no.1
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    • pp.71-77
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    • 1994
  • In the animal model of acute respiratory distress syndrome (ARDS) induced by N-nitroso-N-methylurethane (NNNMU) the secretory activity of alveolar type H cells during acute alveolar injury was investigated by determining phospholipid and pulmonary surfactant associated proteins in crude surfactant. The mechanism of the secretory change was studied by determination of DNA and RNA levels in the lung tissue. After induction of acute alveolar injury with NNNMU, pulmonary hemorrhage, atelectasis and gross hypertrophy were observed. Seven days after NNNMU treatment the level of total DNA in lung homogenate was increased markedly indicating that a hypertrophy was induced by cellular proliferation. Although the total DNA level increased, the RNA/DNA ratio was gradually decreased after NNNMU treatment. Seven days after NNNMU treatment the RNA/DNA ratio returned to the normal control level. During the acute alveolar injury, phospholipid and surfactant associated proteins were reduced significantly as compared with the control, implying that the secretory activity of alveolar type II cells was altered during acute alveolar injury induced by NNNMU. The protein content in crude surfactant during peak injury(7 days after NNNMU) was decreased significantly but phospholipid/protein ratios were identical in both control and NNNMU treatment groups. SDS-PAGE of proteins in crude pulmonary surfactant showed a decrease in major surfactant associated protein(M.W. 38,000) during acute alveolar injury. The present study may suggest that while alveolar type H cells proliferate markedly, transcription of alveolar type ll cell gene was inhibited by an unknown mechanism such as DNA methylation induced by NNNMU. Such an inhibition of transcriptional activity is thought to be associated with the decreased secretory activity of alveolar type ll cells, which may lead to pulmonary atelectasis and edema during the acute alveolar injury.

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Effects of Lonicerae Flos Extracts on LPS-induced Acute Lung Injury (금은화가 LPS로 유발된 급성 폐 손상에 미치는 영향)

  • Yi, Chang-Geon;Choi, Hae-Yun;Park, Mee-Yeon;Kim, Jong-Dae
    • Journal of Society of Preventive Korean Medicine
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    • v.15 no.1
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    • pp.49-69
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    • 2011
  • Objective : The object of this study was to observe the effects of Lonicerae Flos (LF) aqueous extracts on lipopolysaccharide (LPS)-induced rat acute lung injury. Method : Five different dosages of LF extracts were orally administered once a day for 28 days before LPS treatments, and then all rats were sacrificed after 5 hour-treatment of LPS. Eight groups of 16 rats each were used in the present study. The following parameters caused by LPS treatment were observed ; body weights, lung weights, pulmonary transcapillary albumin transit, arterial gas parameters (pH, $PaO_2$ and $PaCO_2$) bronchoalveolar lavage fluid (BALF) protein lactate dehydrogenase (LDH), and proinflammatory cytokines tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$), interleukin-$1{\beta}$ (IL-$1{\beta}$) contents, total cell numbers, neutrophil and alveolar macrophage ratios, lung malondialdehyde (MDA), myeloperoxidase (MPO), proinflammatory cytokines TNF-${\alpha}$ and IL-$1{\beta}$ contents. In addition, the histopathologic changes were observed in the lung in terms of luminal surface of alveolus, thickness of alveolar septum, number of polymorphonuclear neutrophils. Result : As results of LPS-injection, dramatical increases in lung weights, pulmonary transcapillary albumin transit increases, increases in $PaCO_2$, decreases in pH of arterial blood and $PaO_2$, increases of BALF protein, LDH, TNF-${\alpha}$ and IL-$1{\beta}$ contents, total cells, neutrophil and alveolar macrophage ratios, TNF-${\alpha}$ and IL-$1{\beta}$ contents increases were detected with decreases in LSA and increases of alveolar septum and PMNs numbers, respectively as compared with intact control. These are means that acute lung injuries (resembling acute respiratory distress syndrome) are induced by treatment of LPS mediated by inflammatory responses, oxidative stress and related lipid peroxidation in the present study. However, these LPS-induced acute lung injuries were inhibited by 28 days continuous pretreatment of 250 and 500mg/kg of LF extracts. Because of lower three dosages of LF treated groups, 31.25 and 62.5 and 125mg/kg did not showed any favorable effects as compared with LPS control, the effective dosages of LF in LPS-induced acute lung injuries in the present study, is considered as about 125mg/kg. The effects of 250mg/kg of LF extracts showed almost similar effects with ${\alpha}$-lipoic acid 60mg/kg in preventing LPS-induced acute lung injuries. Conclusion : It seems that LF play a role in protecting the acute respiratory distress syndrome caused by LPS.

A Case of Acute Lung Injury Complicated by Transcatheter Arterial Chemoembolization for Hepatocellular Carcinoma (간세포암의 간동맥 화학색전술 후 발생한 급성 폐손상 1예)

  • Cho, Se-Haeng;Kim, Joo-Hang;Kim, Byung-Soo;Jang, Joon
    • Tuberculosis and Respiratory Diseases
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    • v.42 no.5
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    • pp.781-786
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    • 1995
  • Transcatheter arterial chemoembolization(TACE) was performed in a 61 year old male patient with hepatocellular carcinoma with 10 cc of Lipiodol and 50 mg of doxorubicin. Three days later, he complained of dyspnea and dry cough. The arterial blood gas study revealed moderate hypoxemia and hypocarbia. The chest PA showed acute pulmonary edema with bilateral pleural effusion. To rule out the possibilities of acute respiratory failure caused by infection, pulmonary embolism or congestive heart failure, we performed several laboratory studies. The blood and sputum culture studies revealed negative results for bacterial growth. The echocardiogram was normal. The abdominal CT scan and MR imaging revealed no thrombus or mass lesion in the inferior vena cava. So we concluded pulmonary oil embolism induced by lipiodol as the cause of acute lung injury. Four weeks later, clinical symptoms and chest x-ray were markedly improved with conservative care. We report a case of acute lung injury after TACE with lipiodol and doxorubicin, with review of literatures.

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Kamgil-Tang attenuates lipopolysaccharide-induced NF-${\kappa}$B activation in RAW 264.7 cell and acute lung injury in rats

  • Park, Dong-Il;Kim, Do-Hyun;Choi, Byung-Tae
    • Journal of Life Science
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    • v.10 no.2
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    • pp.55-60
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    • 2000
  • We examined the effects of Kamgil-Tang on the process of lipopolysaccharide (LPS)-induced unclear factor (NF)-${\kappa}$ Bp65 and inhibitory (I)-${\kappa}$ B${\alpha}$ alteration in RAW 264.7 cell and acute lung injury in rats. Immunoblot analysis showed that LPS-induced degradation of I-${\kappa}$ B${\alpha}$ in RAW 264.7 was inhibited by pretreatment of Kamgil-Tang. The total cells of bronchoalveolar lavage fluid by LPS challenge markedly decreased in the Kamgil-Tang pretreatment rats. Kamgil-Tang pretreatment caused also a decline in neutrophils infiltration into interstitium of the lung. In the alveolar macrophages and neutrophils, decreased NF-${\kappa}$ Bp65 and inducible nitric oxide synthase and increased I-${\kappa}$ B${\alpha}$ immunoreaction were detected in Kamgil-Tang pretreated rats compared with LPS alone treated ones. It may be concluded that Kamgil-Tang attenuates the development of LPS-induced inflammation by reduction of NF-${\kappa}$ Bp65 activation and neutrophil-mediated acute lung injury. Kamgil-Tang would be useful as a therapeutic agent for endotoxin-induced lung disease.

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Effects of Red-Koji Fermented Scutellariae Radix Extracts on Lipopolysaccharide-induced Rat Acute Lung Injury (홍국발효 황금이 Lipopolysaccharide 유발 급성 폐손상에 미치는 영향)

  • Kim, Koang Lok;Kwon, Kyoung Man;Yun, Yong Jae;Lee, Young Jun;Park, Dong Il;Kim, Jong Dae;Jung, Tae Young
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.26 no.6
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    • pp.874-885
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    • 2012
  • In the present study, the possibility of whether the pharmacological effects of Scutellariae Radix Aqueous Extracts(SR) were favorably changed by report that lipopolysaccharide(LPS)-induced rat acute lung injury was treated with Red-Koji(Monascus purpureus 12002) fermentation. Three different dosages of Red-Koji fermented SR extract(fSR), 125, 250 and 500 mg/kg were orally administered once a day for 28 days before LPS(Escherichia coli 0111:B4) treatments, and then 5 hours after LPS treatment(500 ${\mu}g$/head, intra trachea instillation), all rats were sacrificed. Changes in the body weights, lung weights, pulmonary transcapillary albumin transit, arterial gas parameters(pH, $PaO_2$ and $PaCO_2$) bronchoalveolar lavage fluid(BALF) protein, lactate dehydrogenase(LDH) and proinflammatory cytokine tumor necrosis factor-${\alpha}$(TNF-${\alpha}$), interleukin-$1{\beta}$(IL-$1{\beta}$) contents, total cell numbers, neutrophil and alveolar macrophage ratios, lung malondialdehyde(MDA), myeloperoxidase(MPO), proinflammatory cytokine TNF-${\alpha}$ and IL-$1{\beta}$ contents were observed with histopathology of the lung, changes on luminal surface of alveolus(LSA), thickness of alveolar septum, number of polymorphonuclear neutrophils(PMNs). As results of LPS-injection, dramatical increases in lung weights, pulmonary transcapillary albumin transit increases in $PaCO_2$, decreases in pH of arterial blood and $PaO_2$, increases of BALF protein, LDH, TNF-${\alpha}$ and IL-$1{\beta}$ contents, total cells, neutrophil and alveolar macrophage ratios, lung MDA, MPO, TNF-${\alpha}$ and IL-$1{\beta}$ contents increases were detected with decreases in LSA and increases of alveolar septum and PMNs numbers, respectively as compared with intact control. Especially fSR 125 mg/kg showed quite similar favorable effects on the LPS-induced acute lung injuries as compared with 60 mg/kg of ${\alpha}$-lipoic acid and 250 mg/kg of SR. The results suggest that over 125 mg/kg of fSR extracts showed favorable effects on the LPS-induced acute lung injury mediated by their antioxidant and anti-inflammatory effects. Moreover, increases of the pharmacological effects of SR on LPS-induced acute lung injury were observed by Red-Koji fermentation in this study, at least 2-fold higher.