• Title/Summary/Keyword: Lung injury

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An Experimental Hlodel of Isolated Lung Block for Evaluation of Pulmonary Preservation after Ischemial (허혈후 폐 보존효과를 측정하기 위한 폐장 분리관류 모형)

  • Sung, Sook-Whan;Lim, Cheong;Kim, Young-Tae;Park, Jong-Ho
    • Journal of Chest Surgery
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    • v.30 no.6
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    • pp.573-579
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    • 1997
  • During the last 30 years, major organ transplantation has become popular, even in Korea, such as kidney, liver, etc. After the successful clinical cardiac transplantation in Korea, many cases of cardiac transplantation are being performed in some centers. But lung transplantation has a lot of obstacles, especially'donor shortage and decreased tolerability of the lung to ischemia-reperfusion injury. Usually it was considered that the maximum safety margin of ischemic time in lung transplantation was about 4 to 6 hours. So, many investigators have tried to develop better preservation methods and experimental model for evaluation of effectiveness in those various methods. But most of those methods had several drawbacks in clinical and experimental settings. So we developed an easily-controllable, reliable, and inexpensive experimental model of isolated rabbit lung block. Using these model, we evaluated its effectiveness and reliability for the experiment of ischemia-reperfusion injury in lung transplantation.

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Bronchial obstruction following rupture by blunt trauma (외상성 기관지 단절과 폐쇄의 수술 치험례)

  • Kim, Hyuck;Jee, Haeng-Ok
    • Journal of Chest Surgery
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    • v.19 no.4
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    • pp.722-725
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    • 1986
  • Rupture of the main bronchus following closed injury to the chest is a comparatively rare accident. The late recognition of this injury is attended by difficulties in management which may endanger life or expose the patient to distressing months and years of arduous therapy. This case was a 17 year old female who was a high school student. The patient had sustained a crushing injury to her right hemithorax and had been taken to an emergency hospital where right closed thoracostomy had been performed for a tension pneumothorax. She improved following this procedure but massive atelectasis of the right lung developed on the 13th day after trauma and transferred to our hospital. Bronchoscopy disclosed granulation tissue in the right main stem bronchus and end to end anastomosis of the bronchus was performed. Postoperative course was uneventful.

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Analysis of Nursing Interventions in Trauma-Bay at the Regional Trauma Center for Patients with Severe Thoracic Injuries (권역외상센터 중증 흉부외상환자 대상 외상소생실 내 간호중재 분석)

  • Kim, Dong Mi;Seo, Eun Ji
    • Journal of Korean Biological Nursing Science
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    • v.23 no.2
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    • pp.138-150
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    • 2021
  • Purpose: This retrospective study aimed to investigate nursing interventions in patients with severe thoracic injury in trauma bay of a regional trauma center. Methods: Of the 1,780 patients admitted to the trauma bay of a regional trauma center in a university hospital in the Gyeonggi Province between January 1, 2019 and December 31, 2019, 120 adult patients with severe thoracic injury who met the inclusion criteria were enrolled. Participants' clinical characteristics and nursing interventions were collected from electronic medical records after receiving ethical approval. Nursing interventions were classified using the terminology in the Nursing Intervention Classification. Results: The mean age of participants was 52.25 years and 72.5% of participants were male. The main areas of thoracic injury included lung parenchyma and pleura (95.8%). The mean Abbreviated Injury Scale (AIS) for thoracic injury was 3.13 and the mean Injury Severity Score (ISS) was 17.81. Fluid resuscitation, invasive hemodynamic monitoring, chest tube care, respiratory monitoring, artificial airway management, gastrointestinal tube care, mechanical ventilation management: airway insertion and stabilization, blood product administration, allergy management, and surgical preparation were performed significantly more frequently in thoracic injury patients with unstable vital signs or a higher AIS score. Conclusion: This study is significant as it investigated the types of nursing interventions given to patients with severe thoracic injury in the trauma bay. These results would contribute to developing more detailed educational materials for initial nursing interventions in trauma bay.

Mild Traumatic Brain Injury and Subsequent Acute Pulmonary Inflammatory Response

  • Lim, Seung Hyuk;Jung, Harry;Youn, Dong Hyuk;Kim, Tae Yeon;Han, Sung Woo;Kim, Bong Jun;Lee, Jae Jun;Jeon, Jin Pyeong
    • Journal of Korean Neurosurgical Society
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    • v.65 no.5
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    • pp.680-687
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    • 2022
  • Objective : The influence of moderate-to-severe traumatic brain injury (TBI) on acute pulmonary injury is well established, but the association between acute pulmonary injury and mild TBI has not been well studied. Here, we evaluated the histological changes and fluctuations in inflammatory markers in the lungs to determine whether an acute pulmonary inflammatory response occurred after mild TBI. Methods : Mouse models of mild TBI (n=24) were induced via open-head injuries using a stereotaxic impactor. The brain and lungs were examined 6, 24, and 72 hours after injury and compared to sham-operated controls (n=24). Fluoro-Jade B staining and Astra blue and hematoxylin staining were performed to assess cerebral neuronal degeneration and pulmonary histological architecture. Quantitative real-time polymerase chain reaction analysis was done to measure inflammatory cytokines. Results : Increased neuronal degeneration and the mRNA expression of interleukin (IL)-6, tumor necrosis factor (TNF)-α, IL-10, and transforming growth factor (TGF)-β were observed after mild TBI. The IL-6, TNF-α, and TGF-β levels in mice with mild TBI were significantly different compared to those of sham-operated mice 24 hours after injury, and this was more pronounced at 72 hours. Mild TBI induced acute pulmonary interstitial edema with cell infiltration and alveolar morphological changes. In particular, a significant infiltration of mast cells was observed. Among the inflammatory cytokines, TNF-α was significantly increased in the lungs at 6 hours, but there was no significant difference 24 and 72 hours after injury. Conclusion : Mild TBI induced acute pulmonary interstitial inflammation and alveolar structural changes, which are likely to worsen the patient's prognosis.

The Effects of Steroid on Acute Lung Injury in the Mouse Induced by Whole Lung Irradiation (전폐조사로 유발된 마우스의 급성폐손상에 대한 스테로이드의 효과)

  • Sung, Nak-Kwan;Shin, Sei-One;Kwon, Kun-Young
    • Radiation Oncology Journal
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    • v.15 no.1
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    • pp.37-47
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    • 1997
  • Purpose : To investigate ultrastructural changes of the mouse lung induced by whole lung gamma irradiation and to evaluate the effect of prophylactic administration of steroid against acute lung injury. Materials and Methods :. One hundred and twenty ICR mice were used and whole lung was irradiated with telecobalt machine. Whole lung doses were 8 and 12Gy, and 10mg of methyl prednisolone was administrated intraperitoneally for two and four weeks. At the end of the observation period, mice were sacrificed by cervical dislocation. The lungs were removed and fixed inflated. Histopathological examination of acute radiation injuries were Performed by light microscopic and transmission electron microscopic examination. Results : Control group with BGy is characterized by damage to the type I Pneumocyte and the endothelial cell of the capillary. edema of alveolar wall and interstitium. and fibroblast proliferation. Control group with 120y is characterized by more severe degree of type 1 pneumocyte damage and more prominant inflammatory cell infiltration. Destructed cell debris within the alveolar space were also noted After steroid administration, 8Gy experimental group showed decreased degree of inflammatory reactions but fibroblast proliferation and basal lamina damages were unchanged. Experimental group with 12Gy showed lesser degree of inflammatory reactions similar to changes of 8Gy experimental group. Conclusion : These studies suggest that the degree of interstitial edema and inflammatory changes were related to radiation dose but Proliferation of the fibroblast and structural changes of basal lamina were not related to radialion dose. Experimental administration of steroid for 2 to 4 weeks after whole lung irradiation suggest that steroid can suppress alveolar and endothelial damages induced by whole lung irradiation but Proliferation of the fibroblast and structural changes of basal lamina were not related to administration of steroid.

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Effect of Hypothermia on the Prevention of Ventilator-Induced Lung Injury in Rats (백서에서 저체온 전처치가 환기기유발폐손상 억제에 미치는 효과)

  • Lim, Chae-Man;Hong, Sang-Bum;Koh, Youn-Suck;Shim, Tae-Sun;Lee, Sang-Do;Kim, Woo-Sung;Kim, Dong-Soon;Kim, Won-Dong
    • Tuberculosis and Respiratory Diseases
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    • v.50 no.5
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    • pp.540-548
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    • 2001
  • Backgrounds : Because ventilator-induced lung injury is partly dependent on the intensity of vascular flow, we hypothesized that hypothermia may attenuate the degree of such an injury through a reduced cardiac output. Methods : Twenty-seven male Sprague-Dawley rats were randomly assigned to normothermia ($37{\pm}1^{\circ}C$)-injurious ventilation (NT-V) group (n=10), hypothermia ($27{\pm}1^{\circ}C$)-injurious ventilation (HT-V) group (n=10), or nonventilated control group (n=7). The two thermal groups were subjected to injurious mechanical ventilation for 20 min with peak airway pressure 30 cm $H_2O$ at zero positive end-expiratory pressure, which was translated to tidal volume $54{\pm}6\;ml$ in the NT-V group and $53{\pm}4\;ml$ in the HT-V group (p>0.05). Results : Pressure-volume (P-V) curve after the injurious ventilation was almost identical to the baseline P-V curve in the HT-V group, whereas it was shifted rightward in the NT-V group. On gross inspection, the lungs of the HT-V group appeared smaller in size, and showed less hemorrhage especially at the dependent regions, than the lungs of the NT-V group. [Wet lung weight (g)/body weight (kg)] ($1.6{\pm}0.1$ vs $2.4{\pm}1.2$ ; p=0.014) and [wet lung weight/dry lung weight] ($5.0{\pm}0.1$ vs $6.1{\pm}0.8$ ; p=0.046) of the HT-V group were both lower than those of the NT-V group, while not different from those of the control group($1.4{\pm}0.4$, $4.8{\pm}0.4$, respectively). Protein concentration of the BAL fluid of the HT-V group was lower than that of the NT-V group($1,374{\pm}726\;ug/ml$ vs $3,471{\pm}1,985\;ug/ml$;p=0.003). Lactic dehydrogenase level of the BAL fluid of the HT-V group was lower than that of the NT-V group ($0.18{\pm}0.10\;unit/ml$ vs $0.43{\pm}0.22\;unit/ml$;p=0.046). Conclusions : Hypothermia attenuated pulmonary hemorrhage, permeability pulmonary edema, and alveolar cellular injuries associated with injurious mechanical ventilation, and preserved normal P-V characteristics of the lung in rats.

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Effects of Wikyung-Tang on the Lipopolysaccharide-Induced Acute Lung Injury in Mice (위경탕(葦莖湯)이 LPS로 유발된 급성 폐손상에 대한 영향)

  • Kim, Ki-Tae
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.24 no.5
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    • pp.843-847
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    • 2010
  • Wikyung-Tang(WKT) is herbal medication used in abcess-causing respiratory disease. Previous in vitro study demonstrates that WKY presents anti-proliferative effects in A549 cells. Here we show that WKY protects mice against lipopolysaccharide(LPS)-induced acute lung injury (ALI). We pretreated mice orally with WKY(2.34 and 5.85 g/kg body weight) 1, 24 and 48 hours before intratracheal administration of LPS. For same condition, control group was pretaken orally distilled water before LPS administration. 24 hours after LPS intratracheal instillation, bronchoalveolar lavege fluids(BALF) was obtained to measure protein and proinflammatory cytokines(TNF-${\alpha}$, IL-$1{\beta}$, IL-6). Protein and proinflammatory cytokines in BALF of WKT treated groups were totally decreased. Statistically, Protein, TNF-${\alpha}$ and IL-$1{\beta}$ of high concentrate WKT treated group decreased significantly compared with control group. In conclusion, WKY had some anti-inflammatory effect in a clinically relevant model of ALI. these results indicated that WKY was effective in inhibiting ALI and might act as a potential therapeutic reagent for treating ALI in the future.

Smoking and Health Control (흡연과 건강관리)

  • 박선섭
    • Korean Journal of Health Education and Promotion
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    • v.6 no.2
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    • pp.66-75
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    • 1989
  • About smoking and health control by theorize of common with various records investigation prevent an injury from smoking Further, should be contribute for the national health improvement for application of guide to health education. The results of investigation are as follows; 1) Tobacco be transmitted the first year of KwangHea's(reign) from GeeRu(the year of GeeRu), before sixth year of KwangHea's GapIn. 2) By reason of smoking an extreme poison ingerdients is Nicotine, Co, Tar etc three kinds. 3) The number of chemicalcompound in the tobacco smoking. Nicotine play an important part of it makes continue to smoking act. 4) Co, Not only injury vascular in the cell wall but also influence in ardiac muscular tissue. 5) Tar, is play an important part tl determine taste of tobacco or fragrace(a sweet smell). 6) Be demaged in the body with harmful objects of tobacco is first lung cancer, next heart disease, and chronic lung disease etc. 7) Passive smoke(indirect smoke)is first smoker's when have smoking and blow smoke from cigarette take smoking. On second when take smoking as it is burning cagar to end. 8) Female smoker are no good and bring many trouble to the mother's body and fetal body(an unborn child). 9) Nicotine also, like drug and alcohol break out reliance, introspection, poisonous or obstinence syndrome 10) A counterplan about smoke should be settlement with propriety control of smoking and an antismoking(non-smoker).

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Inhalation Effects of Korean Ginseng and Pine Needle on the Protection from Injury of Mouse Lung by Formaldehyde Exposure

  • Jung Hyuk;Kim Sang-Gi;Shin Dong-Chul;Choi Gui-Hyang;Kim Bo-Ae;Kim Sang-Kook;Kim You-Young
    • Biomedical Science Letters
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    • v.11 no.3
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    • pp.267-274
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    • 2005
  • Formaldehyde (FA) is an important industrial chemical, but it can cause allergic reactions, sick building syndrome and so on. It has also been observed to cause cancer in scientific studies using laboratory animals, and it even causes cancer in humans. Natural products such as ginseng and pine needle containing complicated mixtures of organic chemicals are widely used in the world, because their effective components are responsible for some pharmacological activities including antioxidative effect, anticancer effect. We investigate the effect of Korean ginseng (GE), pine needle extract (PE) and combined GE and PE (cNPE) on mouse lung injury by FA exposure. GE, PE and cNPE was directly transported to pulmonary cells through respiratory organ by nebulizer inhalation. In the case of FA exposure, the pulmonary structure was damaged and its function became abnormal. However, cNPE-FA, GE-FA, and PE-FA treated groups showed similar with the control group compared with FA group. Among them, GE was proved to be more effective than any other extracts. These results demonstrate that natural product extracts could protect pulmonary structure and function against FA exposure.

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Protective Effects of Gamipalmi-hwan on Elastase-induced Apoptosis of A549 Cells (가미팔미환(加味八味丸)의 elastase 유도성 A549 세포사멸에 대한 보호효과)

  • Oh, Ji-Seok;Park, Yang-Chun
    • The Journal of Korean Medicine
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    • v.31 no.2
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    • pp.137-148
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    • 2010
  • Objective: This study aimed to evaluate the protective effects of Gamipalmi-hwan (GPH) on elastase-induced lung cell injury. Materials and Methods: As an in vitro model of emphysema, the current study was performed to investigate potential activity of GPH in regulating injury responses of A549 human type II cell line mediated by elastase treatment. Results: GPH treatment increased the number of A549 cells which was reduced by elastase digestion. Elastin protein level, which was reduced by elastase treatment, was increased by GPH treatment. Labeling intensity with caspase 3 protein in elastase-treated cells was reduced by GPH treatment. Both Erk1/2 and Cdc2 protein levels, which were decreased by elastase treatment, were increased to a level similar to that of the normal cells. mRNA levels encoding IL-$1{\beta}$ and TNF-$\alpha$ were increased by elastase and then down-regulated by GPH. Conclusion: The present data suggest that A549 cells are subjected to inflammatory damage by elastase and can be recovered by GPH treatment. Further studies examining the protective activity of GPH in elastase-treated lung tissue would be useful for therapeutic strategies of emphysema treatment.