• 제목/요약/키워드: Reperfusion Injury

검색결과 332건 처리시간 0.023초

Effect of the Inhibition of Phospholipase $A_2$ in Generation of Free Radicals in Intestinal Ischemia/Reperfusion Induced Acute Lung Injury

  • Lee, Young-Man;Park, Yoon-Yub;Kim, Teo-An;Cho, Hyun-G.;Lee, Yoon-Jeong;Repine, John E.
    • The Korean Journal of Physiology and Pharmacology
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    • 제3권3호
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    • pp.263-273
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    • 1999
  • The role of phospholipase $A_2\;(PLA_2)$ in acute lung leak induced by intestinal ischemia was investigated in association with neutrophilic respiratory burst. To induce lung leak, we generated intestinal ischemia for 60 min prior to the 120 min reperfusion by clamping superior mesenteric artery in Sprague-Dawley rats. Acute lung leak was confirmed by the increased lung leak index and protein content in bronchoalveolar fluid. These changes were inhibited by mepacrine, the non-specific $PLA_2$ inhibitor. The lung myeloperoxidase (MPO) activity denoting the pulmonary recruitment of neutrophils was increased by intestinal I/R, but decreased by mepacrine. Simultaneously, the number of leukocytes in bronchoalveolar fluid was increased by intestinal ischemia/reperfusion (I/R) and decreased by mepacrine. Gamma glutamyl transferase activity, an index of oxidative stress in the lung, was increased after intestinal I/R but decreased by mepacrine, which implicates that $PLA_2$ increases oxidative stress caused by intestinal I/R. The $PLA_2$ activity was increased after intestinal I/R not only in the intestine but also in the lung. These changes were diminished by mepacrine. In the cytochemical electron microscopy to detect hydrogen peroxide, intestinal I/R increased the generation of the hydrogen peroxide in the lung as well as in the intestine. Expression of interleukin-1 (IL-1) in the lung was investigated through RT-PCR. The expression of IL-1 after intestinal I/R was enhanced, and again, the inhibition of $PLA_2$ suppressed the expression of IL-1 in the lung. Taken together, intestinal I/R seems to induce acute lung leak through the activation of $PLA_2$, the increase of IL-1 expression associated with increased oxidative stress by neutrophilic respiratory burst.

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Attenuated Cerebral Ischemic Injury by Polyethylene Glycol-Conjugated Hemoglobin

  • Cho, Geum-Sil;Choi, In-Young;Choi, Yoo-Keum;Kim, Seul-Ki;Cai, Ying;Nho, Kwang;Lee, Jae-Chul
    • Biomolecules & Therapeutics
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    • 제17권3호
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    • pp.270-275
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    • 2009
  • Polyethylene glycol-conjugated hemoglobin (PEG-Hb) has been proposed as a blood substitute for transfusion due to their plasma expansion and oxygen transport capabilities. The protective effect of PEG-Hb on cerebral hypoxic-ischemic injury was investigated in neonatal hypoxia model and adult rat focal cerebral ischemia model. As intravenously administered 30 min before the onset of hypoxia, PEG-Hb markedly protected cerebral hypoxic injury in a neonatal rat hypoxia model. A similar treatment of PEG-Hb largely reduced the ischemic injury ensuing after 2-h middle cerebral artery occlusion followed by 22-h reperfusion. Consistently, neurological disorder was significantly improved by PEG-Hb. The results indicate that the pharmacological blockade of cerebral ischemic injury by using PEG-Hb may provide a useful strategy for the treatment of cerebral stroke.

흰쥐의 분리 폐장 관류 모델에서 Nitroglycerin의 폐장 보존 효과 (Protective Effect of Nitroglycerin on the Ischemia-Reperfusion Model of the Isolated Rat Lung)

  • 전상훈;이섭;이종훈;손복경;조공래;정진용;조성경;김봉일;이영만;조중행
    • Journal of Chest Surgery
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    • 제36권12호
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    • pp.894-903
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    • 2003
  • 체내에서 발생하는 산화 질소는 허혈-재관류에 따른 폐혈관 저항을 감소시키고 혈관의 미세 투과도를 줄이고 세포손상을 방지하여 이식 후 폐장 기능의 보전에 도움이 된다고 알려져 있으나, 산화질소 자체의 세포독성으로 인해 재관류 동안 폐 부종을 오히려 증가시킬 수도 있다고 한다. 저자들은 산화 질소의 공여물질인 nitroglycerin을 투여한 분리 폐장 관류 모델을 이용하여 폐장 보존에 이점과 단점을 동시에 가지고 있는 산화질소가 허혈-재관류 과정에서 폐장의 기능에 미치는 영향을 알아보기 위하여 본 연구를 시행하였다. 대상 및 방법: Sprague-Dawley종의 수컷 흰쥐 35마리를 사용하였다. Nitroglycerin (NTG)군(n=18)은 NTG를 정맥 주사하고 University of Wisconsin용액에 혼합하여 폐장 관류를 시행하였고, 대조군(n=17)은 NTG 대신 같은 양의 생리 식염수를 사용하였다. 구득한 심폐블록을 1$0^{\circ}C$에서 24시간 동안 보관한 후, 분리 폐장 관류 모델에서 인체 혈액을 Krebs-Hensleit용액으로 희석하여 60분간 재관류하였다. 재관류하는 동안 기도내압과 페동맥압을 지속적으로 측정하였고, 관류후 30분과 60분에 혈액 내 산소와 이산화탄소 분압을 측정하였다. 재관류가 끝난 후 기관지폐포세척을 통해 폐포 내 단백함량을 측정하였으며, 중성구 침착 정도를 알기 위해 myeloperoxidase (MPO) 활성도를 측정하였다. 걸과: 두 군 간의 기도내압과 폐동맥압은 통계적으로 유의한 차이는 없었으나, NTG군에서 관류기간 중 폐동맥압이 상대적으로 낮게 유지되는 경향이 있었다. 이산화탄소 분압, 기관지폐포세척액 내의 단백질 함량, MPO의 활성도는 두 군에서 유의한 차이는 없었으나, 산소 분압은 NTG 군에서 통계적으로 유의하게 높게 나타났다(p<0.05). 전자현미경 검사에도 대조군에 비해 NTG군에서 폐포구조, 폐포상피세포, 모세혈관배열 등 미세구조의 손상이 적게 나타났다. 결론. 폐장 구득전 NTG의 투여는 폐장의 기능과 미세구조의 유지에 도움이 된다고 판단되며, 임상 폐이식에도 적용이 가능하리라 생각된다.

돼지의 신장에서 Antioxidant Vitamins에 의한 허혈 및 재관류 손상의 감소에 관한 연구 (Attenuation of Renal Ischemia-Reperfusion Injury by Antioxidant Vitamins in Pigs)

  • 김명진;이수진;박창식;손화영;전무형;정성목;김명철
    • 한국임상수의학회지
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    • 제24권2호
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    • pp.94-98
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    • 2007
  • 돼지에서 신장의 허혈-재관류 손상의 감소에 대한 비타민 C와 E의 영향을 알아보기 위하여 본 연구를 실시하였다. 돼지 10두를 2개의 군으로 구분하여, 60분 동안 체온과 같은 허혈을 한쪽 신장에 유발하고 반대쪽 신장은 절제하였다. 처치군은 수술 2일전 비타민 C와 E를 이틀 동안 전처치하고, 그 뒤에 수술 중 비타민 C와 heparin이 첨가된 생리식염수를 관주-흡인하였다. 대조군은 heparin이 첨가된 생리식염수의 관주-흡인만을 하였다. Blood urea nitrogen, creatinine 및 antioxidant superoxide dismutase (SOD)를 측정하기 위하여 수술 전, 수술 후 1, 3, 7, 14일에 혈액 샘플을 채취하였다. 수술 후 14일에 안락사를 시키고, 병리조직검사를 위하여 신장을 적출하였다. BUN은 대조군과 처치군 사이에 수술 후 1일, 3일 또는 7일에 유의성이 있는 차이가 인정되었다. (p<0.05). Creatinine은 대조군과 처치군 사이에 수술 후 3일에 유의성이 있는 차이가 인정되었다. (p<0.05). 혈장에서의 항산화 효소의 활성은 대조군과 처치군 사이에서 수술 후 14일에 유의성이 있는 차이가 인정되었다. (p<0.05). 병리조직 검사 결과에서 처치군이 대조군 보다 더 적은 신장 세뇨관에서의 손상의 정도를 보였다. 비타민 C와 E는 돼지에서 신장의 허혈-재관류 손상을 감소시켰다.

Cardioprotection via mitochondrial transplantation supports fatty acid metabolism in ischemia-reperfusion injured rat heart

  • Jehee Jang;Ki-Woon Kang;Young-Won Kim;Seohyun Jeong;Jaeyoon Park;Jihoon Park;Jisung Moon;Junghyun Jang;Seohyeon Kim;Sunghun Kim;Sungjoo Cho;Yurim Lee;Hyoung Kyu Kim;Jin Han;Eun-A Ko;Sung-Cherl Jung;Jung-Ha Kim;Jae-Hong Ko
    • The Korean Journal of Physiology and Pharmacology
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    • 제28권3호
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    • pp.209-217
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    • 2024
  • In addition to cellular damage, ischemia-reperfusion (IR) injury induces substantial damage to the mitochondria and endoplasmic reticulum. In this study, we sought to determine whether impaired mitochondrial function owing to IR could be restored by transplanting mitochondria into the heart under ex vivo IR states. Additionally, we aimed to provide preliminary results to inform therapeutic options for ischemic heart disease (IHD). Healthy mitochondria isolated from autologous gluteus maximus muscle were transplanted into the hearts of Sprague-Dawley rats damaged by IR using the Langendorff system, and the heart rate and oxygen consumption capacity of the mitochondria were measured to confirm whether heart function was restored. In addition, relative expression levels were measured to identify the genes related to IR injury. Mitochondrial oxygen consumption capacity was found to be lower in the IR group than in the group that underwent mitochondrial transplantation after IR injury (p < 0.05), and the control group showed a tendency toward increased oxygen consumption capacity compared with the IR group. Among the genes related to fatty acid metabolism, Cpt1b (p < 0.05) and Fads1 (p < 0.01) showed significant expression in the following order: IR group, IR + transplantation group, and control group. These results suggest that mitochondrial transplantation protects the heart from IR damage and may be feasible as a therapeutic option for IHD.

Protein-protein interaction between caveolin-1 and SHP-2 is dependent on the N-SH2 domain of SHP-2

  • Park, Hyunju;Ahn, Keun Jae;Kang, Jihee Lee;Choi, Youn-Hee
    • BMB Reports
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    • 제48권3호
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    • pp.184-189
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    • 2015
  • Src homology 2-containing protein tyrosine phosphatase 2 (SHP-2) is known to protect neurons from neurodegeneration during ischemia/reperfusion injury. We recently reported that ROS-mediated oxidative stress promotes phosphorylation of endogenous SHP-2 in astrocytes and complex formation between caveolin-1 and SHP-2 in response to oxidative stress. To examine the region of SHP-2 participating in complex formation with caveolin-1, we generated three deletion mutant constructs and six point mutation constructs of SHP-2. Compared with wild-type SHP-2, binding of the N-SH2 domain deletion mutant of SHP-2 to p-caveolin-1 was reduced greatly, using flow cytometric competitive binding assays and surface plasmon resonance (SPR). Moreover, deletion of the N-SH2 domain of SHP-2 affected $H_2O_2$-mediated ERK phosphorylation and Src phosphorylation at Tyr 419 in primary astrocytes, suggesting that N-SH2 domain of SHP-2 is responsible for the binding of caveolin-1 and contributes to the regulation of Src phosphorylation and activation following ROS-induced oxidative stress in brain astrocytes.

Protective Effect of Taurine on Indomethacin-induced Gastric Mucosal Injury

  • Son, Miwon;Kim, Hee-Kee;Kim, Won-Bae;Yang, Junnick;Kim, Byong-Kak
    • Archives of Pharmacal Research
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    • 제19권2호
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    • pp.85-90
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    • 1996
  • It has been suggested that oxygen-derived free radicals play an important role in the pathophysiology of acute gastric ulceration induced by NSAIDs and ischemia-reperfusion. Taurine is hypothetized to exert its protective effect on NSAIDs-induced gastric injury by its antioxidant properties. Protective effect of taurine on indomethacin-induced gastric mucosal lesion and its protection mechanism were investigated. Intragastric administration of 25 mg/kg of indomethacin induced hemorrhagic lesions on the glandular stomach in rats. Pretreatment with 0.25 or 0.5 g/kg of taurine one day before or for 3 days significantly reduced the gastric lesion formation and inhibited the elevation of lipid peroxide level in gastric mucosa. The luminol-dependent chemiluminescence of rat peritoneal neutrophils increased immediately after treatment of FMLP or indomethacin. Taurine (5-20 mM) inhibited chemiluminescence of neutrophils activated by FMLP. Human neutrophils (polymorphonuclear leukocytes) significantly adhered to the confluent monolayer of human umbilical vein endothelial cells (HUVEC) after coincubation with indomethacin. This neutrophil adhesion induced by indomethacin to HUVEC was prevented by taurine in a dose-dependent manner. These results indicate that the protective effect of taurine against NSAIDs-induced gastric mucosal injury is due to its antioxidant effect, which inhibits lipid peroxidation and neutrophil activation.

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Neogambogic acid relieves myocardial injury induced by sepsis via p38 MAPK/NF-κB pathway

  • Fu, Wei;Fang, Xiaowei;Wu, Lidong;Hu, Weijuan;Yang, Tao
    • The Korean Journal of Physiology and Pharmacology
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    • 제26권6호
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    • pp.511-518
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    • 2022
  • Sepsis-associated myocardial injury, an invertible myocardial depression, is a common complication of sepsis. Neogambogic acid is an active compound in garcinia and exerts anthelmintic, anti-inflammatory, and detoxification properties. The role of neogambogic acid in sepsis-associated myocardial injury was assessed. Firstly, mice were pretreated with neogambogic acid and then subjected to lipopolysaccharide treatment to induce sepsis. Results showed that lipopolysaccharide treatment induced up-regulation of biomarkers involved in cardiac injury, including lactate dehydrogenase (LDH), creatine kinase-MB (CK-MB), and troponin I (cTnI). However, pretreatment with neogambogic acid reduced levels of LDH, CK-MB, and cTnI, and ameliorated histopathological changes in the heart tissues of septic mice. Secondly, neogambogic acid also improved cardiac function in septic mice through reduction in left ventricular end-diastolic pressure, and enhancement of ejection fraction, fractional shortening, and left ventricular systolic mean pressure. Moreover, neogambogic acid suppressed cardiac apoptosis and inflammation in septic mice and reduced cardiac fibrosis. Lastly, protein expression of p-p38, p-JNK, and p-NF-κB in septic mice was decreased by neogambogic acid. In conclusion, neogambogic acid exerted anti-apoptotic, anti-fibrotic, and anti-inflammatory effects in septic mice through the inactivation of MAPK/NF-κB pathway.