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人中性粒细胞而非肺微血管内皮细胞(PMVEC)中的诱导型一氧化氮合酶(iNOS)在体外介导脓毒症时的蛋白渗漏。

Inducible NO synthase (iNOS) in human neutrophils but not pulmonary microvascular endothelial cells (PMVEC) mediates septic protein leak in vitro.

作者信息

Shelton Jennifer L, Wang Lefeng, Cepinskas Gediminas, Sandig Martin, Scott Jeremy A, North Michelle L, Inculet Richard, Mehta Sanjay

机构信息

Centre for Critical Illness Research, Lawson Health Research Institute, Division of Respirology, Department of Medicine, London Health Sciences Center-Victoria Hospital, University of Western Ontario, 800 Commissioner's Road, London, Ontario, Canada.

出版信息

Microvasc Res. 2007 Jul;74(1):23-31. doi: 10.1016/j.mvr.2007.02.008. Epub 2007 Mar 12.

Abstract

Sepsis-induced acute lung injury (ALI) is characterized by injury of the pulmonary microvascular endothelial cells (PMVEC) leading to high-protein pulmonary edema. Inducible NO synthase (iNOS) mediates trans-PMVEC protein leak in septic mice in vivo and in murine PMVEC under septic conditions in vitro, but the role of iNOS in human PMVEC protein leak has not been addressed. We hypothesized that iNOS in human neutrophils, but not human PMVEC, mediates septic trans-PMVEC protein leak in vitro. We isolated human PMVEC from lung tissue using magnetic bead-bound anti-PECAM antibody and assessed Evans blue albumin leak across human PMVEC monolayers under septic conditions in the presence/absence of human neutrophils. PMVEC were used at passages 3-4, seeded on 3 mum Transwell inserts and grown to confluence. Cytomix-stimulated trans-PMVEC albumin leak was not attenuated by pre-treatment with 1400 W, a selective iNOS inhibitor, or l-NAME, a non-selective NOS inhibitor. In neutrophil-PMVEC co-culture, basal unstimulated trans-EB-albumin leak was 0.6+/-0.3%, which was increased by cytomix stimulation to 11.5+/-4.4%, p<0.01. Cytomix-stimulated EB-albumin leak in neutrophil-PMVEC co-cultures was inhibited by pre-treatment with 1400 W (3.8+/-1.0%, p<0.05) or l-NAME (4.0+/-1.1%, p<0.05). Pre-treatment of neutrophil-PMVEC co-cultures with PEG-SOD (superoxide scavenger) and FeTPPS (peroxynitrite scavenger) also significantly attenuated neutrophil-dependent cytomix-stimulated leak (4.7+/-3.0%, p<0.05; 0.5+/-1.0%, p<0.01, respectively). In conclusion, trans-human PMVEC albumin leak under septic conditions is dependent on iNOS activity specifically in neutrophils, but not in PMVEC themselves. Septic neutrophil-dependent trans-PMVEC albumin leak may be mediated by peroxynitrite.

摘要

脓毒症诱导的急性肺损伤(ALI)的特征是肺微血管内皮细胞(PMVEC)受损,导致高蛋白性肺水肿。诱导型一氧化氮合酶(iNOS)在体内介导脓毒症小鼠以及体外脓毒症条件下的鼠PMVEC发生跨内皮细胞的蛋白渗漏,但iNOS在人PMVEC蛋白渗漏中的作用尚未得到研究。我们推测,人中性粒细胞而非人PMVEC中的iNOS在体外介导脓毒症时的跨PMVEC蛋白渗漏。我们使用磁珠结合的抗PECAM抗体从肺组织中分离出人PMVEC,并在有/无人中性粒细胞存在的脓毒症条件下评估伊文思蓝白蛋白跨人PMVEC单层的渗漏情况。使用传代3 - 4次的PMVEC,接种于3μm的Transwell小室上并培养至汇合。用选择性iNOS抑制剂1400W或非选择性NOS抑制剂L - NAME预处理后,细胞混合液刺激引起的跨PMVEC白蛋白渗漏并未减弱。在中性粒细胞 - PMVEC共培养中,基础状态下未受刺激的跨伊文思蓝 - 白蛋白渗漏为0.6±0.3%,细胞混合液刺激后增加至11.5±4.4%,p<0.01。用1400W(3.8±1.0%,p<0.05)或L - NAME(4.0±1.1%,p<0.05)预处理可抑制中性粒细胞 - PMVEC共培养中细胞混合液刺激引起的伊文思蓝 - 白蛋白渗漏。用聚乙二醇 - 超氧化物歧化酶(PEG - SOD,超氧化物清除剂)和FeTPPS(过氧亚硝酸盐清除剂)预处理中性粒细胞 - PMVEC共培养体系也可显著减弱中性粒细胞依赖性细胞混合液刺激引起的渗漏(分别为4.7±3.0%,p<0.05;0.5±1.0%,p<0.01)。总之,脓毒症条件下跨人PMVEC白蛋白渗漏具体依赖于中性粒细胞而非PMVEC自身的iNOS活性。脓毒症时中性粒细胞依赖性跨PMVEC白蛋白渗漏可能由过氧亚硝酸盐介导。

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