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首页> 外文期刊>Journal of neuroinflammation >Complex regulation of neutrophil-derived MMP-9 secretion in central nervous system tuberculosis
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Complex regulation of neutrophil-derived MMP-9 secretion in central nervous system tuberculosis

机译:中枢神经系统结核中中性粒细胞衍生的MMP-9分泌的复杂调控

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BackgroundCentral nervous system tuberculosis (CNS-TB) may be fatal even with treatment. Neutrophils are the key mediators of TB immunopathology, and raised CSF matrix metalloproteinase-9 (MMP-9) which correlates to neutrophil count in CNS-TB is associated with neurological deficit and death. The mechanisms by which neutrophils drive TB-associated CNS matrix destruction are not clearly defined. MethodsHuman brain biopsies with histologically proven CNS-TB were stained for neutrophils, neutrophil elastase, and MMP-9. Neutrophil MMP-9 secretion and gene expression were analyzed using Luminex and real-time PCR. Type IV collagen degradation was evaluated using confocal microscopy and quantitative fluorescent assays. Intracellular signaling pathways were investigated by immunoblotting and chemical inhibitors. ResultsMMP-9-expressing neutrophils were present in tuberculous granulomas in CNS-TB and neutrophil-derived MMP-9 secretion was upregulated by Mycobacterium tuberculosis ( M.tb ). Concurrent direct stimulation by M.tb and activation via monocyte-dependent networks had an additive effect on neutrophil MMP-9 secretion. Destruction of type IV collagen, a key component of the blood-brain barrier, was inhibited by neutralizing neutrophil MMP-9. Monocyte-neutrophil networks driving MMP-9 secretion in TB were regulated by MAP-kinase and Akt-PI3 kinase pathways and the transcription factor NF-kB. TNFα neutralization suppressed MMP-9 secretion to baseline while dexamethasone did not. ConclusionsMultiple signaling paths regulate neutrophil-derived MMP-9 secretion, which is increased in CNS-TB. These paths may be better targets for host-directed therapies than steroids currently used in CNS-TB.
机译:背景中枢神经系统结核病(CNS-TB)即使经过治疗也可能致命。中性粒细胞是结核病免疫病理学的关键介质,与中枢神经系统结核病中性粒细胞计数相关的升高的CSF基质金属蛋白酶9(MMP-9)与神经功能缺损和死亡有关。中性粒细胞驱动结核相关的中枢神经系统基质破坏的机制尚不清楚。方法对经组织学证实为CNS-TB的人脑活检标本进行中性粒细胞,中性粒细胞弹性蛋白酶和MMP-9染色。使用Luminex和实时PCR分析中性粒细胞MMP-9的分泌和基因表达。使用共聚焦显微镜和定量荧光测定法评估IV型胶原蛋白的降解。通过免疫印迹和化学抑制剂研究了细胞内信号传导途径。结果CNS-TB结核性肉芽肿中存在表达MMP-9的中性粒细胞,结核分枝杆菌(M.tb)上调了中性粒细胞衍生的MMP-9分泌。 M.tb的同时直接刺激和通过单核细胞依赖性网络的激活对嗜中性粒细胞MMP-9分泌具有累加效应。中和中性粒细胞MMP-9可抑制IV型胶原(血脑屏障的关键成分)的破坏。 MAP激酶和Akt-PI 3 激酶途径以及转录因子NF-kB调控着TB中驱动MMP-9分泌的单核细胞-中性粒细胞网络。 TNFα中和将MMP-9分泌抑制到基线,而地塞米松则没有。结论多种信号通路调节中性粒细胞衍生的MMP-9分泌,而CNS-TB中MMP-9分泌增加。与目前用于中枢神经系统结核病的类固醇相比,这些途径可能是针对宿主的更好的治疗靶标。

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