首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Reduced thioredoxin increases proinflammatory cytokines and neutrophil influx in rat airways: modulation by airway mucus.
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Reduced thioredoxin increases proinflammatory cytokines and neutrophil influx in rat airways: modulation by airway mucus.

机译:减少的硫氧还蛋白会增加大鼠气道中的促炎细胞因子和中性粒细胞流入:由气道粘液调节。

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摘要

Thioredoxin (Trx) decreases viscosity of cystic fibrosis (CF) sputum. In this study reduced Trx increased the solubility and decreased the size of MUC5B glycoprotein while reducing disulfide bonds in sputum. Because Trx used as a mucolytic would enter airways, this study determined the effects of intratracheal instillation of reduced recombinant human thioredoxin (rhTrx) in naive rat airways. Reduced rhTrx increased neutrophils and the cytokines TNFalpha, CINC2beta, and MIP3alpha in airways after 4 h. The effect of rhTrx was concentration-dependent. Exposure to saline, human serum albumin, or oxidized rhTrx at equal molarities did not increase airway neutrophils or cytokines. Instilling CF sputum (50 microl) into the lung before reduced rhTrx delivery attenuated these responses. This suggests that rhTrx reduces disulfide bonds present in CF sputum, limiting the reduction of other lung constituents. Together these findings indicate that the chemotactic and cytokine responses are due to the reducing potential of rhTrx and that the potential for inflammation in non-CF and CF patients given aerosolized rhTrx may differ. In parallel studies, increased amounts of the p65 subunit of NF-kappaB were present in nuclear extracts from rat lungs administered reduced rhTrx, suggesting a role for NF-kappaB in these proinflammatory responses.
机译:硫氧还蛋白(Trx)降低了囊性纤维化(CF)痰的粘度。在这项研究中,减少的Trx增加了溶解度并减小了MUC5B糖蛋白的大小,同时减少了痰中的二硫键。由于用作粘液溶解剂的Trx会进入气道,因此本研究确定了在幼稚大鼠气道中气管内滴注还原型重组人硫氧还蛋白(rhTrx)的效果。 rhTrx减少会在4小时后增加气道中的中性粒细胞和细胞因子TNFalpha,CINC2beta和MIP3alpha。 rhTrx的作用是浓度依赖性的。以相同的摩尔浓度暴露于盐水,人血清白蛋白或氧化的rhTrx不会增加气道中性粒细胞或细胞因子。在减少rhTrx传递之前,将CF痰(50微升)滴入肺中会减弱这些反应。这表明rhTrx减少了CF痰中存在的二硫键,限制了其他肺成分的减少。这些发现共同表明趋化性和细胞因子反应是由于rhTrx的潜力降低,并且在非CF和CF患者中使用雾化的rhTrx引起的炎症潜力可能有所不同。在平行研究中,NF-kappaB的p65亚基数量增加,存在于大鼠肺中,rhTrx含量降低,这暗示了NF-kappaB在这些促炎反应中的作用。

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