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首页> 外文期刊>American Journal of Physiology >Regulation of urea synthesis during the acute-phase response in rats
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Regulation of urea synthesis during the acute-phase response in rats

机译:大鼠急性期反应中尿素合成的调控

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The acute-phase response is a catabolic event involving increased waste of amino-nitrogen (N) via hepatic urea synthesis, despite an increased need for amino-N incorporation into acute-phase proteins. This study aimed to clarify the regulation of N elimination via urea during different phases of the tumor necrosis factor-α (TNF-α)- induced acute-phase response in rats. We used four methods to study the regulation of urea synthesis: We examined urea cycle enzyme mRNA levels in liver tissue, the hepatocyte urea cycle enzyme proteins, the in vivo capacity of urea-N synthesis (CUNS), and known humoral regulators of CUNS at 1, 3, 24, and 72 h after TNF-α injection (25 μg/kg iv rrTNF-α) in rats. Serum acute-phase proteins and their liver mRNA levels were also measured. The urea cycle enzyme mRNA levels acutely decreased and then gradually normalized, whereas the urea cycle enzyme proteins remained essentially unchanged over time. The CUNS rose after 3 h and then normalized. The acute-phase response was fully activated at 24 h with markedly increased serum levels of the acute-phase proteins. TNF-α acutely upregulated the CUNS. Later, despite the fully established 24-h acute-phase response and the decreased activity of the urea cycle enzyme genes, there was no change in the urea cycle enzyme proteins or the CUNS. Thus in no phase after the initiation of the acute-phase response was in vivo urea synthesis orchestrated in combination with acute-phase protein synthesis so as to limit N waste.
机译:急性期反应是一种分解代谢事件,尽管对氨基-N掺入急性期蛋白的需求增加,但通过肝脏尿素合成增加了氨基氮(N)的浪费。这项研究旨在阐明在肿瘤坏死因子-α(TNF-α)诱导的大鼠急性期反应不同阶段中,通过尿素对氮的清除的调控。我们使用四种方法研究尿素合成的调控:我们检查了肝组织中尿素循环酶mRNA的水平,肝细胞尿素循环酶蛋白,尿素-N合成(CUNS)的体内容量以及已知的CUNS的体液调节剂。在大鼠中注射TNF-α(25μg/ kg ivrrTNF-α)后的1、3、24和72小时。还测量了血清急性期蛋白及其肝mRNA水平。尿素循环酶mRNA水平急剧下降,然后逐渐正常化,而尿素循环酶蛋白随时间基本保持不变。 3小时后CUNS上升,然后恢复正常。急性期反应在24 h完全激活,血清中的急性期蛋白水平明显升高。 TNF-α急性上调CUNS。后来,尽管完全建立了24小时急性期反应,尿素循环酶基因的活性降低,但尿素循环酶蛋白或CUNS却没有变化。因此,在急性期反应开始后的任何阶段,体内尿素合成均与急性期蛋白合成相结合,以限制氮的浪费。

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