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首页> 外文期刊>American Journal of Physiology >Pegylated arginine deiminase depletes plasma arginine but maintains tissue arginine availability in young pigs
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Pegylated arginine deiminase depletes plasma arginine but maintains tissue arginine availability in young pigs

机译:聚乙二醇化的精氨酸Deiminase耗尽血浆精氨酸,但在幼猪中保持组织精氨酸可用性

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Pegylated arginine deiminase (ADI-PEG20) results in the depletion of arginine with the production of isomolar amounts of citrul-line. This citrulline has the potential to be utilized by the citrulline recycling pathway regenerating arginine and sustaining tissue arginine availability. The goal of this research was to test the hypothesis that ADI-PEG20 depletes circulating arginine in pigs but maintains tissue arginine concentration and function, and to characterize the kinetics of citrulline and arginine. Two multitracer approaches (bolus dose and primed-continuous infusion) were used to investigate the metabolism of arginine and citrulline in Control (n = 7) and ADI-PEG20 treated (n = 8) pigs during the postprandial period. In addition, blood pressure was monitored by telemetry, and multiple tissues were collected to determine arginine concentration. Plasma arginine was depleted immediately after ADI-PEG20 administration, with an increase in plasma citrulline concentration (P < 0.01). The depletion of arginine did not affect (P > 0.10) blood pressure, whole body protein synthesis, or urea production. Despite the lack of circulating arginine in ADI-PEG20-treated pigs, most tissues were able to maintain concentrations similar (P > 0.10) to those in Control animals. The kinetics of citrulline and arginine indicated the high citrulline turnover and regeneration of arginine through the citrulline recycling pathway. ADI-PEG20 administration resulted in an absolute and almost instantaneous depletion of circulating arginine, thus reducing global availability without affecting cardiovascular parameters and protein metabolism. The citrulline produced from the deimination of arginine was in turn utilized by the citrulline recycling pathway restoring local tissue arginine availability. NEW & NOTEWORTHY Pegylated arginine deiminase depletes circulating arginine, but the citrulline generated is utilized by multiple tissues to regenerate arginine and sustain local arginine availability. Preempting the arginine depletion that occurs as result of sepsis and trauma with arginine deiminase offers the possibility of maintaining tissue arginine availability despite negligible plasma arginine concentrations.
机译:聚乙二醇化精氨酸脱亚胺酶(ADI-PEG20)导致精氨酸的消耗,产生等摩尔量的柠檬酸。这种瓜氨酸有可能被瓜氨酸循环途径利用,再生精氨酸并维持组织精氨酸的可用性。本研究的目的是验证ADI-PEG20消耗猪体内循环精氨酸但维持组织精氨酸浓度和功能的假设,并表征瓜氨酸和精氨酸的动力学。采用两种多重追踪方法(大剂量和预处理连续输注)研究了对照组(n=7)和经ADI-PEG20处理(n=8)的猪在餐后期间精氨酸和瓜氨酸的代谢。此外,通过遥测监测血压,并收集多个组织以确定精氨酸浓度。服用ADI-PEG20后,血浆精氨酸立即耗尽,血浆瓜氨酸浓度增加(P<0.01)。精氨酸的消耗不影响(P>0.10)血压、全身蛋白质合成或尿素生成。尽管ADI-PEG20处理的猪缺乏循环精氨酸,但大多数组织能够保持与对照动物相似的浓度(P>0.10)。瓜氨酸和精氨酸的动力学表明,瓜氨酸的高周转率和精氨酸通过瓜氨酸循环途径的再生。ADI-PEG20给药导致循环精氨酸的绝对和几乎瞬时消耗,从而在不影响心血管参数和蛋白质代谢的情况下降低全球可用性。精氨酸脱氨基产生的瓜氨酸反过来被瓜氨酸循环途径利用,恢复局部组织精氨酸的可用性。新的值得注意的聚乙二醇化精氨酸脱亚胺酶会消耗循环中的精氨酸,但产生的瓜氨酸被多个组织利用,以再生精氨酸并维持局部精氨酸的可用性。尽管血浆精氨酸浓度可以忽略不计,但通过精氨酸脱胺酶预防败血症和创伤导致的精氨酸耗竭,有可能维持组织精氨酸的可用性。

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