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体外循环后内皮依赖性血管反应性与独特的代谢组学特征相关。

ENDOTHELIAL-DEPENDENT VASCULAR REACTIVITY AFTER CARDIOPULMONARY BYPASS IS ASSOCIATED WITH UNIQUE METABOLOMIC SIGNATURES.

作者信息

Stark Ryan J, Schrimpe-Rutledge Alexandra C, Codreanu Simona G, Sherrod Stacy D, McLean John A, Krispinsky Luke T, Lamb Fred S

机构信息

Division of Pediatric Critical Care Medicine, Vanderbilt University Medical Center, Nashville, Tennessee.

Vanderbilt Center for Innovative Technology, Nashville, Tennessee.

出版信息

Shock. 2024 Nov 1;62(5):656-662. doi: 10.1097/SHK.0000000000002446. Epub 2024 Aug 12.

Abstract

Cardiopulmonary bypass (CPB), an extracorporeal method necessary for the surgical correction of complex congenital heart defects, incites significant inflammation that affects vascular function. These changes are associated with alterations in cellular metabolism that promote energy production to deal with this stress. Utilizing laser Doppler perfusion monitoring coupled with iontophoresis in patients undergoing corrective heart surgery, we hypothesized that temporal, untargeted metabolomics could be performed to assess the link between metabolism and vascular function. Globally, we found 2,404 unique features in the plasma of patients undergoing CPB. Metabolites related to arginine biosynthesis were the most altered by CPB. Correlation of metabolic profiles with endothelial-dependent (acetylcholine [ACh]) or endothelial-independent (sodium nitroprusside [SNP]) vascular reactivity identified purine metabolism being most consistently associated with either vascular response. Concerning ACh-mediated responses, acetylcarnitine levels were most strongly associated, while glutamine levels were associated with both ACh and SNP responsiveness. These data provide insight into the metabolic landscape of children undergoing CPB for corrective heart surgery and provide detail into how these metabolites relate to physiological aberrations in vascular function.

摘要

体外循环(CPB)是复杂先天性心脏缺陷手术矫正所必需的一种体外方法,它会引发显著的炎症反应,影响血管功能。这些变化与细胞代谢的改变有关,细胞代谢改变会促进能量产生以应对这种应激。在接受心脏矫正手术的患者中,利用激光多普勒灌注监测结合离子电渗疗法,我们假设可以进行非靶向的时间分辨代谢组学分析,以评估代谢与血管功能之间的联系。总体而言,我们在接受CPB的患者血浆中发现了2404个独特特征。与精氨酸生物合成相关的代谢物受CPB影响最大。代谢谱与内皮依赖性(乙酰胆碱[ACh])或内皮非依赖性(硝普钠[SNP])血管反应性的相关性表明,嘌呤代谢与两种血管反应最一致相关。关于ACh介导的反应,乙酰肉碱水平相关性最强,而谷氨酰胺水平与ACh和SNP反应性均相关。这些数据深入了解了接受CPB进行心脏矫正手术的儿童的代谢状况,并详细说明了这些代谢物与血管功能生理异常之间的关系。

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