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离体常温肢体灌注过程中骨骼肌的代谢组学分析

Metabolic Profiling of Skeletal Muscle During Ex-Vivo Normothermic Limb Perfusion.

机构信息

Cleveland Clinic Department of Plastic Surgery, Cleveland, OH 44195, USA.

Cleveland Clinic Lerner Research Institute Proteomics and Metabolomics Core, Cleveland, OH 44195, USA.

出版信息

Mil Med. 2021 Jan 25;186(Suppl 1):358-363. doi: 10.1093/milmed/usaa268.

DOI:10.1093/milmed/usaa268
PMID:33499445
Abstract

INTRODUCTION

Ex vivo normothermic limb perfusion (EVNLP) provides several advantages for the preservation of limbs following amputation: the ability to maintain oxygenation and temperature of the limb close to physiological values, a perfusion solution providing all necessary nutrients at optimal concentrations, and the ability to maintain physiological pH and electrolytes. However, EVNLP cannot preserve the organ viability infinitely. We identified evidence of mitochondrial injury (swelling, elongation, and membrane disruption) after 24 hours of EVNLP of human upper extremities. The goal of this study was to identify metabolic derangements in the skeletal muscle during EVNLP.

MATERIALS AND METHODS

Fourteen human upper extremities were procured from organ donors after family consent. Seven limbs underwent EVNLP for an average of 41.6 ± 9.4 hours, and seven contralateral limbs were preserved at 4°C for the same amount of time. Muscle biopsies were performed at 24 hours of perfusion, both from the EVNLP and control limbs. Perturbations in the metabolic profiles of the muscle during EVNLP were determined via untargeted liquid chromatography-mass spectrometry (MS) operated in positive and negative electrospray ionization modes, over a mass range of 50 to 750 Da. The data were deconvoluted using the XCMS software and further statistically analyzed using the in-house statistical package, MetaboLyzer. Putative identification of metabolites using exact mass within ±7 ppm mass error and MS/MS spectral matching to the mzCloud spectral library were performed via Compound Discoverer v.2.1 (Thermo Scientific, Fremont, CA, USA). We further validated the identity of candidate metabolites by matching the fragmentation pattern of these metabolites to those of their reference pure chemicals. A nonparametric Mann-Whitney U-test was used to compare EVNLP and control group spectral features. Differences were considered significantly different when P-value < 0.05.

RESULTS

We detected over 13,000 spectral features of which 58 met the significance criteria with biologically relevant putative identifications. Furthermore we were able to confirm the identities of the ions taurine (P-value: 0.002) and tryptophan (P-value: 0.002), which were among the most significantly perturbed ions at 24 hours between the experimental and control groups. Metabolites belonging to the following pathways were the most perturbed at 24 hours: neuroactive ligand-receptor interaction (P-values: 0.031 and 0.036) and amino acid metabolism, including tyrosine and tryptophan metabolism (P-values: 0.015, 0.002, and 0.017). Taurine abundance decreased and tryptophan abundance increased at 24 hours. Other metabolites also identified at 24 hours included phenylalanine, xanthosine, and citric acid (P-values: 0.002, 0.002, and 0.0152).

DISCUSSION

This study showed presence of active metabolism during EVNLP and metabolic derangement toward the end of perfusion, which correlated with detection of altered mitochondrial structure, swelling, and elongation.

摘要

简介

体外常温肢体灌注 (EVNLP) 为断肢保存提供了许多优势:能够将肢体的氧合和温度维持在接近生理值的水平,灌注溶液以最佳浓度提供所有必要的营养物质,并能够维持生理 pH 值和电解质。然而,EVNLP 不能无限期地保持器官活力。我们在对人类上肢进行 24 小时 EVNLP 后发现了线粒体损伤的证据(肿胀、伸长和膜破裂)。本研究的目的是确定 EVNLP 过程中骨骼肌中的代谢紊乱。

材料和方法

从有器官捐献意愿的家属处获得 14 例人体上肢。7 条肢体接受 EVNLP 平均 41.6±9.4 小时,而 7 条对侧肢体在 4°C 下保存相同时间。在灌注 24 小时时,从 EVNLP 和对照肢体上均进行了肌肉活检。通过正、负离子电喷雾电离模式下的非靶向液相色谱-质谱 (MS) 来确定 EVNLP 过程中肌肉代谢谱的变化,质量范围为 50 至 750 Da。使用 XCMS 软件对数据进行去卷积,并使用内部统计软件包 MetaboLyzer 进一步进行统计分析。通过使用精确质量在 7 ppm 质量误差内和与 mzCloud 光谱库的 MS/MS 光谱匹配来对代谢物进行推定鉴定。通过将这些代谢物的碎片模式与参考纯化学物质的碎片模式进行匹配,进一步验证候选代谢物的身份。使用非参数 Mann-Whitney U 检验比较 EVNLP 和对照组的光谱特征。当 P 值 < 0.05 时,认为差异具有统计学意义。

结果

我们检测到超过 13000 个光谱特征,其中 58 个具有生物学相关的推定鉴定,达到显著标准。此外,我们能够确认牛磺酸(P 值:0.002)和色氨酸(P 值:0.002)的离子身份,这两种离子在实验和对照组之间 24 小时时的变化最显著。在 24 小时时,以下途径的代谢物受到最严重的干扰:神经活性配体-受体相互作用(P 值:0.031 和 0.036)和氨基酸代谢,包括酪氨酸和色氨酸代谢(P 值:0.015、0.002 和 0.017)。牛磺酸的丰度在 24 小时时降低,色氨酸的丰度增加。在 24 小时时还鉴定出其他代谢物,包括苯丙氨酸、黄嘌呤核苷和柠檬酸(P 值:0.002、0.002 和 0.0152)。

讨论

本研究表明 EVNLP 过程中存在活跃的代谢,并且在灌注结束时出现代谢紊乱,这与检测到的线粒体结构改变、肿胀和伸长有关。

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