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首页> 外文期刊>Frontiers in Molecular Biosciences >A first step towards unraveling the energy metabolism in endurance horses: comparison of plasma nuclear magnetic resonance metabolomic profiles before and after different endurance race distances
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A first step towards unraveling the energy metabolism in endurance horses: comparison of plasma nuclear magnetic resonance metabolomic profiles before and after different endurance race distances

机译:揭示耐力赛马的能量代谢的第一步:比较不同耐力赛距离之前和之后的血浆核磁共振代谢组学谱

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摘要

Endurance racing places high demands on energy metabolism pathways. Metabolomics can be used to investigate biochemical responses to endurance exercise in humans, laboratory animals and horses. Although endurance horses have previously been assessed in the field (i.e. during races) using broad-window Nuclear Magnetic Resonance metabolomics, these studies included several different race locations, race distances, age classes, and race statuses (finisher or elimination). The present NMR metabolomics study focused on 40 endurance horses racing in three race categories over 90, 120 or 160 km. The three races took place in the same location. Given that energy metabolism is closely related to exercise intensity and duration (and therefore distance covered), the study’s objective was to determine whether the metabolic pathways recruited during the race varied as a function of the total ride distance. For each horse, a plasma sample was collected the day before the race, and another was collected at the end of the race. Sixteen, 15 and 9 horses raced over 90 km, 120 km, and 160 km, respectively. Proton NMR spectra (500 MHz) were acquired for these 80 plasma samples. After processing, the spectra were divided into bins representing the NMR variables and then classified using orthogonal projection on latent structure models supervised by the sampling time (pre- or post-race) or the distance covered. The models revealed that the post-race metabolomic profiles are associated to the total ride distance groups. By combining biochemical assay results and NMR data in multiblock models, we further showed that enzymatic activities and metabolites are significantly associated to the race category. In the highest race category (160 km), there appears to be a metabolic switch from carbohydrate consumption to lipid consumption in order to maintain glycaemia. Furthermore, signs of protein breakdown were more apparent in the longest race category. The metabolic shift seen in the different racing categories could be related to a mixture of three important factors that are the ride distance, the training status and the inherited endurance capacity of the various horses competing.
机译:耐力赛对能量代谢途径有很高的要求。代谢组学可用于研究人类,实验动物和马匹对耐力运动的生化反应。尽管先前已经使用大窗口核磁共振代谢组学在野外(即比赛期间)对耐力赛马进行了评估,但这些研究包括几个不同的比赛地点,比赛距离,年龄段和比赛状态(完成或淘汰)。当前的NMR代谢组学研究集中在90、120或160公里的三个种族类别中的40名耐力赛马。三场比赛在同一地点举行。考虑到能量代谢与运动强度和持续时间(以及所覆盖的距离)密切相关,因此该研究的目的是确定比赛中募集的代谢途径是否随总骑行距离而变化。对于每匹马,在比赛前一天收集血浆样品,并在比赛结束时收集另一份血浆样品。 16匹,15匹和9匹马分别在90公里,120公里和160公里的地方跑了。对这80个血浆样品采集了质子NMR光谱(500 MHz)。经过处理后,将光谱分成代表NMR变量的区域,然后在由采样时间(赛前或赛后)或覆盖距离监督的潜在结构模型上使用正交投影进行分类。这些模型表明,赛后代谢组学特征与总骑行距离组相关。通过在多嵌段模型中结合生化测定结果和NMR数据,我们进一步表明酶活性和代谢产物与种族类别显着相关。在最高种族类别(160公里)中,为了维持血糖,似乎发生了从碳水化合物消耗到脂质消耗的新陈代谢转换。此外,在最长的种族类别中,蛋白质分解的迹象更为明显。在不同的比赛类别中看到的新陈代谢变化可能与三个重要因素的混合有关,这些因素是骑乘距离,训练状态和各种赛马的遗传耐力。

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