烟酰胺核糖甙防止巴罗进行性能测试时肌肉疲劳的能力

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Metabolites Pub Date : 2024-07-31 DOI:10.3390/metabo14080424
Hanna M. Hennesy, Morgan E. Gravely, Daniela A. Alambarrio, Savannah R. Brannen, Jonathan J. McDonald, Sarah A. Devane, Kari K. Turner, Alexander M. Stelzleni, Travis G. O’Quinn, John M. Gonzalez
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引用次数: 0

摘要

本研究的目的是确定最大程度地延迟主观肌肉疲劳发生所需的日粮烟酰胺核糖苷(NR)剂量。将小母猪(N = 100)分配到五种处理中的一种:含有 0(CON)、15(15NR)、30(30NR)、45(45NR)毫克-公斤体重-1-日-1 NR 的常规猪育成日粮,或在 CON 的基础上通过灌胃或饼干面团(DRE)补充 45 毫克-公斤体重-1-日-1 NR。所有处理都在饲喂的最后 11 天进行。在补充第 10 天时,公牛单独进行 1.09 米/秒的性能测试,直到主观上精疲力竭为止。无线肌电图(EMG)传感器被安装在股二头肌(BF)、张力筋膜(TFL)和半腱肌(ST)上,以测量肌肉的实时活动。对推车速度没有处理效应(p = 0.57),对距离有处理效应趋势(p = 0.07),对力竭时间有处理效应(p = 0.04)。15NR和DRE处理的雄鹿与CON处理的雄鹿相比,精疲力竭的距离更大(p = 0.05),但与其他NR处理的雄鹿相比没有差异(p > 0.11)。45NR 处理中的乌鸦与 30NR 处理中的乌鸦在距离上没有差异(p = 0.11),但与 CON 处理中的乌鸦相比,其距离往往更大(p = 0.07)。所有其他处理比较均无差异(p > 0.27)。DRE 处理中的乌鸦比 CON 处理中的乌鸦移动的时间更长(p < 0.01),但所有其他处理之间没有差异(p > 0.15)。所有肌肉的均方根(RMS)值都没有处理×周期的交互作用(p > 0.16),但所有肌肉都存在周期效应(p < 0.01),TFL存在处理效应(p = 0.04)。在所有肌肉中,第 4 期的 RMS 值均大于其他各期(p < 0.01),而其他各期之间没有差异(p > 0.29)。与所有 NR 处理相比(p < 0.02),在 TFL 性能测试中,CON 公牛的 RMS 值更大,但它们之间没有差异(p > 0.18)。总之,NR 有潜力成为预防疲劳的有用工具,但化合物的有效施用还需要进一步研究。
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Ability of Nicotinamide Riboside to Prevent Muscle Fatigue of Barrows Subjected to a Performance Test
The objective of this study was to determine the daily dietary nicotinamide riboside (NR) dose required to maximize the delay of subjective muscle fatigue onset. Barrows (N = 100) were assigned to one of five treatments: a conventional swine finishing diet containing 0 (CON), 15 (15NR), 30 (30NR), 45 (45NR) mg·kg body weight−1·d−1 NR, or CON supplemented with 45 mg·kg body weight−1·d−1 NR by drench or cookie dough (DRE). All treatments were administered for the final 11 days of feeding. On supplementation d 10, barrows individually experienced a performance test at 1.09 m/s until they were subjectively exhausted. Wireless electromyography (EMG) sensors were affixed to the biceps femoris (BF), tensor fascia latae (TFL), and semitendinosus (ST) to measure real-time muscle activity. There were no treatment effects for barrow speed (p = 0.57), a tendency for a treatment effect (p = 0.07) for distance, and a treatment effect (p = 0.04) on time to exhaustion. Barrows of the 15NR and DRE treatments had greater (p = 0.05) distances to exhaustion than CON barrows but did not differ from other NR barrows (p > 0.11). Barrows in the 45NR treatment did not differ (p = 0.11) in distance from 30NR barrows but tended to have a greater (p = 0.07) distance compared to CON barrows. All other treatment comparisons did not differ (p > 0.27). Barrows in the DRE treatment moved for longer (p < 0.01) than CON barrows, but all other treatments did not differ from each other (p > 0.15). There was no treatment × period interaction for all muscles’ root mean square (RMS) values (p > 0.16), but there were Period effects for all muscles (p < 0.01) and a Treatment effect (p = 0.04) in the TFL. For all muscles, period 4 had greater RMS values than all other periods (p < 0.01), who did not differ from each other (p > 0.29). In the TFL, CON barrows had greater RMS values during the performance test compared to all NR treatments (p < 0.02), who did not differ from each other (p > 0.18). Overall, NR demonstrates potential in being a useful tool in fatigue prevention, but efficient administration of the compound needs further investigation.
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来源期刊
Metabolites
Metabolites Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
5.70
自引率
7.30%
发文量
1070
审稿时长
17.17 days
期刊介绍: Metabolites (ISSN 2218-1989) is an international, peer-reviewed open access journal of metabolism and metabolomics. Metabolites publishes original research articles and review articles in all molecular aspects of metabolism relevant to the fields of metabolomics, metabolic biochemistry, computational and systems biology, biotechnology and medicine, with a particular focus on the biological roles of metabolites and small molecule biomarkers. Metabolites encourages scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on article length. Sufficient experimental details must be provided to enable the results to be accurately reproduced. Electronic material representing additional figures, materials and methods explanation, or supporting results and evidence can be submitted with the main manuscript as supplementary material.
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