ω3脂肪酸补充对优秀男性运动员PPARγ和UCP2基因表达水平、血清UCP2蛋白水平、代谢状态和食欲的影响:一项随机对照试验方案

IF 1.1 Q3 SURGERY
International Journal of Surgery Protocols Pub Date : 2021-08-19 eCollection Date: 2021-01-01 DOI:10.29337/ijsp.161
Sara Moradi, Mohamadreza Alivand, Yaser KhajeBishak, Mohamad AsghariJafarabadi, Maedeh Alipour, Amirhosien Faghfouri, Beitullah Alipour
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引用次数: 2

摘要

一些遗传因素可能影响体成分,如PPARγ和UCP2。PPARγ在体脂分布中起重要作用。本研究的目的是确定omega - 3脂肪酸对PPARγ和UCP2基因表达、血脂水平、脂肪量和无脂肪量以及食欲的影响。本随机对照试验共邀请了36名优秀男性运动员志愿者参加。在公开宣布之后,志愿者从伊朗大不里士的健身房、运动队和运动医学委员会招募。收集PPARγ和UCP2基因表达、血脂水平、脂肪量和无脂肪量。数据收集时间点包括基线和3周随访。该研究于2019年10月获得大不里士医科大学伦理委员会批准(IR.TBZMED.REC.1398.782),并于2019年12月19日在伊朗临床试验登记处注册:20190625044008N1。招聘于2019年7月开始,12月结束。截至2019年8月19日,我们筛选了373名志愿者。36人入选。收集参与者的基线测量值。干预三周后,收集研究结束时参与者的测量数据。结果预计将于2021年公布。参与者的中位年龄为21.86岁(±3.15岁)。结果显示,omega3组PPARγ mRNA、UCP2 mRNA和蛋白水平升高(p < 0.05), REE水平升高(p < 0.05)。饥饿感和饱腹感也有显著差异(p < 0.05)。这项研究可能会导致omega-3脂肪酸对PPARγ、UCP2表达、血脂谱和身体成分的影响。此外,该试验的结果可作为开展进一步临床和运动营养研究的基线信息。试验注册:该试验在临床试验网站(www.irct.ir)的伊朗注册中心注册为IRCT20190625044008N1 (https://en.irct.ir/trial/43332),注册日期为(19/12/2019)。欧米茄3脂肪酸作为代谢相关基因的配体,在能量消耗中起作用。补充omega - 3对能量代谢调节因子PPARγ和UCP2 mRNA表达的影响。补充Omega-3脂肪酸可以改变身体成分的变化。对于运动员来说,omega-3脂肪酸可以同时减少脂肪量和增加脂肪量。短期补充omega-3后HDL-C增加。增加omega-3的摄入,会增加能量和蛋白质的摄入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Effect of ω3 Fatty Acids Supplementation on Levels of PPARγ and UCP2 Genes Expression, Serum Level of UCP2 Protein, Metabolic Status, and Appetite in Elite male Athletes: Protocol for a Randomized Control Trial.

The Effect of ω3 Fatty Acids Supplementation on Levels of PPARγ and UCP2 Genes Expression, Serum Level of UCP2 Protein, Metabolic Status, and Appetite in Elite male Athletes: Protocol for a Randomized Control Trial.

The Effect of ω3 Fatty Acids Supplementation on Levels of PPARγ and UCP2 Genes Expression, Serum Level of UCP2 Protein, Metabolic Status, and Appetite in Elite male Athletes: Protocol for a Randomized Control Trial.

The Effect of ω3 Fatty Acids Supplementation on Levels of PPARγ and UCP2 Genes Expression, Serum Level of UCP2 Protein, Metabolic Status, and Appetite in Elite male Athletes: Protocol for a Randomized Control Trial.

Some genetic factors may influence body composition, such as PPARγ and UCP2. PPARγ plays an important role in body fat distribution. The objective of the present study is to determine the effects of omega3 fatty acids on the gene expression of PPARγ and UCP2, levels of blood lipid profile, fat mass, and fat-free mass, and appetite. Elite male athlete volunteers of up to 36 subjects were invited to participate in this RCT. Following a public announcement, volunteers were recruited from gyms, teams, and sports medicine boards in Tabriz, Iran. Gene's expression of PPARγ and UCP2, serum levels of blood lipid profile, fat mass, and fat-free mass was collected. Data collection time points include baseline in addition to 3 weeks follow up. The study was approved by the Ethics Committee of the Tabriz University Medical of Sciences (IR.TBZMED.REC.1398.782) in October 2019 and was registered with the Iranian Registry of Clinical Trials: 20190625044008N1 on December 19, 2019. Recruitment began in July and concluded in December 2019. As of August 19, 2019, we have screened 373 volunteers. 36 were enrolled. Baseline measurements of participants were collected. After three-week of intervention, end study measurements of participants were collected. The results are expected to be released in 2021. Participants have a median age of 21.86 (±3.15). The finding of this study showed Results showed PPARγ mRNA levels, and UCP2 mRNA and protein levels increased in the omega3 group (p < 0.05), as did REE (p < 0.05). Also, differences in the sensation of hunger or satiety were significant (p < 0.05). This study could result in the effects of omega-3 fatty acids on PPARγ, and UCP2 expressions, blood lipid profiles and body composition. In addition, the results of this trial can be used as baseline information for conducting further clinical and sport nutrition studies.

Trial registration: The trial was registered at the Iranian registry of the clinical trial website (www.irct.ir) as IRCT20190625044008N1 (https://en.irct.ir/trial/43332), registered at (19/12/2019).

Highlights: Omega3 fatty acids as a ligand of metabolic-related genes, have a role in energy expenditure.Omega3 supplements effect on PPARγ and UCP2 mRNA expression as regulators of energy metabolismOmega3 supplements increased REE.Omega-3 supplementation could change the changes in body composition.For athletes, omega-3 simultaneously decreased fat mass and increased fat-mass.HDL-C increased after short-term supplementation with omega-3.Increased intake of omega-3, caused increased intake of energy and protein.

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期刊介绍: IJS Protocols is the first peer-reviewed, international, open access journal seeking to publish research protocols across across the full breadth of the surgical field. We are aim to provide rapid submission to decision times whilst maintaining a high quality peer-review process.
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