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大麻纤维摄入对运动后肠道通透性的选择性影响:基于代谢组学的分析

Selective Influence of Hemp Fiber Ingestion on Post-Exercise Gut Permeability: A Metabolomics-Based Analysis.

作者信息

Nieman David C, Sakaguchi Camila A, Williams James C, Pathmasiri Wimal, Rushing Blake R, McRitchie Susan, Sumner Susan J

机构信息

Human Performance Laboratory, Appalachian State University, North Carolina Research Campus (NCRC), Kannapolis, NC 28081, USA.

Department of Nutrition, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Nutrients. 2025 Apr 19;17(8):1384. doi: 10.3390/nu17081384.

Abstract

This study investigated the effects of 2-week ingestion of hemp fiber (high and low doses) versus placebo bars on gut permeability and plasma metabolite shifts during recovery from 2.25 h intensive cycling. Hemp hull powder is a rich source of two bioactive compounds, N-trans-caffeoyl tyramine (NCT) and N-trans-feruloyl tyramine (NFT), with potential gut health benefits. The study participants included 23 male and female cyclists. A three-arm randomized, placebo-controlled, double-blind, crossover design was used with two 2-week supplementation periods and 2-week washout periods. Supplement bars provided 20, 5, or 0 g/d of hemp hull powder. Participants engaged in an intensive 2.25 h cycling bout at the end of each of the three supplementation periods. Five blood samples were collected before and after supplementation (overnight fasted state), and at 0 h-, 1.5 h-, and 3 h-post-exercise. Five-hour urine samples were collected pre-supplementation and post-2.25 h cycling after ingesting a sugar solution containing 5 g of lactulose, 100 mg of C mannitol, and 1.9 g of mannitol in 450 mL of water. An increase in the post-exercise lactulose/C mannitol ratio (L:CM) was used as the primary indicator of altered gut permeability. Other outcome measures included muscle damage biomarkers (serum creatine kinase, myoglobin), serum cortisol, complete blood cell counts, and shifts in plasma metabolites using untargeted metabolomics. No trial differences were found for L:CM, cortisol, blood cell counts, and muscle damage biomarkers. Orthogonal partial least-squares discriminant analysis (OPLSDA) showed distinct trial differences when comparing high- and low-dose hemp fiber compared to placebo supplementation (R2Y = 0.987 and 0.995, respectively). Variable Importance in Projection (VIP) scores identified several relevant metabolites, including 3-hydroxy-4-methoxybenzoic acid (VIP = 1.9), serotonin (VIP = 1.5), 5-hydroxytryptophan (VIP = 1.4), and 4-methoxycinnamic acid (VIP = 1.4). Mummichog analysis showed significant effects of hemp fiber intake on multiple metabolic pathways, including alpha-linolenic acid, porphyrin, sphingolipid, arginine and proline, tryptophan, and primary bile acid metabolism. Hemp fiber intake during a 2-week supplementation period did not have a significant effect on post-exercise gut permeability in cyclists (2.25 h cycling bout) using urine sugar data. On the contrary, untargeted metabolomics showed that the combination of consuming nutrient-rich hemp fiber bars and exercising for 135 min increased levels of beneficial metabolites, including those derived from the gut in healthy cyclists.

摘要

本研究调查了连续两周摄入大麻纤维(高剂量和低剂量)与安慰剂棒相比,对2.25小时高强度骑行恢复过程中肠道通透性和血浆代谢物变化的影响。大麻籽壳粉富含两种生物活性化合物,N-反式咖啡酰酪胺(NCT)和N-反式阿魏酰酪胺(NFT),对肠道健康可能有益。研究参与者包括23名男性和女性自行车运动员。采用三臂随机、安慰剂对照、双盲、交叉设计,有两个为期两周的补充期和两周的洗脱期。补充棒提供20、5或0克/天的大麻籽壳粉。在三个补充期结束时,参与者进行了2.25小时的高强度骑行。在补充前后(过夜禁食状态)以及运动后0小时、1.5小时和3小时采集了五份血样。在摄入含有5克乳果糖、100毫克C-甘露醇和1.9克甘露醇的450毫升糖水后,在补充前和2.25小时骑行后采集五小时尿液样本。运动后乳果糖/C-甘露醇比值(L:CM)的增加被用作肠道通透性改变的主要指标。其他结果指标包括肌肉损伤生物标志物(血清肌酸激酶、肌红蛋白)、血清皮质醇、全血细胞计数,以及使用非靶向代谢组学分析血浆代谢物的变化。在L:CM、皮质醇、血细胞计数和肌肉损伤生物标志物方面未发现试验差异。正交偏最小二乘判别分析(OPLSDA)显示,与安慰剂补充相比,高剂量和低剂量大麻纤维补充之间存在明显的试验差异(R2Y分别为0.987和0.995)。投影变量重要性(VIP)评分确定了几种相关代谢物,包括3-羟基-4-甲氧基苯甲酸(VIP = 1.9)、血清素(VIP = 1.5)、5-羟基色氨酸(VIP = 1.4)和4-甲氧基肉桂酸(VIP = 1.4)。鲦鱼分析表明,摄入大麻纤维对多种代谢途径有显著影响,包括α-亚麻酸、卟啉、鞘脂、精氨酸和脯氨酸、色氨酸以及初级胆汁酸代谢。使用尿糖数据,在为期两周的补充期内摄入大麻纤维对自行车运动员运动后的肠道通透性(2.25小时骑行)没有显著影响。相反,非靶向代谢组学表明,在健康的自行车运动员中,食用富含营养的大麻纤维棒并运动135分钟的组合增加了有益代谢物的水平,包括那些源自肠道的代谢物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cba/12030204/64665b289201/nutrients-17-01384-g001.jpg

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