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一种鱼源蛋白水解物在使用体外人血清的体外细胞模型中诱导餐后氨基酸血症和骨骼肌合成代谢。

A Fish-Derived Protein Hydrolysate Induces Postprandial Aminoacidaemia and Skeletal Muscle Anabolism in an In Vitro Cell Model Using Ex Vivo Human Serum.

作者信息

Lees Matthew J, Nolan David, Amigo-Benavent Miryam, Raleigh Conor J, Khatib Neda, Harnedy-Rothwell Pádraigín, FitzGerald Richard J, Egan Brendan, Carson Brian P

机构信息

Department of Physical Education and Sport Sciences, Faculty of Education and Health Sciences, University of Limerick, V94 T9PX Limerick, Ireland.

School of Health and Human Performance, Dublin City University, D09 V209 Dublin, Ireland.

出版信息

Nutrients. 2021 Feb 17;13(2):647. doi: 10.3390/nu13020647.

Abstract

Fish-derived proteins, particularly fish protein hydrolysates (FPH), offer potential as high-quality sources of dietary protein, whilst enhancing economic and environmental sustainability. This study investigated the impact of a blue whiting-derived protein hydrolysate (BWPH) on aminoacidaemia in vivo and skeletal muscle anabolism in vitro compared with whey protein isolate (WPI) and an isonitrogenous, non-essential amino acid (NEAA) control (0.33 g·kg·body mass) in an ex vivo, in vitro experimental design. Blood was obtained from seven healthy older adults (two males, five females; age: 72 ± 5 years, body mass index: 24.9 ± 1.6 kg·m) in three separate trials in a randomised, counterbalanced, double-blind design. C2C12 myotubes were treated with ex vivo human serum-conditioned media (20%) for 4 h. Anabolic signalling (phosphorylation of mTOR, p70S6K, and 4E-BP1) and puromycin incorporation were determined by immunoblotting. Although BWPH and WPI both induced postprandial essential aminoacidaemia in older adults above the NEAA control, peak and area under the curve (AUC) leucine and essential amino acids were more pronounced following WPI ingestion. Insulin was elevated above baseline in WPI and BWPH only, a finding reinforced by higher peak and AUC values compared with NEAA. Muscle protein synthesis, as measured by puromycin incorporation, was greater after incubation with WPI-fed serum compared with fasted serum ( = 0.042), and delta change was greater in WPI ( = 0.028) and BWPH ( = 0.030) compared with NEAA. Myotube hypertrophy was greater in WPI and BWPH compared with NEAA (both = 0.045), but was similar between bioactive conditions ( = 0.853). Taken together, these preliminary findings demonstrate the anabolic potential of BWPH in vivo and ex vivo, thus providing justification for larger studies in older adults using gold-standard measures of acute and chronic MPS in vivo.

摘要

鱼类衍生蛋白,特别是鱼蛋白水解物(FPH),具有作为优质膳食蛋白来源的潜力,同时还能提高经济和环境可持续性。本研究采用体外、体内实验设计,比较了蓝鳕鱼蛋白水解物(BWPH)与乳清蛋白分离物(WPI)以及等氮非必需氨基酸(NEAA)对照(0.33 g·kg体重)对体内氨基酸血症和体外骨骼肌合成代谢的影响。在三项独立试验中,以随机、平衡、双盲设计从七名健康老年人(两名男性,五名女性;年龄:72±5岁,体重指数:24.9±1.6 kg·m)采集血液。C2C12肌管用体外人血清条件培养基(20%)处理4小时。通过免疫印迹法测定合成代谢信号(mTOR、p70S6K和4E-BP1的磷酸化)和嘌呤霉素掺入情况。尽管BWPH和WPI均能使老年人餐后必需氨基酸血症高于NEAA对照,但摄入WPI后,亮氨酸和必需氨基酸的峰值及曲线下面积(AUC)更为明显。仅WPI和BWPH组的胰岛素水平高于基线,与NEAA相比,更高的峰值和AUC值进一步证实了这一发现。与空腹血清相比,用WPI喂养的血清孵育后,通过嘌呤霉素掺入测定的肌肉蛋白合成增加(P = 0.042),与NEAA相比,WPI(P = 0.028)和BWPH(P = 0.030)的变化差值更大。与NEAA相比,WPI和BWPH组的肌管肥大更明显(均为P = 0.045),但在生物活性条件之间相似(P = 0.853)。综上所述,这些初步研究结果证明了BWPH在体内和体外的合成代谢潜力,从而为在老年人中使用体内急性和慢性肌肉蛋白合成的金标准测量方法进行更大规模的研究提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bc/7922518/98d5aed53e64/nutrients-13-00647-g001.jpg

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