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肠刷状缘膜中的肽酶对乳清蛋白水解物中寡肽吸收的影响:使用尤斯灌流小室的离体研究

The Influence of Peptidases in Intestinal Brush Border Membranes on the Absorption of Oligopeptides from Whey Protein Hydrolysate: An Ex Vivo Study Using an Ussing Chamber.

作者信息

Ozorio Luísa, Mellinger-Silva Caroline, Cabral Lourdes M C, Jardin Julien, Boudry Gaelle, Dupont Didier

机构信息

Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21044020, Brasil.

EMBRAPA Agroindústria de Alimentos, Rio de Janeiro 23020470, Brasil.

出版信息

Foods. 2020 Oct 7;9(10):1415. doi: 10.3390/foods9101415.

DOI:10.3390/foods9101415
PMID:33036372
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7601095/
Abstract

For many years, it was believed that only amino acids, dipeptides, and tripeptides could be absorbed and thus reach the bloodstream. Nowadays, the bioavailability of oligopeptides is also considered possible, leading to new research. This pilot study investigates the activity of brush border enzymes on undigested whey protein hydrolysate (WPH) and on simulated intestinal digested (ID) whey hydrolysate and the subsequent absorption of resultant peptides through the proximal jejunum of a 7-week old piglet setup in an Ussing chamber model. Amongst all samples taken, 884 oligopeptides were identified. The brush border peptidase activity was intense in the first 10 min of the experiment, producing several new peptides in the apical compartment. With respect to the ID substrate, 286 peptides were detected in the basolateral compartment after 120 min of enzyme activity, originating from β-lactoglobulin (60%) and β-casein (20%). Nevertheless, only 0.6 to 3.35% of any specific peptide could pass through the epithelial barrier and thus reach the basolateral compartment. This study demonstrates transepithelial jejunum absorption of whey oligopeptides in an ex vivo model. It also confirmed the proteolytic activity of brush border enzymes on these oligopeptides, giving birth to a myriad of new bioactive peptides available for absorption.

摘要

多年来,人们一直认为只有氨基酸、二肽和三肽能够被吸收并进入血液循环。如今,寡肽的生物利用度也被认为是可能的,这引发了新的研究。这项初步研究调查了刷状缘酶对未消化的乳清蛋白水解物(WPH)和模拟肠道消化(ID)的乳清水解物的活性,以及随后在Ussing室模型中通过7周龄仔猪的空肠近端对所得肽的吸收情况。在所有采集的样本中,共鉴定出884种寡肽。在实验的前10分钟,刷状缘肽酶活性很强,在顶端隔室产生了几种新的肽。对于ID底物,在酶活性120分钟后,在基底外侧隔室检测到286种肽,它们来源于β-乳球蛋白(60%)和β-酪蛋白(20%)。然而,任何特定肽中只有0.6%至3.35%能够穿过上皮屏障并进入基底外侧隔室。这项研究在体外模型中证明了乳清寡肽可经空肠上皮吸收。它还证实了刷状缘酶对这些寡肽的蛋白水解活性,产生了大量可供吸收的新的生物活性肽。

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The Influence of Peptidases in Intestinal Brush Border Membranes on the Absorption of Oligopeptides from Whey Protein Hydrolysate: An Ex Vivo Study Using an Ussing Chamber.肠刷状缘膜中的肽酶对乳清蛋白水解物中寡肽吸收的影响:使用尤斯灌流小室的离体研究
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