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生理肠道氧合改变肠内分泌细胞系 STC-1 分泌的 GLP-1。

Physiological Gut Oxygenation Alters GLP-1 Secretion from the Enteroendocrine Cell Line STC-1.

机构信息

Food for Health Ireland, Teagasc Food Research Centre, Moorepark, Fermoy, Co. Cork, Ireland.

School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland.

出版信息

Mol Nutr Food Res. 2018 Feb;62(3). doi: 10.1002/mnfr.201700568. Epub 2018 Jan 9.

Abstract

SCOPE

Enteroendocrine cell lines are routinely assayed in simple buffers at ≈20% oxygen to screen foods for bioactives that boost satiety hormone levels. However, in vivo, enteroendocrine cells are exposed to different phases of food digestion and function at low oxygen concentration, ranging from 7.5% in the stomach to 0.5% in the colon-rectal junction.

METHODS AND RESULTS

The objective of this study is to investigate the effect of physiologically relevant O concentrations of the gut on the production and secretion of the satiety hormone, glucagon-like peptide 1 (GLP-1), from the murine enteroendocrine cell line, secretin tumor cell line (STC-1), in response to dairy macronutrients as they transit the gut. GLP-1 exocytosis from STC-1 cells is influenced by both oxygen concentration and by individual macronutrients. At low oxygen, STC-1 cell viability is significantly improved for all macronutrient stimulations and cyclic adenosine monophosphate levels are dampened. GLP-1 secretion from STC-1 cells is influenced by both the phase of yogurt digestion and corresponding O concentration. Atmospheric oxygen at 4.5% combined with upper gastric digesta, which simulates ileum conditions, yields the highest GLP-1 response.

CONCLUSION

This demonstrates the importance of considering physiological oxygen levels and food digestion along gastrointestinal tract for reliable in vitro analysis of gut hormone secretion.

摘要

范围

为了筛选能提高饱腹感激素水平的生物活性物质,通常在 ≈20%氧气的简单缓冲液中检测肠内分泌细胞系。然而,在体内,肠内分泌细胞暴露于不同的食物消化阶段,并在低氧浓度下发挥功能,从胃中的 7.5%到结肠直肠交界处的 0.5%不等。

方法和结果

本研究的目的是研究肠道中与生理相关的 O 浓度对饱腹感激素胰高血糖素样肽 1(GLP-1)产生和分泌的影响,来自鼠肠内分泌细胞系,分泌素肿瘤细胞系(STC-1),以响应在肠道中转运的乳制品宏量营养素。STC-1 细胞中 GLP-1 的胞吐作用既受氧浓度又受单个宏量营养素的影响。在低氧条件下,所有宏量营养素刺激物的 STC-1 细胞活力显著提高,环腺苷单磷酸水平降低。STC-1 细胞分泌 GLP-1 受酸奶消化的阶段和相应的 O 浓度的影响。与模拟回肠条件的上胃消化物相结合的 4.5%大气氧产生最高的 GLP-1 反应。

结论

这表明在体外可靠分析肠道激素分泌时,考虑生理氧水平和沿胃肠道的食物消化非常重要。

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