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Insulinotropic properties of whey protein hydrolysates and impact of peptide fractionation on insulinotropic response.

机译:乳清蛋白水解物的促胰岛素特性和肽分级分离对促胰岛素反应的影响。

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摘要

The influence of different substrates and the effect of pH regulation during enzymatic hydrolysis of whey protein on glucose-stimulated insulin secretion by BRIN-BD11 pancreatic beta cells were studied. No significant differences (P >= 0.05) were detected in terms of glucose-stimulated insulin secretion by BRIN-BD11 pancreatic beta cells exposed to whey protein hydrolysates (WPH1 and WPH2) obtained with two different whey protein substrates. The whey protein hydrolysate (WPH3) obtained without pH regulation during hydrolysis, had a significantly lower insulinotropic potential in BRIN-BD11 cells than the WPH1 hydrolysate that was manufactured with pH regulation. Fractionation of WPH1 was carried out to enrich bioactive peptides. Comparing the different fractionation techniques studied (solid-phase extraction and semi-preparative reverse phase-high performance liquid chromatography), the most potent insulinotropic fraction was enriched in free amino acids and contained relatively hydrophilic peptides. This indicates that amino acids and hydrophilic peptides may be involved in the insulinotropic effect of WPH1.
机译:研究了乳清蛋白酶促水解过程中不同底物的影响以及pH调节对BRIN-BD11胰岛β细胞葡萄糖刺激的胰岛素分泌的影响。在暴露于两种不同乳清蛋白底物的乳清蛋白水解物(WPH1和WPH2)暴露的BRIN-BD11胰岛β细胞的葡萄糖刺激的胰岛素分泌方面,未检测到显着差异(P> = 0.05)。水解过程中不受pH调节的乳清蛋白水解物(WPH3)在BRIN-BD11细胞中的促胰岛素潜力明显低于通过pH调节制造的WPH1水解产物。进行WPH1分离以富集生物活性肽。比较研究的不同分馏技术(固相萃取和半制备反相高效液相色谱),最有效的促胰岛素馏分富含游离氨基酸,并包含相对亲水的肽。这表明氨基酸和亲水性肽可能与WPH1的促胰岛素作用有关。

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