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Transepithelial transport of dry-cured ham peptides with ACE inhibitory activity through a Caco-2 cell monolayer

机译:通过ACE抑制活性的干固化火腿肽经上皮运输通过Caco-2细胞单层

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摘要

Angiotensin converting enzyme (ACE) inhibitory peptides have been extensively studied as an alternative to synthetic drugs for the treatment of hypertension. Recent studies have shown that dry-cured ham is an important source of naturally generated bioactive peptides, especially showing ACE inhibitory activity. However, due to their excessive degradation by digestive and brush-border enzymes, it is not clear whether these peptides resist intestinal absorption and reach the blood stream where they may exert their antihypertensive effect. Therefore, dry-cured ham extracts and specific pure peptides naturally generated during the dry-curing process, showing ACE inhibitory activity, have been studied for their stability during transepithelial transport in a Caco-2 cell monolayer. The ACE inhibitory activity of transport samples was assayed, showing the highest values in apical samples at 15 min of incubation. In concentrated basal solutions, ACE inhibition values increased during transport for purified peptides, reaching values close to 70% for AAPLAP and KPVAAP at 60 min of cellular transport. Fragments generated by cellular activity were detected by using tandem mass spectrometry techniques, showing that AAATP, AAPLAP, and KPVAAP were hydrolysed during the transport, although KPVAAP was also absorbed intact. This study highlights the potential of intact dry-cured ham peptides as well as their fragments to be absorbed across the intestinal epithelium and reach the blood stream to exert an antihypertensive action.
机译:作为治疗高血压的合成药物的替代品,已对血管紧张素转换酶(ACE)抑制肽进行了广泛的研究。最近的研究表明,干腌火腿是天然产生的生物活性肽的重要来源,尤其是具有ACE抑制活性。但是,由于它们被消化酶和刷状边界酶过度降解,因此尚不清楚这些肽是否能抵抗肠道吸收并到达血流中,从而发挥降压作用。因此,已经研究了在干固化过程中自然产生的干固化火腿提取物和特定的纯肽,它们具有ACE抑制活性,并在Caco-2细胞单层中经上皮运输过程中具有稳定性。测定了运输样品的ACE抑制活性,在孵育15分钟时,其顶端样品显示出最高值。在浓缩的基础溶液中,ACE抑制值在纯化肽的运输过程中增加,在细胞运输60分钟时达到AAPLAP和KPVAAP的接近70%。使用串联质谱技术检测了由细胞活性产生的碎片,表明AAATP,AAPLAP和KPVAAP在运输过程中被水解,尽管KPVAAP也被完整吸收。这项研究强调了完整的干固化火腿肽及其片段在肠上皮细胞中吸收并到达血流以发挥降压作用的潜力。

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