Faculty of Pharmacy and Biochemistry, University of Zagreb, Ante Kovačića 1, 10000 Zagreb, Croatia.
Nutrients. 2020 Feb 29;12(3):669. doi: 10.3390/nu12030669.
Olive pomace is a rich source of biologically active compounds, mainly polyphenols. Recently, an efficient and sustainable cyclodextrin (CD)-enhanced extraction was developed. It enabled a relatively simple formulation of high-quality olive pomace extracts (OPEs) that can be used as alternative sources of olive-derived polyphenols in the nutrition and pharma industries. However, biological effects and nutraceutical potential of OPEs are primarily limited by generally low oral bioavailability of major polyphenols (hydroxytyrosol and its derivatives) that can be significantly influenced by OPE matrix and the presence of CDs in formulation. The major goal of this research was to investigate the impact of complex matrix and different types of CDs on gastrointestinal stability and intestinal permeability of major OPE polyphenols, and provide additional data about mechanisms of absorption and antioxidant activity in gut lumen. Obtained results showed high bioaccessibility but relatively low permeability of OPE polyphenols, which was negatively affected by OPE matrix. CDs improved antioxidant efficiency of tested OPEs and tyrosol gastrointestinal stability. Effects of CDs on permeability and the metabolism of particular OPE polyphenols were CD- and polyphenol-specific.
橄榄渣是生物活性化合物的丰富来源,主要是多酚。最近,开发了一种高效且可持续的环糊精(CD)增强提取方法。它能够相对简单地配方出高质量的橄榄渣提取物(OPE),可作为营养和制药行业中橄榄衍生多酚的替代来源。然而,OPE 的生物效应和营养潜力主要受到主要多酚(羟基酪醇及其衍生物)的口服生物利用度普遍较低的限制,而这些多酚的生物利用度又会受到 OPE 基质和配方中 CD 的显著影响。本研究的主要目的是研究复杂基质和不同类型的 CD 对主要 OPE 多酚在胃肠道中的稳定性和通透性的影响,并提供有关在肠道腔中吸收和抗氧化活性机制的额外数据。研究结果表明,OPE 多酚具有较高的生物可利用性,但相对较低的通透性,而 OPE 基质会对其产生负面影响。CD 提高了测试 OPE 的抗氧化效率和酪醇在胃肠道中的稳定性。CD 对特定 OPE 多酚的通透性和代谢的影响具有 CD 和多酚特异性。