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Olive Pomace Phenolic Compounds and Extracts Can Inhibit Inflammatory- and Oxidative-Related Diseases of Human Ocular Surface Epithelium

机译:橄榄泡沫酚类化合物和提取物可以抑制人眼表面上皮的炎症和氧化相关的疾病

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摘要

Oxidative- and inflammatory-related ocular surface diseases have high prevalence and are an emerging issue in ophthalmology. Olive pomace (OP) is the olive oil’s industry main by-product, and is potentially environmentally hazardous. Nevertheless, it contains phenolic compounds with important bioactivities, like oleuropein (OL) and hydroxytyrosol (HT). The antioxidant and anti-inflammatory effects of four OP extracts (CONV, OPT(1–3)), pure OL and HT, and mixtures thereof were screened on human corneal (HCE) and conjunctival epithelial (IM-ConjEpi) cells. CONV was conventionally extracted, while OPT(1–3) were produced by pressurized liquid extraction. Thanks to their improved activity, CONV and OPT3 (HT-enriched) were selected for dose-dependent studies. Cells were stimulated with tumor necrosis factor-α or ultraviolet-B radiation, measuring interleukin (IL)-1β, IL-6, IL-8, and IL-17A as well as interferon γ-induced protein [IP]-10 secretion or intracellular ROS production, respectively. On HCE, both extracts and HT inhibited the secretion of most measured ILs, demonstrating a strong anti-inflammatory effect; while in IM-ConjEpi, all samples decreased IP-10 secretion. Moreover, HT, OL, and both extracts showed strong dose-dependent antioxidant activity in both cell lines. Compared with CONV, OPT3 was active at lower concentrations, demonstrating that intensified extraction techniques are selective towards targeted biomarkers. Hence, a high-value application as potential ocular surface therapy was proposed for the OP valorization.
机译:氧化和炎症相关的眼部疾病具有很高的患病率,并且是眼科的新兴问题。 Olive Pomace(OP)是橄榄油的行业主要副产物,具有潜在的环境危险。然而,它含有具有重要生物活性的酚类化合物,如Oleuropein(OL)和羟基吡咯(HT)。四种OP提取物(CONV,OPT(1-3)),纯OL和HT的抗氧化和抗炎作用及其混合物在人的角膜(HCE)和结膜上皮(IM-COMPEPI)细胞上进行筛选。通常提取CONV,同时通过加压液体提取制备OPT(1-3)。由于它们改善了活性,选择了DESE依赖性研究选择了CONV和OPT3(HTICHED)。用肿瘤坏死因子-α或紫外-b辐射刺激细胞,测量白细胞介素(IL)-1β,IL-6,IL-8和IL-17A以及干扰素γ诱导的蛋白[IP] -10分泌或分泌细胞内ROS生产分别。在HCE上,提取物和HT都抑制了大多数测量IL的分泌,证明了强烈的抗炎作用;虽然在IM-HOMEPI中,所有样品都减少了IP-10分泌。此外,HT,OL和两种提取物在两种细胞系中显示出强烈的剂量依赖性抗氧化活性。与CONV相比,OPT3以较低浓度为活性,证明强化的提取技术对靶向生物标志物选择性。因此,提出了作为潜在眼表面疗法的高价值应用,用于OP算法。

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