Alfano Alberto, Corsuto Luisana, Finamore Rosario, Savarese Maria, Ferrara Filomena, Falco Salvatore, Santabarbara Giuseppe, De Rosa Mario, Schiraldi Chiara
Department of Experimental Medicine, Section of Biotechnology Medical Histology and Molecular Biology, University of Campania "Luigi Vanvitelli", via L. De Crecchio No. 7, 80138 Napoli, Italy.
Olio DANTE s.p.a., Zona Industriale, 82016 Montesarchio, Italy.
Antioxidants (Basel). 2018 May 23;7(6):72. doi: 10.3390/antiox7060072.
Olive oil boasts numerous health benefits due to the high content of the monounsaturated fatty acid (MUFA) and functional bioactives including tocopherols, carotenoids, phospholipids, and polyphenolics with multiple biological activities. Polyphenolic components present antioxidant properties by scavenging free radicals and eliminating metabolic byproducts of metabolism. The objective of this research project was to recover the biologically active components rich in polyphenols, which include treatment of olive oil mills wastewater, and, at the same time, to remove the pollutant waste component resulting from the olive oil manufacturing processes. With specific focus on using technologies based on the application of ultra and nanofiltration membranes, the polyphenols fraction was extracted after an initial flocculation step. The nano-filtration permeate showed a reduction of about 95% of the organic load. The polyphenols recovery after two filtration steps was about 65% /. The nanofiltration retentate, dried using the spray dryer technique, was tested for cell viability after oxidative stress induction on human keratinocytes model in vitro and an improved cell reparation in the presence of this polyphenolic compound was demonstrated in scratch assays assisted through time lapse video-microscopy. The polyphenols recovered from these treatments may be suitable ingredients in cosmeceuticals and possibly nutraceutical preparations or functional foods.
橄榄油因富含单不饱和脂肪酸(MUFA)以及生育酚、类胡萝卜素、磷脂和具有多种生物活性的多酚等功能性生物活性成分而具有众多健康益处。多酚成分通过清除自由基和消除代谢副产物而具有抗氧化特性。本研究项目的目的是回收富含多酚的生物活性成分,其中包括处理橄榄油厂废水,同时去除橄榄油制造过程中产生的污染物废料成分。特别关注基于超滤和纳滤膜应用的技术,在初步絮凝步骤后提取多酚部分。纳滤渗透液的有机负荷降低了约95%。经过两步过滤后多酚的回收率约为65%。使用喷雾干燥技术干燥的纳滤截留物,在体外对人角质形成细胞模型进行氧化应激诱导后测试细胞活力,并通过延时视频显微镜辅助的划痕试验证明在存在这种多酚化合物的情况下细胞修复得到改善。从这些处理中回收的多酚可能是药妆品以及可能的营养保健品制剂或功能性食品中的合适成分。