Valu Mihai-Vlad, Soare Liliana Cristina, Sutan Nicoleta Anca, Ducu Catalin, Moga Sorin, Hritcu Lucian, Boiangiu Razvan Stefan, Carradori Simone
Department of Natural Sciences, Faculty of Science, University of Pitesti, Targu din Vale Street, 110040 Pitesti, Romania.
Regional Research and Development Center for Innovative Materials, University of Pitesti, Products, and Processes from Automotive Industry, 11 Doaga Street, Arges, 110440 Pitesti, Romania.
Foods. 2020 Dec 18;9(12):1889. doi: 10.3390/foods9121889.
is a medicinal fungal species that produces the active biological metabolite erinacine A with strong antioxidant activity. The classical extraction techniques used to date to obtain metabolites from this fungal species require high consumption of resources and energy and, in the end, prove to be expensive and inefficient, especially on a biomedical scale. The aim of this research is based on the development of an ultrasonic extraction (UE) method for the identification and extraction of biological compounds with high antioxidant activity from the mycelia of biomass developed through a solid cultivation process. The extraction process was optimized by varying parameters to determine the best extraction yield of metabolites involved in such antioxidant activity, using the response surface methodology (RSM). The physicochemical analyses were oriented towards the investigation of polyphenols, flavonoids, and the diterpenoid erinacine A. It is highlighted that there is a very good mutual connection between the concentration of polyphenols and flavonoids in the extracts studied and the diterpenoid erinacine A. Also, this study describes an efficient and qualitative extraction method for extracting natural antioxidants from the mushroom, since toxic solvents were not used in the developed extraction procedure. This biomass can be used both as a food source and as a possible phytotherapeutic tool in the prevention or treatment of various neurodegenerative disorders that require drugs with strong antioxidant activity.
是一种药用真菌物种,可产生具有强大抗氧化活性的活性生物代谢物艾瑞纳辛A。迄今为止,用于从该真菌物种中获取代谢物的传统提取技术需要大量的资源和能源消耗,最终被证明成本高昂且效率低下,尤其是在生物医学规模上。本研究的目的是基于开发一种超声提取(UE)方法,用于从通过固体培养过程培育的生物量菌丝体中鉴定和提取具有高抗氧化活性的生物化合物。采用响应面法(RSM),通过改变参数对提取过程进行优化,以确定参与此类抗氧化活性的代谢物的最佳提取产率。理化分析旨在研究多酚、黄酮类化合物和二萜类艾瑞纳辛A。需要强调的是,在所研究的提取物中,多酚和黄酮类化合物的浓度与二萜类艾瑞纳辛A之间存在非常良好的相互联系。此外,本研究描述了一种从该蘑菇中提取天然抗氧化剂的高效且定性的提取方法,因为在开发的提取程序中未使用有毒溶剂。这种生物量既可以用作食物来源,也可以作为一种可能的植物治疗工具,用于预防或治疗各种需要具有强大抗氧化活性药物的神经退行性疾病。