PLE, Pressurized liquid extraction

PLE,加压液体萃取
  • 文章类型: Journal Article
    辣木。(M.oleiferaLam)是一种多年生的热带落叶树,属于辣根科。多糖是油茶中主要的生物活性化合物之一,抗癌,抗氧化剂,肠道健康保护和抗糖尿病活性。目前,油茶多糖(MOPs)的结构和功能活性得到了广泛的研究,但是研究数据相对分散。此外,MOPs的结构与生物活性之间的关系尚未总结。在这次审查中,目前对提取的研究,净化,综述了不同来源油茶多糖的结构特征和生物活性,本文对纯化多糖的结构特征进行了综述。同时,介绍了MOPs的生物活性,并列举了一些分子机制。此外,讨论了MOPs的结构与生物活性之间的关系。此外,本文对油茶多糖的研究提出了新的观点和未来的研究方向。
    Moringa oleifera Lam. (M. oleifera Lam) is a perennial tropical deciduous tree that belongs to the Moringaceae family. Polysaccharides are one of the major bioactive compounds in M. oleifera Lam and show immunomodulatory, anticancer, antioxidant, intestinal health protection and antidiabetic activities. At present, the structure and functional activities of M. oleifera Lam polysaccharides (MOPs) have been widespread, but the research data are relatively scattered. Moreover, the relationship between the structure and biological activities of MOPs has not been summarized. In this review, the current research on the extraction, purification, structural characteristics and biological activities of polysaccharides from different sources of M. oleifera Lam were summarized, and the structural characteristics of purified polysaccharides were focused on this review. Meanwhile, the biological activities of MOPs were introduced, and some molecular mechanisms were listed. In addition, the relationship between the structure and biological activities of MOPs was discussed. Furthermore, new perspectives and some future research of M. oleifera Lam polysaccharides were proposed in this review.
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  • 文章类型: Journal Article
    近端成分,氨基酸,碳水化合物,这里评估了咖啡(Bunchosiaglandulifera)种子粉的挥发性特征。还对种子进行以下提取过程:一种是加压乙醇(PLE),两种是在不同温度和压力(SC1和SC2)下的乙醇超临界CO2混合物。提取物以咖啡因为特征,总酚,和δ-内酰胺。caferana种子及其提取物的特征在碳水化合物和挥发物方面是前所未有的,除了δ-内酰胺鉴定/分离。SC2提取物表现出更高的咖啡因(9.3mg/g)和δ-内酰胺(29.4mg/g)含量,而PLE提取物含有较高的总酚含量(3.0mgGAE/g)。Caferana在区域上与对心理健康的保护作用相关。它的副产品(种子)被证明是生物活性化合物的有希望的来源,以及可以掺入药物的营养提取物和面粉的潜在原料,营养食品,化妆品,和食品。
    The proximal composition, amino acid, carbohydrate, and volatile profiles of caferana (Bunchosia glandulifera) seeds flour were here assessed. Seeds were also subjected to the following extraction processes: one with pressurized ethanol (PLE) and two with ethanol + supercritical CO2 mixture at different temperatures and pressures (SC1 and SC2). Extracts were characterized in terms of caffeine, total phenolic, and δ-lactam. The characterization of caferana seed and its extracts is unprecedented in terms of carbohydrate and volatiles profiles, besides the δ-lactam identification/isolation. SC2 extract exhibited a higher caffeine (9.3 mg/g) and δ-lactam (29.4 mg/g) content, whereas the PLE extract contained a higher total phenolic amount (3.0 mgGAE/g). Caferana is regionally associated to protective effects on mental health. Its byproduct (seed) revealed to be a promising source of bioactive compounds, and a potential raw material of nutritive extracts and flours that can be incorporated into pharmaceutical, nutraceutical, cosmetic, and food products.
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