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首页> 外文期刊>International Journal of Polymer Science >Design of an Emulgel-Type Cosmetic with Antioxidant Activity Using Active Essential Oil Microcapsules of Thyme (Thymus vulgaris L.), Cinnamon (Cinnamomum verum J.), and Clove (Eugenia caryophyllata T.)
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Design of an Emulgel-Type Cosmetic with Antioxidant Activity Using Active Essential Oil Microcapsules of Thyme (Thymus vulgaris L.), Cinnamon (Cinnamomum verum J.), and Clove (Eugenia caryophyllata T.)

机译:使用百里香百里香(胸腺vulum J.),肉桂(肉桂瘤J.)和丁香(Eugenia Caryophyllata T.)设计抗氧化活性的抗氧化活性的设计与抗氧化剂活性

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摘要

Essential oils (EO) are complex mixtures of biosynthesized chemicals basically by plants, which provide them their characteristic aroma. Many have biologically recognized activities as antioxidants and anti-inflammatory among others, and many of them are employed as cosmetic actives. Very often, these properties are not fully exploited because of their high volatility and tendency to oxidize, so it is necessary to attach them to a conveyor to provide them adequate stabilization and lifetime. One of the best alternatives to carry out this is microencapsulation, for which natural biopolymers can be used, such as the starches. Therefore, it used EO of thyme, cinnamon, and clove, which were obtained by conventional and assisted hydrodistillation by microwave radiation from the plant material. The chemical composition was evaluated by gas chromatography/mass spectrometry (GC/MS). The radical scavenging ability was determined by antiradical activity techniques including DPPH (2,2-diphenyl-1-picrylhydrazyl) and ABTS (2,2-azino-bis-(3-ethylthiazoline-benzenesulfonic acid-6)), and the ORAC method was used for determining the antioxidant capacity. Also, starches of yam (D. rotundata), sweet potato (I. batatas), corn (Z. mays), and cassava (M. esculenta) were used, which were subjected to hydrolysis and lipophilization processes using dodecenyl succinic anhydride (DDSA); this chemical process achieves a significant increase in emulsifier capacity (surfactant) compared to its native state; that of cassava was the most promising starch which was used as an EO microencapsulating agent. Finally, from the EO microcapsules, an emulgel-type cosmetic was designed which maintained its antioxidant activity. The results of this work contribute to the development of stable and functional cosmetic formulations of essential oils, emphasizing that the extraction of EO by assisted microwave radiation hydrodistillation is considered a fast, efficient, green, and relatively economical method compared to conventional hydrodistillation.
机译:精油(EO)基本上是由植物基本上的生物合成化学品的复杂混合物,这为它们提供了它们的特征性香气。许多人在其它抗氧化剂和抗炎等方面具有生物学认可的活动,其中许多人被雇用为美容活性物质。通常,由于它们的高波动性和氧化倾向,这些性质通常不会被充分利用,因此必须将它们连接到输送机以提供足够的稳定和寿命。进行这一点的最佳替代方案之一是微胶囊,可以使用天然生物聚合物,例如淀粉。因此,它使用百里香,肉桂和丁香的EO,通过从植物材料的微波辐射通过常规和辅助氢化蒸馏而获得。通过气相色谱/质谱(GC / MS)评价化学成分。通过包括DPPH(2,2-二苯基-1-富铬酰基)和ABTS(2,2-唑苯基 - (3-乙基噻唑胺 - 苯磺酸-6))的抗静态活性技术确定了激进的清除能力,以及orac方法用于确定抗氧化能力。此外,使用山药(D.圆形数据),甘薯(棉絮),玉米(Z.Mays)和Cassava(M.Suculula)的淀粉,使用十二烯基琥珀酸酐(DDSA)进行水解和亲脂化方法(DDSA );与其天然国家相比,该化学方法达到乳化剂容量(表面活性剂)的显着增加;木薯的是最有前途的淀粉,用作EO微胶囊化剂。最后,从EO微胶囊中设计,设计了铸造型化妆品,其保持其抗氧化活性。这项工作的结果有助于开发精油的稳定和功能化妆品配方,强调通过辅助微波辐射氢化物的EO提取被认为是与常规氢化物相比的快速,高效,绿色和相对经济的方法。

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    Univ Cartagena Res Technol Pharmaceut Cosmet &

    Food Grp GITFCA Fac Pharmaceut Sci Cartagena Indias DT&

    C Cartagena Colombia;

    Univ Cartagena Res Technol Pharmaceut Cosmet &

    Food Grp GITFCA Fac Pharmaceut Sci Cartagena Indias DT&

    C Cartagena Colombia;

    Univ Cartagena Grp Invest Ingn Fluidos Complejos &

    Reol Alimento Fac Engn Cartagena Indias DT&

    C Cartagena Colombia;

    Univ Sucre Res Med &

    Pharmaceut Sci Grp Sch Hlth Sci Dept Med Sincelejo 700003 Sucre Colombia;

    Res Innovat &

    Biotechnol Grp GIBEI SENA Ctr Commerce &

    Serv Cartagena Indias DT&

    C Cartagena Colombia;

    Univ Cartagena Fac Engn Res Multifunct Nanomat Grp Cartagena Indias DT&

    C Cartagena 130015 Colombia;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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