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含(1→6)-β-d-葡聚糖包封微球的制剂:生产与特性。

Encapsulated Microparticles of (1→6)-β-d-Glucan Containing Extract of : Production and Characterization.

机构信息

Chemistry Department, Universidade Estadual do Centro Oeste, Rua Simeão Varela de Sá, 03, Vila Carli, CEP, Guarapuava, PR 85040-080, Brazil.

Chemistry Department, Universidade Tecnológica Federal do Paraná, Via do Conhecimento, Km 1, CEP, Pato Branco, PR 85503-390, Brazil.

出版信息

Molecules. 2019 Jun 3;24(11):2099. doi: 10.3390/molecules24112099.

Abstract

β-Glucans are biomacromolecules well known, among other biological activities, for their immunomodulatory potential. Similarly, extracts of also possess biological properties and are used in folk medicine for the treatment of inflammation, ulcers, and hepatic diseases. Microparticles containing (1→6)-β-d-glucan (lasiodiplodan) and extract were produced and characterized. A 2 factorial design was employed to define the conditions of production of microparticles by atomization. Lasiodiplodan associated with maltodextrin and gum arabic was studied as a matrix material. Microparticles of 0.4 μm mean size and high phenolics content (3157.9 μg GAE/g) were obtained under the optimized conditions. The microparticle size ranged from 0.23 to 1.21 µm, and the mathematical model that best represented the release kinetics of the extract was the Korsmeyer-Peppas model. Diffusional exponent (n) values of 0.64 at pH 7.7 and 1.15 at pH 2.61 were found, indicating particles with a non-Fickian or anomalous transport system, and Super Case II transport, respectively. Thermal analysis indicated that the microparticles demonstrated high thermal stability. The X-ray diffraction analyses revealed an amorphous structure, and HPLC-DAD analysis showed microparticles rich in phenolic compounds: caffeic acid, p-coumaric acid, and catechin. The microparticles obtained comprise a new biomaterial with biological potential for applications in different fields.

摘要

β-葡聚糖是一种生物大分子,除其他生物活性外,其还具有免疫调节潜力。同样, 提取物也具有生物特性,并在民间医学中用于治疗炎症、溃疡和肝脏疾病。生产并表征了含有(1→6)-β-d-葡聚糖(拉仙多甙)和 提取物的微粒。采用 2 因子设计来定义通过雾化生产微粒的条件。将拉仙多甙与麦芽糊精和阿拉伯胶一起作为基质材料进行研究。在优化条件下,获得了平均粒径为 0.4μm 且多酚含量高(3157.9μgGAE/g)的微粒。微粒的粒径范围为 0.23-1.21μm,最能代表提取物释放动力学的数学模型是 Korsmeyer-Peppas 模型。在 pH 7.7 时的扩散指数(n)值为 0.64,在 pH 2.61 时为 1.15,表明颗粒具有非菲克或异常传递系统,分别为超二级传递。热分析表明,微粒表现出高热稳定性。X 射线衍射分析显示出无定形结构,HPLC-DAD 分析表明微粒富含酚类化合物:咖啡酸、对香豆酸和儿茶素。所得到的微粒包含一种具有生物潜力的新生物材料,可应用于不同领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a005/6600449/44d10ff043a2/molecules-24-02099-g001.jpg

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