首页> 外文期刊>Journal of Molecular Liquids >Drug carrier systems made from self-assembled glyco-nanoparticles of maltoheptaose-b-polyisoprene enhanced the distribution and activity of curcumin against cancer cells
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Drug carrier systems made from self-assembled glyco-nanoparticles of maltoheptaose-b-polyisoprene enhanced the distribution and activity of curcumin against cancer cells

机译:由自组装的丙二酮糖-B-聚异戊二烯制成的药物载体系统增强了姜黄素对癌细胞的分布和活性

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摘要

Controlled self-assembly of polymeric systems behave according to their composition and physical-chemical properties. Inclusion of a guest molecule may influence interactions and response to the media and to other surfaces and bodies, for example, cells. Hence, loading the polymeric system with curcumin (CUR), a natural and anticancer drug, confer interesting features to the carrier material. Micelle formation was achieved, in aqueous solution of carbohydrate-based block copolymer consisting in maltoheptaose-block-polyisoprene (MH-b-PI3.8kDa). by adding a large amount of water (a selective solvent for maltoheptaose, MH) into a solution of well-dissolved MH-b-PI3.8kDa (THF/H2O 9:1 (% w/w)]. Morphology and size (ca. 89 nm) of these glyconanopartides were characterized using light scattering (static and dynamic modes -SLS and DLS) complemented by nanoparticle tracking analysis (NTA), transmission electron microscopy (TEM) and atomic force microscopy (AFM). The lyophilization eff iciency was confirmed by measuring the relation between final and initial diameters (S-f/S-i). CUR was successfully loaded into the nanopartides with an entrapment efficiency of ca. 70%. CUR-charged nanopartides showed stability into simulated gastric and intestinal fluids. Such micelles served as drug delivery system to carry CUR and presented a great role in wiping out unhealthy cells from many sorts. (C) 2020 Published by Elsevier B.V.
机译:聚合物系统的受控自组装根据其组成和物理化学性能行事。包含客体分子可能影响相互作用和对介质和其他表面和体的反应,例如细胞。因此,用姜黄素(CUR),天然抗癌药物,赋予载体材料的有趣特征来加载聚合物系统。胶束形成,在碳水化合物的基于碳水化合物的嵌段共聚物的水溶液中实现,所述嵌段共聚物组成,所述嵌段 - 嵌段 - 聚异戊二烯(MH-B-PI3.8KDA)。通过将大量的水(用于乳葡萄球菌,MH)的水(选择性溶剂)加入溶解的MH-B-PI3.8KDA溶液中(THF / H2O 9:1(%w / w)]。形态和大小(CA使用纳米颗粒跟踪分析(NTA),透射电子显微镜(TEM)和原子力显微镜(AFM),使用光散射(静态和动态模式-SL和DLS)来表征这些甘氨酸氨硅醇的89nm)。冻干效果通过测量最终和初始直径(SF / Si)之间的关系来证实。Ca的夹带效率成功地装入纳米粒子中。70%。Curround纳米粒子显示出模拟胃和肠液的稳定性。这种胶束配合为药物交付系统携带CUR,并在擦除许多种类的不健康细胞中提出了巨大作用。(c)由elsevier bv发布的2020年

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