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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Evaluation of optimum conditions for Achyranthes bidentata polysaccharides encapsulated in cubosomes and immunological activity in vitro
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Evaluation of optimum conditions for Achyranthes bidentata polysaccharides encapsulated in cubosomes and immunological activity in vitro

机译:对衔接型和免疫活性衔接的achyranths多糖的最佳条件评价

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Cubosomes, as biocompatible carriers in drug delivery systems, consist of curved bicontinuous lipid bilayers. With a honeycombed structure divided into two internal aqueous channels, cubosomes could be used for many bioactive ingredients. Achyranthes bidentata polysaccharides (ABPs) are isolated from the roots of Achyranthes bidentata, used in Chinese herbal medicine, and present a noticeable effect as an immunomodulator. This study investigates the optimal preparation of combined cubosome-ABP (Cub-ABP) nanoparticles using response surface methodology and explores their characteristics and stability. The encapsulation efficiency of optimized Cub-ABPs was 72.59%. In-vitro stability studies demonstrated the stability of Cub-ABPs and cubosome nanoparticles without ABPs; both were stable for up to 25 days. Safe concentrations of Cub-ABPs and cubosome nanoparticles without ABPs are 104.06 mu g/mL and 208.13 mu g/mL with comparatively low cytotoxicity against lymphocytes. Moreover, the feasible immunomodulatory effects of Cub-ABPs were determined by evaluating their proliferation and change of CD4(+)/CD8(+) ratio on splenic lymphocytes in vitro. Proliferation and flow cytometry studies revealed that, compared with free ABPs and blank cubosomes, Cub-ABPs proved more effective in promoting lymphocyte proliferation and in triggering the transformation of T-Iymphocytes into T-h-cells. (C) 2017 Elsevier B.V. All rights reserved.
机译:作为药物递送系统中的生物相容性载体的缔约肌组成,由弯曲的双连续脂质双层。蜂窝状结构分为两个内部水道,可用于许多生物活性成分。 achyranthes二碳脂(Abps)与中药药中使用的achyranthes Bidata的根源分离出来,并作为免疫调节剂呈现明显的效果。本研究研究了使用响应表面方法的最佳制剂组合的缔约方组-ABP(CUB-ABP)纳米颗粒,探讨其特征和稳定性。优化幼崽ABP的封装效率为72.59%。体外稳定性研究证明了幼崽和缔约方组纳米颗粒的稳定性而没有ABPS;两者均稳定长达25天。没有ABPS的幼崽和立方体纳米颗粒的安全浓度为104.06μg/ ml,208.13μg/ ml,对淋巴细胞进行相对低的细胞毒性。此外,通过在体外评价它们对脾淋巴细胞的增殖和变化来确定幼崽ABP的可行免疫调节效应。扩散和流式细胞术研究表明,与游离ABP和空白立方体相比,幼崽ABP在促进淋巴细胞增殖和触发T-inymphocytes转化为T-H细胞中的更有效。 (c)2017年Elsevier B.V.保留所有权利。

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