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Preparation and characterization of beta-glucan particles containing a payload of nanoembedded rifabutin for enhanced targeted delivery to macrophages

机译:β-葡聚糖颗粒的制备和表征,该颗粒含有纳米包埋的利福布汀,可增强靶向递送至巨噬细胞的能力

摘要

β-glucan particles (GP) are polymeric carbohydrates, mainly found as components of cell wall fungi, yeast, bacteria and also in cereals such as barley and oat, and have been recently shown to have application in macrophagetargeted drug delivery. The aim of this study was to prepare and characterize GP containing a large payload of Rifabutin (RB), an anti-tuberculosis drug effective against MDR-TB at lower MIC than Rifampicin. GP were prepared from yeast cells by acidic and alkaline extraction were either spray dried or lyophilized, prior to RB loading and alginate sealing. The FTIR and 13C-NMR spectra of the GP confirmed a β-(1→3) linked glucan structure, with a triple-helical conformation. The spray dried GP exhibited better characteristics in terms of uniformity, size range (2.9 to 6.1 μm) and more than 75 % particles were below 3.5 μm. The RP-HPLC analysis of spray dried GP revealed drug entrapment and drug loading up to 81.46 ± 4.9 % and ~40.5 ± 1.9 %, respectively, as compared to those dried by lyophilization. Electron microscopy showed nearly spherical and porous nature of GP, and the presence of drug ‘nanoprecipitates’ filling the pore spaces. The formulation showed adequate thermal stability for pharmaceutical application. The particles were readily phagocytosed by macrophage(s) within 5 min of exposure.Drug release occurred in a sustained manner via diffusion, as the release kinetics best fit for drug release was obtained using Higuchi’s equation. Thus, the spray dried GP-based-formulation technology holds promise for enhanced targeted delivery of anti-TB drug(s) to macrophage within a therapeutic window for the clearance of intracellular bacteria.
机译:β-葡聚糖颗粒(GP)是高分子碳水化合物,主要被发现是细胞壁真菌,酵母,细菌以及谷物(例如大麦和燕麦)的成分,并且最近被证明可用于以巨噬细胞为靶点的药物递送。这项研究的目的是制备和表征含有大量有效成分利福布汀(RB)的GP,这是一种抗肺结核药物,在比MIC更低的MIC时对MDR-TB有效。通过酸性和碱性提取从酵母细胞中制备GP,将其喷雾干燥或冻干,然后加入RB和藻酸盐密封。 GP的FTIR和13C-NMR光谱证实了β-(1→3)连接的葡聚糖结构,具有三螺旋构象。喷雾干燥的GP在均匀性,尺寸范围(2.9至6.1μm)方面表现出更好的特性,并且超过75%的颗粒低于3.5μm。喷雾干燥的GP的RP-HPLC分析显示,与冻干干燥的药物相比,药物截留和载药量分别高达81.46±4.9%和〜40.5±1.9%。电子显微镜显示GP具有近乎球形和多孔的性质,并且药物“纳米沉淀”的存在填充了孔隙。该制剂显示出足够的热稳定性以用于药物应用。暴露后5分钟内,这些颗粒很容易被巨噬细胞吞噬。药物的扩散以持续方式通过扩散发生,因为使用Higuchi方程获得了最适合药物释放的释放动力学。因此,基于GP的喷雾干燥制剂技术有望在治疗窗口内将抗TB药物靶向靶向递送至巨噬细胞以清除细胞内细菌。

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