首页> 外文期刊>Molecular pharmaceutics >Polysaccharide Submicrocarrier for Improved Pulmonary Delivery of Poorly Soluble Anti-infective Ciprofloxacin: Preparation, Characterization, and Influence of Size on Cellular Uptake
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Polysaccharide Submicrocarrier for Improved Pulmonary Delivery of Poorly Soluble Anti-infective Ciprofloxacin: Preparation, Characterization, and Influence of Size on Cellular Uptake

机译:多糖潜水载体,用于改善肺部递送抗性抗感染性环丙沙星的肺部递送:制备,表征和大小对细胞摄取的影响

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摘要

The majority of the currently used and developed anti-infectives are poorly water-soluble molecules. The poor solubility might lead to limited bioavailability and pharmacological action of the drug. Novel pharmaceutical materials have thus been designed to solve those problems and improve drug delivery. In this study, we propose a facile method to produce submicrocarriers (sMCs) by electrostatic gelation of anionic ?-cyclodextrin (a?-CD) and chitosan. The average hydrodynamic size ranged from 400 to 900 nm by carefully adjusting polymer concentrations and N/C ratio. The distinct host–guest reaction of cyclodextrin derivative is considered as a good approach to enhance solubility, and prevent drug recrystallization, and thus was used to develop sMC to improve the controlled release profile of a poorly soluble and clinically relevant anti-infective ciprofloxacin. The optimal molar ratio of ciprofloxacin to a?-CD was found to be 1:1, which helped maximize encapsulation efficiency (~90%) and loading capacity (~9%) of ciprofloxacin loaded sMCs. Furthermore, to recommend the future application of the developed sMCs, the dependence of cell uptake on sMCs size (500, 700, and 900 nm) was investigated in vitro on dTHP-1 by both flow cytometry and confocal microscopy. The results demonstrate that, regardless of their size, an only comparatively small fraction of the sMCs were taken up by the macrophage-like cells, while most of the carriers were merely adsorbed to the cell surface after 2 h incubation. After continuing the incubation to reach 24 h, the majority of the sMCs were found intracellularly. However, the sMCs had been designed to release sufficient amount of drug within 24 h, and the subsequent phagocytosis of the carrier may be considered as an efficient pathway for its safe degradation and elimination. In summary, the developed sMC is a suitable system with promising perspectives recommended for pulmonary extracellular infection therapeutics.
机译:大多数目前使用的和开发的抗感染性是水溶性差的分子。差的溶解度可能导致药物的生物利用度和药物作用有限。因此,新型药物材料设计用于解决这些问题并改善药物递送。在这项研究中,我们提出了一种容易通过阴离子β-环糊精(A -CYCLODEXTRIN(A -CLODEXTRIN(A -CLOD)和壳聚糖的静电凝胶化产生亚壳载体(SMC)。通过小心调节聚合物浓度和N / C比,平均水动力学尺寸范围为400至900nm。环糊精衍生物的明显宿主访客反应被认为是增强溶解度的良好方法,并防止药物重结晶,因此用于开发SMC以改善可溶性和临床相关的抗感染性环丙沙星的控制释放曲线。发现环丙沙星与Aα-Cd的最佳摩尔比为1:1,这有助于最大化包封效率(〜90%)和加载能力(〜9%)加载的SMC。此外,要建议未来发达的SMC的应用,通过流式细胞术和共聚焦显微镜在DTHP-1上体外研究细胞摄取对SMC尺寸(500,700和900nm)的依赖性。结果表明,无论其尺寸如何,巨噬细胞样细胞均占用的唯一相对较小的SMC分数,而大多数载体在孵育后仅被吸附到细胞表面。继续孵育以达到24小时后,大多数SMC都发现细胞内。然而,SMC被设计用于在24小时内释放足够量的药物,并且随后的载体吞噬作用可以被认为是其安全降解和消除的有效途径。总之,发达的SMC是一个合适的系统,具有推荐用于肺细胞外感染治疗的前景。

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