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壳聚糖/聚谷氨酸中空球的大小和电荷对细胞内化、活力和血液相容性的影响。

The influence of size and charge of chitosan/polyglutamic acid hollow spheres on cellular internalization, viability and blood compatibility.

机构信息

Network of Excellence for Functional Biomaterials, IDA Business Park, Dangan, National University of Ireland Galway, Galway, Ireland.

出版信息

Biomaterials. 2010 Nov;31(32):8188-97. doi: 10.1016/j.biomaterials.2010.07.067. Epub 2010 Aug 10.

Abstract

Polymeric hollow spheres can be tailored as efficient carriers of various therapeutic molecules due to their tunable properties. However, the entry of these synthetic vehicles into cells, their cell viability and blood compatibility depend on their physical and chemical properties e.g. size, surface charge. Herein, we report the effect of size and surface charge on cell viability and cellular internalization behaviour and their effect on various blood components using chitosan/polyglutamic acid hollow spheres as a model system. Negatively charged chitosan/polyglutamic acid hollow spheres of various sizes 100, 300, 500 and 1000 nm were fabricated using a template based method and covalently surface modified using linear polyethylene glycol and methoxyethanol amine to create a gradient of surface charge from negative to neutrally charged spheres respectively. The results here suggest that both size and surface charge have a significant influence on the sphere's behaviour, most prominently on haemolysis, platelet activation, plasma recalcification time, cell viability and internalization over time. Additionally, cellular internalization behaviour and viability was found to vary with different cell types. These results are in agreement with those of inorganic spheres and liposomes, and can serve as guidelines for tailoring polymeric solid spheres for specific desired applications in biological and pharmaceutical fields, including the design of nanometer to submicron-sized delivery vehicles.

摘要

聚合物空心球由于其可调的性质,可以作为各种治疗分子的有效载体。然而,这些合成载体进入细胞的能力、细胞活力和血液相容性取决于其物理和化学性质,例如大小、表面电荷。在此,我们报告了大小和表面电荷对细胞活力和细胞内化行为的影响,以及它们对使用壳聚糖/聚谷氨酸空心球作为模型系统的各种血液成分的影响。使用基于模板的方法制备了各种大小(100、300、500 和 1000nm)的带负电荷的壳聚糖/聚谷氨酸空心球,并使用线性聚乙二醇和甲氧基乙醇胺进行共价表面修饰,分别从带负电荷的球创建到中性带电荷的球的表面电荷梯度。结果表明,大小和表面电荷都对球体的行为有显著影响,特别是对溶血、血小板激活、血浆再钙化时间、细胞活力和随时间的内化。此外,还发现细胞内化行为和活力随不同的细胞类型而变化。这些结果与无机球和脂质体的结果一致,可以为针对特定生物和制药领域的特定应用定制聚合物实心球体提供指导,包括设计纳米到亚微米尺寸的给药载体。

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