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首页> 外文期刊>Biomacromolecules >Rheological Characterization of Bioadhesive Binary Polymeric Systems Designed as Platforms for Drug Delivery Implants
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Rheological Characterization of Bioadhesive Binary Polymeric Systems Designed as Platforms for Drug Delivery Implants

机译:设计为药物植入植入物平台的生物粘附性二元聚合物体系的流变特性

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This study describes the formulation and characterization of binary interactive polymeric systems,designed as platforms for improved drug delivery to mucosal sites.Binary interactive systems were manufactured containing hydroxyethylcellulose (HEC;1-5% w/w) and polycarbophil (PC;1-5% w/w) at pH 7,and their rheological (flow and dynamic),mechanical,and mucoadhesive properties were characterized,both before and after dilution with phosphate buffered saline (designed to mimic dilution by biological fluids).Physical interactions between HEC and PC were confirmed by the observed rheological synergy.Within the binary interactive systems increasing polymer concentration increased the storage modulus (G'),loss modulus (G"),dynamic viscosity (eta'),hardness,compressibility,consistency,and mucoadhesion yet decreased the loss tangent.This was attributed to enhanced entanglements and interactions between adjacent polymer chains.Dilution with PBS altered the above properties;however,the binary interactive systems,particularly those containing higher concentrations of HEC,still exhibited predominantly elastic properties (high G',low tan delta).In light of this,it is suggested that the rheological and mucoadhesive properties of binary interactive systems composed of HEC (5% w/w) and PC (1-3% w/w) offered particular promise as platforms for topical mucosal drag delivery systems.
机译:这项研究描述了设计为改善药物向粘膜部位递送的平台的二元相互作用聚合物系统的配方和表征。制造了包含羟乙基纤维素(HEC; 1-5%w / w)和聚卡波非(PC; 1-5)的二元相互作用系统在pH值为7的条件下,对磷酸钙缓冲液稀释前后的流变性(流动和动态),机械和粘膜粘附特性​​进行了表征(旨在模拟用生物液体稀释)。通过观察到的流变协同作用证实了PC。在二元相互作用体系中,增加聚合物浓度可增加储能模量(G'),损耗模量(G“),动态粘度(eta'),硬度,可压缩性,稠度和粘膜粘附力,但仍下降损耗角正切。这归因于缠结和相邻聚合物链之间的相互作用增强。用PBS稀释改变了上述特性;但是,二元互活性体系,尤其是那些含有较高HEC浓度的体系,仍然表现出主要的弹性(高G',低tanδ)。有鉴于此,建议由HEC组成的二元相互作用体系的流变和粘膜粘附性能(5%) w / w)和PC(1-3%w / w)作为局部粘膜药物递送系统的平台提供了特别的希望。

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