首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Statistical modelling of the rheological and mucoadhesive properties of aqueous poly(methylvinylether-co-maleic acid) networks: Redefining biomedical applications and the relationship between viscoelasticity and mucoadhesion
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Statistical modelling of the rheological and mucoadhesive properties of aqueous poly(methylvinylether-co-maleic acid) networks: Redefining biomedical applications and the relationship between viscoelasticity and mucoadhesion

机译:水性聚(甲基乙烯基醚-马来酸)网络的流变学和粘膜粘附特性​​的统计模型:重新定义生物医学应用以及粘弹性与粘膜粘附之间的关系

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Poly(methylvinylether-co-maleic acid) (PMVE/MA) is commonly used as a component of pharmaceutical platforms, principally to enhance interactions with biological substrates (mucoadhesion). However, the limited knowledge on the rheological properties of this polymer and their relationships with mucoadhesion has negated the biomedical use of this polymer as a mono-component platform. This study presents a comprehensive study of the rheological properties of aqueous PMVE/MA platforms and defines their relationships with mucoadhesion using multiple regression analysis. Using dilute solution viscometry the intrinsic viscosities of un-neutralised PMVE/MA and PMVE/MA neutralised using NaOH or TEA were 22.32 +/- 0.89 dL g(-1), 274.80 +/- 1.94 dL g(-1) and 416.49 +/- 2.21 dL g(-1) illustrating greater polymer chain expansion following neutralisation using Triethylamine (TEA). PMVE/MA platforms exhibited shear thinning properties. Increasing polymer concentration increased the consistencies, zero shear rate (ZSR) viscosities (determined from flow rheometry), storage and loss moduli, dynamic viscosities (defined using oscillatory analysis) and mucoadhesive properties, yet decreased the loss tangents of the neutralised polymer platforms. TEA neutralised systems possessed significantly and substantially greater consistencies, ZSR and dynamic viscosities, storage and loss moduli, mucoadhesion and lower loss tangents than their NaOH counterparts, Multiple regression analysis enabled identification of the dominant role of polymer viscoelasticity on mucoadhesion (r > 0.98). The mucoadhesive properties of PMVE/MA platforms were considerable and were greater than those of other platforms that have successfully been shown to enhance in vivo retention when applied to the oral cavity, indicating a positive role for PMVE/MA mono-component platforms for pharmaceutical and biomedical applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:聚(甲基乙烯基醚-马来酸)(PMVE / MA)通常用作药物平台的成分,主要是为了增强与生物底物的相互作用(粘膜粘附)。然而,关于这种聚合物的流变性质及其与粘膜粘附的关系的有限知识已经否定了该聚合物作为单组分平台的生物医学用途。这项研究提供了对水性PMVE / MA平台流变特性的全面研究,并使用多元回归分析定义了它们与粘膜粘附的关系。使用稀溶液粘度计,未中和的PMVE / MA和使用NaOH或TEA中和的PMVE / MA的固有粘度分别为22.32 +/- 0.89 dL g(-1),274.80 +/- 1.94 dL g(-1)和416.49 + / 2.21 dL g(-1)说明在使用三乙胺(TEA)中和后,聚合物链扩展更大。 PMVE / MA平台具有剪切稀化特性。聚合物浓度的增加增加了稠度,零剪切速率(ZSR)粘度(由流变学确定),储能和损耗模量,动态粘度(由振荡分析定义)和粘膜粘附特性​​,但降低了中和的聚合物平台的损耗角正切值。与NaOH同行相比,TEA中和的系统具有显着更高的稠度,ZSR和动态粘度,储能和损耗模量,粘膜粘附力和更低的损耗角正切。多元回归分析能够确定聚合物粘弹性在粘膜粘附力中的主导作用(r> 0.98)。 PMVE / MA平台的粘膜粘附特性​​相当可观,并且比其他已成功显示出可增强口腔粘膜在体内的滞留性的平台更好,这表明PMVE / MA单组分平台在制药和制药领域具有积极作用生物医学应用。 (C)2016 Elsevier B.V.保留所有权利。

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