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Mucoadhesive and Rheological Studies on the Co-Hydrogel Systems of Poly(Ethylene Glycol) Copolymers with Fluoroalkyl and Poly(Acrylic Acid)

机译:氟代烷基和聚(丙烯酸)与聚(乙二醇)共聚物共聚胶凝系统的粘膜粘附和流变研究

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摘要

A self-assembled co-hydrogel system with sol-gel two-phase coexistence and mucoadhesive properties was developed based on the combined properties of fluoroalkyl double-ended poly(ethylene glycol) (Rf-PEG-Rf) and poly(acrylic acid) (PAA), respectively. We have synthesized an Rf-PEG-g-PAA (where g denotes grafted) copolymer and integrated it into the Rf-PEG-Rf physically cross-linked micellar network to form a co-hydrogel system. Tensile strengths between the co-hydrogel surfaces and two different sets of mucosal surfaces were acquired. One mucosal surface was made of porcine stomach mucin Type II, while the other one is a pig small intestine. The experimental results show that the largest maximum detachment stresses (MDSs) were obtained when the Rf-PEG-g-PAA’s weight percent in the dehydrated polymer mixture is ~15%. Tensile experiments also found that MDSs are greater in acidic conditions (pH = 4–5) (123.3 g/cm2 for the artificial mucus, and 43.0 g/cm2 for pig small intestine) and basic conditions (pH = 10.6) (126.9 g/cm2, and 44.6 g.cm2, respectively) than in neutral pH (45.4 g/cm2, and 30.7 g.cm2, respectively). Results of the rheological analyses using shear strain amplitude sweep and frequency sweep reveal that the Rf-PEG-g-PAA was physically integrated into the Rf-PEG-Rf micellar network, and the co-hydrogels remain physically cross-linked in three-dimensional micellar networks with long-term physical dispersion stability. Therefore, the co-hydrogel system is promising for drug delivery applications on mucosal surfaces.
机译:基于氟代烷基双端聚(乙二醇)(RF-PEG-RF)和聚(丙烯酸)的组合性,开发了一种具有溶胶 - 凝胶两相共存和粘膜粘附性质的自组装的共水凝胶系统。 PAA)分别。我们已经合成了RF-PEG-G-PAA(其中G表示接枝)共聚物并将其集成到物理交联胶束网络中以形成共水凝胶系统。获得了共水凝胶表面和两组不同的粘膜表面之间的拉伸强度。一张粘膜表面由猪胃粘蛋白II型,而另一个是猪小肠。实验结果表明,当脱水聚合物混合物中的RF-PEG-G-PAA的重量百分比为约15%时,获得最大的最大脱离应力(MDS)。拉伸实验还发现,MDSS在酸性条件下更大(pH = 4-5)(用于人工粘液的123.3g / cm 2,猪小肠43.0g / cm 2)和碱性条件(pH = 10.6)(126.9克/ CM2和44.6 g.cm2分别比中性pH(45.4g / cm 2和30.7g.cm2)分别为中。使用剪切应变幅度扫描和频率扫描的流变分析结果表明,RF-PEG-G-PAA物理整合到RF-PEG-RF胶束网络中,并且共水凝胶在三维中仍然物理交联。胶束网络具有长期物理色散稳定性。因此,共水凝胶系统对粘膜表面上的药物递送应用是有前途的。

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