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Effect of carbopol and polyvinylpyrrolidone on the mechanical, rheological, and release properties of bioadhesive polyethylene glycol gels

机译:卡波姆和聚乙烯吡咯烷酮对生物粘附性聚乙二醇凝胶的机械,流变和释放特性的影响

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摘要

This study examined the mechanical (hardness, compressibility, adhesiveness, and cohesiveness) and rheological (zero-rate viscosity and thixotropy) properties of polyethylene glycol (PEG) gels that contain different ratios of Carbopol 934P (CP) and polyvinylpyrrolidone K90 (PVP). Mechanical properties were examined using a texture analyzer (TA-XT2), and rheological properties were examined using a rheometer (Rheomat 115A). In addition, lidocaine release from gels was evaluated using a release apparatus simulating the buccal condition. The results indicated that an increase in CP concentration significantly increased gel compressibility, hardness, and adhesiveness, factors that affect ease of gel removal from container, ease of gel application onto mucosal membrane, and gel bioadhesion. However, CP concentration was negatively correlated with gel cohesiveness, a factor representing structural reformation. In contrast, PVP concentration as negatively correlated with gel hardness and compressibility, but positively correlated with gel cohesiveness. All PEG gels exhibited pseudoplastic flow with thixotropy, indicating a general loss of consistency with increased shearing stress. Drug release T50% was affected by the flow rate of the simulated saliva solution. A reduction in the flow rate caused a slower drug release and hence a higher T50% value. In addition, drug release was significantly reduced as the concentrations of CP and PVP increased because of the increase in zero-rate viscosity of the gels. Response surfaces and contour plots of the dependent variables further substantiated that various combinations of CP and PVP in the PEG gels offered a wide range of mechanical, rheological, and drug-release characteristics. A combination of CP and PVP with complementary physical properties resulted in a prolonged buccal drug delivery.
机译:这项研究检查了含有不同比例的Carbopol 934P(CP)和聚乙烯吡咯烷酮K90(PVP)的聚乙二醇(PEG)凝胶的机械性能(硬度,压缩性,粘合性和内聚性)和流变特性(零速率粘度和触变性)。使用质地分析仪(TA-XT2)检查机械性能,并使用流变仪(Rheomat 115A)检查流变性能。此外,利多卡因从凝胶中的释放是使用模拟颊颊状态的释放设备进行评估的。结果表明,CP浓度的增加显着提高了凝胶的可压缩性,硬度和粘附性,这些因素影响从容器中去除凝胶的容易程度,凝胶在粘膜上的施用容易程度以及凝胶的生物粘附性。然而,CP浓度与凝胶内聚力呈负相关,凝胶内聚是代表结构重建的一个因素。相反,PVP浓度与凝胶硬度和可压缩性呈负相关,但与凝胶内聚性呈正相关。所有PEG凝胶均表现出具有触变性的假塑性流动,表明随着剪切应力的增加,一般失去一致性。 T50%的药物释放受模拟唾液溶液的流速影响。流速降低导致药物释放较慢,从而导致较高的T50%值。另外,由于凝胶的零速率粘度增加,随着CP和PVP浓度的增加,药物释放也显着减少。响应面和因变量的轮廓图进一步证实了PEG凝胶中CP和PVP的各种组合提供了广泛的机械,流变和药物释放特性。 CP和PVP具有互补的物理特性的组合可延长口腔药物的递送。

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