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Design of binary polymeric systems containing ɩ-carrageenan and hydroxypropylcellulose for use in cataract surgery.

机译:用于白内障手术的包含β-角叉菜胶和羟丙基纤维素的二元聚合物系统的设计。

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摘要

This study describes the design and characterisation of the rheological and mechanical properties of binary polymeric systems composed of 2-Hydroxypropylcellulose and ɩ-carrageenan, designed as ophthalmic viscoelastic devices (OVDs). Platforms were characterised using dilute solution, flow and oscillatory rheometry and texture profile analysis. Rheological synergy between the two polymers was observed both in the dilute and gel states. All platforms exhibited pseudoplastic flow. Increasing polymer concentrations significantly decreased the loss tangent and rate index yet increased the storage and loss moduli, consistency, gel hardness, compressibility and adhesiveness, the latter being related to the in-vivo retention properties of the platforms. Binary polymeric platforms exhibited unique physicochemical properties, properties that could not be engineered using mono-polymeric platforms. Using characterisation methods that provide information relevant to their clinical performance, low-cost binary platforms (3% hydroxypropylcellulose and either 1% or 2% ɩ-carrageenan) were identified that exhibited rheological, textural and viscoelastic properties advantageous for use as OVDs.
机译:这项研究描述了由2-羟丙基纤维素和β-角叉菜胶组成的二元聚合物体系的流变学和力学性能的设计和表征,该体系设计为眼粘弹性器件(OVD)。使用稀溶液,流动和振荡流变仪以及纹理轮廓分析来表征平台。在稀释和凝胶状态下都观察到两种聚合物之间的流变协同作用。所有平台均表现出假塑性流动。聚合物浓度的增加显着降低了损耗角正切和速率指数,但增加了存储和损耗模量,稠度,凝胶硬度,可压缩性和粘附性,后者与平台的体内保留特性有关。二元聚合物平台表现出独特的物理化学特性,这些特性不能使用单聚合物平台进行工程设计。使用提供与其临床性能相关的信息的表征方法,鉴定了低成本的二元平台(3%羟丙基纤维素和1%或2%ɩ-角叉菜胶),它们具有有利于用作OVD的流变,组织和粘弹性。

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