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应用剪切粘度和拉伸粘度测量来评估透明质烷在粘性补充疗法中的潜力。

The application of shear and extensional viscosity measurements to assess the potential of hylan in viscosupplementation.

作者信息

al-Assaf S, Meadows J, Phillips G O, Williams P A

机构信息

North East Wales Institute, Centre for Water Soluble Polymers, Wrexham, Clwyd, UK.

出版信息

Biorheology. 1996 Jul-Oct;33(4-5):319-32. doi: 10.1016/0006-355x(96)00025-x.

Abstract

The shear and extensional viscosity characteristics have been compared for hyaluronan and two samples of a cross-linked derivative, hylan, of different molecular weights. While shear thinning behavior was observed for all systems in shear flow, strain thickening was observed in extensional flow for the relatively dilute systems. However, there was a progressive transition to shear thinning behavior as the polymer concentration was increased. It is evident from the results that the shear flow techniques alone provide an incomplete picture of the rheological properties of these materials and that extensional flow characteristics are potentially dominant. For example, at relatively high deformation rates of 500 s-1 and above, our results show that the extensional viscosities of aqueous solutions of the various polymers are at least two orders of magnitude greater than their corresponding shear flow viscosities. The incremental differences in viscosity with concentration increased with increasing molecular mass of the polymers and were greater in extensional flow than shear flow. These results demonstrate that the dynamic network structure formed by the higher molecular mass hylans offer potentially better physical and mechanical properties for viscosupplementation of diseased osteoarthritis joints compared with the parent hyaluronan.

摘要

对透明质酸和两种不同分子量的交联衍生物(hylan)样品的剪切粘度和拉伸粘度特性进行了比较。虽然在剪切流动中所有体系均观察到剪切变稀行为,但在拉伸流动中,相对稀的体系观察到应变增稠现象。然而,随着聚合物浓度的增加,逐渐转变为剪切变稀行为。从结果可以明显看出,仅靠剪切流动技术无法完整描述这些材料的流变特性,拉伸流动特性可能占主导地位。例如,在500 s-1及以上的相对高变形速率下,我们的结果表明,各种聚合物水溶液的拉伸粘度比其相应的剪切流动粘度至少高两个数量级。粘度随浓度的增量差异随着聚合物分子量的增加而增大,且在拉伸流动中比剪切流动中更大。这些结果表明,与母体透明质酸相比,由较高分子量的hylan形成的动态网络结构为患病骨关节炎关节的粘弹性补充提供了潜在更好的物理和机械性能。

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