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High frequency viscoelastic behaviour of low molecular weight hyaluronic acid water solutions

机译:低分子量透明质酸水溶液的高频粘弹性行为

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Hyaluronic acid (HA) is a polysaccharide widely used in biomedical applications, due to its elevated biocompati-bility and the peculiar viscoelastic properties of its solutions. Although the viscoelastic behaviour of HA solutions has been extensively studied in the literature it has been often reported in the range of low frequency (1-100 Hz) and high salt concentration, whereas the main Theological peculiarities of this molecule are expected at high frequency (> 100 Hz) and low salt concentration. In this work we studied the viscoelastic properties of low molecular weight HA (155 kDa) in wide range of concentrations (0.01-20 mg/ml) at low ionic strength and over an extended frequency range (0.1-1000 Hz) using both optical tweezers and conventional rheometry. Good agreement between the high frequency dynamic behaviour (optical tweezers) and the viscoelastic properties at low frequency (rheometry) was found. We also found that, in apparent contradiction with poly-electrolyte solution theory, HA solution behaves as liquid-like viscoelastic fluid (G″ > G′) even at concentrations higher than the entanglement concentration where a weak-gel behavior should be expected.
机译:透明质酸(HA)是一种多糖,由于其较高的生物相容性和其溶液独特的粘弹性质,因此广泛用于生物医学应用。尽管HA溶液的粘弹性行为已在文献中进行了广泛研究,但经常在低频(1-100 Hz)和高盐浓度范围内得到报道,而该分子的主要神学特性有望在高频下( > 100 Hz)和低盐浓度。在这项工作中,我们使用两种镊子研究了低分子量HA(155 kDa)在宽浓度范围(0.01-20 mg / ml),低离子强度和扩展频率范围(0.1-1000 Hz)时的粘弹性。和传统的流变仪。发现高频动态行为(光学镊子)和低频粘弹性(流变学)之间具有良好的一致性。我们还发现,与聚电解质溶液理论明显矛盾的是,HA溶液即使在高于预期应具有弱凝胶行为的纠缠浓度的情况下,也表现出类似液体的粘弹性流体(G''> G')。

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