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Effect of Hyaluronic Acid and Pluronic-F68 on the Surface Properties of Foam as a Delivery System for Polidocanol in Sclerotherapy

机译:透明质酸和PLURONIC-F68对硬化疗法果酰胺泡沫表面性质的影响

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摘要

The use of foams to deliver bioactive agents and drugs is increasing in pharmaceutics. One example is the use of foam as a delivery system for polidocanol (POL) in sclerotherapy, with the addition of bioactive compounds to improve the delivery system being a current subject of study. This work shows the influence of two bioactive additives on the structure and stability of POL foam: hyaluronic acid (HA) and Pluronic-F68 (F68). HA is a natural non-surface-active biopolymer present in the extracellular matrix while F68 is a surface-active poloxamer that is biocompatible with plasma-derived fluids. Both additives increase the bulk viscosity of the sample, improving foam stability. However, HA doubled and F68 quadruplicated the foam half lifetime of POL. HA reduced the size and polydispersity of the bubble size distribution and increased the surface elasticity with respect to POL. Both facts have a positive impact in terms of foam stability. F68 also altered bubble structure and increased surface elasticity, again contributing to the enhancement of foam stability. The surface characterization of these systems is important, as in foam sclerotherapy it is crucial to assure the presence of POL at the surface of the bubbles in order to deliver the sclerosant agent in the target vein.
机译:使用泡沫以提供生物活性剂和药物在药剂中正在增加。一个例子是使用泡沫作为果酰胺(Pol)在硬化疗法中的输送系统,加入生物活性化合物以改善输送系统是当前研究的主题。这项工作表明了两种生物活性添加剂对Pol泡沫结构和稳定性的影响:透明质酸(HA)和Pluronic-F68(F68)。 HA是在细胞外基质中存在的天然非表面活性生物聚合物,而F68是与等离子体衍生的流体生物相容的表面活性泊洛沙姆。两种添加剂都会增加样品的体积粘度,提高泡沫稳定性。然而,HA加倍,F68将泡沫半寿命与Pol。 HA降低了气泡尺寸分布的尺寸和多分散性,并增加了Pol的表面弹性。这两个事实都对泡沫稳定性产生了积极的影响。 F68还改变了气泡结构和增加的表面弹性,再次有助于提高泡沫稳定性。这些系统的表面表征是重要的,如在泡沫硬化疗法中,确保在气泡表面处的POL存在是至关重要的,以便在靶静脉中递送中风剂。

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