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Long-Circulating Hyaluronan-Based Nanohydrogels as Carriers of Hydrophobic Drugs

机译:长循环透明质酸基纳米水凝胶作为疏水性药物的载体

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摘要

Nanohydrogels based on natural polymers, such as polysaccharides, are gaining interest as vehicles for therapeutic agents, as they can modify the pharmacokinetics and pharmacodynamics of the carried drugs. In this work, hyaluronan-riboflavin nanohydrogels were tested in vivo in healthy rats highlighting their lack of toxicity, even at high doses, and their different biodistribution with respect to that of native hyaluronan. They were also exploited as carriers of a hydrophobic model drug, the anti-inflammatory piroxicam, that was physically embedded within the nanohydrogels by an autoclave treatment. The nanoformulation was tested by intravenous administration showing an improvement of the pharmacokinetic parameters of the molecule. The obtained results indicate that hyaluronan-based self-assembled nanohydrogels are suitable systems for low-soluble drug administration, by increasing the dose as well as the circulation time of poorly available therapeutic agents.
机译:基于天然聚合物(例如多糖)的纳米水凝胶作为治疗剂的载体受到关注,因为它们可以改变所携带药物的药代动力学和药效学。在这项工作中,在健康大鼠体内对乙酰透明质酸核黄素纳米水凝胶进行了体内测试,强调了它们即使在高剂量下也没有毒性,并且相对于天然乙酰透明质酸而言具有不同的生物分布。它们还被用作疏水性模型药物(抗炎吡罗昔康)的载体,该药物通过高压灭菌处理而物理嵌入纳米水凝胶中。通过静脉内给药测试了纳米制剂,显示出该分子的药代动力学参数的改善。获得的结果表明,通过透明质酸的自组装纳米水凝胶通过增加难得的治疗剂的剂量和循环时间,是适用于低可溶性药物给药的系统。

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