Oyarzún Yessenia, Ulloa José, Ceballos Matías, Urbano Bruno F
Departamento de Polímeros, Facultad de Ciencias Químicas, Universidad de Concepción, Concepción 4070386, Chile.
Gels. 2024 Jul 31;10(8):504. doi: 10.3390/gels10080504.
Herein, we investigated hydrogels composed of boronic-acid-functionalized alginate and blended with polyvinyl alcohol (PVA) of different molecular weights to control the release of metoclopramide hydrochloride as a function of pH and shear stress. The functionalization of alginate introduced dynamic covalent bonding and pH-responsive properties that can modulate network connectivity. The study investigated the viscoelastic properties of the hydrogels, their drug release profiles, and their responsiveness to changes in pH and shear forces. The results showed that a higher PVA molecular weight and alkaline pH conditions increased hydrogel viscosity and stiffness due to a more stable and interconnected network structure than acidic pH. Metoclopramide release revealed that the hydrogels exhibited pH-responsive drug release behavior. The drug was more readily released under acidic conditions due to the instability of sp-hybridized boronate ester bonds. The influence of shear forces on the release of metoclopramide was also investigated at shear rates of 1, 10, and 100 s, revealing their effect on matrix stiffening. Research shows that AlgBA/PVA hydrogels have unique properties, such as dynamic covalent bonding, that make them sensitive to external mechanical forces. This sensitivity makes them ideal for applications where physiological conditions trigger drug release.
在此,我们研究了由硼酸功能化藻酸盐与不同分子量的聚乙烯醇(PVA)混合组成的水凝胶,以控制盐酸甲氧氯普胺作为pH值和剪切应力函数的释放。藻酸盐的功能化引入了动态共价键和pH响应特性,可调节网络连通性。该研究考察了水凝胶的粘弹性、药物释放曲线以及它们对pH值和剪切力变化的响应。结果表明,与酸性pH相比,由于网络结构更稳定且相互连接,较高的PVA分子量和碱性pH条件会增加水凝胶的粘度和硬度。甲氧氯普胺的释放表明水凝胶呈现pH响应性药物释放行为。由于sp杂化硼酸酯键的不稳定性,药物在酸性条件下更容易释放。还在1、10和100 s的剪切速率下研究了剪切力对甲氧氯普胺释放的影响,揭示了它们对基质硬化的作用。研究表明,AlgBA/PVA水凝胶具有独特的性质,如动态共价键,这使得它们对外部机械力敏感。这种敏感性使其成为生理条件触发药物释放应用的理想选择。