Branco Ana C, Oliveira Andreia S, Monteiro Inês, Nolasco Pedro, Silva Diana C, Figueiredo-Pina Célio G, Colaço Rogério, Serro Ana P
CQE-Centro de Química Estrutural, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais 1, 1049-001 Lisbon, Portugal.
CiiEM-Centro de Investigação Interdisciplinar Egas Moniz, Instituto Universitário Egas Moniz, Quinta da Granja, Monte de Caparica, 2829-511 Caparica, Portugal.
Gels. 2022 Feb 24;8(3):143. doi: 10.3390/gels8030143.
Polyvinyl alcohol (PVA) hydrogels have been widely studied for cartilage replacement due to their biocompatibility, chemical stability, and ability to be modified such that they approximate natural tissue behavior. Additionally, they may also be used with advantages as local drug delivery systems. However, their properties are not yet the most adequate for such applications. This work aimed to develop new PVA-based hydrogels for this purpose, displaying improved tribomechanical properties with the ability to control the release of diclofenac (DFN). Four types of PVA-based hydrogels were prepared via freeze-thawing: PVA, PVA/PAA (by polyacrylic acid (PAA) addition), PVA/PAA+PEG (by polyethylene glycol (PEG) immersion), and PVA/PAA+PEG+A (by annealing). Their morphology, water uptake, mechanical and rheological properties, wettability, friction coefficient, and drug release behavior were accessed. The irritability of the best-performing material was investigated. The results showed that the PAA addition increased the swelling and drug release amount. PEG immersion led to a more compact structure and significantly improved the material's tribomechanical performance. The annealing treatment led to the material with the most suitable properties: besides presenting a low friction coefficient, it further enhanced the mechanical properties and ensured a controlled DFN release for at least 3 days. Moreover, it did not reveal irritability potential for biological tissues.
聚乙烯醇(PVA)水凝胶因其生物相容性、化学稳定性以及可改性以近似天然组织行为的能力,已被广泛研究用于软骨替代。此外,它们还可作为局部给药系统具有优势。然而,它们的性能对于此类应用而言尚不十分理想。这项工作旨在为此目的开发新型基于PVA的水凝胶,展现出改善的摩擦力学性能以及控制双氯芬酸(DFN)释放的能力。通过冻融法制备了四种基于PVA的水凝胶:PVA、PVA/PAA(通过添加聚丙烯酸(PAA))、PVA/PAA+PEG(通过浸入聚乙二醇(PEG))以及PVA/PAA+PEG+A(通过退火)。研究了它们的形态、吸水性、力学和流变性能、润湿性、摩擦系数以及药物释放行为。对性能最佳的材料的刺激性进行了研究。结果表明,添加PAA增加了溶胀和药物释放量。浸入PEG导致结构更致密,并显著改善了材料的摩擦力学性能。退火处理使材料具有最适宜的性能:除了具有低摩擦系数外,还进一步增强了力学性能,并确保DFN可控释放至少3天。此外,它对生物组织没有刺激性。