Rouco Helena, Permuy Maria, Muñoz Fernando, Vázquez José Antonio, Caeiro José R, Landin Mariana, Diaz-Rodriguez Patricia
Departamento de Farmacología, Farmacia y Tecnología Farmacéutica, Grupo I+D Farma (GI-1645), Facultad de Farmacia, Universidade de Santiago de Compostela, Santiago de Compostela 15782, Spain; Instituto de Investigación Sanitaria de Santiago de Compostela (IDIS), IDIS Research Institute, 15706 Santiago de Compostela, Spain; Instituto de Materiais da Universidade de Santiago de Compostela (iMATUS), Spain.
Anatomy, Animal Production and Veterinary Clinical Sciences Department, Veterinary Faculty, Universidade de Santiago de Compostela, Campus Universitario s/n, 27002 Lugo, Spain; iBoneLab SL, Avenida da Coruña 500, 27003 Lugo, Spain.
J Control Release. 2025 May 10;381:113639. doi: 10.1016/j.jconrel.2025.113639. Epub 2025 Mar 17.
Osteoarthritis (OA) is a chronic and degenerative joint disease with a rising incidence worldwide. Current therapeutic approaches primarily focus on symptom relief through systemic administration, which raises safety concerns related to side effects and long-term use. In this context, the local administration of natural compounds with anti-inflammatory and anti-arthritic properties, such as β-Lapachone constitutes an interesting alternative. In this work, we prepared and characterized injectable thermosensitive hybrid hydrogels loaded with β-Lapachone. A comprehensive characterization of the hydrogel systems was performed, including micellar diameter, mechanical properties at different temperatures, the ability to control drug release and microstructure. The anti-inflammatory activity of the free drug, as well as that of the blank or loaded hydrogels was then evaluated ex vivo, using OA cartilage explants. Additionally, in vivo studies were carried out in a rabbit model of OA to assess their clinical potential. The results suggest that the hydrogel systems possess a composite microstructure integrating micelles, together with a temperature-responsive stiffness and the ability to modulate drug release. In addition, β-Lapachone-loaded hydrogels display an interesting immunomodulatory potential ex vivo, as they were able to efficiently reduce the secretion of several proinflammatory mediators, such as IL-6, MMP9, MMP13 and CXCL8. Furthermore, the drug-loaded hydrogels were found to improve in vivo cartilage and bone histomorphometric markers, such as subchondral bone thickness, as well as early signs of cartilage damage, such as the fibrillation index. Therefore, the developed β-Lapachone-loaded thermosensitive hydrogels constitute a promising alternative for OA management.
骨关节炎(OA)是一种慢性退行性关节疾病,在全球范围内发病率呈上升趋势。目前的治疗方法主要集中在通过全身给药来缓解症状,这引发了与副作用和长期使用相关的安全性问题。在这种背景下,局部施用具有抗炎和抗关节炎特性的天然化合物,如β-拉帕醌,是一种有趣的替代方法。在这项工作中,我们制备并表征了负载β-拉帕醌的可注射热敏混合水凝胶。对水凝胶系统进行了全面表征,包括胶束直径、不同温度下的力学性能、控制药物释放的能力和微观结构。然后使用OA软骨外植体在体外评估游离药物以及空白或负载水凝胶的抗炎活性。此外,在OA兔模型中进行了体内研究,以评估它们的临床潜力。结果表明,水凝胶系统具有整合胶束的复合微观结构,以及温度响应刚度和调节药物释放的能力。此外,负载β-拉帕醌的水凝胶在体外显示出有趣的免疫调节潜力,因为它们能够有效减少几种促炎介质的分泌,如IL-6、MMP9、MMP13和CXCL8。此外,发现载药水凝胶可改善体内软骨和骨组织形态计量学指标,如软骨下骨厚度,以及软骨损伤的早期迹象,如纤维化指数。因此,所开发的负载β-拉帕醌的热敏水凝胶是OA治疗的一种有前途的替代方法。