Dias Juliana R, Sousa Aureliana, Augusto Ana, Bártolo Paulo J, Granja Pedro L
Center for Rapid and Sustainable Product Development (CDRsp), Polytechnic Institute of Leiria, 2030-028 Marinha Grande, Portugal.
Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, 4200-135 Porto, Portugal.
Polymers (Basel). 2022 Aug 19;14(16):3397. doi: 10.3390/polym14163397.
Polycaprolactone (PCL) is widely used in tissue engineering due to its interesting properties, namely biocompatibility, biodegradability, elastic nature, availability, cost efficacy, and the approval of health authorities such as the American Food and Drug Administration (FDA). The PCL degradation rate is not the most adequate for specific applications such as skin regeneration due to the hydrophobic nature of bulk PCL. However, PCL electrospun fiber meshes, due to their low diameters resulting in high surface area, are expected to exhibit a fast degradation rate. In this work, in vitro and in vivo degradation studies were performed over 90 days to evaluate the potential of electrospun PCL as a wound dressing. Enzymatic and hydrolytic degradation studies in vitro, performed in a static medium, demonstrated the influence of lipase, which promoted a rate of degradation of 97% for PCL meshes. In an in vivo scenario, the degradation was slower, although the samples were not rejected, and were well-integrated in the surrounding tissues inside the subcutaneous pockets specifically created.
聚己内酯(PCL)因其具有诸如生物相容性、生物降解性、弹性、可得性、成本效益以及获得美国食品药品监督管理局(FDA)等卫生当局批准等有趣特性,而被广泛应用于组织工程领域。由于块状PCL的疏水性,其降解速率对于诸如皮肤再生等特定应用而言并非最为合适。然而,聚己内酯电纺纤维网由于其直径小导致表面积大,预计会呈现出较快的降解速率。在这项研究中,进行了为期90天的体外和体内降解研究,以评估电纺聚己内酯作为伤口敷料的潜力。在静态培养基中进行的体外酶解和水解降解研究表明,脂肪酶具有影响作用,其促使聚己内酯网的降解率达到97%。在体内情况下,降解速度较慢,尽管样品未被排斥,并且在专门创建的皮下囊袋内与周围组织良好整合。