Departamento de Alimentos y Biotecnología, Facultad de Química, Universidad Nacional Autónoma de México, 04510 CDMX, Mexico.
Chemical Engineering Department, Escola d'Enginyeria de Barcelona Est-EEBE, c/Eduard Maristany 10-14, Barcelona, Spain.
Mater Sci Eng C Mater Biol Appl. 2020 Oct;115:111154. doi: 10.1016/j.msec.2020.111154. Epub 2020 Jun 5.
Enzymatic mediated poly (gallic acid) (PGAL), a stable multiradical polyanion with helicoidal secondary structure and high antioxidant capacity, was successfully grafted to poly(ε-caprolactone) (PCL) using UV-photo induction. PCL films were prepared with several levels of roughness and subsequently grafted with PGAL (PCL-g-PGAL). The results on the full characterization of the produced materials by mechanical tests, surface morphology, and topography, thermal and crystallographic analyses, as well as wettability and cell protection activity against oxidative stress, were adequate for tissue regeneration. The in vitro biocompatibility was then assessed with epithelial-like cells showing excellent adhesion and proliferation onto the PCL-g-PGAL films, most importantly, PCL-g-PGAL displayed a good ability to protect cell cultures on their surface against reactive oxygen species. These biomaterials can consequently be considered as novel biocompatible and antioxidant films with high-responsiveness for biomedical or tissue engineering applications.
酶介导的聚没食子酸(PGAL)是一种稳定的多自由基聚阴离子,具有螺旋二级结构和高抗氧化能力,成功地通过 UV 光诱导接枝到聚己内酯(PCL)上。使用不同粗糙度水平的 PCL 薄膜,随后接枝 PGAL(PCL-g-PGAL)。通过机械测试、表面形貌和形貌、热和结晶分析以及润湿性和细胞保护活性对抗氧化应激的全面表征,结果表明这些材料适合组织再生。然后,通过上皮样细胞评估体外生物相容性,这些细胞在 PCL-g-PGAL 薄膜上表现出良好的粘附和增殖能力,最重要的是,PCL-g-PGAL 具有在其表面保护细胞培养物免受活性氧的良好能力。因此,这些生物材料可以被认为是具有高反应性的新型生物相容性和抗氧化薄膜,适用于生物医学或组织工程应用。