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新型细菌纤维素/海藻酸钠/明胶生物复合膜的制备与表征。

Fabrication and characterization of novel bacterial cellulose/alginate/gelatin biocomposite film.

机构信息

a Biomedical Engineering Program, Faculty of Engineering , Chulalongkorn University , Bangkok , Thailand.

b Department of Chemical Engineering, Faculty of Engineering , Chulalongkorn University , Bangkok , Thailand.

出版信息

J Biomater Sci Polym Ed. 2019 Aug;30(11):961-982. doi: 10.1080/09205063.2019.1613292. Epub 2019 May 21.

Abstract

Hydrogels from bacterial, algal, and animal cells-bacterial cellulose (BC), alginate, and gelatin, respectively-were combined to fabricate a biocomposite film (BCAGG) via an eco-friendly casting technique. In addition, glycerol was added as a plasticizer to improve the elasticity and water absorption capacity of the film. In this study, BC pellicles were simply deconstructed into fibrils suspension and then reconstructed into films with a supplement of alginate, gelatin and glycerol. The physical appearance of fabricated films resembled native BC but possessed improved ductility, enhanced flexibility, higher water uptake ability and better biocompatibility. The film was found to resist tearing under suture pullout strength in a hydrated state. In vitro cytotoxicity tests showed that the film was cytocompatible. A cell study using a human keratinocyte culture demonstrated enhanced cell adhesion, spreading, and proliferation on the BCAGG film compared with BC/alginate film. The BCAGG film therefore has significant potential for use in biomedical applications, particularly in dermal treatment, skin tissue regeneration, and wound healing.

摘要

细菌、藻类和动物细胞来源的水凝胶-分别为细菌纤维素 (BC)、海藻酸盐和明胶-通过环保的铸造技术结合起来制备了一种生物复合膜 (BCAGG)。此外,甘油被添加为增塑剂以提高膜的弹性和吸水性。在这项研究中,BC 薄膜被简单地解构为纤维悬浮液,然后与海藻酸盐、明胶和甘油一起重构为薄膜。所制备的薄膜的物理外观类似于天然 BC,但具有更好的延展性、更高的柔韧性、更高的吸水性和更好的生物相容性。在水合状态下,该膜在缝线拔出强度下表现出抗撕裂性。体外细胞毒性试验表明该膜具有细胞相容性。用人角质形成细胞培养进行的细胞研究表明,与 BC/海藻酸盐膜相比,BCAGG 膜上的细胞粘附、铺展和增殖能力增强。因此,BCAGG 膜在生物医学应用中具有重要的应用潜力,特别是在皮肤治疗、皮肤组织再生和伤口愈合方面。

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