Ho Trinh Thi-Phuong, Doan Vinh Khanh, Tran Nam Minh-Phuong, Nguyen Linh Kim-Khanh, Le An Nguyen-My, Ho Minh Hieu, Trinh Nhu-Thuy, Van Vo Toi, Tran Lam Dai, Nguyen Thi-Hiep
Tissue Engineering and Regenerative Medicine Laboratory, Department of Tissue Engineering and Regenerative Medicine, School of Biomedical Engineering, International University, Ho Chi Minh City, Viet Nam; Vietnam National University, Ho Chi Minh City, Viet Nam.
Institute for Tropical Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Ha Noi, Viet Nam; Graduate University of Science and Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Ha Noi, Viet Nam.
Mater Sci Eng C Mater Biol Appl. 2021 Jan;120:111724. doi: 10.1016/j.msec.2020.111724. Epub 2020 Nov 14.
Wound dressings are typically used to provide a favorable environment supporting the intricate process of wound healing. This research aims to fabricate and evaluate an electrospun polycaprolactone (EsPCL) membrane coated with various densities of chitosan oligomers (COS) - a biological agent - for application as bioactive wound dressing. Weight calculation was employed to investigate the density of COS coated onto the electrospun PCL membrane. Physicochemical characteristics of the prepared membranes, such as hydrophilicity and mechanical properties were demonstrated and evaluated through standard experimental methods. In vitro assays and mice model were used to investigate the antibacterial activities, cytocompatibility, hemostasis and the in vivo interaction of the membranes. The results showed that COS was coated successfully on the surface of the polymeric membrane, altering its morphology and associated characteristics. The greater concentration of COS led to an increase in the thickness of the membrane, which resulted in stronger antibacterial activities. Moreover, the increase of chitosan oligomers density in the membrane induced faster hemostasis and affected the re-epithelialization and wound healing in mice. Thus, the membrane as a whole and particularly chitosan oligomers were shown to be potential for further studies regarding wound dressing.
伤口敷料通常用于提供一个有利的环境,以支持复杂的伤口愈合过程。本研究旨在制备并评估一种涂覆有不同密度壳寡糖(COS,一种生物制剂)的静电纺聚己内酯(EsPCL)膜,用作生物活性伤口敷料。采用重量计算法研究涂覆在静电纺PCL膜上的COS密度。通过标准实验方法对制备的膜的物理化学特性,如亲水性和机械性能进行了表征和评估。利用体外试验和小鼠模型研究了膜的抗菌活性、细胞相容性、止血性能及体内相互作用。结果表明,COS成功地涂覆在聚合物膜表面,改变了其形态和相关特性。COS浓度越高,膜的厚度增加,抗菌活性增强。此外,膜中壳寡糖密度的增加导致止血更快,并影响小鼠的再上皮化和伤口愈合。因此,该膜整体尤其是壳寡糖在伤口敷料的进一步研究中显示出潜力。