Department of Orthopedics, China-Japan Union Hospital Jilin University, Changchun, Jilin 130033, China.
Department of Orthopedics, The 964th Hospital of the PLA Joint Logistics Support Force, Changchun, Jilin 130033, China.
J Biomed Nanotechnol. 2022 Jan 1;18(1):77-86. doi: 10.1166/jbn.2022.3225.
An urgent problem in nursing care is the rising threat of cutaneous wound infections caused by harmful bacteria. In this study, we fabricated a series of cellulose acetate-hyaluronic acid (CA/HA) electrospun fibers loaded with berberine (BBR) using the electrospinning method to determine their antimicrobial performance and potential in skin wound dressing applications. The BBR-loaded CA/HA electrospun fibers (CA/HA/BBR) were analyzed using scanning electron and Fourier transform infrared microscopies; moreover, their mechanical properties were examined. The analyses demonstrated an average fiber diameter of 502 ± 50 nm; the tensile strength, Young's modulus, and break elongation of CA/HA electrospun fibers were approximately 3.23 ± 0.08 MPa, 17.5 ± 0.03 MPa, and 28.4%, respectively, whereas these values for CA/HA/BBR electrospun fibers were 238 ± 39 nm and 2.99 ± 0.05 MPa, 12.3 ± 0.04 MPa, and 47.8%, respectively. Antimicrobial evaluation of the CA/HA/BBR electrospun fibers demonstrated that the dressings made from these fibers exhibited greater antimicrobial efficacy (>95%) against and when compared to that made from CA/HA (>80%) electrospun fibers. experiments showed that BBR loaded CA/HA electrospun fiber scaffolds have highly enhanced cell viability (>99) and proliferation of L929 fibroblastic cells after 7 days of incubation. In addition, evaluations in rats showed that the as-fabricated CA/HA/BBR bandage decreased wound size; moreover, it had accelerated healing ability (>95%) and collagen development with increasing treatment duration. These results showed that the addition of BBR enhanced the bioactivity of the dressing without damaging its physical characteristics. Thus, nanostructured dressing made of CA/HA/BBR electrospun fibers has excellent potency for tissue repair in nursing care.
护理中一个紧迫的问题是有害细菌导致的皮肤伤口感染威胁日益增加。在这项研究中,我们使用静电纺丝法制备了一系列载有黄连素(BBR)的醋酸纤维素-透明质酸(CA/HA)电纺纤维,以确定其在皮肤伤口敷料应用中的抗菌性能和潜力。通过扫描电子显微镜和傅里叶变换红外显微镜分析了载有 BBR 的 CA/HA 电纺纤维(CA/HA/BBR),并对其力学性能进行了检测。分析表明,纤维的平均直径为 502±50nm;CA/HA 电纺纤维的拉伸强度、杨氏模量和断裂伸长率分别约为 3.23±0.08MPa、17.5±0.03MPa 和 28.4%,而 CA/HA/BBR 电纺纤维的相应值分别为 238±39nm 和 2.99±0.05MPa、12.3±0.04MPa 和 47.8%。对 CA/HA/BBR 电纺纤维的抗菌评估表明,与 CA/HA(>80%)电纺纤维敷料相比,由这些纤维制成的敷料对 和 的抗菌效果更好(>95%)。 实验表明,BBR 负载 CA/HA 电纺纤维支架在孵育 7 天后具有高度增强的细胞活力(>99%)和 L929 成纤维细胞的增殖。此外,大鼠评估表明,所制备的 CA/HA/BBR 绷带降低了伤口面积;此外,随着治疗时间的延长,它具有加速愈合能力(>95%)和胶原形成。这些结果表明,BBR 的加入增强了敷料的生物活性,而不会破坏其物理特性。因此,由 CA/HA/BBR 电纺纤维制成的纳米结构敷料在护理中具有出色的组织修复潜力。