Department of Environmental Studies, Institute of Graduate Studies and Research, Alexandria University, Alexandria 21526, Egypt.
Department of Food Microbiology, National Research Center, Dokki, Cairo, Egypt.
Int J Pharm. 2022 Nov 25;628:122280. doi: 10.1016/j.ijpharm.2022.122280. Epub 2022 Oct 13.
Essential oils, derived from aromatic plants, exhibit various pharmacological properties. Nevertheless, their clinical applications are confronted by various limitations, such as chemical instability, low aqueous solubility, and poor bioavailability. Nanoencapsulation is one of the approaches that may circumvent these restraints. Accordingly, the present study encapsulated thyme essential oil (TEO) in sodium caseinate (Na CAS) nanomicelles and formulated a gelatin nanocomposite hydrogel, which was investigated as a drug delivery platform for in vitro antibacterial and in vivo wound healing potential. TEO loaded Na CAS nanomicelles showed particle size of 336 ± 17.35 nm, zeta potential of -44.0 mV and EE% of 75 ± 5%. The release profile of TEO loaded nanocomposite hydrogel revealed a sustained release pattern compared to TEO loaded micelles and free oil. The TEO loaded nanomicelles exhibited a significantly higher antibacterial effect than free TEO, as denoted by leakage of alkaline phosphatase and cell membrane disruptions. Furthermore, the TEO loaded nanocomposite hydrogel significantly promoted wound contraction, reduced interleukin-6, and increased transforming growth factor-β1and vascular endothelial growth factor levels, versus control or blank hydrogel group. Hence, the present study is putting forth the fabricated nanocomposite hydrogel as a multifunctional delivery system for TEO in wound healing applications.
精油来源于芳香植物,具有多种药理学特性。然而,其临床应用面临着各种限制,如化学不稳定性、低水溶性和差的生物利用度。纳米封装是一种可能克服这些限制的方法。因此,本研究将百里香精油(TEO)封装在酪蛋白酸钠(Na CAS)纳米胶束中,并制备了明胶纳米复合水凝胶,作为体外抗菌和体内伤口愈合潜力的药物传递平台进行了研究。负载 TEO 的 Na CAS 纳米胶束的粒径为 336 ± 17.35nm,Zeta 电位为-44.0mV,EE%为 75 ± 5%。与负载 TEO 的胶束和游离油相比,负载 TEO 的纳米复合水凝胶的释放曲线呈现出持续释放模式。负载 TEO 的纳米胶束表现出比游离 TEO 更高的抗菌效果,这表现为碱性磷酸酶的泄漏和细胞膜的破坏。此外,负载 TEO 的纳米复合水凝胶显著促进了伤口收缩,降低了白细胞介素-6,增加了转化生长因子-β1和血管内皮生长因子水平,与对照组或空白水凝胶组相比。因此,本研究提出了所制备的纳米复合水凝胶作为用于伤口愈合应用的 TEO 的多功能递送系统。