Liu Xinfa, Li Jie, Rajan Durairaj Karthick, Zhang Shubing
Biological Experiment Center, School of Life Sciences, Central South University.
Department of Cell Biology, School of Life Sciences, Central South University.
J Vis Exp. 2024 Dec 27(214). doi: 10.3791/67416.
The aqueous extract from the bark of Eucommia ulmoides serves as a rich source of bioactive compounds with numerous health benefits. The protocol here aims to explore the preparation of zinc oxide (ZnO) nanoparticles using the Eucommia ulmoides bark-mediated polyisoprene-rich aqueous extract. Meanwhile, the proposed protocol is associated with the preparation of wound healing material by easing the process. In addition, the wound-healing potential of the synthesized nanoparticles (Eu-ZnO-NPs) was evaluated using a simple scratch assay on a human umbilical vein endothelial cell (HUVEC) monolayer. After 24 h of treatment with Eu-ZnO-NPs, the cell proliferation and migration of HUVEC cells were assessed. At the end of the study, cell proliferation and migration were observed in scratched monolayer treated with different concentrations of Eu-ZnO-NPs, whereas poor cell migration and proliferation rates were observed in control cells. Of the chosen concentrations, 20 µg/mL Eu-ZnO nanomaterials showed better cell migration and enhanced wound healing potential.
杜仲树皮的水提取物富含生物活性化合物,对健康有诸多益处。本文的实验方案旨在探索利用杜仲树皮介导的富含聚异戊二烯的水提取物制备氧化锌(ZnO)纳米颗粒。同时,该方案通过简化流程与伤口愈合材料的制备相关联。此外,使用简单的划痕试验在人脐静脉内皮细胞(HUVEC)单层上评估合成纳米颗粒(Eu-ZnO-NPs)的伤口愈合潜力。用Eu-ZnO-NPs处理24小时后,评估HUVEC细胞的增殖和迁移情况。在研究结束时,在用不同浓度的Eu-ZnO-NPs处理的划痕单层中观察到细胞增殖和迁移,而在对照细胞中观察到较差的细胞迁移和增殖率。在所选择的浓度中,20 µg/mL的Eu-ZnO纳米材料显示出更好的细胞迁移和增强的伤口愈合潜力。