Lou Ching-Wen, Hsieh Ming-Chun, Lu Chao-Tsang, Lai Mei-Feng, Lee Mong-Chuan, Shiu Bing-Chiuan, Lin Jia-Horng
Fujian Key Laboratory of Novel Functional Textile Fibers and Materials, Minjiang University, Fuzhou 350108, China.
Advanced Medical Care and Protection Technology Research Center, College of Textile and Clothing, Qingdao University, Qingdao 266071, China.
Polymers (Basel). 2020 Apr 10;12(4):870. doi: 10.3390/polym12040870.
This study aims to develop nanofibrous membranes where oil (EGO) is wrapped in polyvinyl alcohol (PVA). The EGO-based nanofibrous membranes are then evaluated for the protection against Forcipomyia taiwana (). In the first stage, the PVA solutions are formulated with different concentrations and are measured for viscosity and electrical conductivity. In the next stage, PVA solution and EGO are blended at different ratios and electrospun into PVA/EGO nanofibrous membranes (i.e., EGO-based repellent). In this study, a PVA concentration of 14 wt% has a positive influence on fiber formation. Furthermore, the finest nanofibers of 291 nm are presented when the voltage is 15 kV. The repellent efficacy can reach 80% in a 60-min release when the repellent is composed of a PVA/oil ratio of 90/10. To sum up, the nanofibrous membranes of essential oil exhibit good repellent efficacy against and significant slow-release effect, instead of adversely affecting the cell viability.
本研究旨在开发将油(香茅油)包裹在聚乙烯醇(PVA)中的纳米纤维膜。然后评估基于香茅油的纳米纤维膜对台湾蠛蠓的防护效果。在第一阶段,配制不同浓度的PVA溶液,并测量其粘度和电导率。在下一阶段,将PVA溶液和香茅油以不同比例混合,并静电纺丝成PVA/香茅油纳米纤维膜(即基于香茅油的驱避剂)。在本研究中,14 wt%的PVA浓度对纤维形成有积极影响。此外,当电压为15 kV时,可呈现出291 nm的最细纳米纤维。当驱避剂由90/10的PVA/油比例组成时,在60分钟的释放过程中,驱避效果可达80%。综上所述,精油纳米纤维膜对台湾蠛蠓具有良好的驱避效果和显著的缓释作用,且不会对细胞活力产生不利影响。