Chulalongkorn University, Bangkok 10330, Thailand.
Institute of Biotechnology and Genetic Engineering, Chulalongkorn University, Bangkok 10330, Thailand.
Carbohydr Polym. 2020 Feb 15;230:115625. doi: 10.1016/j.carbpol.2019.115625. Epub 2019 Nov 15.
A new positively charged nanoemulsion using quaternized chitosan (QCS) as a protective layer was developed to improve the stability and bioactivity of lipophilic active components. The anti-inflammatory Plai extract was chosen as both an active ingredient and an oil phase of the system. Compared with chitosan-coated nanoemulsion (NE2-CS) and uncoated nanoemulsion (NE1), the QCS coating could improve the stability of the Plai extract during 28 days. The particle size of NE1 increased from 141 nm to 202 nm after coating with QCS, whereas zeta potential changed from -22.03 mV for NE1 to 20.23 mV for NE2-QCS, confirming the presence of QCS. A clear improvement in anti-inflammatory, anti-cancer, and transdermal properties of Plai extract was verified for NE2-QCS, which could be due to the NEs' fineness and the permanent positive charge of the protective layer. Therefore, we suggested that QCS-coated NEs can be used as an effective transdermal delivery system for lipophilic active components.
一种新型带正电的纳米乳,使用季铵化壳聚糖(QCS)作为保护层,旨在提高亲脂性活性成分的稳定性和生物活性。抗炎的 Plai 提取物被选为系统的活性成分和油相。与壳聚糖包覆的纳米乳(NE2-CS)和未包覆的纳米乳(NE1)相比,QCS 涂层可以提高 Plai 提取物在 28 天内的稳定性。在用 QCS 包覆后,NE1 的粒径从 141nm 增加到 202nm,而 Zeta 电位从 NE1 的-22.03mV 变为 NE2-QCS 的 20.23mV,证实了 QCS 的存在。NE2-QCS 证实了 Plai 提取物抗炎、抗癌和透皮性能的明显改善,这可能是由于 NEs 的精细度和保护层的永久正电荷。因此,我们建议 QCS 包覆的 NEs 可作为亲脂性活性成分的有效透皮递送系统。