黄芩苷
斑马鱼
脂质体
微流控
纳米技术
化学
生物医学工程
材料科学
色谱法
工程类
生物化学
基因
高效液相色谱法
作者
Yuhao Gu,Liqiang Jin,Li Wang,Xianzheng Ma,Mingfa Tian,Ammara Sohail,Jianchun Wang,Daijie Wang
出处
期刊:ACS omega
[American Chemical Society]
日期:2024-09-24
卷期号:9 (40): 41289-41300
被引量:11
标识
DOI:10.1021/acsomega.4c03356
摘要
Baicalin (BCL), a well-known flavonoid molecule, has numerous therapeutic applications. However, its low water solubility and bioavailability limit its applicability. Microfluidics is a new method for liposome preparation that provides efficient and rapid control of the process, improving the stability and controllability. This study used microfluidic techniques to create baicalin liposomes (BCL-LPs), first screening for optimal total flow rates (TFR) and flow rate ratios (FRR), and then optimizing the phospholipid concentration, phospholipid-to-cholesterol ratio, and Tween-80 concentration using univariate and response surface methodology approaches. The study found that the ideal phospholipid content was 9.5%, the phospholipid-to-cholesterol ratio was 9:1 (w:w), and the Tween-80 concentration was 15%. BCL-LPs achieved 95.323% ± 0.481% encapsulation efficiency under the optimum circumstances. Characterization indicated that the BCL-LPs were spherical and uniform in size, with a mean diameter of 62.32 nm ± 0.42, a polydispersity index of 0.092 ± 0.009, and a zeta potential of -25.000 mV ± 0.216. In vitro experiments found that BCL-LPs had a better slow-release effect and stability than the BCL monomer. In zebrafish bioassays, BCL-LPs performed better than BCL monomer in terms of biological activity and bioavailability. The established method provided a feasible medicine delivery platform for BCL and could apply for the transport and encapsulation of more natural compounds, expanding the applications of drug delivery systems in healthcare and cancer therapies.
科研通智能强力驱动
Strongly Powered by AbleSci AI