研究目的
Investigating the effect of laser irradiation on the reversibility and drug release of light-activatable drug-encapsulated liposomes for controlled and repetitive drug delivery.
研究成果
The study demonstrates that gold nanorod-coated liposomes enable proportional and repetitive drug release upon laser irradiation due to reversible nanostructural alterations in the lipid bilayer. This mechanism contrasts with irreversible phase transition in nanodroplets. The findings suggest potential applications in controlled drug delivery systems.
研究不足
The study is limited by the potential deformation of gold nanorods at higher laser powers, which may affect the efficiency of drug release. The temperature measurement method using PCDA may not precisely quantify the temperature rise in the lipid bilayer.
1:Experimental Design and Method Selection:
The study involved the synthesis of light-activatable drug-encapsulated liposomes and nanodroplets, followed by laser irradiation to study drug release and structural reversibility. Single-particle collision experiments and UV-vis spectroscopy were used to measure drug release and structural changes.
2:Sample Selection and Data Sources:
Liposomes and nanodroplets were synthesized using specific lipids and drugs (MTX and DOX). Gold nanorods were used as plasmonic materials.
3:List of Experimental Equipment and Materials:
Equipment included a picosecond pulsed laser, UV-vis spectrometer, TEM, DLS, and electrochemical setup for collision frequency measurement. Materials included DSPC, cholesterol, stearylamine, DSPE-PEG, gold nanorods, and PCDA.
4:Experimental Procedures and Operational Workflow:
Liposomes and nanodroplets were synthesized, coated with gold nanorods, and irradiated with laser. Drug release was measured using UV-vis spectroscopy, and structural changes were assessed via TEM and DLS. Collision frequency was measured electrochemically.
5:Data Analysis Methods:
Data were analyzed using MATLAB and LabVIEW for collision frequency, and statistical analysis was performed to assess significance.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容