Preparation and entrapment efficiency determination of solid lipid nanoparticles loaded levodopa
Zhan Shuiming, Hou Dongzhi, Qineng Ping, Yan Lei Xu
Abstract
Zhan Shuiming, Hou Dongzhi, Qineng Ping, Yan Lei Xu
Abstract
OBJECTIVE Levodopa solid lipid nano-particles(LDP-SLN)was prepared,and an efficient method for determination of entrapment efficiency(EE%)was established.METHODS LDP-SLN was prepared through the micro-emulsion technology prepared by drawing ternary phase diagram,The morphology was examined by transmission electron microscope,the particle size was determined by laser granularity equipment,and the entrapment efficiency(EE%)was determined with the Sephadex gel chromatogram.The mean particle size,drug entrapment efficiency(EE%)and long-term physical stability of the SLN were investigated.RESULTS The loaded SLN dispersion was a stable milk-like suspension,and was uniform spheres under the electron microscope,the mean particle size was 108 nm,multi-factor spread was 1.153.There were no obvious changes of the particle size and entrapment efficiency at 4 ℃within two month.The method for determination of entrapment efficiency showed a good linearity range from 2 to100 mg· L-1(r=0.999 9),the precision met the requirements,SLN on drug-eluting after the separation and recovery met the requirements.CONCLUSION The LDP-SLN prepared by micro-emulsion technology has good stability,the method for determination of entrapment efficiency established is applicable to the system entrapment efficiency of SLN.The physical stability was relative stable.
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OBJECTIVE Levodopa solid lipid nano-particles(LDP-SLN)was prepared,and an efficient method for determination of entrapment efficiency(EE%)was established.METHODS LDP-SLN was prepared through the micro-emulsion technology prepared by drawing ternary phase diagram,The morphology was examined by transmission electron microscope,the particle size was determined by laser granularity equipment,and the entrapment efficiency(EE%)was determined with the Sephadex gel chromatogram.The mean particle size,drug entrapment efficiency(EE%)and long-term physical stability of the SLN were investigated.RESULTS The loaded SLN dispersion was a stable milk-like suspension,and was uniform spheres under the electron microscope,the mean particle size was 108 nm,multi-factor spread was 1.153.There were no obvious changes of the particle size and entrapment efficiency at 4 ℃within two month.The method for determination of entrapment efficiency showed a good linearity range from 2 to100 mg· L-1(r=0.999 9),the precision met the requirements,SLN on drug-eluting after the separation and recovery met the requirements.CONCLUSION The LDP-SLN prepared by micro-emulsion technology has good stability,the method for determination of entrapment efficiency established is applicable to the system entrapment efficiency of SLN.The physical stability was relative stable.
Key concepts: Entrapment, Solid lipid nanoparticle, Particle size, Chromatography, Materials science, Emulsion, Particle (ecology), Nanoparticle