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1.
Acta Pharmaceutica Sinica ; (12): 545-549, 2007.
Article in Chinese | WPRIM | ID: wpr-268600

ABSTRACT

BSA liposomes were prepared with approximately 100 nm mean particle size under rather gentle experiment conditions, and two-colorimetric coomassie brilliant blue protein was employed to measure the free drug in the entrapped efficiency (EE%) determination of BSA liposomes. Gel filtration was used to measure the EE%, and several Sephadex gels were examined by the separation of liposomes and free drug. To determine the free drug, three methods were compared on two-colorimetric UV spectrophotography, Bradford and two-colorimetric coomassie brilliant blue, separately. Two-colorimetric coomassie brilliant blue process increased the accuracy and improved the sensitivity of the assay about 20-fold comparing with the Bradford method. Two-colorimetric coomassie brilliant blue assay appeared to be more sensitive and showed broader dynamic range to measure the free BSA in the EE% determination of BSA liposome.


Subject(s)
Colorimetry , Drug Carriers , Drug Compounding , Electrophoresis, Gel, Two-Dimensional , Liposomes , Particle Size , Rosaniline Dyes , Serum Albumin, Bovine , Spectrophotometry, Ultraviolet
2.
Acta Pharmaceutica Sinica ; (12): 429-433, 2007.
Article in Chinese | WPRIM | ID: wpr-281879

ABSTRACT

Novel solid lipid nanoparticle (SLN) system is prepared with Compritol ATO 888 and tricaprylic glyceride. DSC, XRD, SAXS and NMR are employed to study the novel carrier property and microstructure. When the peak melting point decreased from 70.8 degrees C to 61.4 degrees C, the enthalpy sharply decreased. It could be concluded that the regular crystal lattices in the novel carriers are broken out for the oil joined in them. Melting behavior is occurred at -17.7 degrees C while novel SLN is composed of oil and solid lipid mixture from the DSC measurement. Most alpha phase and least beta' phase are in the nano carrier system whether drug loading or not from the XRD investigation. There is only 0.1 nm change of long space among the novel SLN made of mixture and the lipid matrix and traditional SLN; therefore, it is impossible of the oil molecular insert into the solid glyceride structure. Since the different melting behavior (DSC measurements) and molecular move state (NMR investigations), two lipid matrix are still in two state of liquid and solid lipid in the novel SLN carrier. Presume the microstructure of the novel SLN prepared by our experiment would be that liquid oil has formed superfine nano accommodation encapsulated with solid lipid, but the whole particle is still in nano size range.


Subject(s)
Calorimetry, Differential Scanning , Caprylates , Chemistry , Diterpenes , Chemistry , Drug Carriers , Chemistry , Drug Delivery Systems , Epoxy Compounds , Chemistry , Fatty Acids , Chemistry , Magnetic Resonance Spectroscopy , Nanoparticles , Particle Size , Phenanthrenes , Chemistry , Triglycerides , Chemistry , X-Ray Diffraction
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