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1.
J Microencapsul ; 29(8): 759-69, 2012.
Article in English | MEDLINE | ID: mdl-22612553

ABSTRACT

We developed cationic liposomes containing DNA through a conventional process involving steps of (i) preformation of liposomes, (ii) extrusion, (iii) drying and rehydration and (iv) DNA complexation. Owing to its high prophylactic potentiality against tuberculosis, which had already been demonstrated in preclinical assays, we introduced modifications into the conventional process towards getting a simpler and more economical process for further scale-up. Elimination of the extrusion step, increasing the lipid concentration (from 16 to 64 mM) of the preformed liposomes and using good manufacturing practice bulk lipids (96-98% purity) instead of analytical grade purity lipids (99.9-100%) were the modifications studied. The differences in the physico-chemical properties, such as average diameter, zeta potential, melting point and morphology of the liposomes prepared through the modified process, were not as significant for the biological properties, such as DNA loading on the cationic liposomes, and effective immune response in mice after immunisation as the control liposomes prepared through the conventional process. Beneficially, the modified process increased productivity by 22% and reduced the cost of raw material by 75%.


Subject(s)
Genetic Vectors , Lipids/chemistry , Vaccines/chemistry , Animals , Cations , Female , Liposomes , Mice , Mice, Inbred BALB C , Vaccines/genetics
2.
Drug Deliv ; 13(6): 447-54, 2006.
Article in English | MEDLINE | ID: mdl-17002973

ABSTRACT

Here we describe the application of microparticles (MPs) for the delivery and release of the drug a benzopsoralen. We also evaluated the intracellular distribution and cellular uptake of the drug by using an encapsulation technique for therapeutic optimization. MPs containing the compound 3-ethoxycarbonyl-2H-benzofuro[3,2-f]-1-benzopyran-2-one (psoralen A) were prepared by the solvent evaporation technique, and parameters such as particle size, drug encapsulation efficiency, effect of the encapsulation process on the drug's photochemistry, zeta potential, external morphology, and in vitro release behavior were evaluated. The intracellular distribution of MPs as well as their uptake by tissues were monitored. Size distribution studies using dynamic ligh scattering and scanning electron microscopy revealed that the MPs are spherical in shape with a diameter of 1.4 micro m. They present low tendency toward aggregation, as confirmed by their zeta potential (+10.6 mV). The loading efficiency obtained was 75%. As a consequence of the extremely low diffusivity of the drug in aqueous medium, the drug release profile of the MPs in saline phosphate buffer (pH 7.4) was much slower than that obtained in the biological environment. Among the population of peritoneal phagocytic cells, only macrophages were able to phagocytose poly-d,l-lactic-co-glycolic acid (PLGA) MP. The use of psoralen A in association with ultraviolet light (360 nm) revealed morphological characteristics of cell damage such as cytoplasmic vesiculation, mitochondria condensation, and swelling of both the granular endoplasmatic reticulum and the nuclear membrane. These results indicate that PLGA MP could be a promising delivery system for psoralen in connection with ultraviolet irradiation therapy (PUVA).


Subject(s)
Ficusin/chemistry , Furocoumarins/chemistry , Lactic Acid/chemistry , Polyglycolic Acid/chemistry , Polymers/chemistry , Animals , Cells, Cultured , Chemistry, Pharmaceutical , Drug Carriers , Drug Compounding , Electrochemistry , Ficusin/administration & dosage , Furocoumarins/administration & dosage , Light , Macrophages/physiology , Male , Microscopy, Electron, Scanning Transmission , Nanoparticles , Particle Size , Phagocytosis , Polylactic Acid-Polyglycolic Acid Copolymer , Rats , Rats, Wistar , Scattering, Radiation , Solvents , Spectrophotometry, Ultraviolet , Subcellular Fractions/metabolism
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