Abstract
Poorly water-soluble drugs N-5159, griseofulvin (GFV), glibenclamide (GBM) and nifedipine (NFP) were ground in a dry process with polyvinylpyrrolidone (PVP) and sodium dodecyl sulfate (SDS). Different crystallinity behavior of each drug during grinding was shown in the ternary Drug/PVP/SDS system. However, when each ternary Drug/PVP/SDS ground mixture was added to distilled water, crystalline nanoparticles which were 200 nm or less in size were formed and had excellent stability. Zeta potential measurement suggested that the nanoparticles had a structure where SDS was adsorbed onto the particles that were formed by the adsorption of PVP on the surface of drug crystals. Stable existence of crystalline nanoparticles was attributable to the inhibition of aggregation caused by the adsorption of PVP and SDS on the surface of drug crystals. Furthermore, the electrostatic repulsion due to the negative charge of SDS on a shell of nanoparticles could be assumed to contribute to the stable dispersion. © 2003 Pharmaceutical Society of Japan.
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Itoh, K., Pongpeerapat, A., Tozuka, Y., Oguchi, T., & Yamamoto, K. (2003). Nanoparticle formation of poorly water-soluble drugs from ternary ground mixtures with PVP and SDS. Chemical and Pharmaceutical Bulletin, 51(2), 171–174. https://doi.org/10.1248/cpb.51.171
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