固相分散法研究螺内酯的溶出度

Irwin Dewan, S. Islam, M. Shahriar
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引用次数: 1

摘要

本研究的主要目的是利用固体分散技术制备难水溶性药物螺旋体内酯,以获得更好的溶出度,从而进一步提高口服生物利用度。采用两种方法制备固体分散体;溶剂法和熔合法。采用羟丙基甲基纤维素(HPMC - 6cp)、羟丙基纤维素(HPC)、羧甲基纤维素钠(Na-CMC)、聚维酮K12、聚维酮K30、波洛沙姆407等聚合物制备固体分散体。含螺内酯- HPC(96.81%)、HPMC - 6cp(93.05%)、poloxam407(90.84%)、Na-CMC(89.93%)的固体分散体的释放率高于仅含螺内酯(35.27%)、螺内酯-聚维酮K12(76.17%)、聚维酮K30(67.92%)的固体分散体。因此,本研究揭示了固体分散体可能是一种理想的水溶性药物递送系统。需要在这一领域进行进一步的研究,以建立这些药物输送系统,以便将来在商业基础上有效地使用。
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Dissolution study of Spironolactone by using solid dispersion technique
The main objective of the current study was to formulate poorly water soluble drug Spirinolactone by using solid dispersion technique in order to achieve a better dissolution rate which would further help in enhancing oral bioavailability. Solid dispersions were prepared using two methods; solvent method and fusion method. Solid dispersion was prepared by using polymers, such as Hydroxy propylymethyl cellulose (HPMC 6cp), Hydroxy propyl cellulose (HPC), Sodium carboxymethylcellulose (Na-CMC), Povidone K12, Povidone K30, Poloxamer 407. Solid dispersions containing Spironolactone with HPC (96.81%), HPMC 6cp (93.05%), Poloxamer 407 (90.84%) and Na-CMC (89.93%) provided higher release rate than the release rate of solid dispersion containing only Spironolactone (35.27%), and Spironolactone with Povidone K12 (76.17%), Povidone K30 (67.92%). So the present study revealed that the solid dispersion may be an ideal means of drug delivery system for poorly water soluble drugs. Further study in this field was required to establish these drug delivery systems so that in future it can be used effectively in commercial basis.
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