Форма представления | Статьи в зарубежных журналах и сборниках |
Год публикации | 2014 |
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Герасимов Александр Владимирович, автор
Горбачук Валерий Виленович, автор
Зиганшин Марат Ахмедович, автор
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Усманова Лиана Станиславовна, автор
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Библиографическое описание на языке оригинала |
Gerasimov, A.V. Low molecular weight polyethylene glycols as matrix to obtain solid dispersions of sulfanilamide / A.V. Gerasimov, M.A. Ziganshin, V.V. Gorbatchuk, L.S. Usmanova // International Journal of Pharmacy and Pharmaceutical Sciences. – 2014. – V.6, N.6. – P.372-377. |
Аннотация |
Objective: The objective of the present study is a determination of optimal ratios of polyethylene glycol:sulfanilamide at which formation of solid dispersion is observed. Also study the effect of the polymer on the limiting solubility of sulfanilamide in water. Methods: Using low-temperature differential scanning calorimetry (DSC), it was made possible to obtain solid dispersions of sulfanilamide with polyethylene glycols having average molecular weight 1000 and 1400. UV-spectroscopy was used to determine the effect of polymer on limiting solubility of sulfanilamide. Results: An optimal polymer:sulfanilamide ratios are 7:1 and 4:1 for PEG-1000 and PEG-1400, respectively. Polymer in a drug composition allows for the increase the sulfanilamide content in water up to 3.0 times as compared with the solution of individual drug. Conclusion: These promising materials can be used for manufacture of drugs in various forms: capsular drugs, ointment and suppositories. |
Ключевые слова |
Solid dispersion, Sulfanilamide, Polyethylene glycol, Differential scanning calorimetry |
Название журнала |
International Journal of Pharmacy and Pharmaceutical Sciences
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https://repository.kpfu.ru/?p_id=84284 |
Файлы ресурса | |
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Полная запись метаданных |
Поле DC |
Значение |
Язык |
dc.contributor.author |
Герасимов Александр Владимирович |
ru_RU |
dc.contributor.author |
Горбачук Валерий Виленович |
ru_RU |
dc.contributor.author |
Зиганшин Марат Ахмедович |
ru_RU |
dc.contributor.author |
Усманова Лиана Станиславовна |
ru_RU |
dc.date.accessioned |
2014-01-01T00:00:00Z |
ru_RU |
dc.date.available |
2014-01-01T00:00:00Z |
ru_RU |
dc.date.issued |
2014 |
ru_RU |
dc.identifier.citation |
Gerasimov, A.V. Low molecular weight polyethylene glycols as matrix to obtain solid dispersions of sulfanilamide / A.V. Gerasimov, M.A. Ziganshin, V.V. Gorbatchuk, L.S. Usmanova // International Journal of Pharmacy and Pharmaceutical Sciences. – 2014. – V.6, N.6. – P.372-377. |
ru_RU |
dc.identifier.uri |
https://repository.kpfu.ru/?p_id=84284 |
ru_RU |
dc.description.abstract |
International Journal of Pharmacy and Pharmaceutical Sciences |
ru_RU |
dc.description.abstract |
Objective: The objective of the present study is a determination of optimal ratios of polyethylene glycol:sulfanilamide at which formation of solid dispersion is observed. Also study the effect of the polymer on the limiting solubility of sulfanilamide in water. Methods: Using low-temperature differential scanning calorimetry (DSC), it was made possible to obtain solid dispersions of sulfanilamide with polyethylene glycols having average molecular weight 1000 and 1400. UV-spectroscopy was used to determine the effect of polymer on limiting solubility of sulfanilamide. Results: An optimal polymer:sulfanilamide ratios are 7:1 and 4:1 for PEG-1000 and PEG-1400, respectively. Polymer in a drug composition allows for the increase the sulfanilamide content in water up to 3.0 times as compared with the solution of individual drug. Conclusion: These promising materials can be used for manufacture of drugs in various forms: capsular drugs, ointment and suppositories. |
ru_RU |
dc.language.iso |
ru |
ru_RU |
dc.subject |
Solid dispersion |
ru_RU |
dc.subject |
Sulfanilamide |
ru_RU |
dc.subject |
Polyethylene glycol |
ru_RU |
dc.subject |
Differential scanning calorimetry |
ru_RU |
dc.title |
Low molecular weight polyethylene glycols as matrix to obtain solid dispersions of sulfanilamide |
ru_RU |
dc.type |
Статьи в зарубежных журналах и сборниках |
ru_RU |
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