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Formulation design and characterization of a non-ionic surfactant based vesicular system for the sustained delivery of a new chondroprotective agent
Khan, Muhammad Imran; Madni, Asadullah; Ahmad, Saeed; Mahmood, Muhammad Ahmad; Rehman, Mubashar; Ashfaq, Muhammad.
  • Khan, Muhammad Imran; Islamia University. Department of Pharmacy. Bahawalpur. PK
  • Madni, Asadullah; Islamia University. Department of Pharmacy. Bahawalpur. PK
  • Ahmad, Saeed; Islamia University. Department of Pharmacy. Bahawalpur. PK
  • Mahmood, Muhammad Ahmad; Islamia University. Department of Pharmacy. Bahawalpur. PK
  • Rehman, Mubashar; Islamia University. Department of Pharmacy. Bahawalpur. PK
  • Ashfaq, Muhammad; Islamia University. Department of Pharmacy. Bahawalpur. PK
Braz. j. pharm. sci ; 51(3): 607-615, July-Sept. 2015. tab, graf
Article in English | LILACS | ID: lil-766311
ABSTRACT
Diacerein is used for symptomatic relief and cartilage regeneration in osteoarthritis. Due to gastrointestinal side effects, poor aqueous solubility and low bioavailability, its clinical usage has been restricted. The objective of the present study was to enhance its dissolution profile and to attain sustained release by designing a novel delivery system based on niosomes. Five niosomal formulations (F1-F5) with non-ionic surfactant (sorbitan monostearate) and cholesterol in varying ratios of 55, 64, 73, 82 and 91 were developed by the reverse-phase evaporation technique. The size and polydispersivity index (PDI) were found in the range of 0.608 µm to 1.010 µm and 0.409 to 0.781, respectively. Scanning electron microscopy (SEM) of the selected formulation (F3) revealed spherical vesicles, and 79.8% entrapment was achieved with F3 (73). Dissolution studies using the dialysis method showed sustained release behaviour for all formulations. The optimized surfactant-to-cholesterol concentration (73) in formulation F3sustained the drug-release time (T50%) up to 10 hours. Kinetic modelling exhibited a zero-order release (R2=0.9834) and the release exponent 'n' of the Korsmayer-Peppas model (n=0.90) confirmed non-fickian and anomalous release. The results of this study suggest that diacerein can be successfully entrapped into niosomes using sorbitan monostearate and that these niosomes have the potential to deliver diacerein efficiently at the absorption site.
RESUMO
A diacereína é usada para o alívio sintomático e para a regeneração da cartilagem na osteoartrite. Devido aos efeitos adversos gastrointestinais, baixa solubilidade aquosa e biodisponibilidade, o seu uso clínico tem sido restrito. O objetivo do presente estudo foi melhorar o perfil de dissolução deste fármaco e obter liberação prolongada através do planejamento de um novo sistema de liberação designado de niossoma. Cinco formulações distintas de niossomas (F1 a F5) contendo tensoativos não iônicos (monoestearato de sorbitano) e colesterol, em diferentes proporções, de 55, 64, 73, 82 e 91, foram desenvolvidas através da técnica de evaporacão de fase reversa. Os tamanhos e índices de polidispersibilidade (PDI) obtidos variam entre 0,608 e 1,01 µm e entre 0,409 e 0,7781, respectivamente. Imagens de microscopia electrônica de varrimento (SEM) da formulação selecionada (F3) revelaram vesículas esféricas. Obteve-se encapsulação de 79,8% com a formulação F3 (73). Estudos de dissolução usando o método de diálise demonstraram padrão de liberacão prolongada para todas as formulações. A proporção de tensoativo e colesterol (73) na formulacão F3 prolongou o tempo de liberação do fármaco (T50%) até 10 horas. Estudos de modelação cinética demonstraram ordem de liberacão zero (R2=0,9834) e o expoente de liberação "n" do modelo de Korsmayer-Peppas (n=0.90) confirmou a liberação não-fickiana e anômala. Os resultados deste estudo sugerem que a diacereína pode ser encapsulada com sucesso no interior de niossomas, utilizando monostearato de sorbitano, o qual tem potencial para liberar, eficientemente, a diacereína no local de absorção.
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Full text: Available Index: LILACS (Americas) Main subject: Surface-Active Agents / Chemistry, Pharmaceutical Language: English Journal: Braz. j. pharm. sci Year: 2015 Type: Article / Project document Affiliation country: Pakistan Institution/Affiliation country: Islamia University/PK

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Full text: Available Index: LILACS (Americas) Main subject: Surface-Active Agents / Chemistry, Pharmaceutical Language: English Journal: Braz. j. pharm. sci Year: 2015 Type: Article / Project document Affiliation country: Pakistan Institution/Affiliation country: Islamia University/PK