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1.
Chinese Pharmaceutical Journal ; (24): 762-766, 2017.
Artigo em Chinês | WPRIM | ID: wpr-858725

RESUMO

OBJECTIVE: To develop the accelerated release test method of docetaxel capsule tension ring and optimize its formulation. METHODS: The effects of ethanol concentration in the medium (0%, 5%, 10%) and temperature (37 and 45 ℃) on the release rate of docetaxel capsule tension ring were investigated, and the correlation regression equation between the accelerated release rate and the long-term release was established. Then, the best prescription was screened out with the accelerated release test method. RESULTS: The drug release rate of these preparations could be increased by four times under the accelerated conditions, i.e., using pH 7.4 phosphate buffer solution containing 5% ethanol as the release medium and operating at (45±0.5)℃. The accelerated release and long-term release were fitted the best using binomial model (y=0.004 6x2+0.437 4x+9.683 7, r2=0.998 4). The preparation using PLGA5050 (60K-100K=1:1, W/W) with drug-loading of 30% released drug stably and sustainedly for 30 d, and its release behavior was consistent with Peppas equation drug release model. CONCLUSION: Accelerated release testing can be employed as a rapid screening test to facilitate the formulation optimization of docetaxel capsule tension ring. This preparation has been proven to have sustained-release characteristics, suggesting a good clinical application prospect.

2.
Chinese Journal of Experimental Ophthalmology ; (12): 32-37, 2011.
Artigo em Chinês | WPRIM | ID: wpr-635328

RESUMO

Background Some drugs with inhibitory effect on the proliferation of lens epithelial cells have a limiting application in clinic because of their adverse response.To screen the effective and less side-effect drug for supressing LECs growth is very inportant for the prevention and treatment of after cataract.Objective This study was to explore the effects of docetaxel on LECs growth and compare its role with epirubicin hydrochloride,pirarubicin hydrochloTide and rahitrexed.Methotis Immortalized human LECs line (SRA01/04) were cultured and passaged.Different concentrations of docetaxel,epirubicin hydrochloride,pirarubicin hydrochloride and rahitrexed were added into the medium respectively for 24.48 and 72 hours.The proliferation of LECs was detect by M1Yr.Flow cytometry analysis Was used to analyze the influence of different concentrations of docetaxel on cellular cycle at 48 hours after addition of docetaxel,and Annexin V-FITC/PI marking method was used to assesse the apoptosis of LECs under the action of docetaxel.Expression of bcl-2 protein in LECs Was evaluated by Westeru blot. Result The growth rate of LECs Wag 100%in 8-519 pmol/L doeetaxel groups with the normal cell shape.Majority of abnormal cells and low growth rate were found in 66 nmoVL docetaxel group at 48 and 72 hours.The IC50 of docetaxel was lowest in 48 and 72 hours in docetaxel group in comparison to epirubicin hydrochloride and pirarubicin hydrochloride. However,no evident inhibition on LECs growth in 23.22-523.56 μmol/L of raltitrexed.At 48 hours,the percentage of LECs in G2/M phase increased as the asccnte of concentration of docetaxel,showing a significant difference among 4 groups(F=2633.05,P<0.01).The percentage of early apoptotic cells increased to 22.4%(χ2=20.00,P<0.01) and 27.9%(χ2=42.68,P<0.01)from normal control 3.1% at 48 hours after LECs exposed to 8.3 nmol/L and 266 nmol/L docetaxe.The expression of bcl-2 protein in LECs was obviously weakened after addition of docetaxel,especially 8.3 nmol/L docetaxel group. Conclusion Docetaxel,epirubicin hydrochloride and pirarubicin hydrochloride can inhibit the proliferation of human LECs in vitro.But there is no supression on LECs growth inraltitrexed.Docetaxel is proved to have a strongly arrested effect on the proliferation of LECs in comparison with epirubicin hydrochloride and pirarubicin hydrochloride and play its role at concentration-and time-dependent manner.

3.
Acta Pharmaceutica Sinica ; (12): 956-962, 2008.
Artigo em Chinês | WPRIM | ID: wpr-232660

RESUMO

The in situ gel systems can form gel in situ after administration to achieve sustained release, thus provides a promising strategy for drug delivery systems. The aim of this study was to design and prepare in situ gel systems for the oral delivery of ibuprofen (IBU-ISG) and study its pharmacokinetics in Beagle dogs. The characteristics of the basic material of gellan gum (Kelcogel, Kel) and sodium alginate (Manugel, M) were studied through investigating the complex viscosity of the Kel or M solution with or without different concentrations of calcium ion or sodium citrate to ascertain the amount range of the excipients. The measurement of complex viscosity of the solution (0. 5% Kel and 1% M) with different concentrations of sodium citrate and calcium ion was carried out to select the suitable proportion of calcium ion and sodium citrate. The formulation of binary IBU-ISG was optimized by monitoring the complex viscosity before gelling in vitro release property. The optimized formulation contains 1.0% sodium alginate, 0.5% gellan gum, 0. 21% sodium citrate and 0.056% calcium chloride. A single oral dose of IBU-ISG and reference formulation (IBU suspension) were given to each of the 6 healthy Beagle dogs, ibuprofen in plasma at different sampling times was determined by RP-HPLC. The pharmacokinetics parameters in 6 Beagle dogs were calculated. The Tmax of IBU-ISG and reference formulation were (1.8 +/- 0.6) and (0.4 +/- 0. 1) h. The Cmax values were (29.2 +/- 7.6) and (37.8 +/- 2.2) microg x mL(-1). The T(1/2) were (2.3 +/- 0.5) and (2.0 +/- 0.9) h, and the AUC(0-t) were (131.0 +/- 38.6) and (117.3 +/- 23.1) microg x mL(-1) x h, respectively. The binary IBU-ISG was successfully prepared.


Assuntos
Animais , Cães , Feminino , Masculino , Administração Oral , Alginatos , Química , Analgésicos não Narcóticos , Sangue , Farmacocinética , Área Sob a Curva , Cloreto de Cálcio , Química , Citratos , Química , Preparações de Ação Retardada , Composição de Medicamentos , Métodos , Sistemas de Liberação de Medicamentos , Excipientes , Ácido Glucurônico , Química , Ácidos Hexurônicos , Química , Ibuprofeno , Sangue , Farmacocinética , Polissacarídeos Bacterianos , Química , Viscosidade
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