Prolonged Intragastric Drug Delivery Mediated by EudragitA® E-Carrageenan Polyelectrolyte Matrix Tablets

被引:32
作者
Bani-Jaber, Ahmad [1 ]
Al-Aani, Leena [1 ]
Alkhatib, Hatim [1 ]
Al-Khalidi, Bashar [1 ]
机构
[1] Univ Jordan, Fac Pharm, Amman, Jordan
关键词
Eudragit E; carrageenan; gastric retention; polyelectrolyte complexation; CONTROLLED-RELEASE SYSTEM; GASTRIC RETENTION; PHYSICOCHEMICAL CHARACTERIZATION; IN-VIVO; FORMULATION; METRONIDAZOLE; FAMOTIDINE; FUROSEMIDE; STABILITY; POLYMERS;
D O I
10.1208/s12249-011-9595-0
中图分类号
R9 [药学];
学科分类号
100702 [药剂学];
摘要
Interpolyelectrolyte (IPE) complexation between carrageenan (CG) and Eudragit E (EE) was studied in 0.1 M HCl and was used to develop floating matrix tablets aimed to prolong gastric-residence time and sustain delivery of the loaded drug. The optimum EE/CG IPE complexation weight ratio (0.6) was determined in 0.1 M HCl using apparent viscosity measurements. The IPE complex was characterized by Fourier transform infrared spectroscopy and differential scanning calorimetry. Metronidazole matrix tablets were prepared by direct compression using EE, CG, or hybrid EE/CG with ratio optimal for IPE complexation. Corresponding effervescent tablets were prepared by including Na bicarbonate as an effervescent agent. Tablets were evaluated for in vitro buoyancy and drug release in 0.1 M HCl. Both CG and EE-CG effervescent matrices (1:2 drug to polymer weight ratio, 60 mg Na bicarbonate) achieved fast and prolonged floating with floating lag times less than 30 s and floating duration of more than 10 h. The corresponding EE effervescent matrices showed delayed floating and rapid drug release, and completely dissolved after 3 h of dissolution. CG matrices showed an initial burst drug release (48.3 +/- 5.0% at 1 h) followed by slow drug release over 8 h. EE-CG matrices exhibited sustained drug release in almost zero-order manner for 10 h (68.2 +/- 6.6%). The dissolution data of these matrices were fitted to different dissolution models. It was found that drug release followed zero-order kinetics and was controlled by the superposition of the diffusion and erosion.
引用
收藏
页码:354 / 361
页数:8
相关论文
共 23 条
[1]
Effects of drying methods on the physicochemical and compressional characteristics of Okra powder and the release properties of its metronidazole tablet formulation [J].
Bakre, L. G. ;
Jaiyeoba, K. T. .
ARCHIVES OF PHARMACAL RESEARCH, 2009, 32 (02) :259-267
[2]
Characterization of a diltiazem-lambda carrageenan complex [J].
Bonferoni, MC ;
Rossi, S ;
Ferrari, F ;
Bettinetti, GP ;
Caramella, C .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2000, 200 (02) :207-216
[3]
Intragastric distribution of ion-exchange resins: A drug delivery system for the topical treatment of the gastric mucosa [J].
Burton, S ;
Washington, N ;
Steele, RJC ;
Musson, R ;
Feely, L .
JOURNAL OF PHARMACY AND PHARMACOLOGY, 1995, 47 (11) :901-906
[4]
Development of a novel controlled-release system for gastric retention [J].
Deshpande, AA ;
Shah, NH ;
Rhodes, CT ;
Malick, W .
PHARMACEUTICAL RESEARCH, 1997, 14 (06) :815-819
[5]
Controlled-release drug delivery systems for prolonged gastric residence: An overview [J].
Deshpande, AA ;
Rhodes, CT ;
Shah, NH ;
Malick, AW .
DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 1996, 22 (06) :531-539
[6]
Development and in vitro evaluation of an oral floating matrix tablet formulation of diltiazem hydrochloride [J].
Gambhire, Manoj N. ;
Ambade, Kshitij W. ;
Kurmi, Sushma D. ;
Kadam, Vilasrao J. ;
Jadhav, Kisan R. .
AAPS PHARMSCITECH, 2007, 8 (03)
[7]
Jaimini M., 2007, Current Drug Delivery, V4, P51, DOI 10.2174/156720107779314730
[8]
MECHANISMS OF SOLUTE RELEASE FROM POROUS HYDROPHILIC POLYMERS [J].
KORSMEYER, RW ;
GURNY, R ;
DOELKER, E ;
BURI, P ;
PEPPAS, NA .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1983, 15 (01) :25-35
[9]
Li S, 2001, AAPS PharmSciTech, V2, pE1
[10]
DEVELOPMENT AND EVALUATION OF A MONOLITHIC FLOATING DOSAGE FORM FOR FUROSEMIDE [J].
MENON, A ;
RITSCHEL, WA ;
SAKR, A .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1994, 83 (02) :239-245