A study of release mechanisms of different ophthalmic drugs from erodible ocular inserts based on poly(ethylene oxide)

被引:29
作者
Di Colo, G [1 ]
Zambito, Y [1 ]
机构
[1] Univ Pisa, Dept Bioorgan Chem & Biopharmaceut, I-56126 Pisa, Italy
关键词
release mechanism; ocular insert; poly(ethylene oxide); prednisolone; oxytetracycline; gentamicin; ofloxacin;
D O I
10.1016/S0939-6411(02)00086-3
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
When topical controlled delivery of ophthalmic drugs is realised via erodible inserts, drug bioavailability is maximised, if release is controlled exclusively by insert erosion, since parallel mechanisms which increase the release rate, also increases the dose fraction cleared from the precorneal area by tear fluid draining. The respective contributions of diffusion and erosion to the release mechanism of different drugs, namely, prednisolone (PDS), oxytetracycline hydrochloride (OTH) and gentamicin sulfate (GTS), from erodible ocular inserts based on poly(ethylene oxide) (PEO) of molecular weight 400 or 900 kDa was determined by an in vitro technique adequate to predict the release mechanism in vivo. PDS and OTH were released with erosion-controlled kinetics. With therapeutic doses of these drugs in the inserts (0.3 mg, 1.5%), the possibility of a purely erosive mechanism was shown to rely upon drug-PEO molecular interactions, which limit drug diffusion in the swollen matrix. This was the case with OTH, for which strong interactions with PEO were measured, whereas some contribution from the parallel diffusive mechanism was evidenced for PDS, which showed weaker interactions with polymer. Such a contribution disappeared when the PDS concentration in the insert was increased to 6%, which suggested that the erosive mechanism is favoured by a drug concentration in the hydrated insert substantially higher than solubility. On the other hand, the release of about 50% GTS dose was controlled by diffusion, due to the high water solubility of this drug, accompanied by weak drug-PEO interactions. In this case the residence time of drug in the precorneal area is expected to be significantly shorter than that of the PEO carrier. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:193 / 199
页数:7
相关论文
共 12 条
[1]   POLY(ETHYLENE OXIDE) (PEO) AND DIFFERENT MOLECULAR-WEIGHT PEO BLENDS MONOLITHIC DEVICES FOR DRUG RELEASE [J].
APICELLA, A ;
CAPPELLO, B ;
DELNOBILE, MA ;
LAROTONDA, MI ;
MENSITIERI, G ;
NICOLAI, L .
BIOMATERIALS, 1993, 14 (02) :83-90
[2]   EVALUATION OF A DYNAMIC PERMEATION TECHNIQUE FOR STUDYING DRUG-MACROMOLECULE INTERACTIONS [J].
BOTTARI, F ;
DICOLO, G ;
NANNIPIERI, E ;
SAETTONE, MF ;
SERAFINI, MF .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1975, 64 (06) :946-949
[3]  
BOTTARI F, 1978, IL FARMACO ED PR, V33, P3
[4]   Relevance of polymer molecular weight to the in vitro/in vivo performances of ocular inserts based on poly(ethylene oxide) [J].
Di Colo, G ;
Burgalassi, S ;
Chetoni, P ;
Fiaschi, MP ;
Zambito, Y ;
Saettone, MF .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2001, 220 (1-2) :169-177
[5]   Gel-forming erodible inserts for ocular controlled delivery of ofloxacin [J].
Di Colo, G ;
Burgalassi, S ;
Chetoni, P ;
Fiaschi, MP ;
Zambito, Y ;
Saettone, MF .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2001, 215 (1-2) :101-111
[6]   EFFECT OF WATER-SOLUBLE ADDITIVES ON DRUG RELEASE FROM SILICONE-RUBBER MATRICES .2. SUSTAINED-RELEASE OF PREDNISOLONE FROM NON-SWELLING DEVICES [J].
DICOLO, G ;
CARELLI, V ;
NANNIPIERI, E ;
SERAFINI, MF ;
VITALE, D .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1986, 30 (01) :1-7
[7]   MASS-TRANSPORT PHENOMENA AND MODELS - THEORETICAL CONCEPTS [J].
FLYNN, GL ;
YALKOWSKY, SH ;
ROSEMAN, TJ .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1974, 63 (04) :479-510
[8]   THEORETICAL ANALYSIS OF DIFFUSIONAL MOVEMENT THROUGH HETEROGENEOUS BARRIERS [J].
HIGUCHI, WI ;
HIGUCHI, T .
JOURNAL OF THE AMERICAN PHARMACEUTICAL ASSOCIATION, 1960, 49 (09) :598-606
[9]   DRUG-RELEASE FROM COMPRESSED HYDROPHILIC POLYOX-WSR TABLETS [J].
KIM, CJ .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1995, 84 (03) :303-306
[10]   Effects of drug solubility, drug loading, and polymer molecular weight on drug release from polyox® tablets [J].
Kim, CJ .
DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 1998, 24 (07) :645-651