Sasaki H, Kashiwagi S, Mukai T, Nishida K, Nakamura J, Nakashima M, Ichikawa M
Department of Hospital Pharmacy, Nagasaki University School of Medicine, Japan.
Biol Pharm Bull. 1999 Sep;22(9):956-60. doi: 10.1248/bpb.22.956.
The purpose of this study was to investigate the absorption behavior of an ophthalmic drug injected in rabbit periocular tissues. After intracapsular, retrobulbar and palpebral conjunctival injections of 150 microl and 50 microl fluorescein isothiocyanate dextran (FITC-dextran, average molecular weight 11000), leakage of the dye into the tear fluid was dependent on the injection route and volume. After periocular injections (50 microl) of tilisolol, as a model beta-blocker, the concentrations in the tear fluid, blood, aqueous humor and vitreous body were determined by HPLC. Slight drug leakage was observed in the tear fluid after injections. The periocular injections showed a faster absorption and a higher area under the concentration-time curve (AUC) in the plasma and a lower AUC in the aqueous humor than those observed in instillation. They also showed a higher ratio of AUC of tilisolol in the vitreous body to AUC in the aqueous humor than that observed in the instillation. Among the periocular injections, retrobulbar injection showed the highest concentrations in the plasma and the lowest in the aqueous humor and vitreous body, while intracapsular injection showed the lowest in the plasma and the highest in the aqueous humor and vitreous body. Although the periocular injections showed a rapid systemic absorption of drug by a rich topical vasculature, it might be an effective approach to deliver the drug to the periocular tissues and vitreous body.
本研究的目的是调查眼部药物注射到兔眼周组织后的吸收行为。在囊内、球后和睑结膜下注射150微升和50微升异硫氰酸荧光素葡聚糖(FITC-葡聚糖,平均分子量11000)后,染料渗漏到泪液中的情况取决于注射途径和体积。作为模型β受体阻滞剂的替利洛尔经眼周注射(50微升)后,通过高效液相色谱法测定泪液、血液、房水和玻璃体中的浓度。注射后在泪液中观察到轻微的药物渗漏。与滴眼给药相比,眼周注射在血浆中显示出更快的吸收和更高的浓度-时间曲线下面积(AUC),而在房水中的AUC较低。它们还显示出玻璃体中替利洛尔的AUC与房水中AUC的比值高于滴眼给药。在眼周注射中,球后注射在血浆中的浓度最高,在房水和玻璃体中的浓度最低,而囊内注射在血浆中的浓度最低,在房水和玻璃体中的浓度最高。尽管眼周注射通过丰富的局部血管显示出药物的快速全身吸收,但它可能是将药物递送至眼周组织和玻璃体的一种有效方法。