剂型对阿替洛尔外用兔眼部和全身吸收的影响。

Y H Lee, V H Lee
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引用次数: 16

摘要

本研究的目的是确定不同配方在最大化阿替洛尔局部应用的眼吸收与全身吸收的比例方面的相对功效。测试了各种pH值和滋补度的配方,并含有各种防腐剂和聚合物。在溶液注入后30 min,通过监测阿替洛尔在各前段组织中的浓度来测定眼部吸收,在480 min内通过监测阿替洛尔浓度的时间过程来测定全身吸收。分析方法为反相高效液相色谱法。除含有0.025%苯扎氯铵或0.5% EDTA的制剂外,所有制剂在血浆中的药物浓度与时间曲线相似,在约100分钟时达到30-50 ng/ml的峰值浓度。对于苯扎氯铵和EDTA,尽管眼吸收也有所增加,但系统吸收却有所增加。相比之下,将溶液的滋补性降低到80 mOsm/kg时,房水与血浆峰浓度之比增加了2倍,虹膜-睫状体与血浆峰浓度之比增加了3倍。在配方中加入3.75%的聚乙烯醇后,虹膜睫状体与血浆药物浓度比增加了52倍。因此可以得出结论,对于像阿替洛尔这样的亲水药物,增加膜通透性和/或增强非角膜药物通路的配方变化可能比增加结膜囊内药物停留的配方变化更有希望最大化眼部与全身药物吸收的比例。
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Formulation influence on ocular and systemic absorption of topically applied atenolol in the pigmented rabbit.

The objective of this study was to determine the relative efficacy of various formulations in maximizing the ratio of ocular to systemic absorption of topically applied atenolol following solution instillation in the pigmented rabbit. Formulations of various pH's and tonicities and containing various preservatives and polymers were tested. Ocular absorption was determined by monitoring atenolol concentrations in various anterior segment tissues at 30 min following solution instillation, while systemic absorption was determined by monitoring the time course of atenolol concentration over 480 min. Reversed phase HPLC was the analytical methodology. All formulations except those containing 0.025% benzalkonium chloride or 0.5% EDTA showed similar drug concentration vs. time profiles in plasma, attaining a peak concentration of 30-50 ng/ml at about 100 min. For benzalkonium chloride and EDTA, there was an undesirable increase in systemic absorption, although ocular absorption was also increased. By contrast, lowering the solution tonicity to 80 mOsm/kg increased the ratio of aqueous humor to plasma peak concentrations 2 times and the ratio of iris-ciliary body to plasma peak concentrations 3 times. Incorporation of 3.75% poly(vinyl alcohol) into the formulation afforded yet a larger increase in the iris-ciliary body to plasma drug concentration ratio (52 times.) It may therefore be concluded that, for a hydrophilic drug like atenolol, formulation changes that increase membrane permeability and/or enhance noncorneal drug access may be more promising than those that increase drug residence in the conjunctival sac with respect to maximizing the ratio of ocular to systemic drug absorption.

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