Goskonda V R, Ghandehari H, Reddy I K
Division of Basic Pharmaceutical Sciences, School of Pharmacy, University of Louisiana at Monroe, Monroe, Louisiana 71209, USA.
J Pharm Sci. 2001 Jan;90(1):12-22. doi: 10.1002/1520-6017(200101)90:1<12::aid-jps2>3.0.co;2-w.
The objective of this study was to test the three novel ester derivatives of phenylephrone (isovaleryl, phenylacetyl, and pivalyl esters) as potential site-specific chemical delivery systems. The mydriatic effect and ocular distribution/metabolism of these compounds were studied by topical application to the eyes of normal rabbits. It was assumed that a reduction-hydrolysis sequence could produce the active phenylephrine in the iris-ciliary body tissues. All the derivatives showed a more pronounced mydriatic effect than that of phenylephrine, whereas phenylephrone was completely devoid of any mydriatic activity. Phenylacetyl ester was the most potent drug, with short duration of action, and showed maximum activity in the presence of 0.01% benzalkonium chloride without causing any visible irritation to the rabbit eye. Administration of the novel compounds to the eyes of the rabbits showed no traces of phenylephrine in the systemic circulation, contrary to topical administration of phenylephrine. Phenylephrone was detected in different compartments of the eye, whereas phenylephrine was present only in the iris-ciliary body tissues following administration of phenylacetyl ester. The conversion of phenylephrone esters to the active drug, phenylephrine, and thus their subsequent activity was dependent on the physicochemical characteristics of the drugs. The results suggest the potential use of phenylacetyl ester as a potent short-term mydriatic agent without systemic side effects.
本研究的目的是测试三种新型去氧肾上腺素酯衍生物(异戊酰酯、苯乙酰酯和新戊酰酯)作为潜在的位点特异性化学递送系统。通过将这些化合物局部应用于正常兔眼,研究了它们的散瞳作用以及眼部分布/代谢情况。假定还原-水解序列可在虹膜-睫状体组织中产生活性去氧肾上腺素。所有衍生物均显示出比去氧肾上腺素更显著的散瞳作用,而去氧肾上腺素完全没有任何散瞳活性。苯乙酰酯是最有效的药物,作用持续时间短,在0.01%苯扎氯铵存在下显示出最大活性,且对兔眼未造成任何可见刺激。与局部应用去氧肾上腺素相反,给兔眼施用新型化合物后,在体循环中未检测到去氧肾上腺素的痕迹。在眼的不同部位检测到了去氧肾上腺素,而在施用苯乙酰酯后,去氧肾上腺素仅存在于虹膜-睫状体组织中。去氧肾上腺素酯向活性药物去氧肾上腺素的转化以及随后的活性取决于药物的物理化学特性。结果表明苯乙酰酯作为一种有效的短期散瞳剂且无全身副作用具有潜在用途。