Abstract
ABSTRACT
The objective of this study was to assess the corneal and scleral permeabilities of natural prostaglandins as well as their prodrugs and analogs through human cornea and sclera in vitro. The "apparent permeability coefficients" (Papp) of natural prostaglandins (PGF2α, PGD2 and PGE2), ester prodrugs of PGF2α (1-isopropyl PGF2α, 11-pivaloyl PGF2α and 11,15-dipivaloyl PGF2α) and four analogs (16-m-chlorophenoxy tetranor PGF2α, 17-phenyl trinor PGF2α, 17-phenyl trinor PGE2 and AH 13205) were measured using modified Ussing perfusion chambers and quantitative high performance liquid chromatography. Our results indicate that the corneal penetration of natural prostaglandins (PGs) is poor (the Papp values ranged from 1.65 × 10−6 to 2.38 × 10−6cm/sec), while the PGF2α prodrugs showed higher corneal penetration than PGF2α. The 11-pivaloyl ester of PGF2α penetrated the cornea faster than both 1-isopropyl ester and the lipophilic 11,15-dipivaloyl ester. The PG analogs also showed poor corneal penetration (Papp values ranged from 0.696 × 10−6 to 1.49 × 10−6 cm/sec) except for AH 13205. All compounds tested showed good scleral penetration (Papp values ranged from 6.90 × 10−6 to 17.1 × 10−6 cm/sec) except PGF2α 11,15-dipivaloyl (Papp = 1.22 × 10−6 cm/sec). The penetration profiles correlated well with tissue uptake ratios (ratio of final tissue concentration to initial dose) for all compounds except 11,15-dipivalate PGF2α. All ester prodrugs (but not the PGs and analogs) underwent corneal first-pass metabolism. The study results demonstrate that transcleral absorption may play a significant role in the ocular absorption of these compounds.
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