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Biomedical subjects

J C Keister

Publications and source records attributed to J C Keister.

2 recordsLinked to original sources

Transient analysis of ocular drug delivery: zero-volume effect.

Dose volume reduction is one method for reducing the nonproductive loss of ophthalmic drugs caused by premature drainage from the precorneal area. A new mathematical method is presented for calculating the bioavailability enhancement achieved by the dose volume reduction method. This new model suggests that the steady-state assumption used in a previous paper overestimated the bioavailability enhancement, depending upon physical factors such as distribution and diffusion coefficients of the drug in tissue and solution. The analysis shows that transient effects can make a difference up to a complete elimination of the zero-volume effect in those cases where the distribution coefficient is large and the permeability coefficient is small (i.e., for large, lipophilic molecules).

Absorption↗

Limits on optimizing ocular drug delivery.

The problem of optimizing ocular bioavailability of topically applied ophthalmic drugs is discussed. A formula for drug concentration in the tear film is derived using well-known pharmacokinetic relationships and a first-order drug decay model for the tear film. The time integral of the tear film concentration is then related to ocular bioavailability. The results of this analysis show that: (1) high corneal permeability (corresponding to lipophilic compounds) produces the highest bioavailability; (2) the bioavailability of drugs with high corneal permeability is relatively unaffected by drug volume; and (3) by making the dosage volume sufficiently small, a bioavailability improvement factor of approximately 4 can be obtained for drugs with low corneal permeability.

Administration, Topical↗