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Proteins|February 1, 1997
Is cyanate a carbonic anhydrase substrate?C T Supuran, C W Conroy, T H MarenJournal of Ocular Pharmacology and Therapeutics : the Official Journal of the Association for Ocular Pharmacology and Therapeutics|December 29, 1998
The ocular distribution of methazolamide after corneal and scleral administration: the effect of ionization stateC W Conroy, T H MarenExperimental Eye Research|August 1, 1995
Effect of pH on the ocular distribution of a topical carbonic anhydrase inhibitorC W Conroy, T H MarenBiophysical Chemistry|October 1, 1989
The permeability of hydrophobic membranes to 22Na salts and 14CO2 in low dielectric mediaC W Conroy, T H MarenJournal of Ocular Pharmacology and Therapeutics : the Official Journal of the Association for Ocular Pharmacology and Therapeutics|May 6, 1999
Corneal sequestration and delivery to ciliary process of six topically applied sulfonamidesC W Conroy, T H MarenMolecular Pharmacology|September 1, 1995
The effect of temperature on the binding of sulfonamides to carbonic anhydrase isoenzymes I, II, and IVC W Conroy, T H MarenThe Journal of Biological Chemistry|December 15, 1993
A new class of carbonic anhydrase inhibitorT H Maren, C W ConroyClinica Chimica Acta; International Journal of Clinical Chemistry|November 15, 1985
The determination of osteopetrotic phenotypes by selective inactivation of red cell carbonic anhydrase isoenzymesC W Conroy, T H MarenDrug Metabolism and Disposition: the Biological Fate of Chemicals|September 1, 1984
The nonenzymatic displacement of the sulfamoyl group from different classes of aromatic compounds by glutathione and cysteineC W Conroy, H Schwam, T H MarenExperimental Eye Research|October 1, 1992
The microchemical detection of carbonic anhydrase in corneal epitheliaC W Conroy, R H Buck, T H MarenPageof 21