Carbonic Anhydrase Inhibitors. Synthesis of Water-Soluble, Topically Effective, Intraocular Pressure-Lowering Aromatic/Heterocyclic Sulfonamides Containing Cationic or Anionic Moieties: Is the Tail More Important than the Ring?
- 22 June 1999
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Medicinal Chemistry
- Vol. 42 (14) , 2641-2650
- https://doi.org/10.1021/jm9900523
Abstract
Reaction of several aromatic/heterocyclic sulfonamides containing a free amino, imino, hydrazino, or hydroxyl group, with 2,3-pyridinedicarboxylic anhydride or 2,6-pyridinedicarboxylic acid in the presence of carbodiimide derivatives, afforded two series of water-soluble (as hydrochloride, triflate, or carboxylate salts) compounds. The new derivatives were assayed as inhibitors of the zinc enzyme carbonic anhydrase (CA) and more precisely of three of its isozymes, CA I, II (cytosolic forms), and IV (membrane-bound form), involved in important physiological processes. Efficient inhibition was observed against all three isozymes, but especially against CA II and IV (in nanomolar range), the two isozymes known to play a critical role in aqueous humor secretion within the ciliary processes of the eye. Some of the best inhibitors synthesized were applied as 2% water solutions directly into the eye of normotensive and glaucomatous albino rabbits. Very strong and long-lasting intraocular pressure (IOP) lowering was observed with many of them. This result prompted us to reanalyze the synthetic work done by other groups for the design of water-soluble, topically effective antiglaucoma sulfonamides. According to these researchers, the IOP-lowering effect is due to the intrinsic nature of the specific heterocyclic sulfonamide considered, among which the thienothiopyran-2-sulfonamide derivatives represent the best-studied case. Indeed, the first agents developed for topical application, such as dorzolamide, are derivatives of this ring system. To prove that the tail (in this case the pyridinecarboxylic moieties) conferring water solubility to a sulfonamide CA inhibitor is more important than the ring to which the sulfonamido group is grafted, we also prepared dorzolamide derivatives incorporating such moieties. These new compounds possess good water solubility as hydrochloride or carboxylate salts, balanced by a relatively modest lipid solubility. They are strong CA II inhibitors and are able to lower IOP in experimental animals more than the parent derivatives. Our conclusion is that the tail conferring water solubility to such an enzyme inhibitor is more important for topical activity as an antiglaucoma drug, than the heterocyclic/aromatic ring to which the sulfonamido moiety is grafted.Keywords
This publication has 23 references indexed in Scilit:
- Clinical efficacy and safety of brinzolamide (Azopt™), a new topical carbonic anhydrase inhibitor for primary open-angle glaucoma and ocular hypertensionAmerican Journal of Ophthalmology, 1998
- Anticonvulsant activity of various aryl, arylidene and aryloxyaryl semicarbazonesEuropean Journal of Medicinal Chemistry, 1998
- Topically active carbonic anhydrase inhibitors. 3. Benzofuran- and indole-2-sulfonamidesJournal of Medicinal Chemistry, 1990
- Topically active carbonic anhydrase inhibitors. 1. O-Acyl derivatives of 6-hydroxybenzothiazole-2-sulfonamideJournal of Medicinal Chemistry, 1989
- Synthesis and physicochemical properties of thiadiazolo[3,2-a]pyrimidinesulfonamides and thiadiazolo[3,2-a]triazinesulfonamides as candidates for topically effective carbonic anhydrase inhibitorsJournal of Medicinal Chemistry, 1987
- Thienothiopyran-2-sulfonamides: a novel class of water-soluble carbonic anhydrase inhibitorsJournal of Medicinal Chemistry, 1987
- Carbonic anhydrase: General perspective and advances in glaucoma researchDrug Development Research, 1987
- The transcorneal permeability of sulfonamide carbonic anhydrase inhibitors and their effect on aqueous humor secretionExperimental Eye Research, 1983
- Carbonic anhydrase: chemistry, physiology, and inhibitionPhysiological Reviews, 1967
- The Mechanism of the Fall in Intraocular Pressure Induced by the CARBONIC Anhydrase Inhibitor, Diamox*American Journal of Ophthalmology, 1955