Why the study?
Does NCX250 lower intraocular pressure and improve ocular hemodynamics compared to dorzolamide or ISMN in rabbits with carbomer-induced glaucoma?
Does NCX250 lower intraocular pressure and improve ocular hemodynamics compared to dorzolamide or ISMN in rabbits with carbomer-induced glaucoma?
Combining carbonic anhydrase inhibition with NO-donating moieties in a single compound (NCX250) offers a promising approach for glaucoma management by lowering IOP and improving ocular hemodynamics in a rabbit model.
Supports preclinical development of NCX250 for glaucoma; leaves open translation to human IOP and hemodynamic outcomes.
The clinically used sulfonamide carbonic anhydrase (CA, EC 4.2.1.1) inhibitor dorzolamide (DRZ), a new sulfonamide CA inhibitor also incorporating NO-donating moieties, NCX250, and isosorbide mononitrate (ISMN) (an NO-donating compound with no CA inhibitory properties) were investigated for their intraocular pressure (IOP) lowering effects in rabbits with carbomer-induced glaucoma. NCX250 was more effective than DRZ or ISMN on lowering IOP, increasing ocular hemodynamics, decreasing the inflammatory processes and ocular apoptosis in this animal model of glaucoma. NO participate to the regulation of IOP in glaucoma, having also antiapoptotic and anti-inflammatory effects. The ophthalmic artery, both systolic and diastolic velocities, were significantly reduced in NCX250-treated eyes in comparison to DRZ treated ones, suggesting thus a beneficial effect of NCX250 on the blood supply to the optic nerve. Combining CA inhibition with NO-donating moieties in the same compound offers an excellent approach for the management of glaucoma.
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Fabrizi et al. (2011) studied this question.
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