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Biomedical subjects

M F Sugrue

Publications and source records attributed to M F Sugrue.

At least 19 recordsLinked to original sources

3-substituted thieno[2,3-b][1,4]thiazine-6-sulfonamides. A novel class of topically active carbonic anhydrase inhibitors.

3-Aminoalkyl derivatives of thieno[2,3-b][1,4]thiazine-6-sulfonamide were prepared for evaluation as topically active ocular hypotensive agents. The compounds described were found to be excellent in vitro inhibitors of carbonic anhydrase II and in vivo to lower intraocular pressure in three rabbit models of ocular hypertension. Compounds 20A, 20B, and 20C met the requirement of formulation as a 1% solution at pH 5.2, but none of the compounds described exhibited greater activity in the normotensive albino rabbit, the alpha-chymotrypsin-treated albino rabbit, or the normotensive pigmented rabbit than MK-927 or MK-507, the present clinical candidates.

Administration, Topical

Sulfonylmethanesulfonamide inhibitors of carbonic anhydrase.

A series of sulfonylmethanesulfonamide derivatives is described, which are inhibitors of carbonic anhydrase (CA). The most potent of these is the racemic fluoro sulfone 9, which inhibits carbon dioxide hydration catalyzed by human CA II (CA-II) with an IC50 of 3 nM. Binding competition studies versus dansylamide indicate that the enantiomers of 9 have different affinities for CA-II, with equilibrium dissociation constants of 3.6 and 0.6 nM. QSAR analysis suggests that the key factors involved in achieving high affinity in this series are sulfonamide acidity, hydrophobicity, and minimization of steric demands at the carbon atom adjacent to the sulfonamide group.

Animals

Thieno[2,3-b]furan-2-sulfonamides as topical carbonic anhydrase inhibitors.

Novel 5-[(alkylamino)methyl]thieno[2,3-b]furan-2-sulfonamides were prepared and evaluated in vitro for inhibition of human carbonic anhydrase II (CA II) and ex vivo for their ability to inhibit Ca II in the albino rabbit eye after topical administration. Compound 11a was found to lower intraocular pressure (IOP) in both the alpha-CT ocular hypertensive albino rabbit and the normal albino rabbit, but was ineffective at lowering IOP in a hypertensive, pigmented monkey model. Since 11a was highly bound to ocular pigment, a series of less basic analogs was prepared. Examples in this series were both less extensively bound to ocular pigment and more active at reducing IOP in pigmented rabbits after topical dosing. Key examples displayed moderate reactivity toward glutathione.

Administration, Topical

MK-507 (L-671,152), a topically active carbonic anhydrase inhibitor, reduces aqueous humor production in monkeys.

An investigation was carried out to determine the mechanism by which MK-507 (L-671,152), a water-soluble inhibitor of human carbonic anhydrase II in vitro, reduces intraocular pressure when applied topically to monkey eyes. Intraocular pressure, tonographically measured outflow facility, and fluorophotometrically determined aqueous humor flow were measured before and after therapy in eight normal cynomolgus monkeys. Fifty microliters of 2% MK-507 was instilled in one eye and diluent in the contralateral eye. Baseline values for intraocular pressure, outflow facility, and aqueous humor flow were similar in the drug-treated and diluent-treated control eyes. After therapy, intraocular pressure was significantly (P less than .05) reduced from 1 to 7 hours (eg, 14.0 +/- 1.0 and 15.9 +/- 0.9 mm Hg [mean +/- SEM], treated and control eyes, respectively, at 3 hours). Outflow facility was not significantly (P greater than .40) changed at 3 hours, and aqueous humor flow measured over 5 hours was significantly (P less than .05) reduced (38%) in treated (0.9 +/- 0.1 microL/min) as compared with control eyes (1.5 +/- 0.1 microL/min). The results suggest that MK-507 reduces intraocular pressure by decreasing aqueous humor production.

Administration, Topical

The effect of cyclooxygenase inhibition on the ocular hypotensive action of topical carbonic anhydrase inhibitors in rabbits.

Experiments were undertaken in normal albino rabbits to determine if cyclooxygenase inhibition by nonsteroidal anti-inflammatory drugs modified the ocular hypotensive activities of topically applied MK-507, MK-927 and L-662,583, three water-soluble carbonic anhydrase inhibitors (CAI). Cyclooxygenase was inhibited either by systemic indomethacin or by topically administered flurbiprofen, and epinephrine was included as a positive control. Both a 1-hr pretreatment with indomethacin (5 mg/kg i.p.) and topically applied 0.03% flurbiprofen antagonized the ocular hypotensive effect of one drop (50 microliters) of 1% epinephrine. Two percent solutions of the three CAIs were instilled three times with 10 min between each drop in order to obtain a meaningful and reproducible reduction in intraocular pressure (IOP). This dosage schedule elicited a peak decline in IOP ranging from 4.6 mm Hg to 6.2 mm Hg which was achieved via a local action within the eye. The ocular hypotensive effects of MK-507, MK-927 and L-662,583 were unaltered either by a 1-hr pretreatment with indomethacin (5 mg/kg i.p.) or by topically administered 0.03% flurbiprofen. These studies indicate that the IOP lowering actions of the three CAIs, unlike that of epinephrine, in rabbits are not mediated by endogenous prostaglandins and/or other prostanoids.

Administration, Topical

The ocular hypotensive effect of the topical carbonic anhydrase inhibitor L-671,152 in glaucomatous monkeys.

L-671,152, a new potent water-soluble inhibitor of human carbonic anhydrase II in vitro, was applied topically to cynomolgus monkey eyes in which glaucoma had been produced by argon laser photocoagulation of the trabecular mesh-work. Intraocular pressure was measured at 0 hours, 0.5 hours, and hourly for 8 hours in eight eyes for 2 baseline days, 1 day receiving the vehicle and 5 days receiving therapy with 2% L-671,152 twice a day, after initial single-dose trials of various concentrations. Intraocular pressure was not significantly different comparing baseline and vehicle-treated days. Significant intraocular pressure reductions occurred from 1 to 8 hours after the first dose, and lasted for at least 16 hours after the second dose. The reduction in intraocular pressure became more pronounced from day 1 to day 5 at each time interval. The mean (+/- SEM) maximum reduction in intraocular pressure was 7.8 +/- 2.1 mm Hg on day 1 and 10.1 +/- 2.4 mm Hg on day 5 at 3 hours after administration, comparing the intraocular pressure in drug-treated and vehicle-treated eyes. L-671,152 has a longer duration of action than does previously studied MK-927 in glaucomatous monkeys. It appears to have great clinical potential.

Administration, Topical

MK-927: a topically active ocular hypotensive carbonic anhydrase inhibitor.

MK-927 (dl-5,6-dihydro-4-(2-methylpropylamino)-4H-thieno(2,3b)thiopyra n-2-sulfonamide-7,7-dioxide hydrochloride) is a water soluble, carbonic anhydrase inhibitor (CAI) possessing a Ki of 12.0 nM against purified human carbonic anhydrase II in vitro. The acute instillation of one drop (50 microliters) of 0.5%, 1% and 2% solutions of MK-927 maximally decreased the intraocular pressure (IOP) of ocular hypertensive, cynomolgus monkeys by 4.7, 5.9 and 9.6 mm Hg, respectively. The decline of 9.6 mm Hg represented a reduction of 27% from the corresponding vehicle-treated value of 35.3 mm Hg. Peak reductions in IOP were present at 2 to 4 hr after the instillation of the three doses and the ocular hypotensive effect was waning at 6 hr. The IOP of normotensive, monkey eyes was significantly lowered by 1% and 2% solutions of MK-927 with the effect being more transient in these eyes than in hypertensive eyes. The elevated IOP of alpha-chymotrypsinized rabbits was dose-dependently decreased by 0.01%, 0.1% and 0.5% solutions of MK-927. MK-927 modestly bound to rabbit ocular pigment in vitro and the concentrations of MK-927 in the iris + ciliary body of pigmented rabbits were higher than those in the same tissue of albino rabbits after dosing with 0.5% MK-927. The ocular hypotensive effect of 2% MK-927 was greater in magnitude and longer in duration in normal pigmented than in albino rabbits. The IOP lowering action of MK-927 was local as evidenced by results of ocular distribution studies and the observation that the unilateral instillation of 0.5% MK-927 into the contralateral eye was devoid of effect on the untreated, hypertensive eye of alpha-chymotrypsinized rabbits. MK-927 has been selected for topical evaluation in glaucoma patients.

Administration, Topical

L-662,583 is a topically effective ocular hypotensive carbonic anhydrase inhibitor in experimental animals.

1. L-662,583 was a potent inhibitor in vitro of purified, human erythrocyte carbonic anhydrase II, possessing an IC50 of 0.7 nM. The IC50 values for MK-927, acetazolamide and methazolamide were 13.0 nM, 10.8 nM and 21.2 nM, respectively. 2. A 1 h pretreatment with one 50 microliters drop of a 0.1% solution of L-662,583 blocked carbonic anhydrase activity in a homogenate of the iris + ciliary body of albino rabbits by 63%. Similar treatment with 0.1% suspensions of acetazolamide and methazolamide elicited inhibitions of 30% and 20%, respectively. This ex vivo model indirectly assesses the ability of an agent to enter the rabbit eye. 3. Concentrations of L-662,583 in the cornea, aqueous humour and iris + ciliary body of albino rabbits were determined by h.p.l.c. at predetermined times after the instillation (one drop of 50 microliters) of a 2% solution of L-662,583. Peak levels for cornea (47.4 micrograms g-1), aqueous humour (4.51 micrograms ml-1) and iris + ciliary body (9.61 micrograms g-1) occurred at 0.5, 2 and 1 h after instillation, respectively. 4. The experimentally elevated intraocular pressure of the right eye of rabbits, induced by prior intraocular injection of alpha-chymotrypsin, was maximally decreased by 4.5 mmHg, 6.2 mmHg and 9.8 mmHg after the instillation (one drop of 50 microliters) of 0.01%, 0.1% and 0.5% solutions of L-662,583, respectively. All three concentrations lowered intraocular pressure at all time points from 1 h up to and including 5 h, the last recorded time point. The unilateral instillation of L-662,583 (0.5%) into the contralateral, left eye failed to lower the elevated intraocular pressure of the untreated, right eye. This finding indicates that the site of action of topically applied L-662,583 in this paradigm is local. The ocular normotensive, albino rabbit was much less susceptible than the ocular hypertensive rabbit to the intraocular pressure lowering effect of topically applied L-662,583, with a 2% solution maximally decreasing intraocular pressure by 2.3 mmHg. 5. Unilateral ocular hypertension was elicited in the right eye of sedated, cynomolgus monkeys by argon laser-induced photocoagulation of the trabecular meshwork. The instillation (one drop of 50 microL) of L-662, 583 (2%) significantly lowered the elevated intraocular pressure of the right eye at all time points from 1 h up to and including 5 h. The maximum decline was 8.3 mmHg at 3 h and this represented a reduction of 23% from the corresponding baseline value of 36.8 mmHg. The intraocular pressure of the hypertensive, right eye was maximally decreased by 4.1 mmHg and 4.8 mmHg after the instillation of 0.5% and 1% solutions of L-662,583, respectively. Like the rabbit, the normotensive eye of cynomolgus monkeys was more resistant than the hypertensive eye to the ocular hypotensive action of L-662, 583, as indicated by the inability of 0.5% and 1% solutions of the agent to lower intraocular pressure. L-662,583 (2%) maximally reduced the intraocular pressure of normotensive monkey eyes by 2.4 mmHg at 2 h. 6. L-662,583 is structurally different from MK-927, a carbonic anhydrase inhibitor that lowers the intraocular pressure of glaucoma patients following the instillation of a 2% solution. These preclinical observations indicate that L-662,583, like MK-927, is a water-soluble carbonic anhydrase inhibitor which, on topical administration, lowers intraocular pressure by virtue of an action confined to within the eye.

Administration, Topical

A comparison of L-671,152 and MK-927, two topically effective ocular hypotensive carbonic anhydrase inhibitors, in experimental animals.

L-671,152 is a water-soluble, carbonic anhydrase inhibitor structurally similar to MK-927, a carbonic anhydrase inhibitor that, on topical administration, lowers the intraocular pressure (IOP) of experimental animals and humans. L-671,152 was more potent than MK-927 at inhibiting purified, human erythrocyte carbonic anhydrase II in vitro, as reflected in their respective IC50 values of 0.16 nM and 1.19 nM. Both compounds were compared for topical, ocular hypotensive activity in pigmented rabbits and cynomolgus monkeys. Ocular hypertension was induced in the latter by argon laser photocoagulation of the trabecular meshwork. A 2% solution of L-671,152 was more potent than 2% MK-927 in lowering the IOP of ocular hypertensive monkeys, the maximum reductions being 13.8 mm Hg (37%) and 9.6 mm Hg (27%) at 5 hr and 4 hr, respectively. Moreover, the duration of action of L-671,152 was superior to that of MK-927. The ocular hypotensive effect of L-671,152 was greater than that of MK-927 over a range of concentrations (0.5%-2%) in pigmented rabbits whose IOP was inherently elevated. The peak declines in the IOP of these rabbits after the instillation of 2% solutions of L-671,152 and MK-927 were 6.1 mm Hg and 4.8 mm Hg, respectively. L-671,152 was very effective in lowering the elevated IOP of alpha-chymotrypsinized rabbits and the unilateral instillation of 0.5% L-671,152 into the contralateral eye failed to decrease the elevated IOP of the alpha-chymotrypsinized eye. This finding indicates that the site of action of topically applied L-671,152 is local. The enhancement in the potency of L-671,152 over MK-927 is attributed to a greater inhibition of carbonic anhydrase activity.

Administration, Topical

Muscarinic receptors of the albino rabbit ciliary process.

Muscarinic receptor binding sites were identified in membranes prepared from albino rabbit ciliary processes, using the muscarinic antagonist [3H]L-quinuclidinyl benzylate as the radioligand. Analysis of saturation binding experiments demonstrated that [3H]L-quinuclidinyl benzylate bound to an apparent homogeneous population of binding sites with a Kd value of 6.4 pm and a Bmax value of 155 fmol mg-1 protein. Seventy percent (70%) of binding sites showed high affinity for pirenzepine, i.e. belonged to the M1 subtype. In contrast, AF-DX 116 was unable to discriminate between subtypes of muscarinic binding sites in this tissue. Carbachol caused a dose-dependent increase in phosphatidylinositol turnover (EC50 = 154 microM) in ciliary processes. A maximum stimulation of 652% of basal activity was obtained following a 45 min incubation with 10 mM carbachol. The potency of muscarinic antagonists to block the carbachol-induced response was comparable to that found for M1 receptors in other tissues. Oxotremorine and pilocarpine behaved like partial agonists in this assay. The carbachol-induced increase in phosphatidylinositol turnover was also observed in a suspension of epithelial cells from ciliary processes and it was blocked by atropine; thus, indicating the presence of muscarinic receptors functionally coupled to phosphatidylinositol turnover in these cells.

Animals

Angiotensin II receptors labelled with 125I-[Sar1, Ile8]-AII in albino rabbit ocular tissues.

High affinity binding sites for the angiotensin II antagonist 125I-[Sar1,Ile8]-AII have been identified and characterized in membrane suspensions of ocular tissues of albino rabbits. Scatchard analysis of the binding indicated a single class of sites with Kd values of 186, 92, 152, 50, 102 pM for the iris + ciliary body, choroid, ciliary process, retina and cornea, respectively. The corresponding concentrations of binding sites were 22, 68, 35, 22 and 4 fmole/mg of protein. The order of potency for several AII analogs to compete with 125I-[Sar1,Ile8]-AII at its binding sites in iris + ciliary body membranes ([Sar1,Leu8]-AII = [Sar1,Ile8]-AII greater than AII = [Sar1, Ala8]-AII greater than AIII greater than AI) resembled the order of potency found for AII receptors in other tissues. The competition curves for this tissue using AII and AIII were best explained by the existence of two populations of binding sites. The addition of the guanine nucleotide, GppNHp, to the assay resulted in a 6.7-fold and 2.3-fold decrease in the respective affinities of AII and AIII for 125I-[Sar1,Ile8]-AII binding sites without a change in the slope of the competition curves. The GppNHp-induced effect was also observed in ciliary process membranes but not in retinal or choroidal membranes. These results indicate the presence of AII receptors regulated by a GTP-binding protein in both the ciliary process and the iris + ciliary body of the rabbit. They also suggest a difference in the guanine nucleotide regulation of AII receptors in different ocular tissues.

Angiotensin II

Characterization of [3H]forskolin binding sites in the iris-ciliary body of the albino rabbit.

[3H]Forskolin binding sites were identified using membranes prepared from the iris-ciliary body of adult, albino rabbits. Scatchard analysis of saturation binding experiments demonstrated that [3H]forskolin bound to a single population of high affinity sites. The Kd and Bmax values were 8.7 +/- 0.9 nM and 119.0 +/- 30.9 fmol/mg prot. using membranes prepared from frozen tissue and 17.0 +/- 6.2 nM and 184.4 +/- 47.2 fmol/mg prot. using fresh tissue. The binding of [3H]forskolin was magnesium-dependent. The Bmax was enhanced by sodium fluoride and Gpp(NH)p, a nonhydrolyzable guanine nucleotide analog. Forskolin was the most potent inhibitor of [3H]forskolin binding; two commercially-available analogs were weaker inhibitors. In an adenylate cyclase assay, there was the same rank order of potency to enhance enzyme activity. Based upon binding affinities, magnesium-dependence, sensitivity to sodium fluoride and Gpp(NH)p, rank order of potencies of analogs and correlation of binding with adenylate cyclase activity, these studies suggest that the [3H]forskolin binding site in the iris-ciliary body is similar to the binding site in other tissues.

Adenylyl Cyclases

Alpha 1-adrenoceptors in the albino rabbit ciliary process.

3H-Prazosin and 3H-rauwolscine binding sites were identified in a membrane suspension prepared from albino rabbit iris + ciliary body. Scatchard analysis of saturation binding experiments demonstrated that both 3H-prazosin and 3H-rauwolscine bind to a single population of binding sites with KD values of 0.87 nM and 5.33 nM, respectively. Bmax values of 65.7 and 198 fmol/mg protein were obtained for 3H-prazosin and 3H-rauwolscine, respectively. Displacement studies by several adrenergic agonists and antagonists indicated that 3H-prazosin and 3H-rauwolscine labelled alpha 1- and alpha 2-adrenoceptors, respectively, in the iris + ciliary body. Epinephrine, norepinephrine and phenylephrine were able to stimulate the synthesis of 3H-inositol phosphates in ciliary processes labelled with 3H-inositol, with EC50 values of 2.4, 12 and 10 microM, respectively. The corresponding maximum stimulations of basal activity were 433, 430 and 283%, respectively. Phenylephrine behaved like a partial agonist in this assay. The norepinephrine response could be potently antagonized by prazosin (Ki = 27 nM), with rauwolscine being 285-fold less potent. An epithelial cell suspension was prepared from the ciliary process. Stimulation of phosphatidylinositol turnover by norepinephrine (0.1 mM) was observed, and this could be blocked by prazosin (10 microM), thus, indicating the presence of alpha 1-adrenoceptors, coupled to phosphatidylinositol turnover, in epithelial cells of the rabbit ciliary process.

Adrenergic alpha-Agonists

Ocular distribution studies of the topical carbonic anhydrase inhibitors L-643,799 and L-650,719 and related alkyl prodrugs.

The ocular distribution of the carbonic anhydrase inhibitors 6-hydroxybenzothiazide-2-sulphonamide (L-643,799) and 6-hydroxybenzothiophene-2-sulphonamide (L-650,719) has been investigated in albino rabbits after conjunctival administration of these compounds or related alkyl prodrugs. The ocular penetration of L-650,719 has been compared in ocular normotensive rabbits and in animals whose intraocular pressure has been experimentally elevated.

Administration, Topical

L-653,328: an ocular hypotensive agent with modest beta receptor blocking activity.

L-653,328 is the acetate ester of L-652,698 ((S)-3-tert-butylamino-1-[4-[2(hydroxy)ethyl]phenoxy]2-propanol). The penetration of L-652,698 into the albino rabbit eye was enhanced when the compound was instilled as its prodrug acetate ester. The instillation (one drop of 50 microliter) of 0.01, 0.05 and 0.1% solutions of L-653,328 significantly decreased in a dose-dependent manner the elevated intraocular pressure (IOP) of alpha-chymotrypsinized rabbits by 3.2, 4.7 and 6.1 mm Hg, respectively. A 0.01% solution of L-652,698 failed to significantly lower IOP, whereas this dose of timolol (3.8 mm Hg) and betaxolol (3.3 mm Hg) was effective. L-652,698 was active at 0.05% and 0.1%. Extraocular beta-adrenoceptor blockade was quantified in ganglion-blocked, conscious rabbits by determining effects on heart rate and blood pressure changes to i.v. isoproterenol (0.5 microgram/kg). Doses of timolol blocking isoproterenol-induced hypotension and tachycardia by 50% were 0.0065% and 0.03%, respectively. The corresponding doses for betaxolol were greater than 3% (43% inhibition) and 0.3%. Heart rate and blood pressure changes to isoproterenol were blocked by 18 and 36%, respectively, after the instillation of a 3% solution of L-653,328. The reduced propensity of L-653,328 for extraocular beta-adrenoceptor blockade stems from the modest affinity of L-652,698, its active moiety, for beta-adrenoceptors. The Ki values of L-652,698 for displacement of 125I-iodocyanopindolol binding to beta 1-(left ventricle) and beta 2-binding sites (iris + ciliary body) in the rabbit were 5.7 microM and 7.3 microM, respectively. In marked contrast, the corresponding values for timolol were 12 nM and 1.8 nM.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists