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Biomedical subjects

J Glovinsky

Publications and source records attributed to J Glovinsky.

5 recordsLinked to original sources

A comparative study of two dose regimens of latanoprost in patients with elevated intraocular pressure.

OBJECTIVE: The purpose of the study was to determine whether latanoprost (13,14-dihydro-17-phenyl-18,19,20-trinor PGF2a-isopropyl ester), a new prostaglandin analogue that has been found effective in reducing intraocular pressure (IOP) in humans, is equally effective at lower concentrations than those currently employed. DESIGN AND PARTICIPANTS: Fifty patients with glaucoma or ocular hypertension were treated in a randomized, crossover, double-masked fashion with 1 drop of latanoprost (50 microg/ml once daily and 15 microg/ml twice daily) in the affected eye(s) for 3 weeks on each concentration. Tonometry was obtained at 8:00, 13:00, and 17:00 hours at baseline (untreated) and after 3 weeks on each concentration. Placebo (a buffer solution of latanoprost eye drop) was administered for complete masking of the study. RESULTS: Mean baseline (untreated) diurnal IOP for the entire sample was 24.7 mmHg. Intraocular pressure was reduced by 6.1 mmHg with latanoprost 15 microg/ml twice daily, and by 7.5 mmHg with 50 microg/ml once daily. Results with both regimens were significant (P < 0.001 each, Student's t-test). However, the 50 microg/ml dose was significantly more effective than the 15 microg/ml dose, with a difference of 1.4 mmHg (P < 0.001, ANOVA). Both dose regimens were well tolerated, with little, predominantly mild, ocular discomfort. The higher dose did not cause more hyperemia at 3 weeks than the lower one, i.e., the lower dose yielded a slightly higher score (1.8 mm) on the visual analogue scale (P < 0.29, ANOVA). CONCLUSIONS: Latanoprost administered at a concentration of 50 microg/ml once daily effectively reduces IOP in patients with elevated IOP. Administration of a lower concentration (15 microg/ml) twice daily is less effective, but still significant.

Adult

Ocular effects of hyoscine in double dose transdermal administration and its reversal by low dose pyridostigmine.

The potential of low dose (30 mg t.i.d) pyridostigmine to reduce the ocular side effects of double dose transdermal controlled release hyoscine was evaluated by the study of near visual acuity, accommodation amplitude and pupil diameter in a placebo controlled, double masked study. We studied 47 healthy men (age 18-21 yr) in 3 groups: 16 assigned to placebo hyoscine and placebo pyridostigmine, 15 assigned to double dose hyoscine and placebo pyridostigmine, and 16 to double dose hyoscine and pyridostigmine. Subjects were tested during 48 h of treatment and 48 h of washout period. Blood cholinesterase inhibition level and amount of hyoscine released from the patches were used as parameters of reliability. Difference between groups was assessed using change from baseline scores. Double dose hyoscine caused decrease in near visual acuity to a mean of 14/18. Accommodation amplitude was decreased in the double dose transdermal hyoscine group from 9.19 +/- 1.04 to 4.83 +/- 1.97 diopters of accommodation. This decrease was significant when compared to the placebo group (p < 0.05) and to the pyridostigmine-protected group (p < 0.05). Pyridostigmine, however, did not significantly change the hyoscine-induced mydriasis of 1.47 + 0.15 mm change from baseline (p < 0.05). These results suggest that pyridostigmine administration may be beneficial in shortening recovery time when near vision impairment is experienced following single and double dose transdermal hyoscine administration.

Adolescent

Glare disability.

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Cataract Extraction

The long-term effect on intraocular pressure of a procedure combining trabeculectomy and cataract surgery, as compared with trabeculectomy alone.

The long-term reduction of intraocular pressure (IOP) resulting from a procedure combining extracapsular cataract extraction and posterior chamber lens implantation with trabeculectomy was compared retrospectively with the IOP-lowering effect of trabeculectomy alone. Forty patients who underwent the combined procedure and 38 who underwent trabeculectomy alone had been followed for an average of 22 +/- 7 months. Both these surgical procedures significantly reduced IOP, but after a year or more, pressure levels were significantly lower in the trabeculectomy group than they were in the combined group: 12.8 +/- 4.2 mm Hg, and 16.5 +/- 5.6 mm Hg, respectively, at 18 months. Also, the mean postoperative fall in IOP was greater in the "filtered" eyes than it was in the combined group (9.8 +/- 4.6 mm Hg and 12.1 +/- 5.2 mm Hg, respectively, at 18 months). Finally, the number of medications required to maintain controlled IOP in the combined group was greater (and resumed preoperative values at 2 years) than it was in the trabeculectomy group (62.5% of the filtered eyes remained controlled unaided).

Aged

Binding and processing of trypsin by cultured bovine corneal endothelial cells.

Bovine corneal endothelial cells in culture bind internalize and degrade [125I]-trypsin. Binding involves the active site of trypsin and increases as a function of [125I]-trypsin concentration. Saturation is observed at a concentration of 0.5-1.0 micrograms ml-1. The cell surface binding of [125I]-trypsin is specific: a seven-fold excess of unlabeled trypsin abolishes about 60% of the total cell surface-associated radioactivity. In addition, thrombin competes poorly with [125I]-trypsin cell surface binding and only 20% of the specific cell surface binding of [125I]-trypsin is subjected to competition with thrombin. This fraction of the cell surface-bound [125I]-trypsin which is accessible to competition with thrombin appears in a covalent complex of [125I]-trypsin X protease-nexin with a molecular weight of 64000 daltons. The cells, when incubated at 37 degrees C, appear to internalize the cell surface-bound [125I]-trypsin at a rate of 0.15-0.25 ng (10(6) cells)-1 min-1. Both the non-covalently cell surface-bound and the protease-nexin (PN) mediated-bound [125I]-trypsin are internalized by the cells, but the [125I]-trypsin X PN complexes contribute about 75% of the total amount of [125I]-trypsin internalized by the cells. The internalized [125I]-trypsin is degraded by the cultures at a rate of about 0.05 ng (10(6) cells)-1 min-1 and the degradation products are released by the cells into the incubation medium as a trichloroacetic acid non-precipitable material. Chloroquine inhibits about 60% of the internalization of [125I]-trypsin by the cells, and inhibits more than 80% of the degradation process of [125I]-trypsin, which indicates that the degradation of the ligand is taking place in lysosomes. Bovine corneal endothelial cells in culture have demonstrated the binding and metabolism of the serine protease trypsin. This described process may indicate the ability of corneal endothelial cells to control the activity of serine proteases in their microenvironment.

Amyloid beta-Protein Precursor