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Biomedical subjects

G Y Mousa

Publications and source records attributed to G Y Mousa.

11 recordsLinked to original sources

Does prior instillation of a topical anesthetic enhance the effect of tropicamide?

Preinstillation of a topical anesthetic has been reported to increase the effect of subsequently applied mydriatics. We examined the effect of instilling 1 drop of proparacaine hydrochloride (0.5%) before applying 1 drop of tropicamide (1%). The results show that preanesthesia prolongs the mydriatic and the cycloplegic effects of tropicamide in eyes with either lightly or more heavily pigmented irides.

Accommodation, Ocular↗

Effect of phenylephrine on accommodation.

We studied the effect of the topical instillation of phenylephrine hydrochloride on accommodation. Factors considered were iris color and the influence of the prior application of a topical anesthetic. There has been controversy concerning the role of the sympathetic nervous system in accommodation. Our results indicate that the sympathetic nervous system does influence accommodation. Prior application of an anesthetic prolongs the effect of phenylephrine on the accommodation and on pupil diameter in eyes with either lightly or more heavily pigmented irides.

Accommodation, Ocular↗

Migraine and oral contraceptives.

Migraine is a common complaint in optometric practice. Three cases of migrainous patients taking oral contraceptives are presented in this report. The role of oral contraceptives in triggering a migraine attack and possibly elevating the risk of a stroke in a patient with migraine is discussed. The counseling an optometrist can provide in such cases in discussed.

Adolescent↗

Globular bodies: a primary cause of the opacity in senile and diabetic posterior cortical subcapsular cataracts?

We examined 9 cataracts from maturity onset diabetics and 4 senile posterior subcapsular cataracts by scanning electron microscopy, transmission electron microscopy, immunofluorescence for crystallin proteins and actin, histochemical methods and x-ray diffraction. The cataractous regions contained spherical globules up to 20 mu in diameter, often in a fibrous matrix. Some were extracellular Morgagnian globules, apparently formed by blebbing from the cell surface; others appeared to have been formed intracellularly. The area of globular degeneration was usually 300 mu deep, but had deeper fusiform extensions. Morphological changes in the cell cytoplasm varied according to their depth in the cataract. Electron microscopy showed intracellular and extracellular globules, many of them were bounded by lipid bilayer membranes. Immunofluorescent staining showed that all the globules contained gamma-crystallin; some contained alpha- and beta-crystallins and actin. All the globules contained higher concentrations of cysteine or cystine than the surrounding lens tissue but they did not react to stains for carbohydrate or calcium. X-ray diffraction studies showed that crystalline calcium salts were absent. Globules and cavities averaged 45% of the total area in cross section. Assuming an area of cataract to be 300 micron thick and that globules 1 mu in diameter scattered, while 2--20 mu in diameter reflected light, we calculated that light passing through such a thickness would be reduced by 65%. Thus the globules could account for most of the opacity of the cataractous area. Presumably the fibrous degeneration of the cells causes enough light scattering to account for the remainder of the reduction. Cataract patients complain of decreased visual acuity, a golden halo around objects, and difficulties when driving while facing oncoming traffic at night. These probably result from light scattering. In our previous experiments, globular bodies containing gamma-crystallin were found in cells grown in tissue culture, and blebs with increased acitn content similar to Morgagnian globules were formed in tissue culture by treating differentiated rat lens cells of stage 2 by cytochalasin D (which impaired microfilament function). These results suggest the possibility of simulating in tissue culture the morphological alterations seen in the cataractous cell.

Aged↗

Differentiation of rat lens epithelial cells in tissue culture. (I) Effects of cell density, medium and embryonic age of initial culture.

The growth and differentiation of rat lens epithelial cells in tissue culture were studied. Cells could be maintained for a number of generations in an undifferentiated state in suspension culture. When cultured as monolayers, they grew and differentiated in a series of six defined stages described here. These stages include morphological changes (elongation, followed by cell "spreading" or formation of cell aggregates), and biochemical changes (appearance of nu-crystallin protein as detected by immunofluorescence). The process of differentiation appeared to be accelerated in the vicinity of elongated cells, occurred more rapidly at high cell density, and required frequent changes of medium. This suggests that cell-cell communication, and not medium factors, may be essential for promoting differentiation. The final morphology of the differentiated cells differed, depending on the embryonic age of the rats used as a source of lens epithelial cells. This implies that the programme for differentiation changes as a function of the embryonic age of the lens.

Animals↗