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Biomedical subjects

M Yanoff

Publications and source records attributed to M Yanoff.

At least 91 records · Page 5Linked to original sources

Biology in vitro of corneal epithelium and endothelium.

Four main areas were explored: 1) the proper medium for culturing corneal tissue; 2) the effect of serum on tissue growth in vitro; 3) the interrelationships in vitro between corneal epithelium and endothelium, and 4) the biology of cultures of whole corneas (organ cultures). Modified Eagle's minimal essential medium (MEM) proved to be an excellent culture fluid. Corneal tissue could be grown in MEM without serum or clot, thus providing a defined culture medium. The biology in vitro of outgrowths of multilayered corneal epithelium and monolayered corneal endothelium are discussed. Contact inhibition between epithelium and endothelium is demonstrated in whole corneal (organ) cultures.

Animals↗

Biosynthesis of basement membrane collagen by rabbit corneal endothelium in vitro.

The synthesis of collagen has been demonstrated in endothelial cells of Descemet's membrane isolated from rabbit cornea. Incorporation of [14C]proline and [14C]lysine into nondialyzable protein was measured in the medium and cell fraction after incubating Descemet's membrane for up to 5 hours. In the [14C]collagen synthesized by the endothelium, 15% of the hydroxy[14C]proline was present as the 3-isomer. About 98% of the hydroxy[14C]lysine in the 14C-labeled-protein found in the medium was glycosylated; 95% of the glycosylated hydroxy[14C]lysine was in the form of the disaccharide glucosyl-galactosyl-hydroxy[14C]lysine. Time course experiments with [14C]proline indicated that there was a delay of about 60 min before significant amounts of [14C]collagen were secreted into the medium. The initial polypeptides of [14C]collagen synthesized by the corneal endothelium had an apparent molecular weight of 155,000. The chemical and physical properties of the [14C]collagen synthesized by rabbit corneal endothelium are consistent with those of basement membrane collagen synthesized by other cell types.

Animals↗

Essential iris atrophy. Report of a case.

The clinicopathologic findings in an eye from a 40-year-old man with essential iris atrophy are reported. Noteworthy is the proliferation of corneal endothelium and a laying down of a new Descemet (cuticular) membrane over the trabecular meshwork and in areas of anterior peripheral synechiae formation over the pseudoangle. The histologic characteristics favor a vascular cause for the condition, but the evidence is circumstantial.

Adolescent↗

Endothelialization of filtering bleb in iris nevus syndrome.

Late failure of a filtering cicatrix occurred in a patient who had had surgery to control the glaucoma associated with the iris nevus syndrome (Cogan-Reese). The internal surface of the filtration site, as well as the anterior chamber angle, proved to be lined by corneal endothelium that had laid down a new, thick basement membrane (Descemet). The new endothelium-basement membrane probably obstructed the flow of aqueous into the bleb. Endothelialization of a filtering bleb is not unique to the iris nevus syndrome; other causes are discussed.

Corneal Diseases↗

Rabbit corneal epithelial cells grown in vitro without serum.

Primary outgrowth cultures of normal rabbit corneal epithelium can be initiated and propagated in vitro up to 6 days in serum-free medium. By the eighth day the majority of cells have ceased to divide. Epithelial cells grown without serum show DNA synthetic activity at a level comparable to control cultures grown with added serum.

Animals↗

Rubeosis in Fuchs heterochromic iridocyclitis.

A patient had Fuchs heterochromic iridocyclitis of approximately 17 years' duration. Histologically, keratic precipitates, iris atrophy, rubeosis iridis, discontinuous rubeosis of the anterior chamber angle, a chronic nongranulomatous iridocyclitis, and trabeculitis were noted. The cause of the glaucoma probably is a combination of rubeosis of the anterior chamber angle and trabeculitis.

Anterior Chamber↗

Iris nevus (Cogan-Reese) syndrome. A cause of unilateral glaucoma.

Fourteen patients (ten women, four men) with iris nevus (Cogan-Reese) syndrome, all having unilateral glaucoma, were studied clinically. Many had corneal edema, and all had changes in the iris consisting of one or more of the following: iris whorls or nodules or both, atrophy of iris stroma, heterochromia (the darker iris usually involved), or ectropion uveae. All had peripheral anterior synechias. Material for histological study was available from ten patients and showed a nonmalignant diffuse nevus of the anterior surface of the iris. An overgrowth of endothelium and Descemet membrane extending onto the iris surface may be a characteristic part of the process. Patients tended to be women in middle age. Conservative treatment avoiding enucleation is advised. Whenever a patient with suspected iris nevus syndrome or essential iris atrophy is subjected to glaucoma surgery, a biopsy specimen of the iris should be obtained for histological study.

Adolescent↗

Cholesterolosis of the anterior chamber.

The clinicopathologic findings in eight eyes with cholesterolosis of the anterior chamber are presented. In five patients the cholesterol was present as an anterior chamber deposit or free-floating crystals, or both, and was recognized clinically. In two patients the anterior chamber cholesterol had incited a granulomatous inflammatory reaction and was mistaken clinically for lipid keratopathy. Anterior chamber crystals were an incidental laboratory finding in the final patient. Intraocular cholesterol may be present as free crystals or contained within foreign body granulomatous inflammation, macrophages, or fibrous tissue. Possible sources of anterior chamber cholesterol crystals are discussed. In most cases they seem to be derived from the breakdown of intraocular hemorrhage.

Adolescent↗

In vitro biology of corneal epithelium and endothelium.

Four main areas are explored: (1) the proper culture medium for corneal tissue; (2) the effect of serum on in vitro tissue growth; (3) the in vitro interrelationships between corneal epithelium and endothelium; and (4) the biology of cultures of whole corneas (organ cultures). Modified Eagle's minimal essential medium (MEM) proved to be an excellent culture fluid. Corneal tissue could be grown in MEM without serum or clot, thus providing a defined culture medium. The in vitro biology of outgrowths of multilayered corneal epithelium and monolayered corneal endothelium are discussed. Contact inhibition between epithelium and endothelium is demonstrated in whole corneal (organ) cultures.

Animals↗