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Biomedical subjects

M Spitznas

Publications and source records attributed to M Spitznas.

At least 145 records · Page 8Linked to original sources

The morphology of the amelanotic Greene melanoma.

Pieces of amelanotic Greene melanoma were transplanted onto the iris surface of rabbit eyes, where they started to grow rapidly after a dormant period of four to five days. Light microscopically, the melanoma cells appeared round or polygonal and contained large, lightly staining nuclei and prominent nucleoli. Electron microscopy revealed rather electron translucent nuclei containing only a small rim of heterochromatin immediately subjacent to the nuclear envelope. The very prominent, reticulated nucleoli frequently lay close to the nuclear surface. The cytoplasm of the cells showed a well developed Golgi field which contained myriad vesicles of different shape and density and cross-striated, membrane-bound organelles of early melanin synthesis. The mitochondria were short and the smooth-surfaced endoplasmic reticulum was inconspicuous. The rough-surface endoplasmic reticulum was sparse and exhibited predominantly short segments. Like other very active cells, the melanoma cells contained a multitude of ribosomes. Melanoma cells which were not completely surrounded by other cells exhibited numerous processes at the free cell surface and, directly subjacent to these, a layer of very electron dense cytoplasm, indicating that these cells may possess a certain amount of motility. Many light and electron microscopical aspects of the amelanotic Greene melanoma are identical or similar to human uveal melanomas, especially of the epithelioid variety. On morphological grounds it is therefore possible to suspect a close biological relationship of these tumors. Thus, the use of the Greene amelanotic melanoma as a model for study of diagnostic and therapeutic problems in ophthalmology may be considered adequate.

Animals↗

Occluding junctions surrounding cystoid spaces in the human peripheral retina. A thin-section and freeze-fracture study.

Transmission electron microscopic examination of thin sections and freeze-fracture replicas of areas neighboring cystoid spaces in the peripheral human retina reveals extensive networks of occluding junctions on all sides of these spaces. These junctions may be responsible for the fact that, in spite of the absence of an epithelial lining, fluid from the spaces of cystoid degeneration and retinoschisis does not leak into the surrounding retina, which would lead to their collapse.

Extracellular Space↗

Noncontact detection of experimental amelanotic ocular melanoma with L-3-123I-iodo-alpha-methyltyrosine.

An application of L-3-123I-iodo-alpha-methyltyrosine for the detection of ocular melanoma is presented. In rabbits with malignant Greene amelanotic melanoma transplanted to the anterior chamber of the eye, all tumors were detected in positive contrast using a gamma camera with a single pinhole collimator. The smallest tumor identified weighed 65 mg. Our data are compared with those obtained with 32PO4, 67Ga, 203Pb or labelled iodochloroquine.

Animals↗

Experimental tractional retinal detachment in rabbits. Clinical picture and histopathologic features.

A simple reproducible model for the creation of tractional retinal detachments in rabbits is presented. This model comprises retinal membranes composed of different cell types derived from ocular tissues, and eliminates the need for lengthy and expensive tissue culturing procedures. The injected cell bolus rapidly migrates to the optic disc and forms surface retinal membranes. These lead to tractional retinal detachment confined to the area of the vascular medullary rays. The rapidity and severity of the clinical process seems to be directly dependent upon the number of cells injected. Good visibility of the posterior pole is maintained throughout the course of the development of detachment. This model is acceptable for testing agents to suppress intraocular cellular proliferation. It can also serve to teach surgical techniques for the management of vitreo-retinal membranes without endangering human eyes.

Animals↗

Leiomyoma of the ciliary body.

Clinical, histological, and electron-microscopic study of a leiomyoma of the ciliary body, which was removed by cyclectomy from the right eye of a 55-year-old female patient. This is the second case in the literature in which an excision has been performed and the diagnosis been confirmed by electron microscopy. The differential diagnosis between amelanotic malignant melanoma, schwannoma, and neurofibroma is discussed, and the electron-microscopic characteristics of a leiomyoma are demonstrated.

Ciliary Body↗

Communicating junctions of the human sensory retina. A freeze-fracture study.

Using the freeze-fracture technique communicating junctions could be identified between the cells of the adult human sensory retina. Communicating junctions with particles arranged in linear or circular rows as well as in small aggregates were found between adjacent photoreceptor endings. Communicating junctions with particles forming plaques were localized in the inner plexiform layer. They were isolated between unidentified cell processes or lay close to active sites of chemical synapses, thus suggesting the occurrence of "mixed" (chemical and electrical) synapses in this layer. Furthermore, communicating junctions were detected between portions of Müller's cells.

Cell Communication↗

Development and ultrastructure of peripheral subretinal neovascularizations.

Anterior to the equator an additional vascular layer can regularly be found between peripheral retina and choroid. The vessels are located within Bruch's membrane, subjacent to the retinal pigment epithelium. Apparently, this layer is not present at birth and develops at a relatively young age. With the electron microscope all steps of vasculogenesis could be followed. The presence of such vessels also in the eye of a 29-year-old individual suggests that they represent a physiologic condition rather than an ageing change. In contrast to the subretinal neovascular membranes of the posterior fundus, these peripheral neovascularizations show no relation to any known fundus disease.

Adult↗

[Macular haemorrhage in dengue fever (author's transl)].

During the course of a dengue infection a 25-year-old female patient developed intraretinal haemorrhage in the mucula region of both eyes. This complication is interpreted as a result of a generalized tendency to bleed, which is typical for this disorder.

Adult↗

Missing evidence for HLA antigen association with Eales' disease, chorioretinitis, central serous retinopathy, and malignant choroidal melanoma.

Patients with Eales' disease, chorioretinitis, central serous retinopathy, or malignant choroidal melanoma were tested for HLA antigen deviation. When corrected p values (pc) are used, the first three disorders did not show any significant deviation, whereas a significant increase of HLA-Aw32 (pc = 0.026) was found in the malignant melanoma group. For conclusive evidence the latter finding needs confirmation by analysis of a greater number of patients with this disorder.

Chorioretinitis↗

[HLA antigens in patients with rhegmatogenous retinal detachment (author's transl)].

An analysis of HLA-antigens was carried out in 132 patients with rhegmatogenous retinal detachment. While emmetropic and hyperopic patients showed no deviation from the normal HLA distribution pattern, HLA-B 12 was found to be significantly increased (30,3% versus a control frequency of 21,8%) at the Pc less than 0,05 level in myopic patients. This deviation frequency was identical in patients with and without a positive family history and was not related to the degree of myopia.

Eye Injuries↗

The architecture of the most peripheral retinal vessels.

The vascular bed of the extreme periphery of the human retina is characterized by the occurrence of relatively wide arcades and bridging vessels connecting the peripheral portions of arteries and veins. These vessels differ from the more posterior capillaries not only by their larger diameter but also by the presence of a perivascular halo, which consists of an electron-translucent ground substance containing fine collagen fibrils, basement membrane material, dense bodies, vesicles, and portions of macrophages. The appearance of the external portion of the halo and the relationship of its collagen fibrils to the basement membrane of the surrounding Müller cells is indistinguishable from that of the cortical vitreous and the inner limiting membrane located at the vitreoretinal interface. Toward the periphery the thickness of the halo increases from vessel to vessel. As a rule, one or more of the vessel loops closet to the ora serrata are occluded. The structure of these occluded vessels is identical with the structure of the halo.

Animals↗

Electron-microscopic histochemistry of the most peripheral retinal vessels.

The reaction of Thiéry (periodic acid-thiocarbohydrazide-silver proteinate) has been applied for histochemical analysis of the structures composing the halo of the most peripheral human retinal vessels. It is suggested that glycoproteins lie in the ground substance of the halo as well as well as in the basement membranes of endothelial cells, pericytes, and Müller cells. Glycogen particles were found in endothelial cells, in pericytes and especially in Müller cells.

Basement Membrane↗

Retinal enzyme activities under hypoxic conditions prior to neovascularization.

In an effort to demonstrate biochemical changes occuring in malperfused retinas, oxygen-induced retrolental fibroplasia was produced in kittens. Immediately before the onset of vasoproliferations, that is in the stage of maximal hypoxia, the activities of lactate dehydrogenase (LDH), glucose-6-phosphate dehydrogenase (G-6-PDH), malate dehydrogenase (MDH) and isocitrate dehydrogenase (ICDH) were determined. The activity of MDH was found to be significantly decreased, whereas the activities of the other enzymes showed no major changes.

Animals↗