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On structural patterns of the lamina propria of human seminiferous tubules
Authors:E Bustos-Obregón  A F Holstein
Institution:(1) Department of Functional Anatomy, University of Hamburg, Germany
Abstract:Summary The ultrastructure of the lamina propria of human seminiferous tubules was analyzed in normal specimens and compared to biopsies showing great thickenning of this area in light microscopy.The contractile cells are stellate in shape, the intercellular gaps between their branchings being less than 150 Å. The cytoplasmic features of these cells are similar to those described by Ross and Long (1966) and do not differ significantly in the pathological cases examined.The intercellular components, namely collagen fibers, microfibrils and an incomplete basement membrane-like coating of the contractile cells, are strikingly increased in the thickenned lamina propria, although the number of layers making up this structure needs not be increased. Occasionally, the intercellular space is occupied by only one of these materials.The distribution of collagen permits identification of two main patterns in the thickenned lamina propria: a) one where the basement membrane of the seminiferous epithelium is separated from the first layer of contractile cells by a wide collagen zone, and b) another case where the layer displaying greater thickness because of increased collagen deposition is located further away from the germinal epithelium.The functional activity of the contractile cells, the physiological implication of structural alterations of the lamina propria and the necessity to correlate these observations to andrological findings, are discussed.Presented in part at the 68. Meeting of the Anatomische Gesellschaft, Lausanne, April 1973.Fellow of the Alexander von Humboldt Foundation, on leave of absence from Depto. de Biología y Genética, Sede Norte, Universidad de Chile, Santiago.Supported by Grants from the Deutsche Forschungsgemeinschaft.
Keywords:Seminiferous tubules  human  Lamina propria  Contractile cells  Electron microscopy
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