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Regional variations in the expression of cytokeratin proteins in the adult human cochlea
Authors:M Anniko  W Arnold  L -E Thornell  I Virtanen  F C S Ramaekers  C R Pfaltz
Institution:(1) Department of Oto-Rhino-Laryngology and Head and Neck Surgery, University Hospital, S-901 85 Ume», Sweden;(2) Department of Oto-Rhino-Laryngology Head and Neck Surgery, Kantonsspital, Lucerne, Switzerland;(3) Department of Anatomy, University of Ume», Ume», Sweden;(4) Department of Anatomy, University of Helsinki, Helsinki, Finland;(5) Department of Pathology, University of Nijmegen, Nijmegen, The Netherlands;(6) Department of Oto-Rhino-Laryngology, University of Basle, Basle, Switzerland
Abstract:Summary In the adult human cochlea, a cytokeratin (Ck) network exists along the entire surface of the organ of Corti, enclosing it like a shell. Only the surfaces of the outer and inner hair cells are not integrated in this network. In temporal bone specimens, Ck filaments in Hensen's cells were found to be arranged parallel with and closely apposed to the plasma membrane. In the stria vascularis, Cks were identified only in the marginal cells. Cells in Reissner's membrane and spiral prominence showed varying degrees of immunoreactivity to different monoclonal antibodies directed against Cks. A distinct positivity for Cks was found in most spiral ganglion cells, indicating their presence in all cells. The principal pattern of immunoreactivity was the same in the organ of Corti of the entire cochlea. However, a quantitative gradient in the expression of Cks was observed, with more Cks at the apex than at the base. This was correlated to a difference in the number of Hensen's cells between the two regions. The distinct shell configuration of the Ck network in Corti's organ gives it a tonotopically related difference in rigidity which must be of considerable importance for the perception of sound in the cochlea. The absence of Cks in inner and outer sulcus cells gives them cytoskeletal characteristics of mesenchymal cells with a possible regenerative potential.Supported by grants from the Swedish Medical Research Council (M. A.: 12X-7305; L.-E. T.: 12X-3934), the Ragnar and Torsten Söderberg Foundation (M. A.), the Foundation Tysta Skolan (M. A.), the Swiss National Funds (W. A., C. R. P.: 3.997-1.86), the Finnish Cancer Research Fund (I. V.), the Sigrid Juselius Foundation (I. V.), the Dutch Cancer Foundation (K. W. F.) and the Medical Faculty University of Ume»
Keywords:Human cochlea  Intermediate filaments  Cytokeratins  Cytoskeleton  Immunomorphology
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