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Reproduction (2008) 135 377-384
DOI: 10.1530/REP-07-0346
Copyright © 2008 Society for Reproduction and Fertility
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RESEARCH

C-kit receptor in the human vas deferens: distinction of mast cells, interstitial cells and interepithelial cells

Roman Metzger, Udo Rolle, Henning C Fiegel, Folker E Franke1, Karsten Muenstedt1 and Holger Till

Department of Pediatric Surgery, University of Leipzig, 04103 Leipzig, Germany and1 Department of Pathology, University of Giessen, 35392 Giessen, Germany

Correspondence should be addressed to R Metzger; Email: roman.metzger{at}medizin.uni-leipzig.de

The molecular mechanisms underlying the regulation of vas deferens (VD) motility and semen emission are still poorly understood. Interstitial cells of Cajal (ICC), which harbour the c-kit receptor (CD117), provide the basis of coordinated gut motility. We investigated whether c-kit receptor-positive cells also exist in the normal human VD. Enzyme and fluorescence immunohistochemical techniques were applied on serial sections of human proximal, middle, and distal VD segments (n=49) employing 13 different monoclonal and polyclonal antibodies recognizing the c-kit receptor. The c-kit receptor was detected in either round- or spindle-shaped cells. On account of their antigenic profile, the round- and oval-shaped c-kit receptor-positive cells were identified as mast cells (MC) occurring in all layers of the VD except the epithelium. In contrast, two distinct populations of exclusively c-kit receptor-positive spindle-shaped cells were found within the lamina propria and, rarely, in the inner and outer smooth muscle layers, as well as within the epithelium. Different shaped c-kit receptor-positive MC and IC were present in all layers of the human VD. Our findings demonstrate the presence of different c-kit receptor-positive cells also in the human VD. Their rather ubiquitous distribution within the lamina propria and muscle layers suggests that IC and MC may modulate the neuromuscular transmission and the propagation of electrical signals in multiple systems involved in the draining of fluids. The importance of the c-kit receptor-positive interepithelial cells remains unclear.







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