Overexpression of NGF in mouse urothelium leads to neuronal hyperinnervation, pelvic sensitivity, and changes in urinary bladder function.
نویسندگان
چکیده
NGF has been suggested to play a role in urinary bladder dysfunction by mediating inflammation, as well as morphological and functional changes, in sensory and sympathetic neurons innervating the urinary bladder. To further explore the role of NGF in bladder sensory function, we generated a transgenic mouse model of chronic NGF overexpression in the bladder using the urothelium-specific uroplakin II (UPII) promoter. NGF mRNA and protein were expressed at higher levels in the bladders of NGF-overexpressing (NGF-OE) transgenic mice compared with wild-type littermate controls from postnatal day 7 through 12-16 wk of age. Overexpression of NGF led to urinary bladder enlargement characterized by marked nerve fiber hyperplasia in the submucosa and detrusor smooth muscle and elevated numbers of tissue mast cells. There was a marked increase in the density of CGRP- and substance P-positive C-fiber sensory afferents, neurofilament 200-positive myelinated sensory afferents, and tyrosine hydroxylase-positive sympathetic nerve fibers in the suburothelial nerve plexus. CGRP-positive ganglia were also present in the urinary bladders of transgenic mice. Transgenic mice had reduced urinary bladder capacity and an increase in the number and amplitude of nonvoiding bladder contractions under baseline conditions in conscious open-voiding cystometry. These changes in urinary bladder function were further associated with an increased referred somatic pelvic hypersensitivity. Thus, chronic urothelial NGF overexpression in transgenic mice leads to neuronal proliferation, focal increases in urinary bladder mast cells, increased urinary bladder reflex activity, and pelvic hypersensitivity. NGF-overexpressing mice may, therefore, provide a useful transgenic model for exploring the role of NGF in urinary bladder dysfunction.
منابع مشابه
“ Overexpression of NGF in mouse urothelium leads to neuronal hyperinnervation , pelvic sensitivity and changes in urinary bladder function ” by Schnegelsberg
Nerve growth factor (NGF) has been suggested to play a role in bladder pain by mediating inflammation (12) and functional changes in sensory and sympathetic neurons innervating the urinary bladder (5). Clinically, diseases such as interstitial cystitis/painful bladder syndrome (IC/PBS) have been associated with elevated urinary levels of NGF (10) and the urothelium of individuals with IC/PBS pr...
متن کاملEditorial Focus: Model for chronic overexpression of NGF challenges old paradigms: focus on “Overexpression of NGF in mouse urothelium leads to neuronal hyperinnervation, pelvic sensitivity, and changes in urinary bladder function”
NERVE GROWTH FACTOR (NGF) has been suggested to play a role in bladder pain by mediating inflammation (12) and functional changes in sensory and sympathetic neurons innervating the urinary bladder (5). Clinically, diseases such as interstitial cystitis/painful bladder syndrome (IC/PBS) have been associated with elevated urinary levels of NGF (10), and the urothelium of individuals with IC/PBS p...
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Urothelium-specific overexpression of nerve growth factor (NGF) in the urinary bladder of transgenic mice stimulates neuronal sprouting in the urinary bladder, produces increased voiding frequency, and results in increased referred somatic hypersensitivity. Additional NGF-mediated pleiotropic changes might contribute to the increased voiding frequency and pelvic hypersensitivity observed in the...
متن کاملCALL FOR PAPERS Sensory and Effector Functions of the Urothelium Neurotrophin/receptor expression in urinary bladder of mice with overexpression of NGF in urothelium
Girard BM, Malley SE, Vizzard MA. Neurotrophin/receptor expression in urinary bladder of mice with overexpression of NGF in urothelium. Am J Physiol Renal Physiol 300: F345–F355, 2011. First published November 3, 2010; doi:10.1152/ajprenal.00515.2010.— Urothelium-specific overexpression of nerve growth factor (NGF) in the urinary bladder of transgenic mice stimulates neuronal sprouting in the u...
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ورودعنوان ژورنال:
- American journal of physiology. Regulatory, integrative and comparative physiology
دوره 298 3 شماره
صفحات -
تاریخ انتشار 2010