Statements in which the resource exists as a subject.
PredicateObject
rdf:type
lifeskim:mentions
pubmed:issue
Pt 2
pubmed:dateCreated
2007-6-4
pubmed:abstractText
The pelvic autonomic nervous system is a target for circulating androgens in adults, with androgen exposure or deprivation affecting the structure and function of urogenital tract innervation. However, the critical period for androgen exposure to initially establish pelvic autonomic neuromuscular transmission has not been determined. We have examined the sympathetic innervation of the vas deferens in hypogonadal (hpg) mice that are deprived of androgens after birth but undergo normal prenatal sexual differentiation and remain androgen responsive throughout life. In vasa deferentia from hpg mice, purinergic excitatory junction potentials and contractions could not be elicited by electrical stimulation and P2X(1) purinoceptors could not be demonstrated by immunofluorescence. Moreover, a novel inhibitory nitrergic transmission developed. Administering testosterone to adult hpg mice restored purinergic excitatory transmission and P2X(1) purinoceptor immunofluorescence, and nitrergic inhibitory transmission was lost. Despite the deficit in excitatory neurotransmission in hpg mice, their vasa deferentia were innervated by numerous noradrenergic axons and pelvic ganglia appeared normal. In addition, noradrenergic contractions could be elicited by electrical stimulation. This study has revealed that postnatal androgen exposure has a profound effect on the development of excitatory transmission in vas deferens smooth muscle, primarily by a postjunctional action, but is not essential for development of the structural innervation of this organ. Our results also indicate that there is no postnatal critical period for androgen exposure to establish neuroeffector transmission and that postnatal androgen exposure can be delayed until adulthood, with little consequence for establishment of normal sympathetic neurotransmission.
pubmed:commentsCorrections
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pubmed:language
eng
pubmed:journal
pubmed:citationSubset
IM
pubmed:chemical
pubmed:status
MEDLINE
pubmed:month
Jun
pubmed:issn
0022-3751
pubmed:author
pubmed:issnType
Print
pubmed:day
1
pubmed:volume
581
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
665-78
pubmed:dateRevised
2010-11-18
pubmed:meshHeading
pubmed-meshheading:17379637-Age Factors, pubmed-meshheading:17379637-Animals, pubmed-meshheading:17379637-Mice, pubmed-meshheading:17379637-Androgens, pubmed-meshheading:17379637-Testosterone, pubmed-meshheading:17379637-Sympathetic Nervous System, pubmed-meshheading:17379637-Vas Deferens, pubmed-meshheading:17379637-Acetylcholine, pubmed-meshheading:17379637-Male, pubmed-meshheading:17379637-Norepinephrine, pubmed-meshheading:17379637-Muscle, Smooth, pubmed-meshheading:17379637-Aging, pubmed-meshheading:17379637-Adenosine Triphosphate, pubmed-meshheading:17379637-Electric Stimulation, pubmed-meshheading:17379637-Hypogonadism, pubmed-meshheading:17379637-Time Factors, pubmed-meshheading:17379637-Disease Models, Animal, pubmed-meshheading:17379637-Muscle Contraction, pubmed-meshheading:17379637-Synaptic Transmission, pubmed-meshheading:17379637-Neural Inhibition, pubmed-meshheading:17379637-Excitatory Postsynaptic Potentials
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