Literature DB >> 10407093

Increased c-fos expression in spinal lumbosacral projection neurons and preganglionic neurons after irritation of the lower urinary tract in the rat.

L A Birder1, J R Roppolo, V L Erickson, W C de Groat.   

Abstract

Chemical irritation of the lower urinary tract (LUT) induces c-fos expression in neurons in the lumbosacral (L(6) and S(1)) spinal cord. This study used axonal tracing with fluorescent dyes to identify the types of spinal neurons expressing Fos immunoreactivity (IR) after LUT irritation in the rat. Fos-IR was detected in lateral and medial superficial dorsal horn, the sacral parasympathetic nucleus (SPN) and lamina X around the central canal. Fos-IR was detected in spinal neurons projecting to supraspinal sites (brainstem and hypothalamus), in preganglionic neurons (PGN) and in unlabeled segmental interneurons. A substantial percentage (20%) of dye labeled PGN exhibited Fos-IR after LUT irritation; and a larger percentage (36%) exhibited Fos-IR after electrical stimulation of the pelvic nerve which contains afferent pathways from all of the pelvic organs. The majority (average 55%) of Fos-positive neurons projecting to supraspinal sites were also located in the region of the SPN. A selective distribution of different types of neurons was detected in this region: PGN were located ventral to the spinal projection neurons which in turn were located ventral to the majority of unidentified Fos-positive neurons. The distribution of Fos-positive PGN and projection neurons was similar in spinal intact and spinal transected animals indicating that c-fos expression was mediated by monosynaptic afferent input or input from segmental interneurons and was not due to activation of supraspinal micturition reflex pathways. Copyright 1999 Elsevier Science B.V.

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Year:  1999        PMID: 10407093     DOI: 10.1016/s0006-8993(99)01546-2

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  22 in total

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Review 2.  Integrative control of the lower urinary tract: preclinical perspective.

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Review 3.  Changes in afferent activity after spinal cord injury.

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Review 4.  Neural control of the lower urinary tract.

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Review 5.  Organization of the neural switching circuitry underlying reflex micturition.

Authors:  W C de Groat; C Wickens
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6.  Impact of Bioelectronic Medicine on the Neural Regulation of Pelvic Visceral Function.

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Journal:  Bioelectron Med       Date:  2015-01-22

7.  The VR1-Positive Primary Afferent-Mediated Expression of pERK in the Lumbosacral Neurons in Response to Mechanical and Chemical Stimulation of the Urinary Bladder in Rats.

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Review 8.  Afferent nerve regulation of bladder function in health and disease.

Authors:  William C de Groat; Naoki Yoshimura
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Review 9.  The neural control of micturition.

Authors:  Clare J Fowler; Derek Griffiths; William C de Groat
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10.  Differential synaptic inputs to the cell body and proximal dendrites of preganglionic parasympathetic neurons in the rat conus medullaris.

Authors:  S Persson; L A Havton
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