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NANC neurotransmission in lamina propria of the rabbit urethra : regulation by different subsets of calcium channels

Zygmunt, Pia K.E. ; Zygmunt, Peter M. LU orcid ; Högestätt, Edward D. LU and Andersson, Karl‐Erik LU orcid (1995) In British Journal of Pharmacology 115(6). p.1020-1026
Abstract

Electrical field stimulation (EFS) of the rabbit urethral lamina propria elicited a frequency‐dependent non‐adrenergic, non‐cholinergic (NANC) relaxation, which was abolished by NΩ–nitro‐L‐arginine (l‐NOARG). Ω‐Conotoxin GVIA, a selective blocker of N‐type voltage‐operated calcium channels (VOCCs), and Ω‐conotoxin MVIIC (blocker of N‐ and Q‐type VOCCs) inhibited the NANC relaxation, and the inhibition was inversely related to the frequency of stimulation. Combined, the two toxins were more effective than co‐conotoxin GVIA alone. The relaxation induced by the nitric oxide (NO) donor, 3‐morpholino‐sydnonimine (SIN‐1) was not affected by Ω‐conotoxin MVIIC. Ω‐Agatoxin IVA (blocker of P‐type VOCCs) did not attenuate the NANC... (More)

Electrical field stimulation (EFS) of the rabbit urethral lamina propria elicited a frequency‐dependent non‐adrenergic, non‐cholinergic (NANC) relaxation, which was abolished by NΩ–nitro‐L‐arginine (l‐NOARG). Ω‐Conotoxin GVIA, a selective blocker of N‐type voltage‐operated calcium channels (VOCCs), and Ω‐conotoxin MVIIC (blocker of N‐ and Q‐type VOCCs) inhibited the NANC relaxation, and the inhibition was inversely related to the frequency of stimulation. Combined, the two toxins were more effective than co‐conotoxin GVIA alone. The relaxation induced by the nitric oxide (NO) donor, 3‐morpholino‐sydnonimine (SIN‐1) was not affected by Ω‐conotoxin MVIIC. Ω‐Agatoxin IVA (blocker of P‐type VOCCs) did not attenuate the NANC relaxation. Reduction of the calcium concentration from 1.5 to 0.5 mM reduced the NANC relaxation at low but not at high frequencies of stimulation; the relaxation induced by SIN‐1 was not affected. EFS (20Hz, 30 s) increased the cyclic GMP level 3 fold in normal Krebs solutions, but was unable to enhance significantly the cyclic GMP level after calcium omission. L‐NOARG reduced the cyclic GMP content in ‘calcium‐free’ medium, indicating an ongoing NO synthesis that was independent of extracellular calcium. Caffeine, ryanodine and thapsigargin (inhibitors of sarcoplasmic calcium release), and CGP 37157 (inhibitor of mitochondrial sodium/calcium exchange) had no effect on the NANC relaxation. It is suggested that nitrergic nerve activation in the rabbit urethral lamina propria is mediated in part by N‐type (co‐conotoxin GVIA‐sensitive) and in part by Q‐type (co‐conotoxin MVIIC‐sensitive) VOCCs. With high frequences of stimulation, another mechanism, possibly calcium‐independent, appears to become operational. 1995 British Pharmacological Society

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author
; ; and
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Calcium, calcium channels, co‐conotoxins, NANC neurotransmission, nitric oxide, rabbit urethra
in
British Journal of Pharmacology
volume
115
issue
6
pages
7 pages
publisher
Wiley
external identifiers
  • scopus:0029123312
  • pmid:7582498
ISSN
0007-1188
DOI
10.1111/j.1476-5381.1995.tb15913.x
language
English
LU publication?
no
id
0afa616a-7e70-4bfa-9e41-0115b5d13fcc
date added to LUP
2019-05-31 21:40:38
date last changed
2024-01-01 09:00:32
@article{0afa616a-7e70-4bfa-9e41-0115b5d13fcc,
  abstract     = {{<p>Electrical field stimulation (EFS) of the rabbit urethral lamina propria elicited a frequency‐dependent non‐adrenergic, non‐cholinergic (NANC) relaxation, which was abolished by N<sup>Ω</sup>–nitro‐L‐arginine (l‐NOARG). Ω‐Conotoxin GVIA, a selective blocker of N‐type voltage‐operated calcium channels (VOCCs), and Ω‐conotoxin MVIIC (blocker of N‐ and Q‐type VOCCs) inhibited the NANC relaxation, and the inhibition was inversely related to the frequency of stimulation. Combined, the two toxins were more effective than co‐conotoxin GVIA alone. The relaxation induced by the nitric oxide (NO) donor, 3‐morpholino‐sydnonimine (SIN‐1) was not affected by Ω‐conotoxin MVIIC. Ω‐Agatoxin IVA (blocker of P‐type VOCCs) did not attenuate the NANC relaxation. Reduction of the calcium concentration from 1.5 to 0.5 mM reduced the NANC relaxation at low but not at high frequencies of stimulation; the relaxation induced by SIN‐1 was not affected. EFS (20Hz, 30 s) increased the cyclic GMP level 3 fold in normal Krebs solutions, but was unable to enhance significantly the cyclic GMP level after calcium omission. L‐NOARG reduced the cyclic GMP content in ‘calcium‐free’ medium, indicating an ongoing NO synthesis that was independent of extracellular calcium. Caffeine, ryanodine and thapsigargin (inhibitors of sarcoplasmic calcium release), and CGP 37157 (inhibitor of mitochondrial sodium/calcium exchange) had no effect on the NANC relaxation. It is suggested that nitrergic nerve activation in the rabbit urethral lamina propria is mediated in part by N‐type (co‐conotoxin GVIA‐sensitive) and in part by Q‐type (co‐conotoxin MVIIC‐sensitive) VOCCs. With high frequences of stimulation, another mechanism, possibly calcium‐independent, appears to become operational. 1995 British Pharmacological Society</p>}},
  author       = {{Zygmunt, Pia K.E. and Zygmunt, Peter M. and Högestätt, Edward D. and Andersson, Karl‐Erik}},
  issn         = {{0007-1188}},
  keywords     = {{Calcium; calcium channels; co‐conotoxins; NANC neurotransmission; nitric oxide; rabbit urethra}},
  language     = {{eng}},
  month        = {{01}},
  number       = {{6}},
  pages        = {{1020--1026}},
  publisher    = {{Wiley}},
  series       = {{British Journal of Pharmacology}},
  title        = {{NANC neurotransmission in lamina propria of the rabbit urethra : regulation by different subsets of calcium channels}},
  url          = {{http://dx.doi.org/10.1111/j.1476-5381.1995.tb15913.x}},
  doi          = {{10.1111/j.1476-5381.1995.tb15913.x}},
  volume       = {{115}},
  year         = {{1995}},
}