Premium
Mechanisms underlying the neurokinin A‐induced contraction of the pregnant rat myometrium
Author(s) -
Shintani Yoshinobu,
Nishimura Junji,
Niiro Naohisa,
Hirano Katsuya,
Nakano Hitoo,
Kanaide Hideo
Publication year - 2000
Publication title -
british journal of pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.432
H-Index - 211
eISSN - 1476-5381
pISSN - 0007-1188
DOI - 10.1038/sj.bjp.0703410
Subject(s) - myometrium , medicine , endocrinology , contraction (grammar) , chemistry , phosphoramidon , uterine contraction , neurokinin a , biophysics , biology , uterus , neuropeptide , receptor , substance p , endothelin receptor
Using fura‐PE3 fluorimetry and α‐toxin permeabilization, the characteristics of the contractile responses to neurokinin A (NKA) were determined in the pregnant rat myometrium. NKA induced contractions in rat myometrium in a concentration‐dependent manner. There were no significant differences in the maximum contractions and EC 50 values between the pregnant and non‐pregnant myometrium, however, the contraction of only the former was greatly enhanced in the presence of phosphoramidon (PPAD), an endopeptidase inhibitor. In the pregnant myometrium, NKA induced sustained increases in [Ca 2+ ] i and tension in normal physiological saline solution, while only small transient increases in [Ca 2+ ] i and tension were observed in Ca 2+ ‐free solution. Both diltiazem (10 μ M ) and SK‐F 96365 (10 μ M ) significantly inhibited the NKA‐induced elevations of [Ca 2+ ] i and tension. The effects were additive when these drugs were used together. NKA induced a significant leftward shift of the [Ca 2+ ] i ‐tension curve obtained by changing the external Ca 2+ (0–2.5 m M ) during depolarization with high K + solution. This Ca 2+ ‐sensitizing effect by NKA was also observed in the α‐toxin permeabilized myometrium. These results indicated that in the pregnant rat myometrium: (1) the responsiveness to NKA increased, although it was masked by the increase in the endopeptidase activity; (2) NKA induced contractions of the myometrium by increasing both [Ca 2+ ] i and the myofilament Ca 2+ sensitivity and (3) The NKA‐induced [Ca 2+ ] i elevation was partly due to the intracellular Ca 2+ release and mainly due to the Ca 2+ influx, which was thought to be through both voltage dependent calcium channels and non‐specification channels.British Journal of Pharmacology (2000) 130 , 1165–1173; doi: 10.1038/sj.bjp.0703410