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Calcium antagonistic properties of the cyclooxygenase‐2 inhibitor nimesulide in human myometrial myocytes
Author(s) -
Knock Gregory A,
Aaronson Philip I
Publication year - 1999
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.0702685
Subject(s) - nimesulide , myometrium , depolarization , chemistry , pharmacology , cyclooxygenase , calcium channel , nifedipine , mechanism of action , biophysics , medicine , calcium , biochemistry , in vitro , biology , enzyme , uterus , organic chemistry
The non‐steroidal anti‐inflammatory drug nimesulide is a selective inhibitor of cyclooxygenase‐2 which relaxes spontaneously contracting human myometrium in vivo and is potentially a useful tocolytic drug. Part of the relaxant action of nimesulide may be via block of myometrial Ca 2+ channels. Here, we describe the Ca 2+ channel blocking properties of nimesulide in freshly dispersed human term‐pregnant myometrial smooth muscle cells (HMSMCs). Both L‐ and T‐components of the whole cell Ca 2+ channel current were inhibited by 100 μ M nimesulide (38±3 and 35±1% block, respectively). At physiological pH inside and outside the cell (pH o /pH i =7.4/7.2), this block did not depend on the holding or test potential, although a degree of use‐dependence was observed during high frequency stimulation at a higher concentration of drug (300 μ M ). At pH o /pH i =6.8, under which condition the concentration of the non‐ionized form of the drug is increased 3 fold compared to pH 7.4, nimesulide blocked the L‐type current more potently (58±3% inhibition at 100 μ M , P <0.01) compared to physiological pH. Nimesulide caused a 7 mV leftward shift in the availability curve of the current at pH 6.8, suggesting that the affinity of the drug for the inactivated channel is approximately 4 fold higher than its affinity for the closed channel. We speculate that acidification and depolarization of the myometrium during the intense and prolonged contractions of labour might increase the potency of nimesulide as a Ca 2+ channel antagonist, promoting its action as a tocolytic agent.British Journal of Pharmacology (1999) 127 , 1470–1478; doi: 10.1038/sj.bjp.0702685

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