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Items: 1 to 20 of 85

1.

Calcium channel blockade by certain opioids.

Seyler DE, Borowitz JL, Maickel RP.

Fundam Appl Toxicol. 1983 Nov-Dec;3(6):536-42.

PMID:
6662295
2.

Modification of drug action by hyperammonemia.

Kuta CC, Maickel RP, Borowitz JL.

J Pharmacol Exp Ther. 1984 Apr;229(1):85-90.

PMID:
6323692
4.

Potentiation of antinociceptive effects of morphine by calcium-channel blockers at the level of the spinal cord.

Omote K, Sonoda H, Kawamata M, Iwasaki H, Namiki A.

Anesthesiology. 1993 Oct;79(4):746-52.

PMID:
8214754
5.
6.

Temporal variation in the interaction between calcium channel blockers and morphine-induced analgesia.

Hodoğluğil U, Güney HZ, Savran B, Güzey C, Görgün CZ, Zengil H.

Chronobiol Int. 1996 Aug;13(3):227-34.

PMID:
8874985
7.
8.

Differential involvement of calcium in acute and chronic opioid action in the guinea-pig ileum in vitro.

Opmeer FA, Van Ree JM.

J Pharmacol Exp Ther. 1980 Apr;213(1):188-95.

PMID:
6767020
9.

Vanidipinedilol: a vanilloid-based beta-adrenoceptor blocker displaying calcium entry blocking and vasorelaxant activities.

Yeh JL, Liou SF, Liang JC, Huang YC, Chiang LC, Wu JR, Lin YT, Chen IJ.

J Cardiovasc Pharmacol. 2000 Jan;35(1):51-63.

PMID:
10630733
10.

Calcium channel antagonists increase morphine-induced analgesia and antagonize morphine tolerance.

Contreras E, Tamayo L, Amigo M.

Eur J Pharmacol. 1988 Apr 13;148(3):463-6.

PMID:
3384008
11.
12.

Gastrointestinal, selective airways and urinary bladder relaxant effects of Hyoscyamus niger are mediated through dual blockade of muscarinic receptors and Ca2+ channels.

Gilani AH, Khan AU, Raoof M, Ghayur MN, Siddiqui BS, Vohra W, Begum S.

Fundam Clin Pharmacol. 2008 Feb;22(1):87-99. doi: 10.1111/j.1472-8206.2007.00561.x.

PMID:
18251725
13.

Involvement of peripheral mechanism in the verapamil-induced potentiation of morphine analgesia in mice.

Shimizu N, Kishioka S, Maeda T, Fukazawa Y, Dake Y, Yamamoto C, Ozaki M, Yamamoto H.

J Pharmacol Sci. 2004 Aug;95(4):452-7. Epub 2004 Aug 5.

14.

Pharmacological interaction of the calcium channel blockers verapamil and flunarizine with the opioid system.

Weizman R, Getslev V, Pankova IA, Schrieber S, Pick CG.

Brain Res. 1999 Feb 13;818(2):187-95.

PMID:
10082803
15.

Inhibition by immunophilin ligands of morphine-induced tolerance and dependence in guinea pig ileum.

Mehr SE, Samini M, Namiranian K, Homayoun H, Gaskari SA, Dehpour AR.

Eur J Pharmacol. 2003 Apr 25;467(1-3):205-10.

PMID:
12706476
16.
17.

Effect of calcium antagonists on leukotriene D4-induced contractions of the guinea-pig trachea and lung parenchyma.

Weichman BM, Muccitelli RM, Tucker SS, Wasserman MA.

J Pharmacol Exp Ther. 1983 May;225(2):310-5.

PMID:
6842394
18.

Loperamide: blockade of calcium channels as a mechanism for antidiarrheal effects.

Reynolds IJ, Gould RJ, Snyder SH.

J Pharmacol Exp Ther. 1984 Dec;231(3):628-32.

PMID:
6502516
19.

Fusobacterium necrophorum haemolysin stimulates motility of ileal longitudinal smooth muscle of the guinea-pig.

Kanoe M, Toyoda Y, Shibata H, Nasu T.

Fundam Clin Pharmacol. 1999;13(5):547-54.

PMID:
10520727
20.

Effects of Ca2+ channel antagonists in guinea-pig normal and skinned gall bladder.

Cejalvo D, Calvo MA, Lloris JM, Cortijo J, Morcillo EJ.

Eur J Pharmacol. 1993 Mar 30;234(1):23-8.

PMID:
8472758

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