14 Article(s)Download |
PMID | Title | Pub. Year | #Total Relationships |
1 | 22131399 | Microglial Ca(2+)-activated K(+) channels are possible molecular targets for the analgesic effects of S-ketamine on neuropathic pain. | 2011 Nov 30 | 1 |
2 | 18519030 | Inhibition of NMDA-induced outward currents by interleukin-1beta in hippocampal neurons. | 2008 Aug 8 | 2 |
3 | 17872452 | Epoxyeicosatrienoic acids regulate Trp channel dependent Ca2+ signaling and hyperpolarization in endothelial cells. | 2007 Dec | 1 |
4 | 16396931 | Ca2+-activated K+ channels in human melanoma cells are up-regulated by hypoxia involving hypoxia-inducible factor-1alpha and the von Hippel-Lindau protein. | 2006 Mar 1 | 1 |
5 | 12163354 | Charybdotoxin-sensitive small conductance K(Ca) channel activated by bradykinin and substance P in endothelial cells. | 2002 Aug | 1 |
6 | 12172639 | Effects of imipramine on ion channels and proliferation of IGR1 melanoma cells. | 2002 Jul 15 | 1 |
7 | 12381678 | The Na-K-ATPase is a target for an EDHF displaying characteristics similar to potassium ions in the porcine renal interlobar artery. | 2002 Nov | 1 |
8 | 10516156 | Delayed rectifier and Ca(2+)-dependent K(+) currents in human esophagus: roles in regulating muscle contraction. | 1999 Oct | 1 |
9 | 9124454 | Inhibition of K(V) and K(Ca) channels antagonizes NO-induced relaxation in pulmonary artery. | 1997 Feb | 1 |
10 | 9142852 | Effect of chronic hypoxia on K+ channels: regulation in human pulmonary vascular smooth muscle cells. | 1997 Apr | 2 |
11 | 9277350 | Inhibition of intestinal Cl- secretion by clotrimazole: direct effect on basolateral membrane K+ channels. | 1997 Aug | 1 |
12 | 9550424 | Extracellular ATP and UTP control the generation of reactive oxygen intermediates in human macrophages through the opening of a charybdotoxin-sensitive Ca2+-dependent K+ channel. | 1997 Dec 15 | 1 |
13 | 7840222 | KCa channel antagonists reduce NO donor-mediated relaxation of vascular and tracheal smooth muscle. | 1995 Jan | 1 |
14 | 1371308 | Ca(2+)-activated K+ channels in human leukemic T cells. | 1992 Jan | 1 |