Key result
Deoxycholic acid decreased the frequency and amplitude of pacemaker currents in murine interstitial cells of Cajal by activating ATP-sensitive K+ channels through PGE2 production.
Deoxycholic acid inhibits pacemaker currents in murine intestinal interstitial cells of Cajal by activating ATP-sensitive K+ channels via PGE2 production.
May inform bile acid effects on murine gut pacemaking; hypothesis-generating with no current clinical implications.
We investigated the role of deoxycholic acid in pacemaker currents using whole-cell patch-clamp techniques at 30 degrees C in cultured interstitial cells of Cajal (ICC) from murine small intestine. 2. The treatment of ICC with deoxycholic acid resulted in a decrease in the frequency and amplitude of pacemaker currents and increases in resting outward currents. Also, under current clamping, deoxycholic acid produced the hyperpolarization of membrane potential and decreased the amplitude of the pacemaker potentials. 3. These observed effects of deoxycholic acid on pacemaker currents and pacemaker potentials were completely suppressed by glibenclamide, an ATP-sensitive K(+) channel blocker. 4. NS-398, a specific cyclooxygenase-2 (COX-2) inhibitor, significantly inhibited the deoxycholic acid-induced effects. The treatment with prostaglandin E(2) (PGE(2)) led to a decrease in the amplitude and frequency of pacemaker currents and to an increase in resting outward currents, and these observed effects of PGE(2) were blocked by glibenclamide. 5. We next examined the role of deoxycholic acid in the production of PGE(2) in ICC, and found that deoxycholic acid increased PGE(2) production through the induction of COX-2 enzyme activity and its gene expression. 6. The results suggest that deoxycholic acid inhibits the pacemaker currents of ICC by activating ATP-sensitive K(+) channels through the production of PGE(2).
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Jun et al. (2004) studied this question. Deoxycholic acid was evaluated on Pacemaker currents and resting outward currents. Deoxycholic acid decreased the frequency and amplitude of pacemaker currents in murine interstitial cells of Cajal by activating ATP-sensitive K+ channels through PGE2 production.
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