Literature DB >> 7834192

Effects of intrinsic prostaglandins on the spontaneous contractile and electrical activity of the proximal renal pelvis of the guinea-pig.

Y Zhang1, R J Lang.   

Abstract

1. The effects of blocking prostaglandin biosynthesis with indomethacin on the spontaneous electrical and contractile activity recorded in smooth muscle strips of the guinea-pig renal pelvis were examined using standard tension and membrane potential recording techniques. 2. Circumferentially cut strips of proximal renal pelvis contracted more frequently (4.5 +/- 0.2 min-1) than strips cut from the mid region (1.3 +/- 0.2; P < 0.05, n = 5) of the renal pelvis. 3. Indomethacin (1 nM-10 microM) reduced the amplitude and frequency of the contractions of the renal pelvis in a concentration- and time-dependent manner. Contractions were completely abolished in the presence of 30 microM indomethacin. 4. After indomethacin blockade, activation of prostaglandin F2 alpha (PGF2 alpha) receptors with dinoprost (1-100 nM) restored the amplitude and frequency of the spontaneous contractions of renal pelvis. Higher concentrations of dinoprost (> 100 nM-3 microM) increased the contraction amplitude of the proximal and mid renal pelvis 1.9 and 1.6 times respectively. The contraction frequency of the mid renal pelvis, but not the proximal pelvis, was also raised above its pre-indomethacin frequency. 5. The spontaneous electrical activity recorded in proximal strips of the renal pelvis was designated to come from three cell types: (i), pacemaker cells (10% of cells recorded), with simple action potentials comprising relatively slow rising and repolarizing phases triggered on top of a slowly-developing pre-potential; (ii), driven cells (75% of cells), with complex action potentials comprising a rapid initial spike, followed by a period of membrane oscillation and a plateau of 0.2-2 s duration; and (iii), intermediate cells (15%) which fired action potentials with an initial rapid and a long plateau phase. 6. Indomethacin (10-30 micro M) decreased the amplitude and frequency of the action potentials recorded in driven and intermediate cells. The membrane potential of these cells also depolarized 5mV to-51.2 +/-2.6mV (n=5).7. Dinoprost (300 nM-1.5 micro M) increased the rate of action potential discharge, without affecting the membrane potential of driven cells previously exposed to indomethacin (30 micro M).8. These data suggest that the endogenous release of prostaglandins is necessary for the in vitro spontaneous contractile activity recorded in the guinea-pig renal pelvis. Blockade of the synthesis of these prostaglandins appears either to modify the ability of the driven regions of the renal pelvis to fire action potentials or to reduce the coupling of these driven regions to their pacemaker cells.

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Year:  1994        PMID: 7834192      PMCID: PMC1510128          DOI: 10.1111/j.1476-5381.1994.tb17007.x

Source DB:  PubMed          Journal:  Br J Pharmacol        ISSN: 0007-1188            Impact factor:   8.739


  27 in total

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3.  The whole-cell Ca2+ channel current in single smooth muscle cells of the guinea-pig ureter.

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4.  The effect of indomethacin on the motility of isolated sheep ureters.

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5.  Frequency gradient in the autorhythmicity of the pyeloureteral pacemaker system.

Authors:  C E Constantinou; J L Neubarth; M Mensah-Dwumah
Journal:  Experientia       Date:  1978-05-15

6.  Generation and transmission of ovine ureteral contractions, with special reference to prostaglandins.

Authors:  O Thulesius; L Ugaily-Thulesius; M Angelo-Khattar
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7.  Identification of the major membrane currents in freshly dispersed single smooth muscle cells of guinea-pig ureter.

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Authors:  M Angelo-Khattar; O Thulesius; T Nilsson; T Cherian; L Joseph
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5.  Nicotinic receptor activation on primary sensory afferents modulates autorhythmicity in the mouse renal pelvis.

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6.  Nitric oxide contracts longitudinal smooth muscle of opossum oesophagus via excitation-contraction coupling.

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8.  Effects of nerve stimulation on the spontaneous action potentials recorded in the proximal renal pelvis of the guinea-pig.

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9.  Regional differences in nitrergic innervation of the smooth muscle of murine lower oesophageal sphincter.

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10.  Spontaneous electrical and Ca2+ signals in typical and atypical smooth muscle cells and interstitial cell of Cajal-like cells of mouse renal pelvis.

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