PubMed HealthSearch

PubMed · 8917276

Repeated 15-minute coronary occlusions in pigs increase occlusion arrhythmias but decrease reperfusion arrhythmias that are associated with extracellular hypokalemia.

Abstract

OBJECTIVES: We sought to evaluate the effects of repetitive 15-min coronary occlusions followed by 45-min reperfusions on the incidence of occlusion and reperfusion arrhythmias in pigs. BACKGROUND: Brief 2- to 5-min coronary occlusions seem to exert a protective effect on occlusion and reperfusion arrhythmias. However, because clinical ischemic episodes are often longer, it would be appropriate to assess whether such protection also occurs when longer cycles of occlusion-reperfusion are produced. METHODS: Three to four cycles of 15-min coronary occlusions with 45-min reperfusions were performed in 34 pigs, and changes in ST segment and incidence of ventricular arrhythmias were assessed. Plasma potassium ion concentrations in eight pigs and blood gas in six were measured from blood from the ischemic area during reperfusion. RESULTS: Repetitive occlusions were associated with a progressively higher ST segment elevation and a higher incidence of ST segment alternans (p < 0.001) and ventricular fibrillation (VF) (p < 0.01). However, during repetitive reperfusions, normalization of the ST segment was increasingly faster, the incidence of VF was progressively reduced (p < 0.03), and there was progressively less severe regional acidosis ([mean +/- SD] 7.06 +/- 0.12 vs. 7.26 +/- 0.06, p < 0.05) and hypokalemia (1.9 +/- 0.7 vs. 2.3 +/- 0.4 mEq/liter, p = NS). CONCLUSIONS: The progressive electrocardiographic deterioration and increasing incidence of ventricular arrhythmias during repetitive 15-min occlusions in pigs suggest increasing metabolic derangement. However, the progressively faster normalization of the ST segment and the reduced incidence of ventricular arrhythmias during reperfusion suggest an increasingly faster restoration of the metabolic and ionic balance.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J Figueras, R Segura, B Bermejo. 1996-11-15. Repeated 15-minute coronary occlusions in pigs increase occlusion arrhythmias but decrease reperfusion arrhythmias that are associated with extracellular hypokalemia.. https://doi.org/10.1016/s0735-1097(96)00346-4

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Localization of flunitrazepam in artificial membranes. A spectrophotometric study about the effect the polarity of the medium exerts on flunitrazepam acid-base equilibrium.

In the present paper we tried to test the hypothesis that nonspecific flunitrazepam-membrane interactions are consistent with drug molecules accommodated between lipid molecules, becoming an integral part of the bilayer. We developed a spectrophotometric method to determine FNTZH+ equilibrium dissociation constant and applied it to the study of the acid-base equilibria of this drug in homogeneous media of different polarity. In these conditions, pK decreased with the decrement in the dielectric constant (D) of the media. These results, analyzed under the light of the theory developed by Fernandez and Fromherz (1977; J. Phys. Chem. 81, 1755-1761) let us infer that flunitrazepam is localized a region with D = 60. This D value is lower that Dwater = 78 and higher than D of hydrocarbon chains zone (D = 2-5) and would correspond to D of the region of polar groups. This result is compatible with the hypothesis.

Acid-Base Equilibrium

Interrenal function in larval Ambystoma tigrinum. IV. Acid-base balance and the renin-angiotensin system.

Larval Ambystoma tigrinum were cannulated nonocclusively in the truncus arteriosus and allowed to recover for 20-24 hr. In one group of animals a peritoneal cannula was inserted in order to induce acidosis through the injection of lactic acid (2 micromol/g). Immediately following a control blood sample (hr 0), lactic acid was injected, and blood samples were collected at 1, 4, 8, and 24 hr and analyzed for pH, PCO2, PO2, [HCO3-], and aldosterone. These animals exhibited a significant metabolic acidosis, which was accompanied by a significant increase in plasma aldosterone, and recovered in approximately 24 hr. Additional groups of animals were subjected to the same acidosis and also received either saralasin (0.01 or 1 microg/g at 0, 1, and 4 hr) or captopril (0.01-0.1 or 1 microg/g at 0, 1, and 4 hr). The groups of animals whose renin-angiotensin system was blocked by saralasin or captopril did not show a significant change in their ability to recover from the metabolic acidosis. Furthermore, saralasin and captopril were ineffective in inhibiting the normal rise in circulating aldosterone in response to acidosis. In another group of animals, synthetic human angiotensin II (1 microg/g; Ang II) was infused immediately following the control blood sample (hr 0) and blood samples were collected at 2, 4, 6, and 8 hr and assayed for aldosterone. Plasma aldosterone levels increased significantly from 133 +/- 91 pg/ml at hr 0 to a maximum of 3288 +/- 519 pg/ml at hr 4. Sham-treated animals did not increase circulating aldosterone. When Ang II (1 microg/g) and saralasin (1 microg/g) were given simultaneously, however, the rise in plasma aldosterone was only about 35% that of animals which received Ang II alone. We conclude that administration of Ang II leads, either directly or indirectly, to synthesis and release of aldosterone from the interrenal tissues of larval Ambystoma tigrinum and that this rise can be significantly attenuated by saralasin. We furthermore conclude that although the renin-angiotensin system may be indirectly involved in recovery from an acid challenge, it does not appear to be the stimulus for the observed increase in plasma aldosterone in response to acidosis in these animals.

Acid-Base Equilibrium

Relative changes in cerebral blood flow during cardiac operations using xenon-133 clearance versus transcranial Doppler sonography.

BACKGROUND: Changes in cerebral blood flow (CBF) during cardiac operations have implications in terms of postoperative neurologic and neuropsychological dysfunction. Current techniques of CBF measurement are cumbersome and invasive. Transcranial Doppler sonography offers a noninvasive means of assessing changes in CBF. The aim of this study was validation of this technique with existing methods of CBF measurement during cardiac operations. METHODS: We compared the changes in CBF using xenon-133 clearance with changes in middle cerebral artery velocity by transcranial Doppler sonography (VMCA) using pH-stat and alpha-stat acid-base management during cardiopulmonary bypass. Measurements were taken (1) before bypass, (2) at 28 degrees C on bypass, (3) at 37 degrees C on bypass, and (4) after bypass. Relative changes in CBF and VMCA, calculated as the percent change from the prebypass baseline value normalized to 100%, were used in this analysis. RESULTS: During the hypothermic phase of cardiopulmonary bypass, CBF and VMCA increased by 45.9% and 51.8%, respectively (p < 0.001), during pH-stat acid-base management but decreased by only 26.4% and 22.4%, respectively (p < 0.0001), during alpha-stat acid-base management. Linear regression analysis of the absolute changes in CBF (mL . 100 g-1 . min-1) and VMCA (cm/s) showed a significant correlation (r = 0.60; r2 = 0.36; p < 0.0001), but a better correlation was obtained when relative changes in CBF and VMCA were compared (r = 0.89; r2 = 0.79; p < 0.0001). CONCLUSIONS: Measurements of VMCA, expressed as relative changes of a pre-cardiopulmonary bypass level (using the noninvasive transcranial Doppler sonographic technique), can be used to examine CBF changes during cardiopulmonary bypass.

Acid-Base Equilibrium