Electrophysiological responses of hypertrophied rat myocardium to combined hypoxia, hyperkalemia, and acidosis. 1991

P Bélichard, and D Pruneau, and R Rouet, and J L Salzmann
Centre de Recherches, Laboratoires Fournier, Dijon, France.

We studied whether electrophysiological response to ischemia could be different in hypertrophied left ventricle of spontaneously hypertensive rats (SHRs) and in normal left ventricle of normotensive Wistar-Kyoto (WKY) rats. For that purpose, we used a two-compartment tissue bath in which one-half of a left ventricular strip was exposed to normal conditions and the other part to ischemic conditions (low pH, hypoxia, and hyperkalemia). Electrical activity was recorded using standard microelectrodes in normal and hypertrophied preparations. Under basal conditions, the action potential duration (APD) and effective refractory period (ERP) were longer in SHRs than in WKY rats (118 +/- 9 ms vs 81 +/- 3 ms, p less than 0.05 and 90 +/- 9 ms vs. 74 +/- 4 ms, p less than 0.05, respectively). During ischemia, the APD and ERP changed in opposite ways in both groups and we observed the development of postrepolarization refractoriness that was greater in hypertrophied than in normal hearts. Maximum upstroke velocity (Vmax) values were 229 +/- 12 and 227 +/- 10 V/s in the SHR and the WKY preparations, respectively. Three minutes after the induction of ischemia, Vmax values decreased to 46 +/- 7 V/s in SHRs and to 106 +/- 12 V/s in WKY rats. A significant increase in subendocardial collagen density was measured in SHR left ventricle compared to WKY rats (4.39 +/- 0.34% vs. 1.66 +/- 0.15%, p less than 0.05), which might partly explain the impaired conduction observed in hypertrophied preparations during ischemia.(ABSTRACT TRUNCATED AT 250 WORDS)

UI MeSH Term Description Entries
D009929 Organ Size The measurement of an organ in volume, mass, or heaviness. Organ Volume,Organ Weight,Size, Organ,Weight, Organ
D011918 Rats, Inbred SHR A strain of Rattus norvegicus with elevated blood pressure used as a model for studying hypertension and stroke. Rats, Spontaneously Hypertensive,Rats, SHR,Inbred SHR Rat,Inbred SHR Rats,Rat, Inbred SHR,Rat, SHR,Rat, Spontaneously Hypertensive,SHR Rat,SHR Rat, Inbred,SHR Rats,SHR Rats, Inbred,Spontaneously Hypertensive Rat,Spontaneously Hypertensive Rats
D011921 Rats, Inbred WKY A strain of Rattus norvegicus used as a normotensive control for the spontaneous hypertensive rats (SHR). Rats, Wistar Kyoto,Wistar Kyoto Rat,Rats, WKY,Inbred WKY Rat,Inbred WKY Rats,Kyoto Rat, Wistar,Rat, Inbred WKY,Rat, WKY,Rat, Wistar Kyoto,WKY Rat,WKY Rat, Inbred,WKY Rats,WKY Rats, Inbred,Wistar Kyoto Rats
D006321 Heart The hollow, muscular organ that maintains the circulation of the blood. Hearts
D006332 Cardiomegaly Enlargement of the HEART, usually indicated by a cardiothoracic ratio above 0.50. Heart enlargement may involve the right, the left, or both HEART VENTRICLES or HEART ATRIA. Cardiomegaly is a nonspecific symptom seen in patients with chronic systolic heart failure (HEART FAILURE) or several forms of CARDIOMYOPATHIES. Cardiac Hypertrophy,Enlarged Heart,Heart Hypertrophy,Heart Enlargement,Cardiac Hypertrophies,Enlargement, Heart,Heart Hypertrophies,Heart, Enlarged,Hypertrophies, Cardiac,Hypertrophies, Heart,Hypertrophy, Cardiac,Hypertrophy, Heart
D006947 Hyperkalemia Abnormally high potassium concentration in the blood, most often due to defective renal excretion. It is characterized clinically by electrocardiographic abnormalities (elevated T waves and depressed P waves, and eventually by atrial asystole). In severe cases, weakness and flaccid paralysis may occur. (Dorland, 27th ed) Hyperpotassemia,Hyperkalemias,Hyperpotassemias
D000138 Acidosis A pathologic condition of acid accumulation or depletion of base in the body. The two main types are RESPIRATORY ACIDOSIS and metabolic acidosis, due to metabolic acid build up. Metabolic Acidosis,Acidoses,Acidoses, Metabolic,Acidosis, Metabolic,Metabolic Acidoses
D000200 Action Potentials Abrupt changes in the membrane potential that sweep along the CELL MEMBRANE of excitable cells in response to excitation stimuli. Spike Potentials,Nerve Impulses,Action Potential,Impulse, Nerve,Impulses, Nerve,Nerve Impulse,Potential, Action,Potential, Spike,Potentials, Action,Potentials, Spike,Spike Potential
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000860 Hypoxia Sub-optimal OXYGEN levels in the ambient air of living organisms. Anoxia,Oxygen Deficiency,Anoxemia,Deficiency, Oxygen,Hypoxemia,Deficiencies, Oxygen,Oxygen Deficiencies

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