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Biomedical subjects

M Borgers

Publications and source records attributed to M Borgers.

At least 109 records · Page 6Linked to original sources

Developmental changes in tolerance to ischaemia in the rabbit heart: disparity between interpretations of structural, enzymatic and functional indices of injury.

The vulnerability of the heart to injury during ischaemia and reperfusion and its responsiveness to various protective and pharmacological interventions are age-dependent. Using three independent indices of tissue injury (cardiac structure, contractile function and creatine kinase leakage), we compared the response of adult (60-90 days old) and neonatal (7 days old) isolated perfused rabbit hearts to global ischaemia and reperfusion. Prior to ischaemia, heart rate was significantly higher in neonatal hearts, as were control values for coronary flow, aortic flow and cardiac output when expressed on a dry wt basis. In experiments in which adult and neonatal hearts (n = 8 per group) were subjected to 2 min of cardioplegia and 45 min of ischaemia, the post-ischaemic recovery of all indices of cardiac function (when expressed as a percentage of pre-ischaemic control) was significantly higher in neonatal than in adult hearts. Thus, cardiac output recovered to 82.9 +/- 3.6% in the neonate but to only 57.9 +/- 6.7% in the adult (P < 0.05). The functional evidence of a greater resistance to ischaemia in the neonate was, however, contradicted by the levels of creatine kinase leakage which tended to be greater in the neonatal than in the adult heart (32.0 +/- 4.7 vs 20.0 +/- 3.1 IU/15 min/g dry wt). Morphological studies indicated that injury was comparable (moderate-to-severe in degree) in both groups. To assess further the relationship between the three indices, additional experiments were undertaken in which the duration of ischaemia in the neonate was extended to 60 min so that the post-ischaemic recovery of function was reduced to a level similar to that seen in the adult after 45 min of ischaemia. Under these conditions cardiac output recovered to 55.6 +/- 4.8% in the neonatal heart (P = NS when compared with the adult) and creatine kinase leakage increased to 88.2 +/- 13.9 IU/15 min/g dry wt--a value over four times greater than that measured in adult hearts with a comparable degree of functional injury. Morphological examination of tissue obtained after 15 min of reperfusion revealed a remarkable recovery of structure in both age groups. In conclusion, in functional terms the neonatal heart was more resistant to ischaemia than the adult; enzymic leakage, however, indicated the opposite and structural assessment revealed no differences. Thus, in comparing injury during ischaemia and reperfusion between different age groups, it is clearly important to employ several independent indices.

Age Factors↗

Effects of itraconazole on phagocytosis and killing of Candida glabrata by polymorphonuclear leucocytes from guinea pigs.

Itraconazole, a systemically active antifungal, was tested for its effects on microscopically assessed phagocytosis and killing of Candida glabrata 233 in vitro. Yeast cells were exposed to itraconazole in culture and guinea-pig peritoneal polymorphonuclear leucocytes were exposed to the drug injected intraperitoneally in vivo. At a concentration of 10(-7) M and with exposure times of 1 h, itraconazole pre-treatment of the leucocytes had no effect on the ability of PMNL to ingest or kill C. glabrata. However, pre-treatment of the growing C. glabrata cells under the same conditions significantly increased their vulnerability to both phagocytosis and intracellular killing. Longer exposures of the yeasts to itraconazole further increased their susceptibility to leucocyte phagocytosis, and it also rendered the cells vulnerable to killing merely by immersion in sodium deoxycholate solution. These findings indicate that short exposures of C. glabrata to low itraconazole concentrations damages the cells sublethally and renders them highly susceptible to leucocyte killing. Itraconazole had no direct effects on leucocyte function itself.

Animals↗

Protective effects of R 56 865 against ischemic damage in the isolated rabbit heart.

We examined the role of calcium in the pathogenesis of ischemic cardiac cell death in the isolated working rabbit heart subjected to normothermic global ischemia followed by reperfusion. Apart from measurements of cardiodynamic function and ultrastructural examination, we also used a cytochemical procedure to localize exchangeable calcium pools at the ultrastructural level. The effects of verapamil (1.5 x 10(-8) M, 3 x 10(-8) M) (high affinity for L-type calcium channels) were compared with those of R 56 865 (4 x 10(-7) M) (Ca2+ overload blocker with low affinity for the L-type calcium channels). A severe depression of cardiac function was observed after solvent or verapamil pretreatment and 25 min of ischemia followed by reperfusion. R 56 865 treatment resulted in a significantly improved postischemic recovery when compared to solvent and verapamil treatment groups. The ultrastructural and cytochemical results corroborated the hemodynamic findings. In solvent and verapamil-treated hearts, irreversible damage was observed mainly in mid- and endocardial areas. Ultrastructural changes were accompanied by shifts in calcium localization: i.e. loss of sarcolemmal calcium binding capacity, accumulation of calcium precipitate in the mitochondria. In the R 56 865 treatment group, damage was limited to some cells scattered in the midcardial areas. In conclusion, R 56 865, which has little affinity for the slow channels was highly effective in protecting against ischemic damage, indicating that, in this experimental set-up, the calcium responsible for cellular Ca2+ overload is not entering via L-type calcium channels.

Animals↗

Functional and structural impairment in human, rat and guinea-pig atrial muscle in response to in vitro calcium overload: a cytochemical study on cellular calcium distribution.

Critical accumulation of cellular calcium in ischaemic myocardium is involved in irreversible cell damage. In human right atrial trabeculae and in rat and guinea-pig left atria, we investigated whether direct calcium overload by increasing the extracellular calcium concentration, [Ca2+]o, leads to similar impairment of function and ultrastructure as observed after ischaemia. The force of contraction was measured during two consecutive cumulative increases in [Ca2+]o (1-25 mmol/l) separated by 30 min of incubation at low [Ca2+]o. Compared to the first Ca2+ challenge, the positive inotropic effect of increasing [Ca2+]o was depressed during the second one and the after-contractions, and the increase in resting tension developing with high [Ca2+]o tended to be larger. The ultrastructure of the tissue fixed immediately after excision was well preserved. When fixed after the second Ca2+ challenge, half of the cells were severely damaged with various signs of cellular Ca2+ overload similar to those observed after ischaemic damage: the sarcolemma lost its Ca(2+)-binding properties, sarcomeres showed contraction band necrosis, the mitochondria had disrupted cristae and contained either large clusters of Ca2+ precipitate or amorphous densities (Jennings granules). In many cells, calcium precipitates were present in the cytoplasm. The morphological and functional changes were similar in the three species studied. Our results suggest that the deterioration of atrial myocardium after challenge with high [Ca2+]o or after severe ischaemia may be traced back to a common mechanism, i.e. the sarcolemma loses its competence as a permeable barrier for Ca2+ and therefore facilitates excessive Ca2+ entry. However, for the direct demonstration of calcium precipitates as a sign of cytosolic Ca2+ overload, high [Ca2+]o are required with are not normally present in the myocardium.

Animals↗

Pharmacological studies of arrhythmias induced by rose bengal photoactivation.

Singlet oxygen and superoxide production by rose bengal photoactivation leads to rapid electrophysiological changes and arrhythmias. To investigate which intermediate is causative and to probe possible mechanisms, hearts (n = at least 6/group) were perfused aerobically for 10 min without rose bengal followed by 5 min with rose bengal before illumination for 20 min. In controls, all or most hearts exhibited ventricular premature beats, ventricular tachycardia, and complete atrioventricular block. Most antioxidants tested had no protective effect; histidine, however, significantly delayed the onset of electrocardiographic (ECG) changes. In further studies, two antiarrhythmic agents (quinidine and verapamil) had no little protective effect, whereas R56865 significantly delayed the onset of ECG changes and reduced the incidence of arrhythmias. However, spectrophotometric and laser pulse radiolysis studies showed that this apparent protective effect might have resulted from an interaction between R56865 and the rose bengal molecule, leading to a reduction in singlet oxygen production. In conclusion, the electrophysiological changes induced by rose bengal photoactivation are likely to be due to singlet oxygen; antiarrhythmic drugs appear to be unable to protect against the injury unless there is some interaction with the photoactivation process.

Animals↗

Evaluation of factors influencing myocardial infarct size in unconscious dogs.

STUDY OBJECTIVE: The aim was to evaluate the factors determining myocardial infarct size in unconscious dogs. DESIGN: In anaesthetised open chest dogs, the left anterior descending coronary artery was occluded either by ligation or by thrombosis for different time periods (1.5 h, 4 h, 24 h), with or without reperfusion. Haemodynamic variables were recorded throughout the experiment. Radioactive microspheres (15 microns) were injected at the end of the ischaemic period to measure regional myocardial blood flow. Infarct size and area at risk were determined by the Evans blue triphenyltetrazolium staining technique followed by planimetry. SUBJECTS: Mongrel dogs of either sex (n = 16-42 per experiment), weight 18-25 kg, were used. MEASUREMENTS AND MAIN RESULTS: A large interindividual variability in infarct size was observed after occlusion of the left anterior descending coronary artery at a standardised location for a well defined period. An examination of the factors responsible for this variability was carried out in order to develop a statistical model which would make it possible to predict infarct size. Using multiple regression analysis, it was found that in most protocols (except 90 min thrombosis) more than 85% of the variability in infarct size could be explained by the size of the area at risk and the amount of collateral flow. Thus, knowing the area at risk and the collateral flow, a fairly accurate prediction can be made of the size of the infarct that the dog will develop after a defined occlusion period. Furthermore, it was found that the infarct size increased with duration of occlusion, while duration of reperfusion had no effect. In the 90 min occlusion group thrombosis induced a larger final infarct than ligature. CONCLUSIONS: A correction for baseline variables is necessary in order to compare infarct size between experimental groups. The usefulness of this procedure is shown by an example of an experimental intervention, i.e., R 56,865, a drug with known cardioprotective effects.

Animals↗

Effects of R 56,865, a preventer of cellular calcium overload, on left ventricular diastolic properties during pacing-induced ischemia in dogs.

The effects of R 56,865, a compound with unusual calcium antagonistic properties, on altered left ventricular (LV) diastolic properties were studied during pacing-induced ischemia in dogs with coronary stenosis. Severe coronary artery stenosis was produced on both the left anterior descending (LAD) and circumflex (Cx) coronary arteries in anesthetized beta-blocked dogs. The right atrium was paced at 200 beats/min for 3 min. In the post-pacing period and before drug intervention, the most characteristic observation was a significant increase in LV end-diastolic pressure (LVEDP) and in the time constant of (tau) LV pressure decrease; after return of LV hemodynamics to baseline values (15 min), R 56,865 (0.16 mg.kg-1) or solvent (control) was injected and four subsequent pacing runs were performed at 30-min intervals. In the postpacing period of these four subsequent runs, there was a steep increase in LVEDP and tau-values while HR returned more slowly to baseline values. After R 56,865 infusion, the increase in LVEDP and tau-values was significantly lower than in the pretreatment run and all LVEDP values were significantly lower than in the control group. We conclude that R 56,865 effectively attenuates ischemia-induced changes in LV diastolic stiffness.

Animals↗

Nebivolol increases survival in cardiomyopathic hamsters with congestive heart failure.

The genetically inbred cardiomyopathic Syrian hamster provides a valuable model of congestive cardiomyopathy: myocytolytic necrosis at 30-50 days of age is followed by cardiac hypertrophy at 150-250 days, and finally by congestive failure and death at 250-350 days. Successful drug treatment has been reported in the prenecrotic stage, but not when started during congestive failure. The present study evaluated survival of the cardiomyopathic hamster treated with the new beta-adrenoceptor blocker nebivolol, which was initiated during congestive failure. Fifty animals (BIO82.62, either sex, age 200 days) were acclimated to an environmentally controlled room for 20 days, receiving food and water ad libitum; seven hamsters died, indicating development of congestive failure. The remaining animals were then randomly assigned to one of three groups: 15 animals received control food; food for the others was supplemented with nebivolol, yielding a daily intake of either 0.1 mg/kg (n = 14) or 1 mg/kg (n = 14). At the lower nebivolol dose, death rate was unaltered in comparison with controls. However, at 1 mg/kg, survival was markedly improved (p = 0.042). Nebivolol treatment, started during congestive failure, thus significantly delays mortality in the cardiomyopathic hamster.

Adrenergic beta-Antagonists↗

Myocardial protection by R 56865: a new principle based on prevention of ion channel pathology.

Intracellular Ca2+ overload is considered to be the final pathway leading to cell death under pathological conditions. However, both the route of Ca2+ entry and the site of action of cardioprotective drugs remain obscure. This was investigated using isolated adult rat and rabbit cardiomyocytes exposed to the experimental pathological stimuli veratridine, singlet O2, lysophosphatidylcholine, and ouabain. Under these conditions, the majority of cells displayed irreversible hypercontraction as a consequence of intracellular Ca2+ overload. Nifedipine did not prevent Ca2+ overload, but tetrodotoxin (TTX) and reduction of the extracellular Na+ concentration protected against the above pathological stimuli. This strongly suggests that intracellular Ca2+ overload after exposure to these pathological stimuli may be mediated via fast Na+ channel dysfunction, causing excessive entry of Na+, followed by Ca2+ overload via Na(+)-Ca2+ exchange. The new cardioprotective drug R 56865 dose dependently prevented hypercontracture induced by each of these stimuli, suggesting that R 56865 may interfere with this modified Na+ channel that is in a way different from class I antiarrhythmic drugs. This is regarded as a new cardiac cytoprotective principle.

Animals↗

Stunned myocardium has increased mitochondrial NADH oxidase and ATPase activities.

Ten anesthetized, open-chest dogs were subjected to occlusion of the left anterior descending coronary artery for 15 minutes, followed by reperfusion for 150 minutes. Hemodynamics were recorded and regional myocardial contraction was measured sonometrically. The hearts were then fixed in situ using glutaraldehyde for cytochemical studies. Systolic wall thickening remained unchanged in the non-ischemic myocardium, but was significantly depressed (stunned) in the area of the left anterior descending coronary artery during reperfusion. NADH oxidase and ATPase activities were very weakly present in mitochondria from non-ischemic myocardium. In the ischemic endocardium, irreversibly injured cells had mitochondria which were severely altered and contained no reaction products to the two enzymes. In contrast, high NADH oxidase and ATPase activities were present in mitochondria from the less severely injured cells of the endocardial zone of stunned areas. Since this zone is particularly susceptible to ischemia in dogs, the high mitochondrial NADH oxidase and ATPase activities may be early signs of ischemic damage, reflecting a disturbance in mitochondrial respiratory activity in stunned myocardium.

Adenosine Triphosphatases↗

Singlet oxygen induced cerebral vasospasm: an experimental study in rats.

A new experimental model is described which can be used as an alternative to study the effects of subarachnoid hemorrhage (SAH) in rats. Vasospasm of the basilar artery is induced photochemically after transpalatal illumination of intracisternally injected rose bengal in two different rat strains. Singlet oxygen, generated in the subarachnoid space, elicits vasospasm which has been demonstrated angiographically at 90 min and 24 h after photosensitisation. Sprague Dawley rats responded better than Wistar rats. Dilution of rose bengal in water was more vasospastic than dilution of rose bengal in artificial CSF. Since the action of singlet oxygen is similar to that of free radicals, this experiment gives an argument for the hypothesis that free radicals play a leading role in the pathogenesis of cerebral vasospasm after subarachnoid hemorrhage.

Animals↗

The effects of saperconazole on the morphology of Candida albicans, Pityrosporum ovale and Trichophyton rubrum in vitro.

Fungal cultures were incubated for various periods of time with saperconazole at concentrations ranging from 10(-10) to 10(-5) M: Candida albicans (4 and 24 h), Pityrosporum ovale (2 and 7 days), and Trichophyton rubrum (1, 2, 3, 7 and 14 days). At the end of the incubation period, fungal morphology was compared with that of control cultures by transmission and scanning electron microscopy. In all three species, major ultrastructural changes were seen from concentrations of 10(-8) to 10(-7) M saperconazole onwards, depending on the species and time of incubation. The main changes were inhibition of hyphal outgrowth (C. albicans), abortive hyphal outgrowth (T. rubrum) and deposition of electron-dense vesicles in a thickened cell wall (C. albicans, T. rubrum). In P. ovale, a direct, necrotizing action was seen without concomitant wall changes.

Antifungal Agents↗

Effects of beta-adrenoceptor antagonists on cardiac function in ischemic-reperfused myocardium of the isolated working rabbit heart.

The effects of beta-adrenoceptor antagonists (dl-nebivolol, atenolol and propranolol) and of 1-nebivolol on cardiodynamics and mitochondrial oxidative phosphorylation were studied in the isolated working rabbit heart subjected to normothermic global ischemia, followed, in some cases, by reperfusion. The hearts were pretreated with the different drugs (0.32 mg/l) 30 min before the start of ischemia, dl-Nebivolol and propranolol provided protection for both cardiodynamic and mitochondrial functions, as did l-nebivolol, which lacks beta-adrenoceptor blocking properties, while atenolol failed to protect mechanical activity and cardiac mitochondria against the effects of ischemia and post-ischemic reperfusion. Catecholamine depletion with reserpine did not have a beneficial effect on the recovery of cardiodynamic and mitochondrial function during post-ischemic reperfusion. It is concluded that the beneficial effects of beta-blockers on the ischemic and reperfused myocardium can not be explained by a specific beta-blocking action alone.

Adrenergic beta-Antagonists↗

Cytochemical evidence of NADH-oxidase activity in the isolated working rabbit heart subjected to normothermic global ischaemia.

The cytochemical localization of NADH-oxidase, a possible source of oxygen derived toxic species was studied in the isolated working rabbit heart subjected to normothermic global ischaemia. The activity of this oxidase could be important for the damage observed during ischaemia, when cellular defence mechanisms against free radicals are depleted. In non-ischaemic myocardium only small amounts of the NADH-oxidase reaction product were present in the mitochondria. Although the reaction product could already be observed after 45 min of incubation, prolonged incubation times up to 2h were necessary to clearly define these reactive sites. The reaction product is substrate dependent and is not affected by cyanide. Exposure of the hearts to ischaemia resulted in an alteration of the enzyme activity depending on the degree of ischaemic damage. In ultrastructurally slightly altered areas a high degree of activity was observed in the mitochondria. In infarcted tissue, mitochondria contained little or no reaction product. This cytochemical study supports the hypothesis that hydrogen peroxide and oxygen radicals produced in the mitochondria by NADH-oxidase activity may contribute to the mitochondrial damage observed during ischaemia when NADH is no longer oxidized by the respiratory chain and cellular defence mechanisms are impaired.

Animals↗

Singlet oxygen and myocardial injury: ultrastructural, cytochemical and electrocardiographic consequences of photoactivation of rose bengal.

Photoactivation of rose bengal leads to the generation of reactive oxygen intermediates (predominantly singlet oxygen with some superoxide anion) which are potentially injurious to biological systems. Isolated rat hearts were perfused aerobically at 37 degrees C with bicarbonate buffer for 10 min without rose bengal and for 10 min with rose bengal (500 nM). During the last 5 min of perfusion with rose bengal, hearts were globally illuminated (5500 lux) with light (530 to 590 nm) and electrocardiographic changes were detected within 2.7 +/- 0.3 s (approximately 15 beats) of the onset of illumination. All hearts developed ventricular premature beats, ventricular tachycardia and complete atrioventricular block after 20.2 +/- 6.6, 68.0 +/- 29.7 and 184.3 +/- 20.9 s, respectively. Photoactivation by rose bengal also resulted in severe ultrastructural damage including intracellular clarifications, swelling of mitochondria with disruption and clumping of cristae and the development of contraction band necrosis. Extensive degranulation of mast cells was also observed. These changes were most evident in myocytes adjacent to large epicardial blood vessels. Cytochemical studies demonstrated that there was a loss of the calcium which is normally localized at the inner sarcolemmal surface, and the appearance of intramitochondrial calcium precipitates. In control hearts (no illumination and/or no rose bengal), arrhythmias did not develop and tissue morphology and calcium distribution remained normal. In additional studies, rose bengal-perfused hearts were illuminated regionally for 10 min over an area (approximately 6 mm2) of the left ventricle. Extensive tissue injury and calcium overload developed in the area of maximum illumination.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Fiberoptic intracranial pressure monitoring in rats.

An adaptation of a fiberoptic intracranial pressure monitoring system for clinical use is described. The method allows easy and reliable acute and chronic intracranial pressure registration in anesthetized as well as conscious rats. The disposable fiberoptic probes, originally designed for human use, can be re-used limitlessly. The fiberoptic method is compared with conventional monitoring procedures under different experimental conditions. The validity of intraparenchymal and epidural measurements is discussed. The importance of chronic intracranial pressure registration in conscious laboratory animals is stressed.

Animals↗