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Biomedical subjects

G Kaczmarczyk

Publications and source records attributed to G Kaczmarczyk.

At least 37 records · Page 2Linked to original sources

Plasma renin activity during hypotensive responses to electrical stimulation carotid sinus nerves in conscious dogs.

1. The interaction of electrical stimulation of the carotid sinus nerves (carotid sinus nerve stimulation, CSNS) with mechanisms of renin release was studied in conscious and unrestrained resting beagle dogs receiving a standardized diet (sodium intake, 4.5 mmol/kg bodyweight (bw); water intake, 91 mL/kg bw). 2. By CSNS, mean arterial blood pressure (MAP) was lowered for periods of 20 min to levels between 101 +/- 4 and 56 +/- 5 mmHg. 3. In another group of conscious dogs, renal perfusion pressure (RPP) was lowered to 95 +/- 4 mmHg for periods of 20 min by partial suprarenal aortic occlusion in order to assess the influence of a reduced RPP on plasma renin activity (PRA) without concomitant CSNS. 4. During CSNS, PRA increased markedly (> 100%) only when MAP was reduced below 75 mmHg. 5. With aortic constriction and an RPP of 95 mmHg, the increase in PRA was 955%, which is more than three-fold higher than the increase in PRA during CSNS at MAP levels < 65 mmHg (314%). 6. The observed responses indirectly support the hypothesis that basal activity in efferent renal nerve discharge is present even at rest and can be inhibited by CSNS, and furthermore suggests that CSNS attenuated the pressure-dependent renin release.

Animals↗

Pulmonary-renal axis during positive-pressure ventilation.

Controlled mechanical ventilation with positive end-expiratory pressure (PEEP) is generally associated with decreases in urine volume and renal sodium excretion. The resulting positive sodium and water balance is an undesirable side effect of controlled mechanical ventilation with PEEP. The increase in intrathoracic pressure initiates a cascade of hemodynamic, neural, and hormonal changes which, in turn, stimulate the kidney to decrease the glomerular filtration rate and increase tubular reabsorption. The redundancy of these regulatory mechanisms makes it difficult to determine the involvement of only one or two single parameters as causative events of the phenomenon.

Animals↗

The effect of anaesthesia on renal function.

Anaesthesia and surgical stress can affect renal function and body fluid regulation indirectly as well as directly. The indirect effects, through influences on haemodynamics, sympathetic activity and humoral regulation, are more pronounced than the direct ones. Inhalational anaesthetics generally reduce glomerular filtration rate and urine output, mainly by extra-renal effects that are attenuated by pre-operative hydration. Opioids, barbiturates and benzodiazepines also reduce glomerular filtration rate and urine output. The effects of regional anaesthesia seem to be less than those of general anaesthesia and are related to changes in systemic haemodynamics. These peri-operative alterations of renal function are usually transient and clinically insignificant. Mechanical ventilation decreases urine volume and sodium excretion to an extent that depends on the increase in intrathoracic pressure, though ADH release, unloading of baroreceptors and activation of the renin-angiotensin system may also be involved. The direct effects of anaesthesia which are dose- and agent-dependent include effects on autoregulation of renal blood flow, alteration in the effect of ADH, and effects on tubular transport of sodium and organic acids. The only proven direct toxic effect of any anaesthetic agent is the fluoride-related toxicity of methoxyflurane.

Anesthesia↗

Extracellular volume expansion inhibits antidiuretic hormone increase during positive end-expiratory pressure in conscious dogs.

1. This study in conscious dogs examined the effects of extracellular volume expansion on plasma antidiuretic hormone, atrial natriuretic peptide and aldosterone concentrations, plasma renin activity, and haemodynamic and renal responses during controlled mechanical ventilation with 20 cmH2O positive end-expiratory pressure. 2. Twenty experiments (10 controls, 10 expansion experiments with 0.5 ml min-1 kg-1 body weight of a balanced electrolyte solution given intravenously throughout) were performed in five trained, conscious, tracheotomized dogs over 4 h: first and fourth hour, spontaneous breathing; second and third hour, 20 cmH2O positive end-expiratory pressure. 3. In the control experiments positive end-expiratory pressure increased plasma antidiuretic hormone concentration from 1.4 +/- 0.2 to 10.0 +/- 3.3 pg/ml, plasma aldosterone concentration from 113 +/- 19 to 258 +/- 58 pg/ml and heart rate from 77 +/- 5 to 94 +/- 5 beats/min. Positive end-expiratory pressure did not change plasma atrial natriuretic peptide concentration (55 +/- 5 pg/ml), plasma renin activity (2.6 +/- 0.4 pmol of angiotensin I h-1 ml-1) and mean arterial pressure 103 +/- 3 mmHg). 4. In the expansion experiments, positive end-expiratory pressure did not change plasma antidiuretic hormone concentration (1.1 +/- 0.1 pg/ml), plasma aldosterone concentration (25 +/- 2 pg/ml), plasma atrial natriuretic peptide concentration (82 +/- 8 pg/ml), plasma renin activity (0.8 +/- 0.15 pmol of angiotensin I h-1 ml-1), heart rate (92 +/- 6 beats/min) and mean arterial pressure (111 +/- 4 mmHg). 5. In the control experiments, urine volume, sodium excretion and fractional sodium excretion remained in a low range during positive end-expiratory pressure, whereas potassium excretion increased.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Inferior vena caval pressure increase contributes to sodium and water retention during PEEP in awake dogs.

UNLABELLED: This study compared the hemodynamic, renal, and hormonal effects of an experimentally induced increase in inferior vena caval pressure (IVCP) [to the same extent as during controlled mechanical ventilation (CMV) with positive end-expiratory pressure (PEEP)] with those of CMV with PEEP. Six volume-expanded conscious chronically tracheotomized dogs were studied under three conditions: CONTROL: 4 h of spontaneous breathing at 4 cmH2O continuous positive airway pressure (CPAP); CMV: CPAP for the 1st and 4th h and CMV with PEEP for the 2nd and 3rd h, resulting in a mean airway pressure of 20 cmH2O; and Increased IVCP: 4 h of CPAP, with IVCP increased during the 2nd and 3rd h by inflation of a chronically implanted cuff. Urine volume, sodium excretion, and fractional sodium excretion decreased during the 2nd and 3rd h of CMV and during increased IVCP compared with CONTROL. Glomerular filtration rate, mean arterial pressure, and antidiuretic hormone, atrial natriuretic peptide, and aldosterone plasma concentrations were not affected by CMV or Increased IVCP. Plasma renin activity decreased during CONTROL and Increased IVCP conditions but remained elevated during the 2nd and 3rd h of CMV. We conclude that, in conscious extracellular volume-expanded dogs, IVCP elevation contributes considerably to the water- and sodium-retaining effect of short-term CMV with PEEP.

Anesthesia↗

Role of renal arterial pressure in the regulation of extracellular volume in conscious dogs.

1. This study in conscious dogs examined the quantitative effects of a reduction in the renal arterial pressure on the renal homeostatic responses to an acute extracellular fluid volume expansion. 2. Seven female beagle dogs were chronically instrumented with two aortic catheters, one central venous catheter and a suprarenal aortic cuff, and were kept under standardized conditions on a constant high dietary sodium intake (14.5 mmol of Na+ day-1 kg-1 body weight). 3. After a 60 min control period, 0.9% (w/v) NaCl was infused at a rate of 1 ml min-1 kg-1 body weight for 60 min (infusion period). Two different protocols were applied during the infusion period: renal arterial pressure was maintained at 102 +/- 1 mmHg by means of a servo-feedback control circuit (RAP-sc, 14 experiments) or was left free (RAP-f, 14 experiments). 4. During the infusion period, in the RAP-sc protocol as well as in the RAP-f protocol, the mean arterial pressure increased by 10 mmHg, the heart rate increased by 20 beats/min, the central venous pressure increased by 4 cmH2O and the glomerular filtration rate (control 5.1 +/- 0.3 ml min-1 kg-1 body weight, mean +/- SEM) increased by 1 ml min-1 kg-1. 5. Plasma renin activity [control 0.85 +/- 0.15 (RAP-f) and 1.08 +/- 0.23 (RAP-sc) pmol of angiotensin I h-1 ml-1] decreased similarly in both protocols.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Positive end-expiratory pressure reduces renal excretion without hormonal activation after volume expansion in dogs.

Controlled mechanical ventilation (CMV) with positive end-expiratory airway pressure decreases urine output and renal sodium excretion. This study investigates--independent of surgical stress, general anesthesia, and sedation--the influences of antidiuretic hormone, atrial natriuretic peptide, plasma renin activity, and aldosterone on decreased urine output and renal sodium excretion during CMV with positive end-expiratory airway pressure. Hemodynamic, renal, and hormonal parameters were measured over a 4-h period in six trained, nonanesthetized, chronically tracheotomized dogs under two conditions: 1) control: hours 1-4, spontaneous breathing at continuous positive airway pressure of 4 cmH2O; and 2) CMV 20: hour 1, continuous positive airway pressure of 4 cmH2O; hours 2 and 3, CMV with a mean airway pressure of 20 cmH2O; and hour 4, continuous positive airway pressure of 4 cmH2O. Throughout the experiments, 0.5 ml.kg body weight-1.min-1 balanced electrolyte solution was administered intravenously. During the 2nd and 3rd h of CMV 20, urine volume decreased by 43% and sodium excretion decreased by 44% when compared with control values (P less than 0.05). The glomerular filtration rate decreased from 4.4 +/- 0.1 to 3.9 +/- 0.1 ml.kg-1.min-1 (P less than 0.05) during the 2nd h and from 4.4 +/- 0.1 to 4.1 +/- 0.1 ml.kg-1.min-1 (P less than 0.05) during the 3rd h of CMV 20. Fractional sodium excretion decreased from 4.7 +/- 0.3% to 2.9 +/- 0.2% (P less than 0.05) during the 2nd h and from 7.5 +/- 0.3% to 4.6 +/- 0.2% (P less than 0.05) during the 3rd h of CMV 20, compared with values during the control period.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Interactions of physiological and pharmacological concentrations of ANP and angiotensin II in conscious dogs.

This study in conscious, chronically instrumented dogs investigated the effects of human atrial natriuretic peptide [hANP-(99-126)] at physiological (5 ng.kg-1.min-1) and pharmacological (5-900 ng.kg-1.min-1) doses on angiotensin II (ANG II)-mediated effects on hemodynamics, renal excretion, and aldosterone release. Five female beagle dogs kept chronically on a dietary sodium intake of 2.5 mmol Na.kg body wt-1.day-1 received an intravenous infusion of 1, 4, 10, 20, and 50 ng.kg-1.min-1 ANG II (20-min periods) without (protocol 1) or with (protocol 2) simultaneous intravenous infusion of 5 ng.kg-1.min-1 hANP-(99-126). In protocol 1, glomerular filtration rate (means +/- SD) decreased from 4.0 +/- 0.6 to 2.8 +/- 0.5 ml.kg-1.min-1, renal sodium excretion (UNaV) decreased from 2.8 +/- 1.6 to 0.4 +/- 0.2 mumol.kg-1.min-1, and urine volume (V) decreased from 45 +/- 23 to 6 +/- 8 microliters.kg-1.min-1. There were no differences in the values between protocol 1 and protocol 2. Mean arterial blood pressure (MABP) increased similarly from 118 +/- 16 to 166 +/- 9 mmHg in protocol 1 and from 109 +/- 11 to 162 +/- 7 mmHg in protocol 2. Maximal aldosterone secretion was stimulated less in protocol 2 (481 +/- 92 vs. 362 +/- 158 pg/ml; P less than 0.05). In ANG II-pretreated (20 ng.kg-1.min-1) dogs (n = 4; protocol 3), intravenous hANP-(99-126) doses of 300-900 ng.kg-1.min-1 decreased MABP and central venous pressure.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

ACE inhibition facilitates sodium and water excretion during PEEP in conscious volume-expanded dogs.

Increased activity of the renin-angiotensin system may be involved in sodium and water retention during controlled mechanical ventilation (CMV) with positive end-expiratory pressure (PEEP). We therefore evaluated renal, hemodynamic, and hormonal effects of an acute angiotensin-converting enzyme inhibition (ACEI) during PEEP and extracellular volume expansion in five trained chronically tracheotomized dogs. Three protocols were performed: control, 4 h spontaneous breathing with continuous positive mean airway pressure (Paw) of 4 cmH2O (CPAP 4); CMV 20, CPAP for 1st h, CMV with 20 cmH2O Paw for 2 h (2nd and 3rd h), and 1 h of CPAP (4th h); and CMV20-ACEI, ACEI (Ramipril, 2 mg/kg body wt) followed by the same protocol as in CMV 20. During control, sodium excretion (UNaV) and urine volume (V) increased continuously to 56.2 +/- 2.7 (SE) mumol.min-1.kg body wt-1 and 482 +/- 23 microliters.min-1.kg body wt-1, respectively. UNaV and V increased less during PEEP in CMV 20 and CMV 20-ACEI. However, significantly more sodium and water were retained in CMV 20 than in CMV 20-ACEI (2.3 +/- 0.3 vs. 1.0 +/- 0.3 mmol/kg body wt, and 20 +/- 3 vs. 11 +/- 2 ml/kg body wt) because of a decrease of glomerular filtration rate and fractional UNaV in CMV 20. Heart rate did not change in control, CMV 20, or CMV 20-ACEI. Mean arterial pressure increased during control by 13 mmHg, did not change during CMV 20, and was decreased by 7 mmHg in CMV 20-ACEI.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

Relationship between baroreflex sensitivity, renin suppression and natriuresis in salt-sensitive rabbits.

This study determined the influence of baroreflex sensitivity (BRS) on the rate of urinary sodium excretion and plasma renin activity (PRA) in response to a saline infusion in conscious male rabbits specifically bred for high (Group I; n = 7) and low (Group II; n = 10) BRS and in seven control animals. Only Group II showed significant increases in blood pressure on a chronic high-salt intake. After ensuring that each animal was in sodium balance, a (0.7-0.9%) saline infusion of 3-4 ml/kg per h for 90 min (25% daily sodium intake for each rabbit) was given and urine collected at 15-min intervals via a bladder catheter. No differences were found in control urine volumes, urinary sodium or PRA. Group I excreted over 50% of the sodium load and Group II less than 20% within 90 min. PRA fell by more than 30% within 30 min in six Group I rabbits but decreased by less than 30% or increased in Group II. In the control animals, sodium excretion rates and PRA suppression were also much greater in those with high BRS. A highly significant correlation (r = 0.808, P less than 0.01) was found between the per cent of the sodium load excreted and BRS. It is suggested that the delayed sodium excretion and blood pressure elevation in salt-sensitive subjects may be due to a genetic impairment in baroreflex control of renal sympathetic nerve activity.

Animals↗

Sodium homeostasis in conscious dogs after chronic cardiac denervation.

The ability to regulate renal sodium excretion after an acute reduction of total body sodium by peritoneal dialysis (PD) and subsequent dietary sodium repletion was investigated in 12 [6 intact, 6 chronically cardiac denervated (CD)] conscious, chronically instrumented dogs. For 10 days, balance experiments were performed with daily measurements of mean arterial blood pressure (MABP), right atrial pressure (RAP), and heart rate (HR). The prepared diet contained 0.5 (days 1-3 after PD) or 2.5 mmol Na.kg body wt-1.day-1 (control day and days 4-9 after PD). Control values were all similar in both groups except higher fasting plasma renin activities (PRA) were observed in the CD dogs [2.6 +/- 0.4 vs. 1.0 +/- 0.2 ng angiotensin I (ANG I).ml-1.h-1; P less than 0.05]. Days 1-4 after PD, RAP fell in both groups by 2-3 cmH2O, and renal sodium excretion decreased abruptly. PRA increased to 22.8 +/- 4.1 (intact) and 29.9 +/- 4.9 ng ANG I.ml-1.h-1 (CD dogs) (day 3 after PD). Both groups continued to retain sodium, and when it was available again, PRA decreased. After the amount of sodium lost by PD was regained, the intact dogs remained in a balanced equilibrium. In the CD dogs, PRA was still above control, and they retained sodium in excess (+ 1.9 +/- 0.1 mmol/kg body wt). We conclude that the cardiac nerves are not essential for stimulating PRA and sodium retention after an acute sodium deficit. However, the inhibition of PRA and the rapid adjustment of sodium balance during sodium repletion is impaired after cardiac denervation.

Angiotensin II↗

Effect of high sodium and high water intake on 24 h-potassium balance in dogs.

The influence of different amounts of oral sodium intake combined with high oral water intake on potassium excretion and plasma potassium concentration (PK) was evaluated. Female beagle dogs (11-16 kg) were divided into 2 groups: 1. Normal Sodium and high Water Intake (NSWI): 2.5 mmol Na, 3.55 mmol K, 91 ml H2O, and 277 kJ per kg body mass and 24 h (31 24 h-balance studies with 11 dogs). 2. High Sodium and high Water Intake (HSWI): Same diet as NSWI but 14.5 mmol Na x kg body mass-1 x 24 h-1 (55 24 h-balance studies with 21 dogs). The 24 h-balance studies were performed after different periods of time after onset of the respective diet (dogs in metabolic cages). Plasma sodium concentration (PNa) on NSWI was 148.4 +/- 2.6 mmol x 1(-1), whereas it was lower on HSWI (145.9 +/- 2.4 mmol x 1(-1). The lower plasma aldosterone concentration (PAC) on HSWI (24 +/- 8 pg x ml-1) compared to NSWI (67 +/- 38 pg x ml-1) may account for the lower PNa on HSWI. 24 h-sodium excretion was 93.6 +/- 6.5% of intake (%i) on HSWI and 91.5 +/- 20.7% i on NSWI. 24 h-water excretion was not different between both groups (81 +/- 7% i). PK was 3.93 +/- 0.25 mmol x 1(-1) on NSWI regardless of the time the dogs were on NSWI.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Atrial granules in the dog heart after cardiac denervation.

Because the increase in sodium excretion during left atrial distension in conscious dogs is abolished after chronic cardiac denervation, we have investigated whether this is a result of the disappearance of specific atrial granules. Electron microscopy and light-microscopical and ultrastructural immunohistochemistry of canine atria show that atrial granules displaying immunoreactivity for cardiac hormones of the cardiodilatin/atrial natriuretic polypeptide (CDD/ANP) family are still present in denervated left and right atria, although reduced in quantity. It is concluded that the "atrial-induced natriuresis" is not only related to the existence of specific atrial granules. The functional link between atrial-induced natriuresis provoked by atrial distension and the release of atrial polypeptide hormones remains uncertain because the denervated heart can secrete CDD although the diuretic-natriuretic effect is altered.

Animals↗

Renal sodium handling in intact and renal denervated dogs.

The ability to retain sodium was investigated in six conscious dogs before and after surgical renal denervation. Dietary sodium and water intake were kept constant (2.5 mmol Na X kg-1 bw X day-1 and 91 ml water X kg-1 bw X day-1). Balance experiments were performed from 6 days before to 8 days after having produced a sodium deficit of 6.4 +/- 0.4 (intact dogs) and 5.8 +/- 0.2 (renal denervated dogs) mmol Na X kg-1 bw by means of a peritoneal dialysis (PD). Having the same sodium excretion before PD, intact and renal denervated dogs demonstrated a similar striking decrease of sodium excretion and a similar increase of plasma renin activity after PD until the amount of sodium lost had been replenished (4th day after PD). In intact and renal denervated dogs plasma sodium concentration (PNa) decreased and renal water excretion increased on the first day after PD, indicating a homeostatic response to the fall of PNa. After dietary sodium restriction (from 2.5 to 0.5 mmol Na X kg-1 bw X day-1) a similar striking decrease of renal sodium excretion occurred in intact and renal denervated dogs. It therefore is concluded that in conscious dogs the presence of the renal nerves is not essential in order to maintain body sodium homeostasis after an acute sodium loss or after dietary sodium restriction.

Animals↗

Acute effects of angiotensin II in intact and adrenalectomized conscious dogs.

UNLABELLED: Renal effects of A II, retention of sodium and water, may be mediated by the stimulation of aldosterone secretion and/or by direct effects of A II on the kidneys. An attempt was made to differentiate between these two possibilities. METHODS: Conscious, female beagle dogs were used. The dogs were kept under standardized conditions (metabolic cage, daily sodium intake 4.5 mmol X kg-1 bw, chronically implanted arterial and venous catheters, i.v. hormone substitution after adrenalectomy by a portable pump). A II was infused i.v. over a period of 60 min after 60 min control. (Rate: 1, 4, 20 or 200 ng X min-1 X kg-1 bw). RESULTS: Mean arterial blood pressure (MABP) increased with 20 and 200 ng A II X min-1 X kg-1 bw by an average of 34 mm Hg and 65 mm Hg resp. before and after adrenalectomy. Before adrenalectomy: sodium and water excretion decreased always at 4 and 20 ng A II X min-1 X kg-1 bw, whereas a rate of 200 ng A II X min-1 X kg-1 bw had different effects on renal sodium and water excretion. After adrenalectomy: sodium and water excretion decreased at 4 ng A II X min-1 X kg-1 bw. Whereas a rate of 20 and 200 ng. -As no marked alterations of the glomerular filtration rate occurred, sodium retention observed was mainly due to tubular effects of A II. Plasma aldosterone concentration increased at 4, 20 and 200 ng A II X min-1 X kg-1 bw in the intact dogs.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenalectomy↗

An attempt to quantitate the contribution of antidiuretic hormone to the diuresis of left atrial distension in conscious dogs.

In order to quantitate the contribution of the antidiuretic hormone (ADH) to the diuresis of left atrial distension 52 experiments have been performed in 12 conscious, chronically instrumented beagle dogs. Left atrial pressure was increased by a reversible mitral stenosis by about 10 cm H2O (1.0 kPa) for 60 min. Plasma ADH concentration (range between 1.3 and 6.0 pg . ml-1) (radioimmunoassay) decreased in every experiment, the average decrease being about 50%. An i.v. infusion of vasopressin (0.05 mU . min-1 . kg-1) abolished the diuretic effect of left atrial distension or decreased the urine volume below control values; natriuresis was not affected. The magnitude of the vasopressin effect was dependent on the concurrent sodium excretion: when sodium excretion was low during left atrial distension, vasopressin was more effective in reducing the urine volume than when sodium excretion was high. It is concluded that the diuresis of left atrial distension is mediated (a) by a suppression of ADH and (b) by factors controlling sodium excretion, the contribution of these two mechanisms being dependent on the concurrent sodium excretion.

Animals↗

Estimation of glomerular filtration rate in conscious dogs following a bolus of creatinine. Comparison with simultaneously determined inulin clearance.

The renal clearance of creatinine was measured following orogastric administration in conscious dogs. Values of creatinine clearance were compared with simultaneously determined values of inulin clearance, when urine volume, glomerular filtration rate and volume status were acutely altered by a variety of experimental manoeuvres. At urine volumes greater than 20 microliters X min-1 X kg-1, creatinine clearance was not significantly different from inulin clearance. At low urine volumes there was some evidence of creatinine reabsorption. It is concluded that the bolus creatinine technique provides reliable estimates of glomerular filtration rate and is particularly applicable to long-term studies in conscious dogs.

Animals↗