PubMed HealthSearch

Biomedical subjects

M J Camargo

Publications and source records attributed to M J Camargo.

At least 19 recordsLinked to original sources

Relation of left ventricular hypertrophy, afterload, and contractility to left ventricular performance in Goldblatt hypertension.

To analyze the determinants of left ventricular (LV) performance (myocardial afterload, chamber size, mass, and contractility) in Goldblatt hypertension, 19 anesthetized one-kidney, one-clip (1K1C) and 28 two-kidney, one-clip (2K1C) male Wistar rats were studied 58 to 62 days after clipping, together with 19 sham-operated and 13 normal rats (controls), by M-mode echocardiography using necropsy-validated methods of measurement. The LV fractional shortening was inversely related to end-systolic stress in all groups (r = -0.89 to -0.95, all P less than .00001): 7 2K1C (25%) and 9 1K1C (47%) had fractional shortening above the upper confidence limit in control animals. Both 1K1C and 2K1C with high LV performance had severe hypertension, inadequate LV hypertrophy, with resultant high wall stress (both P less than .005), increased LV chamber dimension (P less than .005 and P less than .05, respectively) and high afterload-corrected fractional shortening (both P less than .001); 2K1C also had high plasma renin activity and atrial natriuretic factor levels (both P less than .01). Rats with normal LV performance exhibited mild hypertension, adequate LV hypertrophy (normalizing wall stress), and normal LV chamber size and afterload-corrected fractional shortening. Thus, 8 1/2 weeks after clipping, adequate LV hypertrophy allows maintenance of normal LV function by normalizing myocardial afterload in a majority of rats with Goldblatt hypertension, whereas increased LV contractility (and possibly use of preload reserve in 1K1C) maintains normal LV function in the presence of inadequate LV hypertrophy and elevated wall stress, in a substantial minority of rats that developed more severe Goldblatt hypertension.

Animals

Atrial natriuretic peptide synthesis in atrial tumors of transgenic mice.

Transgenic mice harboring a chimeric gene linking mouse protamine 1 5'-flanking sequence to the coding sequence of the simian virus 40 T-antigen develop spontaneous rhabdomyosarcomas of the right atria. The presence of the tumors is accompanied by dramatic elevations in plasma atrial natriuretic peptide (ANP) immunoreactivity (1,698 +/- 993 vs. 60 +/- 18 fmol/ml for controls) and hematocrit (56 +/- 8 vs. 51 +/- 2 for controls). The immunoreactive ANP (irANP) present in the tumors is similar in size to irANP found in normal mouse atria. ANP mRNA transcripts present in the tumors also appear to be very similar in overall size and 5'-termini to those produced in normal cardiac tissue. Microscopically, the tumors are composed of a disorganized array of densely packed abnormal-appearing cells. Immunocytochemistry and in situ hybridization analysis reveal considerable heterogeneity in ANP gene expression. ANP peptide and mRNA are detectable throughout the parenchyma of the tumors, but absolute levels of expression vary widely among different cells in the population. These tumors represent a potentially valuable model for the study of inappropriate ANP secretion and may provide a tissue source for the development of an ANP-producing atrial cell line.

Amino Acid Sequence

In vivo left ventricular anatomy in rats with two-kidney, one clip and one-kidney, one clip renovascular hypertension.

OBJECTIVES: To evaluate differences in left ventricular structural changes related to different hemodynamic patterns. DESIGN: One-kidney, one clip (1K1C; volume-dependent hypertension) rats were two-kidney, one clip (2K1C; high-resistance hypertension) to determine whether these two types of Goldblatt rats showed different types of left ventricular adaptation. METHODS: M-mode echocardiography was used to study 28 2K1C and 19 1K1C Wistar rats 8 weeks after surgery and 55 age-matched control animals. RESULTS: Systolic blood pressure was equally high in the two models; the 1K1C rats had a larger left ventricular chamber and normal plasma renin activity (PRA), whereas in the 2K1C rats PRA was increased and the left ventricular chamber was normal. The atrial natriuretic factor was significantly increased only in the 2K1C rats and was related to PRA. The left ventricular mass index was increased in both models, but more in the 1K1C than the 2K1C rats. CONCLUSIONS: In both models the degree of left ventricular hypertrophy was associated with the interacting effects of the hemodynamic component superimposed on the primary hemodynamic pattern (i.e. blood pressure as an expression of pressure overload in the primarily volume-dependent 1K1C rats and the left ventricular chamber size as an expression of volume overload in the high-resistance 2K1C rats). The interaction between pressure and volume increased the left ventricular wall thickness in both models, with additional chamber enlargement in the 1K1C rats. In these rats, the increase in left ventricular mass was more pronounced due to the greater volume load on the heart.

Adaptation, Physiological

Angiotensin II receptor antagonist delays renal damage and stroke in salt-loaded Dahl salt-sensitive rats.

OBJECTIVE: To study the effects of blockade of the renin-angiotensin system upon the development of hypertension, end-organ damage and mortality in Dahl salt-sensitive (DSS) rats using an angiotensin II receptor antagonist, losartan. DESIGN AND METHODS: DSS rats (n = 186) were fed 8% NaCl from 6 to 16 weeks of age. One group received losartan whilst the control group was untreated. Changes in blood pressure and plasma renin activity (PRA), as well as renal and cerebrovascular damage and survival were assessed during the study. RESULTS: Losartan blunted the blood pressure rise only transiently. Salt loading suppressed PRA in both groups until week 4 and thereafter it rose more markedly in the treated group. With no treatment renal lesions were first detected at 2 weeks, and strokes at 6 weeks. However, losartan transiently decreased the incidence and delayed the progression of renal damage and cerebrovascular lesions (strokes) and increased survival. PRA correlated with renal damage and the incidence of strokes in both groups. Blood pressure only partially affected survival, but did not correlate with stroke incidence. CONCLUSIONS: These results indicate that whereas the rise in blood pressure is dependent upon sodium loading, morbidity and mortality in salt-loaded DSS rats are associated with activation of the renin-angiotensin system and are only partially related to blood pressure.

Angiotensin II

DuP 753 increases survival in spontaneously hypertensive stroke-prone rats fed a high sodium diet.

We studied the effects of the nonpeptide angiotensin II receptor antagonist, DuP 753, on blood pressure, body weight, plasma renin activity, sodium excretion, and mortality in male stroke-prone spontaneously hypertensive rats (SHRsp) fed a 4% NaCl diet for 12 weeks. The rise in blood pressure, due to high sodium intake, was blunted in the first 8 weeks of the study in the DuP 753-treated group; however, it started slowly to rise in the following weeks. In the untreated group, blood pressure rose steadily and it was significantly higher than that of the treated group during the whole experimental period. DuP 753-treated rats gained weight continuously during the study in contrast to the untreated group, where weight gain was arrested after 4 weeks. Plasma renin activity rose significantly after 4 weeks of treatment with DuP 753; by week 6 its values returned to baseline values and remained at these lower values until week 12. In the untreated group, plasma renin activity was not suppressed by high sodium intake after 4 weeks; it continued to rise and it was significantly elevated by 8 and 12 weeks. Survival at 12 weeks was 84% in DuP 753-treated group and 26% in the untreated group. The data demonstrate that DuP 753 decreased mortality and dramatically blunted the blood pressure rise in SHRsp fed a high sodium diet.

Angiotensin Receptor Antagonists

Angiotensin II receptor antagonist markedly reduces mortality in salt-loaded Dahl S rats.

We investigated the effect of blockade of the renin-angiotensin system (RAS) on morbidity and hypertension in salt-loaded Dahl salt-sensitive (Dahl S) rats. Six-week-old male Dahl S rats (n = 198) were fed a high sodium diet (8% NaCl) for 10 weeks. One group of rats (n = 91) was treated with 30 mg/kg/day of the nonpeptide angiotensin II receptor antagonist, DuP 753, whereas the control group (n = 107) was left untreated. Blood pressure rose steeply in both groups, reaching levels above 200 mm Hg by week 6. DuP 753-treated animals were less hypertensive than controls between weeks 3 and 5 of the study, but had similar blood pressure before and after that time. Although the angiotensin II antagonist had only a transient effect on blood pressure it markedly prolonged survival. After 10 weeks, 68.3% of rats receiving DuP 753, but only 30.1% of controls, were still alive (P less than .0001). Higher morbidity in controls than in DuP 753-treated rats was also suggested by body weights. Following 6 weeks of high salt diet, untreated rats progressively lost weight while DuP 753-treated animals maintained a steady body weight. These results show that the angiotensin II receptor antagonist DuP 753 greatly enhanced survival in salt-loaded Dahl S rats although it reduced blood pressure only transiently. Our data are consistent with a contribution of the RAS to morbidity in this model of hypertension.

Angiotensin Receptor Antagonists

Relation of plasma renin to end organ damage and to protection of K+ feeding in stroke-prone hypertensive rats.

We studied the effects of regular diet (0.35% NaCl/1.1% potassium), high sodium diet (4% NaCl/0.75% potassium), or high sodium and high potassium diet (4% NaCl/2.11% potassium) on blood pressure, plasma renin activity, renal and cerebrovascular lesions, and incidence of stroke and mortality in male stroke-prone spontaneously hypertensive rats (SHRSP). In the first 4 weeks, the rise in blood pressure was higher in high NaCl than in high NaCl/high potassium or regular diet groups. However, by 8 and 12 weeks, the blood pressure in all three groups was similar. After 4 weeks of diet, plasma renin activity was similar in the three groups (3.4 +/- 0.8, 4.1 +/- 0.9, and 5.2 +/- 1.6 ng/ml/hr, in high NaCl, high NaCl/high potassium, and regular diet groups, respectively) and were not related to sodium excretion. After 8 weeks, plasma renin activity was significantly increased only in the high NaCl group (13.7 +/- 3.7 ng/ml/hr), and by 12 weeks plasma renin activity was significantly higher in the high NaCl group (25.3 +/- 3.6 ng/ml/hr) than in the high NaCl/high potassium (11.1 +/- 2.9 ng/ml/hr) or in the regular diet (7.8 +/- 4.6 ng/ml/hr) groups. Moderate to severe renal vascular lesions were first detected in the high NaCl group by 8 weeks of diet. At 12 weeks, renal vascular damage index (RVDI), estimated histologically, was significantly higher in the high NaCl group (RVDI = 79 +/- 14) than in the high NaCl/high potassium (RVDI = 40 +/- 11) and regular diet (RVDI = 7.8 +/- 4.6) groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Reduction of atrial natriuretic factor circulating levels by endogenous sympathetic activation in hypertensive patients.

The effects of endogenous activation of sympathetic nervous system on systemic and regional hemodynamics and on plasma levels of atrial natriuretic factor (ANF) were studied in subjects with essential hypertension. Stimulation of sympathetic nervous system was reflex-induced by a selective deactivation of carotid baroreceptors obtained by increasing external neck-tissue pressure (NTP) by means of a neck chamber. The effects of graded levels (+30, +45, and +60 mm Hg) and one single and sustained level (+45 mm Hg for 15 min) of NTP were studied. As expected, NTP caused reflex increases in blood pressure, heart rate, and forearm vascular resistance, whereas atrial pressures did not change significantly and cardiac output tended to increase. In the studies based on graded levels of NTP, immunoreactive ANF (irANF) progressively fell (from 31.7 +/- 10 to 13.3 +/- 4 fmol/ml; p less than .05) and the changes in irANF were significantly correlated with those observed in FVR (r = -.671, p less than .001). Both hemodynamic and irANF changes were prevented by adrenergic blockade (phentolamine + propranolol). During +45 mm Hg NTP for 15 min, the levels of irANF fell both in the pulmonary artery and in the inferior vena cava. The irANF arteriovenous difference also fell during this maneuver. These data show that, in hypertensive patients, factors other than atrial wall tension may influence ANF release. They also show that endogenous sympathetic activation may reduce ANF release.

Atrial Natriuretic Factor

Relationship of increased plasma atrial natriuretic factor and renal sodium handling during immersion-induced central hypervolemia in normal humans.

Although maneuvers augmenting atrial volume and/or stretch also augment plasma levels of atrial natriuretic factor (ANF), the role of ANF in modulating renal sodium and water handling has not been defined. Water immersion to the neck (NI) was employed to assess the ANF response to acute volume expansion in 13 seated sodium-replete normal subjects. ANF increased promptly and markedly from 7.8 +/- 1.8 to 19.4 +/- 3.8 fmol/ml, then declined to 6.3 +/- 1.4 fmol/ml after 60 min recovery. Concomitantly, NI increased urine flow rate (V) (2.0 +/- 0.6 to 7.0 +/- 0.9 ml/min; P less than 0.001) and sodium excretion (UNaV) (92 +/- 12 to 191 +/- 15 mu eq/min; P less than 0.001), and decreased PRA (-66 +/- 3%) and plasma aldosterone (-57 +/- 6%). Increases of plasma ANF ranged from less than 20% to over 12-fold. Similarly, the natriuretic response to NI varied markedly from none to 500%. There was a strong correlation between peak ANF and peak UNaV (r = 0.67; P less than 0.025), but none between peak V and peak plasma ANF (r = -0.10; P greater than 0.5). These findings suggest that an increase in plasma ANF contributes to the natriuretic response to NI, implying a physiological role for ANF in modulating volume homeostasis in humans.

Adult

Renal vasoconstrictive effect of kinins mediated by B1-kinin receptors.

The nature of the renal vascular actions of kinins, their dependence on prostaglandins and B1-kinin receptor responses were studied in functioning isolated perfused rat kidneys (IK). Lysylbradykinin (LBK), 0.28 and 0.7 microM, transiently decreased and then markedly increased the renal vascular resistance (RVR) in a sustained manner. Bradykinin (BK) at the same doses also had a transient vasorelaxant but not a sustained vasoconstrictive effect. The inactivation of LBK and BK by the IK did not account for the transient nature of their vasorelaxant effect. Indomethacin (5 microM) markedly blunted LBK-induced decrease but not increase in RVR. The B1-kinin receptor agonist desArg9-BK (0.4-1.0 microM) did not decrease RVR but, as LBK, markedly increased RVR in a dose-related manner. The B1-kinin receptor antagonist [Leu8]desArg9-BK had no effect on its own but inhibited the desArg9-BK-induced vasoconstriction in a stoichiometric manner. This antagonist at 4.0 microM also completely abolished the vasoconstrictive effect of 0.7 microM LBK, whereas it potentiated and prolonged its vasorelaxant effect. The results demonstrate that kinins, particularly LBK, have bimodal effects on the renal vascular resistance of the isolated perfused rat kidney. The vasorelaxant effect is at least partly mediated by prostaglandins whereas the vasoconstrictive effect of LBK and/or its renal metabolites has the typical character of a B1-kinin receptor response. It is postulated that B1-kinin receptor responses may be of importance in the generation and/or maintenance of renal vasoconstriction in disease states which lead to renal failure.

Animals

Role of increased glomerular filtration rate in atrial natriuretic factor-induced natriuresis in the rat.

One of the major renal hemodynamic actions of atrial natriuretic factor (ANF) is to increase glomerular filtration rate (GFR). To assess the role of this effect on ANF-induced natriuresis (UNaV), diuresis (V) and kaliuresis (UKV) we performed late clamp experiments in six rats. After control periods (C), synthetic ANF (auriculin A) was infused i.v. (2 micrograms X min-1/kg body wt) throughout the experiment (150 min). After pre-clamp periods, the perfusion pressure of the left kidney (LK) was reduced to 75-80 mmHg. The right kidney (RK) served as a time control. In LK, before the late clamp, ANF increased (p less than 0.01) GFR from 1.5 +/- 0.1 to 1.8 +/- 0.1 ml/min, V from 17 +/- 5 to 53 +/- 5 microliters/min, and UNaV from 2.1 +/- 0.6 to 10.0 +/- 0.9 microEq/min. Almost identical increases occurred in the RK. The late clamp returned all parameters in LK to C values (p greater than 0.05): GFR to 1.4 +/- 0.1 ml/min, V to 6.3 +/- 1.2 microliter/min, and UNaV to 1.0 +/- 0.3 microEq/min. The late clamp also reversed the ANF-induced increase in UKV. In the RK, GFR (1.8 +/- 0.1 ml/min), V (38 +/- 4 microliter/min) and UNaV (7.8 +/- 0.8 microEq/min) remained elevated (p less than 0.01 vs. C) to the end of the experiment. These data demonstrate that upon return of GFR to control levels, the ANF-induced diuresis, natriuresis and kaliuresis is abolished. The results support our previous view that the increase in GFR together with a decrease in inner-medullary hypertonicity account wholly or in great part for the natriuretic action of ANF.

Animals

Expression and secretion of biologically active human atrial natriuretic peptide in Saccharomyces cerevisiae.

A hybrid gene was constructed containing a fusion between the DNA sequences encoding the secretory precursor of the yeast mating pheromone alpha-factor and a synthetic sequence encoding a biologically active 24-amino acid carboxyl-terminal portion of the human atrial natriuretic peptide (hANP) precursor. Transformation of Saccharomyces cerevisiae with the hybrid gene resulted in the yeast cells secreting biologically active hANP into the extracellular medium. The secreted hANP was purified and found to be accurately processed at the junction in the chimeric alpha-factor/hANP protein, producing the desired mature hANP amino terminus. The secreted product was also folded correctly with respect to the single disulfide bond. However, the carboxyl terminus of the secreted hANP material was heterogeneous such that the major form lacked the last two amino acids of the peptide while the minor form was the full length material. The observed processing at the carboxyl terminus of the secreted hANP may reflect a normal processing event involved in alpha-factor peptide maturation.

Amino Acid Sequence

Differing hemodynamic responses to atrial natriuretic factor in two models of hypertension.

Hemodynamic responses to synthetic atrial natriuretic factor (ANF), were studied in renin-dependent two-kidney, one-clip (2K,1C) and deoxycorticosterone (DOC) salt-treated hypertensive rats as well as normotensive controls. ANF infusion (800 pmol/kg prime, 120 pmol X kg-1 X min-1 for 60 min) decreased blood pressure (BP) more in conscious 2K,1C (-24 +/- 4%) than in DOC salt-treated (-12 +/- 4%, P less than 0.05) or control rats. Hemodynamic parameters were also evaluated during graded infusion of three doses, each for 30 min. At 24 and 120 pmol X kg-1 X min-1, ANF lowered BP in 2K,1C rats, both conscious (from 156 +/- 6 to 144 +/- 7, P less than 0.05 and 135 +/- 5 mmHg, P less than 0.05) and anesthetized (from 148 +/- 7 to 138 +/- 7, P less than 0.05 and 128 +/- 7, P less than 0.05). In anesthetized 2K,1C, BP changes were associated with reduction in total peripheral resistance (TPR) that became significant at 120 pmol X kg-1 X min-1 (-10 +/- 2%), whereas cardiac output (CO) and stroke volume (SV) were unchanged. In DOC-salt-treated rats these doses did not lower BP despite progressive falls in CO (-7 +/- 3% and -24 +/- 5%, P less than 0.05) and SV (-8 +/- 2% and -23 +/- 5%, P less than 0.05), which were balanced by a simultaneous rise in TPR (+12 +/- 4% and +26 +/- 10%, P less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Cardiovascular effects of atrial natriuretic factor in anesthetized and conscious dogs.

Atrial natriuretic factor lowers blood pressure in normotensive and hypertensive animal models. The present study examined the mechanism of the blood pressure-lowering effect in 10 normotensive dogs. Four awake dogs previously instrumented with electromagnetic flow probes for measurement of cardiac output and catheters for systemic hemodynamic and cardiac dynamic measurements were studied. After a 30-minute control period, a 3 micrograms/kg bolus followed by 0.3 micrograms/min/kg of a 24-residue synthetic atrial natriuretic factor was infused for 30 minutes, followed by a 1-hour recovery period. Mean arterial pressure fell significantly during infusion (control, 125 +/- 4; infusion, 108 +/- 5; recovery, 125 +/- 9 mm Hg; p less than 0.05) and was accompanied by a slight but significant bradycardia (control, 144 +/- 7; infusion, 134 +/- 5; recovery, 145 +/- 7 beats/min; p less than 0.05). Significant reductions in cardiac output (control, 2.66 +/- 0.60; infusion, 2.18 +/- 0.60; recovery, 2.74 +/- 0.60 L/min; p less than 0.05), stroke volume (control, 18.4 +/- 3.9; infusion, 16.0 +/- 4.2; recovery, 19.0 +/- 3.7 ml/beat; p less than 0.05), and maximum increase in rate of change of left ventricular systolic pressure (control, 2475 +/- 200; infusion, 2088 +/- 216; recovery, 2487 +/- 243 mm Hg/sec; p less than 0.05) were also observed during infusion. No significant changes in total peripheral resistance or central venous pressure were noted, although the latter tended to fall during infusion. A similar pattern was observed in six pentobarbital-anesthetized dogs, except that infusion of atrial natriuretic factor did not induce bradycardia.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Atrial natriuretic factor in normal subjects and heart failure patients. Plasma levels and renal, hormonal, and hemodynamic responses to peptide infusion.

We investigated atrial natriuretic factor (ANF) in humans, measuring plasma immunoreactive (ir) ANF (in femtomoles per milliliter), and renal, hormonal, and hemodynamic responses to ANF infusion, in normal subjects (NL) and congestive heart failure patients (CHF). Plasma irANF was 11 +/- 0.9 fmol/ml in NL and 71 +/- 9.9 in CHF (P less than 0.01); the latter with twofold right ventricular increment (P less than 0.05). In NL, ANF infusion of 0.10 microgram/kg per min (40 pmol/kg per min) induced increases (P less than 0.05) of absolute (from 160 +/- 23 to 725 +/- 198 mueq/min) and fractional (1-4%) sodium excretion, urine flow rate (from 10 +/- 1.6 to 20 +/- 2.6 ml/min), osmolar (from 3.2 +/- 0.6 to 6.8 +/- 1.2 ml/min) and free water (from 6.8 +/- 1.6 to 13.6 +/- 1.6 ml/min) clearances, and filtration fraction (from 20 +/- 1 to 26 +/- 2%). Plasma renin and aldosterone decreased 33% and 40%, respectively (P less than 0.01). Systolic blood pressure fell (from 112 +/- 3 to 104 +/- 5 mmHg, P less than 0.05) in seated NL; but in supine NL, the only hemodynamic response was decreased pulmonary wedge pressure (from 11 +/- 1 to 7 +/- 1 mmHg, P less than 0.05). In CHF, ANF induced changes in aldosterone and pulmonary wedge pressure, cardiac index, and systemic vascular resistance (all P less than 0.05); however, responses of renin and renal excretion were attenuated. ANF infusion increased hematocrit and serum protein concentration by 5-7% in NL (P less than 0.05) but not in CHF.

Adult

Effects of atrial natriuretic factor on blood pressure and the renin-angiotensin-aldosterone system.

Atrial natriuretic factor (ANF) antagonizes vasoconstriction induced by numerous smooth muscle agonists and also lowers blood pressure in intact animals. ANF has particularly marked relaxant effects on angiotensin II-contracted vessels in vitro. Sensitivity to the blood pressure-lowering effect of ANF in vivo appears to be enhanced in renin-dependent models of renovascular hypertension compared with other experimental hypertensive models. The depressor action of low, possibly physiological doses of ANF in two-kidney, one-clip Goldblatt rats is due to a decrease in total peripheral resistance. On the other hand, high doses of ANF can lower cardiac output, particularly in volume-expanded models such as deoxycorticosterone-salt hypertension. ANF markedly inhibits renin secretion in intact animals, probably via increased glomerular filtration rate and load of sodium chloride to the macula densa. This effect is masked when renal perfusion is impaired (e.g., via unilateral renal artery constriction), in which case ANF may stimulate renin secretion slightly. ANF also reduces plasma aldosterone in vivo and inhibits basal and agonist-induced aldosterone release from isolated adrenal cortical cells. This effect appears to be especially marked for angiotensin-induced aldosterone production in vivo and in vitro. These findings indicate that ANF has potentially important interactions with the renin-angiotensin-aldosterone system and suggest a role for ANF in the homeostatic control of blood pressure as well as of extracellular fluid volume.

Adrenal Glands

Increases in circulating atrial natriuretic factor during immersion-induced central hypervolaemia in normal humans.

The role of atrial natriuretic factor (ANF) in modulating volume and circulatory homeostasis remains uncertain, and there has been as yet no systematic analysis of the factors promoting ANF release in humans. Since immersion in water to the neck provides a 'volume stimulus' identical to that induced by 2 litres of saline, without plasma compositional change, immersion to the neck was used to assess the ANF response to acute central blood-volume expansion. Using a radio-immunoassay that reliably detected ANF in human plasma extracts, more than 80% of plasma immunoreactive (ir) ANF was shown to elute as a single peak on reverse-phase high performance liquid chromatography, with a retention time identical to that of the synthetic 28-residue alpha-human (alpha-h) ANF. The response of plasma irANF to 3 h of immersion in water to the neck was evaluated in four sodium-replete normal subjects; the immersion produced a prompt and marked increase in irANF in each subject, and recovery was associated with a prompt return to pre-study levels. Concurrently, there was a marked natriuresis and a profound suppression of plasma renin and aldosterone. These findings support the hypothesis that an increase in plasma ANF contributes to the hormonal and renal effects of immersion in water to the neck, suggesting that ANF has an important physiological role in modulating volume homeostasis in humans.

Adult

Carotid baroreceptor unloading decreases plasma atrial natriuretic factor in hypertensive patients.

Atrial natriuretic factor (ANF) release is known to be regulated by distension of the atrial wall; other factors affecting ANF secretion have not yet been defined. In order to evaluate the effects of the reflex activation of the sympathetic nervous system on ANF plasma levels, in 11 patients with essential hypertension progressive deactivation of carotid baroreceptors was induced by 4-min graded increases in external neck tissue pressure. Carotid sinus hypotension induced progressive increases in blood pressure (BP), heart rate (HR) and forearm vascular resistance (FVR), while plasma renin activity and catecholamine concentrations did not change significantly. Despite the lack of changes in right atrial pressure during this manoeuvre, plasma ANF levels showed a progressive and significant reduction, which was correlated with the increase in FVR. Although a contribution by other factors cannot be ruled out, our data suggest that the reflex activation of sympathetic nervous system is associated with reduced ANF release, independent of changes in atrial pressure.

Adult