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Biomedical subjects

R D Leake

Publications and source records attributed to R D Leake.

At least 19 recordsLinked to original sources

Povidone-iodine for ophthalmia neonatorum prophylaxis.

PURPOSE: The agents currently used to prevent ophthalmia neonatorum are less than optimal, with reports indicating evidence of bacterial resistance, ineffectiveness, and toxicity. Povidone-iodine ophthalmic solution, which has been shown to be effective in the preoperative preparation of the eye, generates no resistance, is an effective antimicrobial agent, and has low toxicity. We evaluated the effectiveness and safety of povidone-iodine for ophthalmia neonatorum prophylaxis. METHODS: A bacterial culture was taken from the conjunctiva of each eye of 100 infants within 30 minutes of birth. A drop of 2.5% povidone-iodine solution was then placed on one eye, while the other eye received either one drop of silver nitrate 1% ophthalmic solution or 0.5% erythromycin ointment. Conjunctival bacterial cultures were again taken two to four hours after birth. At each culture and at 24 hours after birth, the eyes were examined for toxic changes. To measure the effectiveness of the medications, the number of bacterial colony-forming units and species from each culture was compared. RESULTS: All three agents significantly reduced the number of colony-forming units, but povidone-iodine caused the most significant decrease. The number of species was reduced significantly by povidone-iodine (P = .00051) and silver nitrate (P = .007), with povidone-iodine yielding the most significant decrease. Erythromycin did not significantly reduce the number of species. Silver nitrate demonstrated more ocular toxicity at the 24-hour determination point than did either of the other two medications (P < .001). CONCLUSIONS: Povidone-iodine 2.5% ophthalmic solution is an effective antibacterial agent on the conjunctiva of newborns and causes less toxicity than silver nitrate.

Colony Count, Microbial↗

Ontogeny of ovine fetal renal atrial natriuretic factor receptors.

Ovine fetal renal responses to ANF decrease during the last third of gestation, although circulating fetal plasma atrial natriuretic factor (ANF) levels are higher than in the maternal circulation, and do not change with gestation. This study examined whether previously reported maturational changes in fetal renal responses to ANF are due to changes in renal ANF receptor numbers and/or affinity during gestation. ANF receptor numbers (Bmax) and dissociation constants (Kd) were measured in isolated renal glomeruli from early (95 and 110 day; mean 103 +/- 2) and late gestation (131 and 145 day; mean 138 +/- 2) fetal and maternal sheep. Fetal renal ANF receptor Bmax values significantly increased between 103 and 138 days gestation (13 +/- 3 to 29 +/- 4 fmol/mg protein) but were significantly lower than maternal values (60 +/- 13 fmol/mg protein). Fetal ANF receptor Kd values also increased significantly (245 +/- 34 to 370 +/- 36 pM), with early gestation values significantly lower than maternal values (470 +/- 69 pM). Thus, the blunted fetal renal response to ANF in late as compared to early gestation is not due to reduced ANF receptor numbers. Rather, an increased proportion of ANF clearance receptors, reduced post-receptor function and/or altered intrarenal hemodynamics may contribute.

Animals↗

Vascular effects alter early-gestation fetal renal responses to vasopressin.

Distinct receptors mediate the vascular (V1) and renal (V2) effects of arginine vasopressin (AVP). Although ovine fetal AVP-induced antidiuresis can be demonstrated in early gestation (< 120 days; term 150 days), the early-gestation fetal renal responses to AVP are variable, including increases in urine flow and glomerular filtration rate (GFR). AVP V1 receptor predominance and/or V2 receptor system immaturity may contribute to variable early-gestation renal responses to AVP. To differentiate these possibilities, we assessed early-gestation fetal V2 receptor function in the presence and absence of V1 receptor-mediated effects by comparing the responses to AVP (a combined V1-V2 receptor agonist; n = 10; 112 +/- 2 days) with the selective V2-receptor agonist 1-desamino-8-D-arginine vasopressin (DDAVP) (n = 5; 111 +/- 2 days). AVP infusion increased fetal mean arterial pressure (MAP; 36 +/- 1 to 44 +/- 2 mmHg) and decreased heart rate (197 +/- 2 to 171 +/- 3 beats/min); DDAVP infusion had no effect on MAP or heart rate. Free water clearance decreased in response to AVP (0.13 +/- 0.02 to 0.02 +/- 0.01 ml.min-1.kg-1) and DDAVP (0.21 +/- 0.04 to 0.04 +/- 0.02 ml.min-1.kg-1), and urine osmolality increased in response to both analogues (AVP: 145 +/- 4 to 283 +/- 15 mosmol/kgH2O; DDAVP: 146 +/- 5 to 244 +/- 32 mosmol/kgH2O).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Multiple receptor contributions to ovine fetal cardiovascular responses to vasopressin.

Selective AVP V1 receptor antagonist and V2 receptor agonist treatments were used to study V1 and V2 receptor contributions to AVP-induced effects on ovine fetal blood pressure, heart rate, and renal function. The results indicate that V1 receptors do not contribute to late gestation fetal renal responses to AVP. The pressor response to AVP was abolished by V1 receptor blockade while the heart rate response was not affected (Fig. 1). This separation of the blood pressure and heart rate responses to AVP has been noted previously, and indicates that AVP-induced fetal bradycardia is not a reflex response to increased blood pressure. A direct V1 receptor-mediated effect on the heart also appears unlikely. The absence of a dDAVP effect on fetal heart rate indicates that AVP-induced bradycardia is not a V2 receptor-mediated event. An AVP effect on oxytocin receptors appears unlikely due to the antioxytocic action of the Manning Compound. Demonstration of AVP V1a receptors in and around the brainstem cardiovascular control centers supports the view that circulating AVP can modulate vagal outflow via effects in the area postrema. However, if Manning Compound infusion blocks fetal V1a receptor-mediated vascular responses and V1b receptor-mediated ACTH release, then blockade of the heart rate response to AVP also would have been expected. In summary, the fetal heart rate response to AVP is not dependent on AVP-induced increases in blood pressure, V1 receptors blocked by the Manning Compound, or V2 receptors stimulated by dDAVP. We conclude that AVP contributes to fetal heart rate regulation, and the effect is not mediated by any known population of AVP receptors.

Animals↗

Ovine maternal and fetal renal vasopressin receptor response to maternal dehydration.

OBJECTIVE: Arginine vasopressin secretion increases in response to increased plasma osmolality or hypovolemia. Dehydration-induced increases in plasma arginine vasopressin levels have been shown to down-regulate arginine vasopressin V2 receptors in adult rat kidneys. Our study determined ovine maternal and fetal renal arginine vasopressin receptor characteristics and receptor response to maternal dehydration. STUDY DESIGN: Eight pregnant ewes (113 +/- 1 days) were dehydrated for 72 hours; eight animals served as controls. Renal medullary tissue was isolated from maternal and fetal kidneys, and arginine vasopressin receptor characteristics determined with saturation and competition assays using tritiated arginine vasopressin, arginine vasopressin, and arginine vasopressin analogs. RESULTS: Euhydrated maternal and fetal renal medullary arginine vasopressin receptor dissociation constant (3.0 +/- 0.3 and 1.9 +/- 0.3 nmol/L) and maximal binding capacity (149 +/- 15 and 111 +/- 33 fmol/mg protein) values were similar. Pharmacologic profiles with selective agonists indicated a predominance of V2 receptors. Dehydration significantly increased maternal and fetal plasma osmolalities (304 +/- 2 to 320 +/- 2; 296 +/- 1 to 319 +/- 3 mOsm/kg water, respectively) and arginine vasopressin levels (3.8 +/- 1.4 to 29.3 +/- 4.6; 4.4 +/- 1.0 to 16.9 +/- 5.0 pg/ml, respectively) but had no effect on arginine vasopressin receptor binding. CONCLUSION: Specific, saturable, single-site tritiated arginine vasopressin binding is present in ovine maternal and fetal renal medullary membranes. Ovine maternal and fetal renal arginine vasopressin receptors do not down-regulate in response to dehydration-induced elevations in plasma arginine vasopressin levels.

Animals↗

V1- and V2-receptor contributions to ovine fetal renal and cardiovascular responses to vasopressin.

To assess the contributions of arginine vasopressin (AVP) V1- and V2-receptors to the ovine fetal responses to AVP, we studied V2-receptor stimulation in the presence of V1-receptor blockade, and selective V2-receptor stimulation in chronically catheterized fetal lambs. AVP administration (20 ng/kg) to the saline infused fetuses (n = 8; 132 +/- 2 days) significantly increased mean arterial pressure (MAP; 45 +/- 2 to 53 +/- 4 mmHg) and urine osmolality (Uosm; 134 +/- 13 to 379 +/- 42 mosmol/kgH2O) and decreased heart rate (HR; 168 +/- 3 to 147 +/- 5 beats/min) and urine flow (V; 0.48 +/- 0.10 to 0.19 +/- 0.03 ml/min). V1-receptor antagonist infusion, [d(CH2)5,Tyr(Me)]AVP (n = 7; 134 +/- 1 days) had no effect on fetal MAP, Uosm, HR, or V. V1-receptor blockade abolished the MAP response to AVP without affecting the HR and urinary responses. In a second series of animals (n = 6; 131 +/- 1 days), selective V2-receptor agonist infusion [desmopressin (DDAVP)] had no effect on fetal MAP or HR while initial changes in V and Uosm were identical to the effects of AVP alone. Our results demonstrate clear discrimination of V1- and V2-receptor-mediated events in the fetal MAP and renal responses to AVP. Moreover, the HR response to AVP is not mediated by the population of V1-receptors blocked by [d(CH2)5,Tyr(Me)]AVP or V2-receptors stimulated by DDAVP, suggesting the presence of additional AVP receptor subclass(es) during fetal life.

Animals↗

Neurohypophyseal and pituitary-adrenocortical responses to the alpha 1 agonist methoxamine in humans.

To test the hypothesis that the release of neurohypophyseal peptides into plasma in humans is stimulated by a central nervous system (CNS) alpha 1 adrenergic mechanism, we measured the responses of arginine vasopressin (AVP) and oxytocin (OT) to intravenous methoxamine, an alpha 1 agonist which enters the CNS following peripheral administration. The potential confound of baroreceptor inhibition of AVP release by the pressor effect of methoxamine was addressed by measuring the plasma AVP response to infusion of norepinephrine (NE), an alpha 1 agonist which does not enter the CNS and which produced an equivalent pressor effect. We also assessed the pituitary adrenocortical system responses to methoxamine and norepinephrine infusions by measuring plasma ACTH and cortisol concentrations. In addition, plasma NE and epinephrine were measured. Methoxamine, but not NE, increased plasma AVP compared to placebo infusion. Neither methoxamine nor NE affected plasma OT. The AVP elevation was delayed until more than 60 min after the methoxamine infusion began and the peak AVP level occurred 30 min after cessation of the infusion. In contrast, ACTH and cortisol increased early during methoxamine infusion and ACTH returned to baseline promptly after the infusion ceased. Although it is possible that the AVP response to methoxamine reflected stimulation of AVP release at a CNS level, it is also possible that the AVP increase represented a rebound response to withdrawal of methoxamine.

Adrenal Cortex↗

Ovine maternal and fetal glomerular atrial natriuretic factor receptors: response to dehydration.

In pregnancy, dehydration produces marked effects on maternal and fetal body water homeostasis including an increase in fetal urinary sodium concentration and excretion. To examine the role of fetal plasma atrial natriuretic factor (ANF) and glomerular ANF receptors in dehydration-induced natriuresis, we compared plasma ANF levels and glomerular ANF binding characteristics in dehydrated and control maternal and fetal sheep. Mean (+/- SEM) maternal and fetal plasma ANF levels in control animals (n = 9) at 132-136 days gestation were 37 +/- 3 pg/ml and 138 +/- 20 pg/ml, respectively. Although mean ANF receptor maximum binding capacities (Bmax) were significantly higher in maternal than in fetal glomeruli (83 +/- 11 vs 34 +/- 12 fmol/mg protein, respectively), the dissociation constants (Kd) for ANF binding were not different (2.7 +/- 0.6 and 3.7 +/- 1.7 x 10(-10) M, respectively). In an additional 9 animals studied after 63 +/- 4 h of water deprivation, maternal plasma ANF levels were significantly lower than in the control group (14 +/- 4 vs. 37 +/- 3 pg/ml), maternal glomerular ANF receptor Bmax values were significantly higher (732 +/- 203 vs. 83 +/- 11 fmol/mg protein), and Kd values were six-fold higher (17.0 +/- 7.1 vs. 2.7 +/- 0.6 x 10(-10) M), although this difference was only marginally significant (p = 0.06). In contrast to the adult, there was a small, nonsignificant decrease in plasma ANF levels and no difference in Bmax or Kd values between the dehydrated and euhydrated fetal animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Vasopressin levels in infants during the course of aseptic and bacterial meningitis.

We measured urine vasopressin (VP) once daily on days 1 through 3 in 18 patients hospitalized with meningitis. Urine VP values were 215 +/- 100, 116 +/- 44, and 69 +/- 23 pg/mL on days 1 through 3, respectively, for children with bacterial meningitis and 34 +/- 14, 20 +/- 4, and 15 +/- 4 pg/mL for those with aseptic meningitis. Urinary VP levels of infants with bacterial meningitis were significantly greater than those of healthy ambulatory subjects (n = 18) on all three study days; VP values of infants with bacterial meningitis were also greater than those of infants with aseptic meningitis on study days 2 and 3. The VP levels for the subjects with aseptic meningitis were significantly greater than those of the controls on day 1 only. None of the infants exhibited the clinical syndrome of inappropriate antidiuretic hormone secretion.

Bacterial Infections↗

Fetal and maternal plasma atrial natriuretic factor responses to angiotensin II infusion.

Plasma atrial natriuretic factor and angiotensin II have opposing actions in the regulation of body fluid homeostasis and systemic blood pressure. Angiotensin II infusions stimulate atrial natriuretic factor release in some, but not all, studies in adult mammals. To examine the response during the perinatal period, graded intravenous angiotensin II infusions were administered to four chronically instrumented pregnant ewes and fetuses (132 +/- 1 days of gestation). Fetuses received successive 20-minute intravenous angiotensin II infusions at 25, 50, and 100 ng/kg/min. After a 90-minute recovery, maternal ewes received successive 20-minute angiotensin II infusions (5, 10, and 25 ng/kg/min). During the fetal infusions, mean (+/- SEM) fetal arterial blood pressure (47 +/- 2 to 61 +/- 2 mm Hg, p less than 0.05) and heart rate (155 +/- 16 to 196 +/- 36 beats/min, p less than 0.05) increased, although there was no change in maternal measured parameters. In response to the maternal infusion, maternal mean arterial blood pressure increased (92 +/- 7 to 110 +/- 8 mm Hg, p less than 0.05) and maternal heart rate decreased (136 +/- 4 to 125 +/- 2 beats/min, p less than 0.05) without change in fetal parameters. Fetal plasma atrial natriuretic factor levels (210 +/- 27 to 664 +/- 250 pg/ml, p less than 0.05) significantly increased during the fetal angiotensin II infusions in spite of no change in maternal plasma atrial natriuretic factor (85 +/- 21 to 124 +/- 22 pg/ml) during the maternal angiotensin II infusions. These findings indicate that similar increases in systemic blood pressure in response to angiotensin II infusions stimulate increased fetal, but not maternal, plasma atrial natriuretic factor.

Angiotensin II↗

Ovine fetal renal and hormonal responses to changes in plasma epinephrine.

Circulating epinephrine alters atrial natriuretic factor (ANF) and arginine vasopressin (AVP) secretion, and all three hormones influence renal function. To quantify the relationships among fetal plasma epinephrine levels, fetal ANF and AVP secretion, and fetal renal function, six chronically catheterized fetal lambs (132 +/- 1 days gestation) received successive 40-min epinephrine infusions (0.1, 0.4, and 1.8 micrograms.min-1.kg-1). The second epinephrine infusion dose evoked significant increases in urine flow (V; 0.7 +/- 0.2 to 1.2 +/- 0.2 ml/min), free water clearance (CH2O; 0.3 +/- 0.1 to 0.7 +/- 0.1 ml/min), glomerular filtration rate (GFR; 3.9 +/- 0.7 to 5.4 +/- 0.8 ml/min), fractional water excretion (V/CH2O; 19 +/- 3 to 25 +/- 2%), mean arterial pressure (MAP; 45 +/- 3 to 51 +/- 4 mmHg), and a 94% increase in plasma ANF levels. A fourfold increase in the infusion dose significantly increased osmolar clearance (0.3 +/- 0.1 to 0.6 +/- 0.1 ml/min), sodium excretion (28 +/- 8 to 53 +/- 13 mueq/min), and plasma AVP levels (2.4 +/- 0.5 to 6.4 +/- 2.4 pg/ml) with no additional effect on V, CH2O, GFR, V/GFR, MAP, or plasma ANF levels. Urine osmolality and fractional sodium excretion did not change in response to epinephrine infusion. Our results demonstrate that epinephrine infusion stimulates fetal ANF secretion and to a lesser extent AVP secretion and significantly influences fetal renal function.

Animals↗

Fetal renal response to atrial natriuretic factor decreases with maturation.

The presence of atrial natriuretic factor (ANF) in fetal tissues and plasma early in gestation suggests that ANF may have a physiological role in cardiocirculatory homeostasis in utero. However, reported responsiveness of the fetal kidney to ANF varies markedly. To characterize the ontogeny of fetal renal responsiveness to ANF, chronically catheterized ovine fetuses at 114 +/- 1 days (n = 6) and 131 +/- 1 days (n = 6) received successive (30 min each) intravenous infusions of ANF at rates of 5, 25, and 100 ng.min-1.kg-1. Mean (+/- SE) fetal plasma ANF levels increased from 328 +/- 54 to 1,866 +/- 482 and 521 +/- 135 to 1,579 +/- 295 pg/ml in the younger and more mature fetuses, respectively. Mean urine volume (0.17 +/- 0.03 to 0.37 +/- 0.09 ml.min-1.kg-1) and GFR (0.9 +/- 0.2 to 1.8 +/- 0.4 ml.min-1.kg-1) increased in the early gestation fetuses but did not change in the older fetuses. Mean urine sodium excretion and osmolar clearance increased by 352 and 155% in the early gestation fetal lambs and 118 and 50% in the older animals. The fetal plasma ANF clearance rates (PCANF) were lower in the early vs. the late gestation fetuses (68 +/- 15 vs. 116 +/- 28 ml.min-1.kg-1, respectively). These results demonstrate a decrease in fetal renal responsiveness to ANF with advancing fetal age. Multiple factors appear to contribute, including changes in PCANF and maturational changes in glomerular filtration rate, renal tubular function and ANF receptor metabolism.

Animals↗

Ontogeny of atrial natriuretic factor receptors and cyclic GMP response in rabbit renal glomeruli.

Atrial natriuretic factor (ANF) has been identified in fetal and newborn mammals, and considerable data regarding fetal ANF metabolism are available. However, there is limited information concerning ANF receptors or receptor ontogenesis in developing mammals. We measured ANF receptor binding capacity, affinity, and ANF-induced cyclic GMP (cGMP) generation in isolated renal glomeruli from fetal (29 d gestation, term = 31 d), newborn (3 d), juvenile (28 d), and adult rabbits. The (mean +/- SEM) glomerular receptor binding capacity values for ANF in fetal and newborn animals (10 +/- 1 and 12 +/- 3 fmol/mg protein) were similar and significantly lower than the values for juvenile and adult animals (30 +/- 8 and 74 +/- 15 fmol/mg protein, respectively). In contrast, there were no significant differences in ANF receptor affinity values or dose-dependent increases in ANF-stimulated cGMP generation among the age groups studied. In competition studies, we observed effective displacement of 125I-ANF by C-ANF4-23, a ring-deleted ANF analogue, in adult, juvenile, and newborn glomeruli; however, C-ANF displaced only about 50% of the 125I-ANF in fetal tissue. The addition of C-ANF did not elicit cGMP generation, nor did C-ANF affect ANF-induced cGMP generation in fetal, newborn, or adult glomeruli. These results indicate that 1) the ANF receptor-guanylate cyclase system is intact in 29-d fetal rabbit glomeruli, and 2) the ANF-induced cGMP formation is similar in fetal and adult animals, whereas receptor binding capacity is relatively higher in adult glomeruli. These results suggest a higher proportion of nonguanylate cyclase-coupled ANF receptors in the mature rabbit.

Age Factors↗

Development of a circadian variation of plasma oxytocin concentration in the late gestation rhesus monkey.

The 24-h pattern of oxytocin (OT) concentrations in maternal plasma was investigated serially from 112-168 days gestation in four chair-restrained pregnant rhesus monkeys. No change in the mean daily plasma OT concentration was observed with advancing gestational age; there was a change in the pattern of plasma OT secretion throughout the period, however. About 21 days from delivery (150.8 +/- 1.8 days gestational age), plasma OT levels showed occasional fluctuations, distributed throughout the day. About 8 days from delivery (163.2 +/- 2.4 days gestational age), a clear circadian pattern of OT was detected, with an acrophase at 2200 h. These results suggest that there is a relationship between the pattern of OT secretion and advancing pregnancy. This may account partially for the increase in uterine activity known to occur in term rhesus monkeys.

Animals↗

Effect of a ring-deleted atrial natriuretic factor analogue on ovine fetal renal and cardiovascular function.

The proposed actions of atrial natriuretic factor (ANF) are mediated through specific plasma membrane (R1) receptors coupled to guanylate cyclase. A second receptor, R2, has been characterized by its ability to bind to an acyclic, truncated ANF analog (C-ANF4-23). The ANF-R2 receptor has not been identified in the fetus. Our study was conducted to determine the effects of C-ANF on fetal renal and cardiovascular function and plasma ANF clearance rates. Chronically catheterized ovine fetuses (n = 6) at 111 to 117 d gestation (term 145 d) received a C-ANF infusion (1 microgram/min/kg) for 30 min followed by a combined infusion of C-ANF and ANF (C-ANF, 1 microgram/min/kg; ANF, 100 ng/min/kg) for an additional 30 min. C-ANF infusion significantly increased (mean +/- SEM) plasma ANF concentration (437 +/- 45 to 1067 +/- 297 pg/mL), urinary flow rate (0.26 +/- 0.04 to 0.38 +/- 0.07 mL/min/kg), sodium excretion (12.9 +/- 3.5 to 21.7 +/- 6.1 mumol/min/kg), and osmolar clearance (0.14 +/- 0.02 to 0.21 +/- 0.04 mL/min/kg) (p less than 0.05). The combined C-ANF/ANF infusion further increased plasma ANF concentration to 2394 +/- 532 pg/mL and resulted in significant increases in urinary flow rate, sodium excretion, osmolar clearance, GFR, and free water clearance compared with C-ANF infusion alone (p less than 0.05). These renal responses, however, were not significantly different from the responses to ANF infusion alone (100 ng/min/kg).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Ovine fetal lung fluid response to atrial natriuretic factor.

The fetal lung is an important site of fluid production and is postulated to serve a regulatory role in fetal fluid balance. To assess the role of atrial natriuretic factor on fetal lung liquid production, we studied the effect of intravenous atrial natriuretic factor infusion on tracheal fluid production in fetal sheep with chronic vascular and tracheal catheters. Ovine fetuses (mean gestation = 130 days +/- 1 day) received successive 40-minute intravenous infusions of increasing doses of synthetic fragment 1-28 atrial natriuretic factor (5, 25, and 100 ng/min.kg-1). In response to the 25 ng/min.kg-1 infusion, fetal tracheal fluid production decreased from 1.2 +/- 0.3 ml/10 min to 0.6 +/- 0.2 ml/10 min (p less than 0.05), and remained suppressed during the 100 ng/min.kg-1 infusion (0.5 +/- 0.2 ml/10 min). There was a significant inverse correlation between tracheal fluid production and fetal plasma atrial natriuretic factor levels (r = -0.61, p less than 0.001). Basal tracheal fluid sodium and potassium concentrations (147 +/- 1 mEq/L and 5 +/- 1 mEq/L) and osmolality (291 +/- 3 mOsm) did not change during the atrial natriuretic factor infusion periods. The observation that atrial natriuretic factor acts to decrease fetal lung fluid production suggests that atrial natriuretic factor may be important in the fetal adaptive response to extrauterine life.

Animals↗

Developmental changes in adrenergic regulation of fetal arginine vasopressin secretion.

Fetal adaptation to the extrauterine environment is associated with profound alterations in pulmonary, renal, and cardiovascular functions. Coincident with these changes are a variety of endocrine responses including concomitant increases in plasma catecholamine and arginine vasopressin (AVP) levels. In view of the demonstrated interaction between the sympathoadrenal system and the neurohypophysis in adult mammals, we questioned whether increases in plasma catecholamine levels in the fetus affect fetal plasma AVP levels and whether catecholamine-AVP interactions change developmentally. Chronically catheterized fetal lambs at either 131 +/- 1 (preterm) or 142 +/- 1 days (term) received graded infusions of either epinephrine (E) or norepinephrine (NE) at rates of 0.04, 0.2, 0.75, 1.5, and 3.0 micrograms.min-1.kg-1 during successive 40-min infusion periods. Plasma AVP concentrations in term animals significantly increased (1.4 +/- 0.1 to 5.1 +/- 1.6 pg AVP/ml) in response to E infusion of 0.75 microgram.min-1.kg-1 or greater. The log-linear dose response curves for each animal were used to determine the minimum plasma E concentration required to stimulate AVP secretion or "threshold." The mean plasma E threshold for AVP secretion was significantly lower in term animals (1.4 +/- 0.4 ng/ml) than in preterm animals (6.6 +/- 0.9 ng/ml). Plasma E levels were positively correlated with plasma AVP levels (r = 0.90) above the threshold value in both groups. Changes in plasma AVP levels were observed in preterm or term animals in response to NE only at the highest infusion rate studied.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗