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J C Rose

Publications and source records attributed to J C Rose.

At least 37 records · Page 2Linked to original sources

Effects of chronic infusion of angiotensin II on renin and blood pressure in the late-gestation fetal sheep.

OBJECTIVES: Our purpose was to determine whether chronic physiologic elevations in plasma angiotensin II levels decrease plasma renin concentration, alter the relationship between active renin and prorenin in fetal plasma and kidney, and depress the expression of renal renin messenger ribonucleic acid in the fetus. STUDY DESIGN: Seventeen chronically catheterized ovine fetuses at approximately 130 days' gestation were infused with either angiotensin II (48.9 +/- 3.5 ng/kg x min) or vehicle (5% glucose in water) for 72 hours. RESULTS: Mean arterial pressure increased significantly by 1 hour of infusion and continued to increase throughout the infusion. The plasma active renin concentration was significantly decreased by 1 hour of the infusion, whereas the prorenin concentration was not decreased until 24 hours of the infusion. After 72 hours of angiotensin II infusion the renal tissue prorenin content decreased (21.5 +/- 5.1 ng/mg x hr angiotensin I vs 46.4 +/- 6.6 ng/mg - hr angiotensin I in the control animals, p = 0.01), whereas the active renin concentration did not change (26.6 +/- 5.1 ng/mg x hr angiotensin I vs 35.1 +/- 5.4 ng/mg x hr angiotensin I in the control animals, p = 0.28). The renal renin messenger ribonucleic acid expression tended to be lower in the angiotensin II-treated fetuses (p = 0.10). CONCLUSION: Chronic physiologic increases in fetal plasma angiotensin II suppress the secretion of active and prorenin and alter the relationship between processing and secretion of renin in the fetal kidney.

Angiotensin II↗

MAP kinase translocates into the nucleus of the presynaptic cell and is required for long-term facilitation in Aplysia.

Long-term facilitation of the sensory to motor synapse in Aplysia requires gene expression. While some transcription factors involved in long-term facilitation are phosphorylated by PKA, others lack PKA sites but contain MAP Kinase (MAPK) phosphorylation sites. We now show that MAPK translocates into the nucleus of the presynaptic but not the postsynaptic cell during 5-HT-induced long-term facilitation. The presynaptic nuclear translocation of MAPK is also triggered by elevations in intracellular cAMP. Injection of anti-MAPK antibodies or of MAPK Kinase inhibitors into the presynaptic cell blocks long-term facilitation, without affecting basal synaptic transmission or short-term facilitation. Thus, MAPK appears to be specifically recruited and necessary for the long-term form of facilitation. This mechanism for long-term plasticity may be quite general: cAMP also activated MAPK in mouse hippocampal neurons, suggesting that MAPK may play a role in hippocampal long-term potentiation.

Amino Acid Sequence↗

Developmental changes in ovine corticotrophs in vitro.

We recently reported that fetal sheep corticotrophs (ACTH-producing cells) at 108 +/- 5 d (days) of gestation are relatively more responsive to CRH than to AVP, whereas those at 139 +/- 0 d (term = 145 d) and in the adult are more responsive to AVP. To further characterize these developmental changes, we used immunocytochemical, RIA, and cell immunoblotting techniques to examine populations of corticotrophs and individual cells. Immunocytochemical studies revealed that corticotroph frequency decreased from 22 +/- 1% of all pituitary cells at 100 d of gestation to 14 +/- 1% at 135 d and 9 +/- 0% in the adult. RIA measurements of ACTH secretion by cell populations showed that the response of corticotrophs to CRH diminished, whereas that to AVP increased during gestation and into adulthood. Cell blot analysis of individual corticotrophs identified two types of secretory responses (increases in the number of secreting cells and average amount of ACTH released per cell) to CRH or AVP that changed during fetal development. At 100 d of gestation, CRH increased the proportion of secreting cells from 65 +/- 3% (no test agent) to approximately 90%; AVP exerted a negligible effect on the relative abundance of secreting cells. At 120 d of gestation, both secretagogues, alone or in combination, increased the proportion of secreting corticotrophs from 49 +/- 6% to about 85%. At 135 d of gestation and in the adult, AVP, alone or in combination with CRH, increased secreting corticotrophs from about 53 +/- 6% to about 80%. CRH alone exerted a nominal effect on the proportion of secreting cells. Additional analyses showed that, at 100 or 120 d of gestation, the average amount of ACTH secreted by individual corticotrophs did not change in response to CRH or AVP. However, near term and into adulthood, the average quantity of ACTH released from individual cells increased in response to these agents. Our findings suggest that maturational changes in fetal corticotrophs dictate whether their secretory response to CRH or AVP results from an increase in the proportion of cells secreting ACTH and (or) an increase in the average amount of hormone secreted by individual cells.

Adrenocorticotropic Hormone↗

Recombinant BDNF rescues deficits in basal synaptic transmission and hippocampal LTP in BDNF knockout mice.

Brain-derived neurotrophic factor (BDNF) is expressed at high levels in hippocampal neurons, and its expression is modulated by neural activity. Knockout mice can be used to study the roles of molecules like BDNF in synaptic plasticity with more molecular specificity than is possible using pharmacological approaches. Because in conventional knockouts the disrupted gene product is absent in all tissues throughout the life of the animal, developmental effects may complicate the interpretation of deficits in the adult. Rescue experiments can help to distinguish between developmental and acute requirements for the missing gene product. We here demonstrate that treatment of hippocampal slices from BDNF knockout mice with recombinant BDNF completely reverses deficits in long-term potentiation and significantly improves deficits in basal synaptic transmission at the Schaffer collateral-CA1 synapse. Thus, BDNF has an acute role in hippocampal synaptic function.

Animals↗

Immunocytochemical localization of renin in the developing ovine fetus.

The ontogeny of renin distribution in the outer cortical segments was studied by immunocytochemistry in two groups of ovine fetal kidneys; one set of fetal kidneys was obtained at 104-106 days (0.73 gestation, n = 6), and the other at 138-140 days (0.96 gestation, n = 6). Similar studies were performed in kidneys obtained from a lamb (2 weeks old) and from non-pregnant adult sheep, n = 4. Using rabbit anti-mouse renin antiserum that was proven to cross react with sheep renin and 0.033% 3',3'-diamino benzidine tetrachloride as a chromogen, immunoreactivity was found to be localized in the classical juxtaglomerular apparatus and the afferent arteriole in the immature fetuses, newborn lamb and adult sheep. In the mature fetuses a more extensive distribution was noted. Immunoreactivity was found in the afferent arteriole and the juxtaglomerular apparatus as well as other segments of the arterial vascular tree. These findings suggest that renal renin distribution in the lamb fetus is developmentally regulated. The results also correlate well with reports about renal cortical renin content and plasma renin activity at the stages studied. These observations further support the hypothesis that increased renal renin expression occurs in the fetus just prior to birth.

Animals↗

ACTH-like bioactivity and immunoactivity in fetal lamb pituitaries at 0.65 and 0.95 gestation.

We wished to determine if the concentration of bioactive ACTH-like activity increased during development and if there was heterogeneity in ovine fetal anterior pituitary ACTH activity as measured by bioassay and radioimmunoassay (RIA). We obtained anterior pituitaries from eight sheep fetuses (four at 0.65 and four at 0.95 gestation; term 145 +/- 5 days) and extracted and homogenized them in ice-cold 5N acetic acid, 0.3% phenylmethanesulfonyl fluoride (PMSF) and 0.2% BSA. Fractionation of each pituitary extract was performed by size-exclusion chromatography using Sepadex G-50. The ACTH-like immunoactivity (ALI) profile for each pituitary showed two well-defined peaks. One eluted with human ACTH1-39 and the other eluted with the high molecular weight fraction in the void volume. Four fractions from the first peak representing the high molecular weight forms of ACTH activity and four fractions from the second peak representing the low molecular weight forms of ACTH activity were pooled separately. These two pools were subjected to reverse-phase chromatography (RPC) on a C-8 column using a linear gradient of 70% acetonitrile in 0.8% trifluoroacetic acid over a 60 min period. Based upon the RIA, the high molecular weight forms of ACTH from the G-50 column were resolved into three main fractions, one eluting similar to the standard ACTH1-39 and the remaining two eluting after that. The low molecular weight forms of ACTH from the G-50 column were resolved into three peaks, before, with, and after the standard. We used collagenase-dispersed rat adrenal cells to test the ACTH-like bioactivity (ALB) of the crude extracts and of the different fractions obtained from the RPC of the high and low molecular weight material. The concentration of ACTH-like bioactivity in the crude extracts was similar at the two stages of gestation. However, there was a trend for the low molecular weight peak to have more peptide eluting with human ACTH1-39 and higher ratios of ALB/ALI than did the high molecular weight peak. These results suggest that multiple ACTH molecular forms with different ALB/ALI ratios are present in the ovine fetal pituitary and that there is no selective increase in ACTH1-39 concentration in the fetal pituitary in late gestation.

Adrenocorticotropic Hormone↗

Adrenocorticotropin secretion by fetal sheep anterior and intermediate lobe pituitary cells in vitro: effects of gestation and adrenalectomy.

Immunoreactive (ir) ACTH is present in the fetal sheep intermediate lobe (IL) as well as the anterior pituitary (AP). It is not clear whether fetal IL cells can secrete irACTH and if gestational age and glucocorticoids influence the secretion of ACTH from these tissues in a similar fashion. Therefore, we examined the control of irACTH secretion by IL cells, whether the responsiveness of AP and IL cells to arginine vasopressin (AVP) and CRH changes during gestation, and whether withdrawal of adrenal steroids by adrenalectomy influences AP and IL responses. Cultured pituitary cells were studied from intact fetuses at an immature (n = 5; 108 +/- 5 days) and a mature (n = 8; 139 +/- 0 days) stage, from mature fetuses 3 weeks after bilateral adrenalectomy (n = 6), and from neonatal lambs within 16 h of birth (n = 6). Secretion of irACTH was determined by RIA of incubation medium obtained during 3-h exposure of cells to vehicle, AVP, CRH, or both. In all cases, IL cells secreted measurable irACTH. The IL cells of immature fetuses responded to CRH (133 +/- 8% increase over basal secretion), AVP (52 +/- 6%), and CRH plus AVP (244 +/- 8%). In contrast, IL cells from mature fetuses responded only to CRH (160 +/- 20%) or CRH plus AVP (259 +/- 44%), as did cells from mature adrenalectomized fetuses (CRH, 356 +/- 70%; CRH plus AVP, 627 +/- 100%). Secretion from neonatal IL cells was not significantly increased above basal rates by CRH and/or AVP. The AP cells from immature fetuses responded significantly to CRH (406 +/- 16%), AVP (114 +/- 8%), and CRH plus AVP (559 +/- 38%), whereas cells from mature fetuses responded only to AVP (249 +/- 40%) or to CRH plus AVP (570 +/- 146%). In AP cells from mature adrenalectomized fetuses, the response pattern resembled that of immature intact fetal sheep (CRH, 429 +/- 76%; AVP, 146 +/- 15%; CRH plus AVP, 541 +/- 94%). Neonatal AP cells responded to CRH (196 +/- 25%), AVP (442 +/- 71%), and CRH plus AVP (646 +/- 93%). Further characterization of IL cells (n = 6 fetal and 2 neonatal) indicated that they were inhibited by dopamine (basal ACTH secretion decreased by 25 +/- 4%; ACTH secretory response to CRH decreased by 32 +/- 10%). These results show that fetal neurointermediate lobe cells secrete irACTH under basal and stimulated conditions. Moreover, the pattern of response of AP and neurointermediate lobe cells to secretagogues is influenced by gestational age and, possibly, cortisol.

Adrenalectomy↗

Fetal oxytocin and its extended forms at term with and without labor.

OBJECTIVE: We examined the concentrations of oxytocin and extended forms of oxytocin in umbilical plasma with and without labor. STUDY DESIGN: Umbilical venous and arterial blood were sampled in 27 term fetuses delivered vaginally and 13 delivered abdominally before labor. Extended forms and oxytocin were measured by radioimmunoassay and compared by analysis of variance or t test. RESULTS: Concentrations of extended forms were higher than oxytocin concentrations (24.7 +/- 3.1 vs 6.1 +/- 1.2 pg/ml, p < 0.01). Extended forms were higher in umbilical venous than in arterial plasma (29.6 +/- 5.0 vs 19.8 +/- 3.1 pg/ml, p < 0.05); oxytocin concentrations were not significantly different (4.7 +/- 1.6 vs 7.8 +/- 1.8 pg/ml). Concentrations of extended forms were markedly lower with than without labor (17.1 +/- 3.0 vs 37.1 +/- 5.7 pg/ml, p = 0.01). Ratios of extended forms over oxytocin decreased with labor. CONCLUSION: In umbilical plasma extended forms of oxytocin are more abundant than oxytocin. Extended forms originate in the uterus and decrease markedly with labor.

Female↗

Hemodynamic and hormonal responses to atrial distension in the ovine fetus.

OBJECTIVE: Our purpose was to evaluate the hemodynamic and endocrine responses to elevations of atrial pressure in fetal sheep. STUDY DESIGN: By use of a randomized block design, 10 ovine fetuses underwent pulmonary artery constriction proximal to the ductus arteriosus with and without propranolol pretreatment. RESULTS: Atrial pressure doubled (p < 0.05), whereas mean arterial pressure remained unchanged (p > 0.05), in response to pulmonary artery constriction in both groups. Atrial natriuretic peptide tripled (p < 0.01), arginine vasopressin tripled (p < 0.05), and plasma renin activity doubled (p < 0.05) in both the constriction and constriction plus propranolol groups. No changes in fetal hematocrit values were demonstrated in any group. CONCLUSIONS: The fetal sheep responds to increased atrial pressure with not only increased levels of atrial natriuretic peptide but also with arginine vasopressin and plasma renin activity over time. These changes occur in spite of increases in both atrial pressure and atrial natriuretic peptide. We speculate that the fetal heart may participate in redistribution of cardiac output by releasing atrial natriuretic peptide and augmenting secretion of arginine vasopressin and plasma renin activity.

Animals↗

Cortisol up-regulates corticotropin releasing factor gene expression in the fetal ovine brainstem at 0.70 gestation.

Glucocorticoids are important for the development of the central nervous system. In the ovine fetus, increased levels of plasma cortisol at term provide a stimulus to initiate parturition. CRF is central to this event in that it is one of the main modulators of the hypothalamic-pituitary-adrenal (HPA) axis. The purpose of the present study was to determine the effect of physiological increases in fetal plasma cortisol levels on corticotropin-releasing factor (CRF) gene expression in the developing ovine brain. Fetal plasma cortisol levels were chronically elevated at 0.70 gestation (100 days) to physiological levels found at 0.90 gestation (130 days; term 145 +/- 2 days) when glucocorticoid-induced maturational changes are known to occur in the HPA axis. The 3' end of the ovine CRF gene encodes 4 putative polyadenylation (poly(A)) signals that may post-transcriptionally regulate gene expression through stability, translation and localization of the mRNA in a temporal and spatial manner. To determine whether CRF mRNA levels or poly(A) site usage are differentially regulated by cortisol in a region-specific manner, we used an RNase protection assay with an antisense CRF RNA probe from the 3' coding and untranslated regions of the gene to quantify changes in mRNA levels in the hypothalamus (Hypo), hippocampal-amygdala complex (H and A), frontal cerebral cortex (FCC) and brainstem. Our novel finding was a 3.5-fold increase in CRF mRNA levels in the medulla oblongata of fetuses from the cortisol group compared to those from the saline group (P = 0.001). CRF mRNA levels in the Hypo, H and A and FCC did not change significantly in fetuses from the cortisol group.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance↗

Anterior pituitary cells: getting to know their neighbors.

We review in this article recent findings on the effects of cell proximity (nearness to each other) on anterior pituitary cell function in vitro. Important cellular processes, including protein synthesis, basal hormone release, response to hypothalamic regulatory factors and signal transduction can change as a function of the distance between adjacent cells. These findings, together with a growing body of evidence on intrapituitary intercellular interactions, form a basis for proposing a model of anterior pituitary cell regulation. In this scheme extrapituitary, intracellular and intercellular signaling pathways all contribute and interact to control secretory processes in cells.

Animals↗

Regulation of bioactive and immunoreactive ACTH secretion by CRF and AVP in sheep fetuses.

The purpose of this study was to determine the effects of corticotropin-releasing factor (CRF) or arginine vasopressin (AVP) on the secretion of bioactive adrenocorticotropic hormone (bACTH) and immunoreactive ACTH (iACTH), the latter being measured by radioimmunoassay and separate two-site immunoradiometric assays for ACTH-(1-39) and ACTH precursors. Experiments were performed on chronically catheterized fetal sheep at 0.70 (n = 9) and 0.90 (n = 8) gestation. Each fetus received a 15-min infusion of CRF, AVP, or saline on 3 consecutive days. Blood was obtained before and 15 and 60 min after the infusion began. CRF significantly increased iACTH at 15 (younger group) and 60 min (both groups). CRF significantly increased bACTH and the bACTH-to-iACTH ratio (bACTH/iACTH) in both groups at 15 and 60 min. AVP significantly increased iACTH, bACTH, and bACTH/iACTH in both groups at 15 min. In two subgroups (n = 4/subgroup), CRF significantly increased ACTH-(1-39) and ACTH precursors at 15 and 60 min. CRF increased the ratio of ACTH-(1-39) to ACTH precursors [ACTH-(1-39)/ACTH precursors] at 15 (younger group) and 60 min (both groups). AVP increased ACTH-(1-39), ACTH precursors, and ACTH-(1-39)/ACTH precursors in both groups at 15 min. These findings show that both CRF and AVP can stimulate the secretion of bACTH, ACTH-(1-39), and ACTH precursors at 0.70 and 0.90 gestation. The proportional increments in bACTH/iACTH and ACTH-(1-39)/ACTH precursors suggest that CRF and AVP evoke selective increases in bACTH and ACTH-(1-39).

Adrenocorticotropic Hormone↗

Effect of chronic infusion of cortisol on renin gene expression and renin response to hemorrhage in fetal lambs.

In the ovine fetus, plasma renin levels increase close to term, and renin responses to various stimuli are enhanced when compared with responses earlier in gestation. These changes are accompanied by increases in renal renin gene expression and renin content, and they occur in conjunction with elevations in fetal plasma cortisol. Thus, the purpose of this study was to test the hypothesis that a chronic, physiologic elevation in fetal plasma cortisol in early gestation would increase activity in the renin-angiotensin system prematurely. We studied fetuses (control, n = 8; cortisol infused, n = 11) at 94 +/- 2 d of gestation. Fetal vessels were catheterized, and cortisol or saline solution was infused for 6 d. At the end of infusion, fetuses were hemorrhaged approximately 30% of estimated blood volume. Blood samples were collected to measure plasma renin concentration. Then the animals were killed, and kidneys were removed to measure renin mRNA and renin content. Plasma cortisol concentrations in the control and cortisol-treated animals were 7.2 +/- 0.8 and 57.7 +/- 8.6 nmol/L (p < 0.01), respectively. Basal plasma renin concentrations were similar in the two groups 3.2 +/- 0.4 versus 4.4 +/- 1.8 ng of angiotensin I/mL/h, and there was a significant increase after hemorrhage in the cortisol-treated group only. Renal renin content and mRNA levels were similar in the two groups. These data indicate that chronic increases in cortisol in fetal lambs at 0.65 gestation significantly enhance the renin response to hemorrhage but do not alter renal renin gene expression.

Animals↗

The effects of chronically elevated plasma cortisol on the bioactive and immunoreactive corticotropin secretory responses to hemorrhage in the fetal sheep at 0.70 gestation.

OBJECTIVE: Our purpose was to test the hypothesis that a long-term physiologic elevation of plasma cortisol would not alter the basal plasma concentrations of immunoreactive and bioactive corticotropin, yet it would evoke an increase in the ratio of bioactive to immunoreactive corticotropin secreted during stress. We define immunoreactive corticotropin (i.e., immunoreactive corticotropin-like activity) as that material obtained from plasma that displaces the binding of tracer quantities of iodine 125-labeled corticotropin from antisera directed toward the 6-24 portion of the corticotropin (1-39) molecule, whereas bioactive corticotropin (i.e., bioactive corticotropin-like activity) is defined as that material obtained from plasma that stimulates the secretion of corticosterone from dispersed rat adrenal cells in comparison to known concentrations of synthetic corticotropin (1-39). STUDY DESIGN: We studied the plasma immunoreactive and bioactive corticotropin response to hemorrhage in eight vehicle- and 10 cortisol-treated fetal sheep at 101 +/- 1 days of gestation. At 94 +/- 1 days of gestation each fetus began receiving a 6-day continuous infusion of either vehicle or cortisol. During the last 10 minutes of the infusion about 30% of the estimated blood volume was withdrawn from the fetuses. RESULTS: Basal plasma cortisol was significantly higher in the cortisol group (20.6 +/- 2.3 ng/ml vs 2.7 +/- 0.3 ng/ml). Basal plasma immunoreactive ACTH and bioactive corticotropin were not significantly different between groups. In both groups the plasma immunoreactive corticotropin significantly increased during hemorrhage, although the increase in the cortisol group (32 +/- 8 to 40 +/- 8 pg/ml) was significantly less than that in the vehicle group (45 +/- 14 to 86 +/- 28 pg/ml). In contrast, plasma bioactive corticotropin increased significantly during hemorrhage in the vehicle group (10 +/- 1 to 16 +/- 3 pg/ml) alone. CONCLUSIONS: In the early-gestation fetal sheep a chronic elevation of plasma cortisol does not significantly lower basal plasma immunoreactive and bioactive corticotropin. Nevertheless, it (1) attenuates the immunoreactive corticotropin response and (2) abolishes the bioactive corticotropin response to hemorrhage. It is possible that some of the negative feedback effects of plasma cortisol on corticotropin release occur at the posttranslational level.

Adrenocorticotropic Hormone↗

Corticotropin releasing factor mRNA and peptide levels are differentially regulated in the developing ovine brain.

The regulation of CRF mRNA and protein in the developing ovine brain has been studied to assess the hypothesis that CRF is differentially regulated in the hypothalamus (Hypo), hippocampal-amygdala complex (H & A), frontal cerebral cortex (FCC) and brainstem (BS). We used a quantitative RNase protection assay and radioimmunoassay to determine mRNA and peptide concentrations, respectively, from the last third of gestation until term (i.e., from 95 to 142 days gestation (dg); term approximately 145 days). The major findings from this study are: (1) Hypothalamic CRF mRNA was increased by 2-fold in 140-142 dg fetuses compared to 128-138 and 95-123 dg fetuses; P = 0.016. (2) In the hypothalamus of 140-142 dg fetuses, there was a 2.5-fold increase in CRF mRNA derived from polyadenylation at poly(A) sites 2, 3 or 4; P = 0.005. (3) In 128-138 dg fetuses, CRF mRNA in the frontal cortex was 2-fold higher than in the other brain regions during this time period; P = 0.008. (4) CRF peptide concentrations in the Hypo were 2.5-fold higher in 140-142 dg fetuses compared to 95-106 and 128-138 dg fetuses; P = 0.007. (5) CRF peptide concentrations in the frontal cortex were 5.5-fold higher in 140-142 dg fetuses compared to fetuses at 95-106 dg; P = 0.004. (6) CRF peptide concentrations in the H & A were 5-fold higher in 140-142 dg fetuses compared to 95-106 dg fetuses; P = 0.029. The results from the present study demonstrate for the first time that CRF mRNA and peptide are differentially regulated in a region-specific manner during development.

Amygdala↗

Effect of atrial natriuretic factor on release of arginine vasopressin and renin in fetal lambs.

The purpose of this study was to determine the effect of increased plasma atrial natriuretic factor (ANF) concentrations on the arginine vasopressin (AVP) and renin response to arterial hypotension in fetal sheep. Lamb fetuses at 123-133 days of gestation were infused intravascularly with 0.9% NaCl and ANF at 25 ng.kg-1.min-1 (low dose) or NaCl and ANF at 250 ng.kg-1.min-1 (high dose) for 115 min. After 45 min, sodium nitroprusside was infused for 10 min to yield a 25% decrease in mean arterial blood pressure. ANF infusions resulted in plasma concentrations of 150-200 and 500-800 pg/ml in the low-dose and high-dose groups, respectively. In both the low-dose and high-dose ANF groups, AVP and renin concentrations increased in response to hypotension. In the low-dose ANF group, there was no difference in this response between ANF and control lambs. Compared with controls, a high dose of ANF resulted in an elevated basal level of AVP (1.6 +/- 0.04 vs. 12.3 +/- 6.7 pg/ml) and an 11-fold increase of AVP at 10 min of hypotension (12.2 +/- 5.6 vs. 134.9 +/- 36.1 pg/ml). Basal and stimulated renin concentrations were unchanged by the high-dose ANF infusion. This study demonstrates that in the fetal lamb, ANF concentrations of 500-800 pg/ml augment the basal and stimulated release of AVP but do not affect the renin response.

Animals↗