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Biomedical subjects

R I Stark

Publications and source records attributed to R I Stark.

At least 19 recordsLinked to original sources

Long-term acid-base measurements in the fetal and maternal baboon.

OBJECTIVE: The purpose of the study was to examine the relationship between maternal and fetal acid-base indexes in the baboon. STUDY DESIGN: Eight animals maintained in a tether system were studied during the third trimester. Results were analyzed using analysis of variance. RESULTS: After recovery from surgery, pH in carotid artery blood of the fetus was 7.40 +/- 0.027 (mean +/- SD), PO2, 27.5 +/- 3.45 mm Hg; PCO2, 34.0 +/- 2.37 mm Hg; base deficit, 3.0 +/- 2.15 mEq/L; Hot, 33.4% +/- 2.69% and HbO2, 61.3% +/- 8.65%. The corresponding values in the mother were 7.48 +/- 0.035, 100.7 +/- 9.44 mm Hg, 26.4 +/- 2.95 mm Hg, 3.6 +/- 1.71 mEq/L, 32.6% +/- 4.0% and 97.9% +/- 1.28%, respectively. All indexes remained essentially the same until the onset of active labor, at which time the fetus became slightly acidotic and hypoxemic (pH less than 7.35, HbO2 less than 50%). CONCLUSION: The baboon fetus has slightly higher pH2 and lower PaCO2 than the human fetus and PaO2, base deficit, and maternal-fetal gradients across the placenta in these two primate species are comparable.

Acid-Base Equilibrium

Plasma corticotropin-releasing factor concentrations in the baboon during pregnancy.

We have studied the secretion of placental CRF during pregnancy in the baboon, an animal model with many similarities to human pregnancy. Plasma CRF was measured in two groups of animals. In group 1, studies were performed in six anesthetized animals beginning 8 days postconception. In group 2, studies were performed in five unanesthetized chronically catheterized maternal and five fetal animals in the latter third of pregnancy. In the first study beginning early in pregnancy, CRF was undetectable in all animals on days 8 and 15 postconception. Plasma CRF became detectable in two animals on day 24 and in the remaining four on day 30. Plasma CRF rose significantly to a mean of 810 +/- 160 pg/ml at 37 days gestation (F = 4.20; P < 0.001). Mean maternal plasma CRF was 2452 +/- 1120 pg/ml on day 44 and remained elevated, with a great deal of variability between subjects, until the end of the study period (128 days of gestation). Samples in this group were obtained after ketamine sedation. The effect of ketamine on CRF was studied in three chronically catheterized animals. Samples were obtained before and 2, 4, 6, and 24 h after ketamine administration (40 mg, iv). The baseline CRF concentration was 1168 +/- 131 pg/ml and did not change significantly over the time period studied. In the second study in the chronically catheterized animals, maternal plasma CRF was 1990 +/- 680 pg/ml at 131-140 days gestation and remained elevated until near term at 170 days (term = 175-180 days). Within 24 h after birth, plasma CRF became undetectable (< 60 pg/ml). CRF was also measured in chronically catheterized fetal baboons. The mean CRF concentration was 614 +/- 224 pg/ml at 131-140 days and remained in this range until the end of the period studied (151-160 days gestation). To characterize the CRF immunoactivity in maternal baboon plasma, Sephadex chromatography was performed on an 8.4-ml plasma sample obtained at 160 days gestation. The majority of the CRF immunoactivity eluted in the same position as synthetic human CRF. We conclude that high levels of placental CRF are present in the systemic circulation of the maternal and fetal baboon during pregnancy. In contrast to human pregnancy, which is characterized by an exponential rise in maternal CRF concentrations in the final weeks before delivery, an exponential rise in maternal baboon CRF concentrations occurs early in pregnancy.

Animals

Corticotropin releasing hormone concentrations in umbilical cord blood of preterm fetuses.

Corticotrophin releasing hormone (CRH), dehydroepiandrosterone sulfate (DHEAS) and cortisol were measured in umbilical cord plasma obtained from 90 preterm and 98 term fetuses. Maternal plasma was obtained from 23 women who delivered preterm and from 23 women matched for gestational age who ultimately delivered term infants. Mean umbilical cord plasma CRH concentration was significantly higher in the preterm fetuses (n = 69, 538 +/- 63 pg/ml) compared to the term fetuses (n = 98, 280 +/- 22 pg/ml, P < 0.01). Mean DHEAS level in the preterm fetuses was 208 +/- 22 mg/dl (n = 56), cortisol level was 7 +/- 1 mg/dl (n = 58). Umbilical plasma CRH concentrations (808 +/- 170 pg/ml) were significantly higher at 24-27 weeks than at 28-31 or 31-34 weeks gestation. Cortisol levels (12 +/- 3 micrograms/dl) were highest at 24-27 weeks. Mode of delivery and the presence of labor did not affect fetal CRH levels. The highest fetal CRH levels were measured in the pregnancies complicated by hypertension as well as prematurity; however, fetal CRH levels remained higher in the preterm group compared to the term group when hypertensive pregnancies were excluded. Maternal plasma CRH levels were significantly higher in the group that delivered preterm compared to women who delivered at term matched for gestational age (1058 +/- 184 pg/ml compared to 456 +/- 71 pg/ml, P < 0.00).(ABSTRACT TRUNCATED AT 250 WORDS)

Corticotropin-Releasing Hormone

Characterization of electroencephalographic state in fetal baboons.

Long-term recordings of the electroencephalograms (EEGs) from the non-human fetal primate have been visually scored for state. Data were obtained from three fetuses using recently developed techniques for chronic instrumentation of the pregnant baboon. Seven days or more after surgery, nine chart records of 4-5 h in duration were analyzed. These records were made during an interval in gestation from 143 to 153 days (term = 175 to 185 days). Criteria for differentiation of EEG state were based on the presence (state 1) or absence (state 2) of trace alternant, which is the predominant characteristic of EEG activity during quiet sleep in human preterm and term infants. Two patterns of EEG activity were readily distinguished at both standard (30 mm/s) and compressed (30 mm/min) EEG chart speeds. On a minute-by-minute basis, there was an overall concurrence of 82.9% for EEG state when scored from compressed and standard EEG records. From the compressed records, state 1 was present on average 38.3% of the time, with a mean epoch duration of 15.1 min, while epochs of state 2 averaged 25.9 min. We conclude that at least two EEG states are present at this gestation in the fetal baboon. These two states can be reliably defined visually by scoring methods directly comparable to those used for EEG recognition of sleep states in the human newborn infant. To validate the conclusion that these fetal state assignments based on patterns of EEG activity correspond to sleep states, it will be necessary to determine if the oscillations of other physiological parameters are coherent with these patterns.

Animals

Adrenocorticotropin and cortisol responses to vasopressin during pregnancy.

CRH is secreted by the placenta into the maternal and fetal circulation during pregnancy in humans and non-human primates. ACTH and cortisol responses to exogenous CRH are blunted during pregnancy. In the present study we examined the pituitary-adrenal response to another corticotropin releasing factor, vasopressin. Studies were performed in chronically catheterized female baboons moving freely in their home cages; 13 studies were performed in 4 pregnant animals, and 8 studies were performed in 6 nonpregnant animals. Vasopressin was administered iv in 2 doses (0.3 and 3.0 U), and plasma samples were obtained for CRH, ACTH, and cortisol measurements. Results are expressed as the mean +/- SEM. Baseline plasma CRH was 240 +/- 20 pmol/L in the pregnant animals and unmeasurable (less than 20) in the nonpregnant animals. In the pregnant animals, ACTH concentrations rose from a baseline of 6.4 +/- 1.3 pmol/L to 10.1 +/- 0.4 after 0.3 U vasopressin and to 24.9 +/- 5.2 after 3.0 U vasopressin. In the nonpregnant animals, ACTH levels were 5.8 +/- 1.3 at baseline, 6.7 +/- 1.3 after the 0.3-U dose, and 14.6 +/- 2.4 after the 3.0-U dose. The peak ACTH response after each dose of vasopressin was higher in the pregnant animals than in the nonpregnant animals (P less than 0.05). The baseline cortisol level in the pregnant animals was 960 +/- 80 nmol/L and rose to 1370 +/- 110 and 1535 +/- 165 after the 2 doses of vasopressin, respectively. The baseline cortisol concentration in the nonpregnant animals was 910 +/- 86 nmol/L. The cortisol level was 990 +/- 75 after the 0.3-U vasopressin dose and 1380 +/- 140 after the 3.0-U dose. The peak cortisol response after the 0.3-U dose was significantly higher in the pregnant animals (P less than 0.02), while the peak cortisol responses after the 3.0-U dose were similar in the 2 groups of animals. In a single animal, vasopressin was administered sequentially at 4 gestational ages during pregnancy and then 2 times in the postpartum period. The ACTH response to vasopressin increased as pregnancy progressed and then decreased in the postpartum period. In summary, the ACTH and cortisol responses to 0.3 and 3.0 U vasopressin, iv, are enhanced during pregnancy in the baboon, although the responses to exogenous CRH are blunted during gestation. We conclude that the chronic placental CRH stimulation of the pituitary-adrenal axis during pregnancy leads to an enhanced response to vasopressin and a down-regulation of the response to exogenous CRH.

Adrenocorticotropic Hormone

Relationships between breathing activity and heart rate in fetal baboons.

Coordination between breathing and heart rate (HR) is known to occur in many species and is commonly called respiratory sinus arrhythmia (RSA). In this report, we provide evidence that a homologous phenomenon can be demonstrated in the fetuses of nonhuman primates. In chronically instrumented fetal baboons we found cyclical variations in HR that were coincident with fetal breathing movements. We found clear instances of fetal RSA in each of three baboon fetuses. The average change in HR with each fetal breath was approximately 2 beats/min. Fetal breaths were associated with an acceleration/deceleration cycle in HR, and the onset of accelerations was coincident with the onset of inspiratory activity. These studies indicate that in baboons integration of respiratory and cardiovascular control mechanisms develop in utero.

Animals

Response to corticotropin-releasing hormone during pregnancy in the baboon.

CRH is secreted by the placenta into human maternal and fetal plasma during gestation. In the present study plasma CRH was measured in the plasma of five pregnant baboons and their fetuses to ascertain whether the baboon is a suitable model for study of placental CRH. Studies were performed in chronically catheterized animals that exhibited no behavioral or endocrinological signs of stress; maternal animals moved freely about the cage. Mean maternal plasma CRH was 620 +/- 110 pmol/L (2970 pg/mL) at 146 +/- 11 days gestation, and mean fetal plasma CRH was 133 +/- 29 pmol/L (640 pg/mL) at delivery in four animals. Plasma CRH was undetectable (less than 8.5 pmol/L; less than 41 pg/mL) in nonpregnant animals and in animals 8 h after delivery. Maternal and fetal plasma CRH levels in the chronically catheterized baboon were very similar to human maternal and umbilical cord CRH levels at comparable gestational ages. In addition, the majority of maternal plasma CRH eluted in the same position as synthetic human CRH by gel filtration. CRH stimulation tests were performed in the chronically catheterized maternal baboon to investigate whether pituitary-adrenal function during pregnancy is similar to that observed after chronic CRH infusion; blunted ACTH and cortisol responses to acute injections of CRH are observed after chronic CRH infusion. The administration of 0.5 micrograms/kg ovine CRH (oCRH) failed to result in an ACTH or cortisol rise in four pregnant baboons. Baseline ACTH levels were 5.2 +/- 0.4 pmol/L (23.5 pg/mL), and baseline cortisol levels were 800 +/- 55 nmol/L (29.1 micrograms/dL); neither rose after CRH administration. In contrast, 0.5 micrograms/kg oCRH did result in significant ACTH and cortisol elevations in five nonpregnant baboons [ACTH: baseline, 5.9 +/- 1.4; peak, 16 +/- 4.8 pmol/L (P less than 0.05); cortisol: baseline, 430 +/- 55 nmol/L; peak, 960 +/- 200 nmol/L (P less than 0.05)]. In contrast, the administration of a larger dose of oCRH (5.0 micrograms/kg) led to stimulation of ACTH release in five pregnant baboons (baseline, 6.6 +/- 1.3 pmol/L; peak, 34.1 +/- 6.4; P less than 0.001). After this dose cortisol levels also rose in the pregnant animals (baseline = 1040 +/- 30 nmol/L; peak, 1620 +/- 130); however, this response was blunted compared to that in the nonpregnant animals (P less than 0.05). CRH (5.0 micrograms/kg) significantly stimulated both ACTH and cortisol in the nonpregnant animals.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenocorticotropic Hormone

Elevated maternal plasma corticotropin releasing hormone levels in twin gestation.

The placenta secretes large amounts of the hypothelamic hormone, corticotropin releasing hormone (CRH) into the maternal and fetal circulation during pregnancy. We and other investigators have shown that during normal pregnancy, maternal plasma CRH levels begin to rise in the second trimester with a dramatic increase in CRH levels during the 5-6 weeks preceding the onset of labor. This rise in maternal plasma CRH is parallel to the rise of placental CRH mRNA which has been reported to occur with gestational maturation. Mechanisms underlying the control of CRH secretion by the placenta have not yet been determined. In twin gestation, increased fetal-placental mass has been shown to be associated with elevated maternal levels of several placental hormones as compared to singleton gestation. We measured maternal plasma CRH in both twin and singleton gestation to investigate whether the larger size of the fetal-placental unit in twin gestation is associated with elevated maternal CRH levels. Seventy-six serial venous blood samples were collected from 20 women with twin gestation and 40 samples were obtained from 27 women with uncomplicated singleton gestation. Gestational age was determined by history of a known last menstrual period and first trimester clinical examination and confirmed by ultrasound examination. CRH was extracted from 1-2 ml plasma with SEP-Pak C18 cartridges and eluted with triethylamine-formic-acid propranolol. CRH was measured by radioimmunoassay (RIA) with human CRH standard and antiserum to human CRH raised in our laboratory. Mean CRH levels were calculated for four week intervals. In both singleton and twin gestation, the maternal plasma CRH levels increased with advancing gestational age. After 29 weeks of gestation, maternal plasma CRH levels in twin gestation were significantly higher than those in singleton gestation (p less than 0.01). At 37 to 40 weeks of gestation, mean maternal CRH was 1167 +/- 237 pg/ml in singleton gestation as compared to 6927 +/- 1725 pg/ml in twin gestation (p less than 0.05). In addition, the rapid rise in plasma CRH levels which occurs near term in singleton gestation, occurred earlier in twin gestation. This early rise in maternal CRH levels persisted when the data from twin pregnancies complicated by preterm labor were removed from the analysis.(ABSTRACT TRUNCATED AT 250 WORDS)

Corticotropin-Releasing Hormone

Asymmetrical perfusion fixation in a rodent model of perinatal hypoxia-ischemia may lead to artifactual morphologic asymmetries.

We have observed asymmetries in perfusion between the cerebral hemispheres in immature rats previously subjected to carotid ligation in a model of perinatal hypoxia-ischemia. These asymmetries are associated with marked differences in the number of neurons stained positive by immunoperoxidase protocols for cholinergic neurons utilizing a monoclonal antibody to choline acetyltransferase. These differences are likely to be spurious and due to the asymmetry of perfusion, because fewer stained neurons appear on the unligated side of control animals, in the absence of gliosis or neuron loss. We recommend that quantitative morphologic studies in this model be performed on immersion-fixed specimens.

Animals

The insulin-like growth factor II/mannose-6-phosphate receptor is present in fetal and maternal sheep serum.

A large mol wt binding protein for insulin-like growth factor II (IGF-II) has been described in fetal sheep serum. We now provide evidence to demonstrate that this binding protein is the IGF-II/mannose-6-phosphate (Man-6-P) receptor. Serum and plasma were gel filtered on Sephadex G-200, and the column fractions were assayed for binding of radiolabeled IGF-II. There was significant binding of [125I]IGF-II to the void volume fractions in addition to binding to the 150K and 40K carrier proteins. Binding to the void volume fractions was increased in fetal serum as well as maternal serum and dramatically decreased in the nonpregnant adult. Competitive binding studies with [125I]IGF-II and the void volume pools from fetal and maternal sheep serum demonstrated that IGF-I competed less potently than IGF-II, and insulin did not compete. There was no specific binding of [125I]IGF-I to the void volume pools of either fetal or maternal samples. Chemical cross-linking of [125I]IGF-II to aliquots of the void volume pools from fetal and maternal sheep serum samples and analysis with sodium dodecyl sulfate-polyacrylamide gel electrophoresis in the presence of dithiothreitol demonstrated a specific band at about 240K. Western blotting using a specific antiserum (no. 3637) against rat IGF-II/Man-6-P receptor was performed on aliquots of the Sephadex G-200 void volume pools of fetal, maternal, uterine vein, and adult sheep serum; a band of approximately 210K (without dithiothreitol) was seen. The IGF-II/Man-6-P receptor band was more intense in fetal serum than in either maternal or adult nonpregnant sheep serum. There was also increased binding of [125I]IGF-II in the 40K region of the Sephadex G-200 column fractions in the maternal serum compared to that in serum from nonpregnant adult ewes. When fetal, maternal, and adult nonpregnant sheep serum Sephadex G-200 pools were gel filtered on Sephadex G-50 in 1 mol/liter acetic acid to separate bound from free IGF, and IGF-II was measured by RRA, approximately 50% of the circulating IGF-II was associated with this IGF-II/Man-6-P receptor in fetal serum compared to 7% in maternal serum and 3% in adult nonpregnant serum. These data demonstrate that the IGF-II/Man-6-P receptor circulates in fetal sheep serum as well as maternal serum and appears to be a significant carrier for IGF-II in fetal sheep.

Animals

Circadian rhythm of vasopressin levels in cerebrospinal fluid of the fetus: effect of continuous light.

We have measured the concentrations of vasopressin in sequential samples of cerebrospinal fluid (CSF) obtained from fetal lambs between 108 and 130 days gestation. There was a clear and significant (F = 4.46; P less than 0.005) rhythm in vasopressin concentrations in the CSF of nine fetuses, characterized by a mean trough value of 19.4 +/- 6.4 pg/ml (mean +/- SD) at 0200 h and a peak value of 41.1 +/- 28.0 pg/ml at 1400 h. The mean cycle length was 23.2 +/- 1.7 h, with the majority (greater than 80%) of peak concentrations found during daylight hours. There were no concurrent fluctuations in concentrations of vasopressin in plasma or Na, K, Cl, or osmolality in CSF. To examine the relationship between environmental cycles of light and darkness and rhythm of vasopressin concentrations in CSF, pregnant animals were maintained in a constant light environment. In the five fetuses of ewes maintained under these conditions, the rhythm of vasopressin in CSF was markedly damped or not apparent (F = 1.50; P greater than 0.15). These results demonstrate that prominent circadian rhythm of vasopressin in the CSF of the fetus in utero. Despite the fact that the fetus is sequestered from direct influences of the environment, exposure of the pregnant ewe to constant light disrupts the fetal pacemaker that generates the circadian rhythm of vasopressin in CSF. Studies of this rhythm in the fetal lamb, therefore, provide a means to examine the mechanisms of entrainment and assess prenatal influences on circadian organization of the fetus.

Animals

Plasma vasopressin, renin and catecholamines during nitroprusside-induced hypotension in the newborn lamb.

The circulating levels of vasopressin, catecholamines and renin activity before, during and following a 10-20% fall in mean arterial blood pressure induced by sodium nitroprusside were measured in six chronically catheterized lambs during the first week of life. No significant changes in pHa, PaO2, PaCO2, Plasma sodium or osmolality were observed during or following the infusion of sodium nitroprusside at an average of 12 g.kg-1.min-1 (table I). However, the fall in blood pressure at the end of 60 minutes infusion, was associated with significant increases in the plasma levels of vasopressin from a control value of 2.4 +/- 0.57 to a maximum of 35.1 +/- 16.3 pg/ml (p = .002), renin activity from 6.7 +/- 1.56 to 27.4 +/- 11.44 ng.ml-1.hr-1 (p = .003), and catecholamines from 189.3 +/- 42.15 to 543.3 +/- 100.52 pg.ml-1 (p = .0001). The increase in vasopressin is lower, while that of PRA was higher and catecholamines similar to those found in the ewe. Plasma renin activity (PRA) and catecholamine levels remained elevated for at least 30 minutes following the end of the infusion while the mean blood pressure rose significantly above control levels and remained elevated for twenty minutes. We speculate that the persistent elevated levels of vasoactive mediators are responsible for the prolonged rebound hypertension following the cessation of the nitroprusside infusion and is the result of an immaturity of either a feedback process or metabolism of the vasoactive mediators or a combination of both mechanisms. This rebound hypertension could have adverse effects particularly in the very immature neonate.

Animals

Prevention of the normal expansion of maternal plasma volume: a model for chronic fetal hypoxaemia.

The effects of inadequate expansion of maternal blood volume on uterine blood flow, fetal oxygen levels and vasoactive mediators during the third trimester were studied in 8 pregnant sheep. Results were compared to those obtained during 15 normal pregnancies. Prevention of the normal (20 ml/day) increase in maternal plasma volume was achieved by repeated haemorrhage and injections of furosemide. These treatments also reduced the rise in blood flow to the pregnant uterine horn that normally occurs during this period of gestation: at term flow was only 508 +/- 61 (SEM) compared to 838 +/- 83 ml/min in the control group (P greater than 0.01). This reduction in uterine blood flow caused a gradual fall in fetal PaO2, and rise in fetal levels of plasma renin activity, vasopressin, catecholamines and angiotensin II without change in pHa or base excess. Four to 5 days prior to delivery, the difference from control in PaO2 was -3.9 +/- 0.5 mmHg, plasma renin activity +2.9 +/- 1.7 ng/ml.h, vasopressin +4.2 +/- 1.1 pg/ml, catecholamines +957 +/- 145.3 pg/ml and angiotensin II +243 +/- 108.2 pg/ml. Furthermore, the fall in PaO2 and rise in vasoactive mediators that normally occur 3-5 days prior to the onset of labour was either absent (PaO2 and plasma renin activity) or blunted. Thus when expansion of blood volume during pregnancy is inadequate, blood flow to the uterus is adversely affected. This leads to various degrees of chronic fetal hypoxaemia and stimulation of vasoactive mediator systems. However, the normal stimulation of vasoactive mediator systems that occurs 3-5 days before delivery appears to be blunted. Experimental prevention of blood volume expansion during pregnancy produces an excellent model for the study of chronic mild fetal hypoxaemia.

Angiotensin II

Chronic instrumentation and longterm investigation in the fetal and maternal baboon: tether system, conditioning procedures and surgical techniques.

A tether system, conditioning procedures and surgical techniques were designed to maintain chronic catheters and electrodes in the pregnant baboon and her fetus. The tether system was comprised of a lightweight metal backpack containing catheters and electrodes, couplers, pressure transducers and electrical cabling. The backpack was held snugly in place by shoulder and body straps. A flexible metal tether connected the pack to a ball bearing assembly mounted on the top of the animal's home cage. Attached to the assembly were two infusion pumps, fluid reservoir and slip ring electrical connector. The entire system rotated freely with the movements of the animal; thus, the instrumentation and connectors were secure while access was maintained for continuous physiologic recording and intravascular infusion or intermittent blood sampling with minimal physical restraint. Animals were conditioned to accept the system prior to pregnancy and animals who demonstrated tolerance were bred. An initial group of 10 pregnant animals were sham tethered during pregnancy at 102 +/- 7 days with term gestation estimated at 180 days. Surgical procedures were done at 136 +/- 4 days with placement of catheters in the maternal femoral artery and vein, fetal carotid artery jugular vein and trachea, amniotic fluid cavity, and electrodes for fetal electrocardiogram and electroencephalogram. The mean fetal survival time was 9.3 (range 0 to 29) days. The major complications which led to early delivery were placental abruption and rupture of amniotic membranes. With ultrasonic localization of the placenta and determination of fetal position before surgery, these complications may be avoided.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Biologically active corticotropin-releasing hormone in maternal and fetal plasma during pregnancy.

Corticotropin-releasing hormone was measured in the plasma of 110 pregnant women and in the umbilical cord plasma of 25 premature infants and 43 infants born at term. Mean maternal plasma corticotropin-releasing hormone was undetectable (less than 41 pg/ml) until mid-second trimester, rose to a mean of 204 +/- 24 pg/ml by 30 weeks' gestation, to 326 +/- 41 by 35 weeks, and then rose sharply near term, with a mean of 2930 pg/ml at 38 to 40 weeks' gestation. Sequential measurements in seven pregnant women confirmed that plasma corticotropin-releasing hormone rose in a predictable pattern, with a dramatic increase in the final weeks of pregnancy. There was little hour-to-hour variability in maternal plasma concentrations. Corticotropin-releasing hormone was also detectable in umbilical cord plasma; mean corticotropin-releasing hormone was 194 +/- 44 in the preterm infants and 150 +/- 19 in the term infants. The corticotropin-releasing hormone extracted from both the maternal and fetal circulation was biologically active in vitro and caused the dose-dependent release of adrenocorticotropic hormone and beta-endorphin from cultured rat anterior pituitary cells. A significant correlation was found between maternal plasma corticotropin-releasing hormone and cortisol levels the morning after betamethasone administration, a finding that supports a physiologic role for maternal plasma corticotropin-releasing hormone. We conclude that the placenta secretes large amounts of biologically active corticotropin-releasing hormone into both the maternal and fetal circulation during pregnancy. We demonstrate that this corticotropin-releasing hormone is secreted into the maternal plasma in a reproducible pattern during normal term pregnancy and suggest that sequential corticotropin-releasing hormone measurements may prove to be of clinical utility. In addition, placental corticotropin-releasing hormone may be an important modulator of the hypothalamic-pituitary-adrenal axis during pregnancy.

Adolescent

Plasma vasopressin, renin, and catecholamines during nitroprusside-induced maternal and fetal hypotension in sheep.

The release of vasopressin, renin, and catecholamines by the fetus during either maternal or fetal hypotension was examined in chronically catheterized fetal lambs. Nitroprusside was infused intravenously for 1 h into seven pregnant ewes (maternal hypotension) or nine fetal lambs (fetal hypotension); the rates were adjusted to achieve a 15 to 30% decrease in mean blood pressure. During maternal hypotension, mean +/- SE vasopressin in maternal plasma increased from 1.2 +/- 0.2 pg.ml-1 to 208 +/- 153 pg.ml-1 and plasma renin activity increased from 1.5 +/- 0.3 ng.ml-1.h-1 to 6.6 +/- 1.6 ng.ml-1.h-1. Fetal vasopressin and plasma renin activity also increased during the same interval from 1.1 +/- 0.3 to 16.9 +/- 7.5 pg.ml-1 and 3.7 +/- 1.1 to 10.5 +/- 2.85 ng.ml-1.h-1, respectively; but no changes were observed in fetal blood pressure, heart rate, or acid base status. During fetal hypotension, mean vasopressin in fetal plasma increased from 4.3 +/- 3.4 pg.ml-1 to 1054 +/- 772 pg.ml-1, plasma renin activity increased from 5.7 +/- 2.2 ng.ml-1 to 22.2 +/- 7.1 ng.ml-1.h-1, and total catecholamines from 174 +/- 58 pg.ml-1 to 810 +/- 416 pg.ml-1. There was no change in fetal heart rate, acid base status, osmolality, or sodium concentration. The fetus became and remained hypertensive for at least 1 h after the end of infusion. This prolonged hypertension was associated with elevated levels of vasopressin and plasma renin activity. Peak vasopressin levels were proportional to the total nitroprusside dose in both the ewe and fetus (maternal r = 0.796, fetus r = 0.870).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Real-time ultrasonic evaluation of the baboon pregnancy: biometric measurements.

Ultrasonic and direct biometric measurements of nine fetal baboons were made during 23 evaluations. Both the femur length and the biparietal diameter were correlated to gestational age. These initial results have facilitated intrauterine surgery. The data presented will help in determining adequate fetal growth and in dating the baboon pregnancy.

Animals

Dopaminergic regulation of alpha-melanocyte-stimulating hormone and N-acetyl-beta-endorphin secretion in the fetal lamb.

alpha MSH is present in high concentrations in the intermediate lobe of the fetal pituitary and has been implicated as a regulator of fetal adrenal steroidogenesis and fetal growth. However, there are few data regarding alpha MSH levels in fetal plasma or the control of fetal alpha MSH secretion. We measured alpha MSH immunoactivity in the plasma of chronically catheterized fetal lambs (gestational age, 116-138 days), newborn lambs, and adult sheep both in the baseline state and after dopamine receptor blockade with metoclopramide. The effect of metoclopramide on the release of another proopiomelanocortin-derived peptide, N-acetyl-beta-endorphin (N-acetyl-beta EP), which is synthesized together with alpha MSH in the intermediate lobe, was also studied. Baseline fetal plasma alpha MSH was significantly greater than maternal alpha MSH [35.6 +/- 2.2 (+/- SEM) vs. 10.0 +/- 1.0 pg/ml]. In eight studies in five fetal lambs, alpha MSH rose to a peak level of 121 +/- 23 pg/ml 15 min after metoclopramide administration to the fetus. Simultaneous maternal alpha MSH levels did not change, suggesting that the alpha MSH in fetal plasma was of fetal pituitary origin. Gel filtration of pooled fetal plasma extracts revealed that the alpha MSH immunoactivity eluted in the same position as the alpha MSH standard. Metoclopramide caused the secretion of nearly equimolar amounts of alpha MSH and N-acetyl-beta EP into fetal plasma. In four fetal lambs, basal N-acetyl-beta EP levels of 156 +/- 34 pg/ml rose to 305 +/- 65 pg/ml 15 min after metoclopramide treatment. Metoclopramide also stimulated plasma alpha MSH in newborn and adult sheep. In six newborn lambs, alpha MSH rose from 45.2 +/- 13 to 211 +/- 38 pg/ml 15 min after metoclopramide treatment, whereas in four adult sheep, a basal alpha MSH level of 11.1 +/- 2.2 pg/ml rose to 20.1 +/- 2.7 pg/ml 15 min after metoclopramide. In addition, metoclopramide stimulated fetal and neonatal PRL secretion, but had no effect on plasma vasopressin concentrations or acid-base and blood gas values. These studies indicate that immunoreactive alpha MSH and N-acetyl-beta EP are secreted into ovine fetal plasma and that the secretion of these peptides in the fetus appears to be under tonic dopamine inhibition, as is the case in the adult sheep and newborn lamb.

Animals