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[Comparison of the biosynthesis of ovarian and placental steroid hormones].

The main principles of the ovarian steroid hormones synthesis are discussed on the basis of recent literature. The role of special cell lines in the ovarian synthesis also the differences concerning steroidogenesis of the foeto-placental unit are pointed out. In the foeto-placental steroidogenesis the detailed role of trophoblastic syncytium and foetal organs are shown.

Androgens↗

Expression of somatostatin receptor SST4 in human placenta and absence of octreotide effect on human placental growth hormone concentration during pregnancy.

In pregnancy, the human placenta GH acts as a growth-promoting hormone and appears to be the main stimulator of insulin-like growth factor I (IGF-I) secretion. In a woman with a TSH-secreting macroadenoma, successful treatment with the somatostatin analog octreotide was conducted during the first month and the second half of pregnancy without side-effects on placental and fetal development. As observed in normal pregnancy, both serum placental GH and IGF-I levels increased throughout pregnancy and dropped sharply after delivery. In placental membranes from both treated and healthy untreated patients, we demonstrated the presence of high affinity binding sites for somatostatin-14 (Kd, 4.6 and 5.3 nmol/L; binding capacity, 1.53 and 1.35 pmol/mg protein, respectively). These receptors displayed low affinity for octreotide (IC50, 1.2-2 mumol/L), suggesting the presence of SST1 and/or SST4 receptors. We found that messenger ribonucleic acids of these two subtypes were expressed in both human placental tissue and purified human cytotrophoblast cells. Finally, the SST1-selective analog, des-AA1,2,5[D-Trp8,IAmp9]S-14 had low affinity for placental somatostatin receptors. These results argue in favor of the presence of the SST4 subtype in human placenta. At the doses administered, octreotide did not bind to placental somatostatin receptors. Our results may explain the absence of changes in both human placental GH and IGF-I concentrations that we observed during octreotide treatment.

Adenoma↗

Placental growth hormone (GH), GH-binding protein, and insulin-like growth factor axis in normal, growth-retarded, and diabetic pregnancies: correlations with fetal growth.

We previously described significant changes in GH-binding protein (GHBP) in pathological human pregnancy. There was a substantial elevation of GHBP in cases ofnoninsulin-dependent diabetes mellitus and a reduction in insulin-dependent diabetes mellitus. GHBP has the potential to modulate the proportion of free placental GH (PGH) and hence the impact on the maternal GH/insulin-like growth factor I (IGF-I) axis, fetal growth, and maternal glycemic status. The present study was undertaken to investigate the relationship among glycemia, GHBP, and PGH during pregnancy and to assess the impact of GHBP on the concentration of free PGH. We have extended the analysis of specimens to include measurements of GHBP, PGH, IGF-I, IGF-II, IGF-binding protein-1 (IGFBP-1), IGFBP-2, and IGFBP-3 and have related these to maternal characteristics, fetal growth, and glycemia. The simultaneous measurement of GHBP and PGH has for the first time allowed calculation of the free component of PGH and correlation of the free component to indexes of fetal growth and other endocrine markers. PGH, free PGH, IGF-I, and IGF-II were substantially decreased in IUGR at 28-30 weeks gestation (K28) and 36-38 weeks gestation (K36). The mean concentration (+/-SEM) of total PGH increased significantly from K28 to K36 (30.0 +/- 2.2 to 50.7 +/- 6.2 ng/mL; n = 40), as did the concentration of free PGH (23.4 +/- 2.3 to 43.7 +/- 6.0 ng/mL; n = 38). The mean percentage of free PGH was significantly less in IUGR than in normal subjects (67% vs. 79%; P < 0.01). Macrosomia was associated with an increase in these parameters that did not reach statistical significance. Multiple regression analysis revealed that PGH/IGF-I and IGFBP-3 account for 40% of the variance in birth weight. IGFBP-3 showed a significant correlation with IGF-I, IGF-II, and free and total PGH at K28 and K36. Noninsulin-dependent diabetes mellitus patients had a lower mean percentage of free PGH (65%; P < 0.01), and insulin-dependent diabetics had a higher mean percentage of free PGH (87%; P < 0.01) than normal subjects. Mean postprandial glucose at K28 correlated positively with PGH and free PGH (consistent with the hyperglycemic action of GH). GHBP correlated negatively with both postprandial and fasting glucose. Although GHBP correlated negatively with PGH (r = -0.52; P < .001), free PGH and total PGH correlated very closely (r = 0.98). The results are consistent with an inhibitory function for GHBP in vivo and support a critical role for placental GH and IGF-I in driving normal fetal growth.

Adult↗

Induction of megakaryocyte differentiation by a novel pregnancy-specific hormone.

Maturation of megakaryocytes and subsequent platelet release are normally regulated by a network of cytokines, including thrombopoietin and various interleukins. Because abnormal platelet production and activation have been implicated in gestational pathologies, additional pregnancy-specific cytokines may play important roles in the regulation of megakaryocytopoiesis. Consistent with this hypothesis, we have found that the hormone prolactin-like protein E, a placental hormone that we have recently characterized, targets megakaryocytes through a specific cell surface receptor and induces megakaryocyte differentiation through a gp130-dependent signal transduction pathway.

Animals↗

Effect of antenatal dexamethasone therapy on maternal plasma human chorionic gonadotrophin, oestradiol and progesterone.

The aim of this study was to determine whether the current regimen of dexamethasone administration to induce fetal lung maturation affected the circulating concentrations of placental hormone. A standard regimen of dexamethasone that comprised two doses of 12-mg intramuscular injections, 12 h apart was administered to 12 pregnant women to promote fetal lung maturation in anticipation of premature delivery before 34 completed weeks of gestation. Blood samples were collected before starting the dexamethasone therapy, 24 h, and 48 h after completing therapy for the measurement of the plasma concentrations of human chorionic gonadotrophin (HCG), oestradiol and progesterone. There was a progressive fall in the plasma concentrations of HCG following dexamethasone therapy (P = 0.049 and P = 0.034, 24-h and 48-h post therapy respectively). There was an initial fall in the plasma concentrations of oestradiol after dexamethasone therapy (z = 3.059; P = 0.002, 24-h post therapy), which recovered by 48 h (P = 0.239). There was no difference between the plasma concentrations of progesterone at the three time points. The effect of dexamethasone on HCG concentrations suggests that it has a direct inhibitory effect on placental hormone synthesis or secretion. Further studies are needed to define the mechanism of action of dexamethasone on placental HCG production.

Adult↗

Zn+2 induces reversible cross-linking of human placental thyroid hormone nuclear receptor with no effect on hormone binding.

Zn+2 is required for specific binding of c-erbA proteins to the hormone response elements of target genes. It is unclear whether Zn+2 is important for the binding of ligand to c-erbA proteins. The present study evaluated the effect of Zn+2 and other divalent cations on the binding of 3,3',5-triiodo-L-thyronine(T3) to the purified human placental c-erbA protein (h-TR beta 1). Zn+2 induced cross-linking of h-TR beta 1 to form aggregates in a dose-dependent manner with an apparent half-maximal concentration of approximately 200 microM at 22 degrees C. Cross-linking was reversible by the addition of 5 microM EDTA or 10 mM dithiothreitol. The cross-linked h-TR beta 1 bound T3. These results indicated Zn+2 had no effect on T3 binding and suggested that the cysteines and histidines involved in cross-linking are not essential for T3 binding.

Cations, Divalent↗

Ghrelin, a novel placental-derived hormone.

Ghrelin, a GH-releasing acylated peptide, has been recently identified from the rat stomach. The purified peptide consists of 28 amino acids in which the serine 3 residue is n-octanoylated. Here we show that ghrelin messenger RNA and ghrelin peptide are present in the human as well as in rat placentae. In human placenta, ghrelin was detected by PCR at both first trimester and after delivery. While ghrelin was not detected by immunohistochemistry in human placenta at term, it was easily identified by immunohistochemistry at first trimester being mainly expressed in cytotrophoblast cells and scarcely in syncytiotrophoblast ones. Ghrelin was also identified in a human choriocarcinoma cell line, the BeWo cells. Ghrelin was found, by immunohistochemistry, in the cytoplasm of labyrinth trophoblast of rat placenta, whereas other placental cell types seems to be negative for ghrelin immunostaining. Moreover, placental ghrelin messenger RNA, in pregnant rats, showed a characteristic profile of expression being practically undetectable during early pregnancy, with a sharp peak of expression at day 16 and decreasing in the latest stages of gestation. In conclusion, ghrelin has been detected in human and rat placenta showing a pregnancy-related time course of expression. Whether placenta-derived ghrelin is involved in the modulation of GH release, or placental cell growth and differentiation remains to be established.

Animals↗

Late life metabolic syndrome, early growth, and common polymorphism in the growth hormone and placental lactogen gene cluster.

Low rates of fetal and infant growth are associated with the metabolic syndrome and cardiovascular disease in later life. We investigated common genetic variation in the GH-CSH gene cluster on chromosome 17q23 encoding GH, placental lactogens [chorionic somatomammotropins (CSH)], and placental GH variant in relation to fetal and infant growth and phenotypic features of the metabolic syndrome in subjects aged 59-72 yr from Hertfordshire, UK. Allele groups T, D1, and D2 of a locus herein designated CSH1.01 were examined in relation to GH-CSH single nucleotide polymorphisms and to specific phenotypes. Average birth weights were similar for all genotype groups. Men with T alleles were significantly lighter at 1 yr of age, shorter as adults, and had higher blood pressures, fasting insulin (T/T 66% higher than D2/D2) and triglyceride concentrations, and insulin and glucose concentrations during a glucose tolerance test. Birth weight and 1-yr weight associations with metabolic syndrome traits were independent of the CSH1.01 effects. Common diversity in GH-CSH correlates with low 1-yr weight and with features of the metabolic syndrome in later life. GH-CSH genotype adds substantially to, but does not account for, the associations between low body weight, at birth and in infancy, and the metabolic syndrome.

Aged↗

High viscosity of newborn extracellular matrix is the etiology of erythema toxicum neonatorum: neonatal jaundice?: hyaline membrane disease?

At the time of birth, the fetal ground substance is under the influence of maternal and placental hormones. Hormones are known to exert significant effect on ground substance. The ground substance viscosity that is ideal for intrauterine life is too viscous for the newborn. Sites of minor skin trauma develop swelling, inflammation and pustules. Dilution of tissue fluids causes formation of some of the mediators of inflammation including those responsible for intraepidermal pustule formation. The newborn responds to inflammation with eosinophilic granulocyte. The clinical lesions referred to as erythema toxicum neonatorum are known to localize at pressure sites. The skin lesions correct as maternal and placental hormone influence weakens. The entity occurs in 31 to 72% of white infants. The hormone induced viscosity changes may aid in better understanding some aspects of neonatal physiology; such as jaundice of the neonatal period, the eosinophilic granulocyte inflammatory response of the neonatal period and hyaline membrane disease.

Erythema↗

[Glucose role in regulation of placental lactogen hormone (hPL) secretion].

The authors have studied the role of glucose on the excretion of hPL in the medium by explants of placenta in culture. 1. The glucose is necessary for this excretion and cannot be replaced by lactate. 2. At concentrations higher than 1.5 g/l, the glucose inhibits the excretion of hPL. 3. This inhibition is shown for long periods of action of the glucose (4 days) as well as for short periods (1, 2 and 4 hours).

Dose-Response Relationship, Drug↗