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Biomedical subjects

N Bassett

Publications and source records attributed to N Bassett.

10 recordsLinked to original sources

Neurobehavioral profiles of children with neurofibromatosis 1 referred for learning disabilities are sex-specific.

We compared neurobehavioral profiles of 10 children with neurofibromatosis 1 (NF-1) referred for evaluation of learning disabilities (NF/LD) to those to learning disabled children without known genetic disease (LD), matched for age, sex, and estimated IQ. It was hypothesized that the NF/LD children would exhibit a neurobehavioral profile diagnostic of compromise of frontal/subcortical brain systems while those of the case controls would be heterogeneous. Records from a clinical data base were reviewed retrospectively for the neurological and neuropsychological components of an interdisciplinary learning disabilities evaluation. Neurological abnormalities were more frequent in the NF/LD group, involving gross and fine motor coordination, praxis, and megencephaly. As predicted, clinical neuropsychological diagnostic ratings and composite neurobehavioral observation scores were consistent with compromise of frontal systems in the NF/LD group. An unanticipated finding was that outcomes in the NF/LD group were sex dependent: Megencephaly was observed in females only; and the frontal/subcortical neurobehavioral profile was more consistently observed in females. Females with NF-1 with megencephaly may be at increased risk for a neurobehavioral syndrome contributing to LD that is consistent with compromise of frontal/subcortical brain systems.

Attention↗

The expression of insulin-like growth factor (IGF) and IGF-binding protein (IGFBP) genes in the human placenta and membranes: evidence for IGF-IGFBP interactions at the feto-maternal interface.

The placenta synthesizes insulin-like growth factors (IGFs) and their binding proteins (IGFBPs), which are believed to regulate its growth and development in an autocrine/paracrine manner. To delineate the cellular sites of expression of IGP and IGFBP messenger ribonucleic acids (mRNAs) in human placenta throughout pregnancy, we used in situ hybridization histochemistry with 35S-labeled IGF and IGFBP complementary RNA probes on human placentas and fetal membranes of gestational ages 6 weeks to term (40 weeks). In placental regions where trophoblasts (fetal) or decidua (maternal) coexist (e.g. basal plate), the identity was delineated by their cytokeratin or vimentin immunoreactivity, respectively. Except for IGF-II, mRNAs encoding peptides of the IGF system were expressed in a similar spatial pattern and relative abundance throughout gestation. Both IGF mRNAs showed similar tissue distribution, but the IGF-II mRNA was more abundant than IGF-I mRNA at all gestational ages. IGF-II mRNA was expressed in the chorionic mesoderm of placental villi and chorionic plate in moderate abundance, and it decreased with gestation. It was also expressed in the trophoblasts of the cytotrophoblastic shell and Langhan's layer of placental villi only in the first trimester, suggesting an autocrine role for IGF-II in early cytotrophoblastic proliferation and/or differentiation. IGF-II mRNA was expressed most abundantly in the columns of intermediate trophoblasts in the anchoring villi and chorionic and basal plates. A gradient of IGF-II mRNA abundance was observed in the trophoblasts of the cytotrophoblastic column, with greater IGF-II mRNA levels in those at the invading front, suggesting a role for IGF-II in trophoblastic invasion. In the fetal membranes, IGF-II mRNA was identified in the amnion and chorion laeve. IGF-I receptor mRNA was expressed in low abundance in all cell types of the placenta. All six IGFBP mRNAs were identified in variable abundance in the decidualized stromal cells of the maternal decidua basalis and parietalis, with IGFBP-1 mRNA being expressed in the greatest abundance. The spatial pattern of expression of each IGFBP mRNA also differed among decidual cells, with IGFBP-1, IGFBP-2, IGFBP-4, and IGFBP-6 mRNAs being expressed in most cells, whereas IGFBP-3 and IGFBP-5 mRNAs were expressed in only some cells. IGFBP-1 mRNA was expressed initially in the epithelium of endometrial glands and in a population of decidualized stromal cells in early gestation, and subsequently in the majority of decidualized stromal cells. IGFBP-3 mRNA was expressed in both the decidua and certain intermediate trophoblasts of the basal plate and anchoring villi of placenta and in amnion and chorion laeve of fetal membranes. IGFBP-4 and IGFBP-5 mRNA were expressed additionally in low abundance in the chorionic mesoderm. IGFBP-6 was expressed in greater abundance in the decidua parietalis than in decidua basalis, although the general level of expression was low. The spatial pattern and relative abundance of expression of IGFBP mRNAs suggest IGFBP-1 to be the predominant IGFBP synthesized by the maternal decidual cells, interacting with the IGF-II that synthesizes fetal intermediate trophoblasts. Presumably, IGF-II and IGFBPs are used for cell to cell communication between fetal trophoblasts and maternal decidual cells at the feto-maternal interface for placental development and/or function.

Extraembryonic Membranes↗

Foetal endocrine maturation.

In domestic ruminants such as the sheep, birth is effected through sequential maturation of the foetal hypothalamic-pituitary-adrenal (HPA) axis, leading to the increased output of cortisol. Factors regulating foetal pituitary adrenocorticotrophin (ACTH) secretion have been delineated, and these include corticotrophin releasing hormone (CRH), arginine vasopressin, prostaglandin (PG) E2 and endogenous opioids. The pre-partum increase in foetal plasma ACTH is associated with a rise in pro-opiomelanocortin (POMC) mRNA in the foetal pars distalis, and with an altered pattern of POMC post-translational processing. Foetal adrenal activation results from an increase in ACTH receptors and enhanced coupling through the Gs protein to adenylate cyclase, and increased expression of key steroidogenic enzymes including P450c17. Cortisol modulates the mechanism by which ACTH activates foetal adrenal function, through specific glucocorticoid receptors (GR) in the foetal adrenal cortex. Although the numbers of GR change with gestation, the relative abundance of GR mRNA does not, pointing to post-translational regulatory mechanisms. Cortisol also stimulates an increase in the concentration of its own high affinity binding protein (corticosteroid binding globulin; CBG) in the foetal circulation, apparently by increasing CBG gene expression in the foetal liver, and by altering the extent of foetal CBG glycosylation in a manner that would be expected to decrease the metabolic clearance of this glycoprotein. Clear evidence for placental CRH and ACTH production is lacking in sheep, but PGE2, produced in increasing amounts by the placenta during late pregnancy, may augment the drive to HPA maturation. Aspects of the maturational pathway of cortisol biosynthesis have been described in other species, including the horse, and some comparison is made with the more detailed information currently available from species such as the sheep.

Animals↗

Insulin-like growth factor-II (IGF-II) messenger ribonucleic acid is expressed in steroidogenic cells of the developing ovine adrenal gland: evidence of an autocrine/paracrine role for IGF-II.

Insulin-like growth factors (IGFs) are potent mitogenic and differentiation-promoting factors that regulate the growth and development of many fetal tissues. Their role in the development of the adrenal gland and activation of its function is not known. The latter is crucial in providing the stimulus for the maturation of various fetal organs and determines the onset of parturition in sheep. To examine the hypothesis that IGFs are important autocrine/paracrine regulators of fetal adrenal development in vivo, we localized IGF-I and IGF-II mRNAs and peptides in the adrenal glands of developing sheep fetuses and correlated the cellular distribution with localization of 3 beta-hydroxysteroid dehydrogenase, tyrosine hydroxylase, and phenylethanolamine-N-methyltransferase enzymes by immunohistochemistry. Adrenal glands from 60- to 75-day-old (n = 4), 100- to 110-day-old (n = 4), 120- to 130-day-old (n = 4), and 145- to 147-day-old (term; n = 4) fetal sheep and 1- to 4-day-old newborn lambs (n = 4) were dissected and either snap-frozen or fixed. Total RNAs were subjected to Northern analysis using ovine IGF-I and IGF-II cDNA probes. Seven IGF-II transcripts of 1.2-6.0 kilobases (kb) were identified in the adrenal glands of fetuses at all gestational ages, and in the newborn. By densitometry, the abundance of IGF-II mRNA was highest in the fetal adrenal gland at 60 days, decreased slightly between 60 and 100 days, remained relatively constant until term, and decreased significantly after birth. At all gestational ages, IGF-II mRNA was detectable in significantly greater abundance than IGF-I mRNA. IGF-I and IGF-II mRNAs were localized by in situ hybridization using 35S-labeled anti-sense cRNA probes, and the peptides by immunohistochemistry using specific antisera. Low levels of IGF-I mRNA were detected in the zona fasciculata, but not in the zona glomerulosa. There was strong hybridization of the IGF-II cRNA to the zona glomerulosa and fasciculata and to the capsule. The hybridization signal was greater in the zona fasciculata than in the zona glomerulosa. IGF-II mRNA was also detected in groups of cells within the medulla. Localization of IGF-II mRNA by in situ hybridization correlated well with the distribution of IGF-II immunoreactivity and with 3 beta-hydroxysteroid dehydrogenase-positive cells in the cortex and in groups of cells within the medulla.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenal Cortex↗

Osmotic regulation of prolactin secretion in the fetal sheep.

The functions of prolactin in the fetus remain speculative. No obvious physiological role has been found for the prolactin present in the fetal or maternal plasma and amniotic fluid compartments. The aim of the present study was to investigate changes in fetal plasma prolactin following intracerebroventricular (i.c.r.) administration to the fetus of artificial cerebrospinal fluid of different tonicities. A lateral ventricle catheter was placed in 11 fetuses at 107-128 days of gestation. Either isotonic artificial cerebrospinal fluid (300 mOsm.1(-1);n = 9), 15% polyethylene glycol (340 mOsm.1(-1);n = 5), or 7% distilled water in isotonic artificial cerebrospinal fluid (270 mOsm.1(-1);n = 9) was infused i.c.v. at 35 mu1.min-1 for 240 min. At 180 min thyrotropin releasing hormone (TRH) was administered through a fetal a fetal jugular catheter. Fetal carotid arterial blood gases, plasma osmolality and concentrations of prolactin, vasopressin (AVP), and norepinephrine (NE) were measured. Administration of hypotonic artificial cerebrospinal fluid produced an increase in fetal plasma prolactin from 46.6 +/- 36 ng.ml-1 at 0 min to 83.3 +/- 49 ng.ml-1 at 180 min (mean +/- SEM; P less than 0.05). No changes in either AVP or NE were observed. Administration of hypertonic artificial cerebrospinal fluid produced a decrease in plasma prolactin from 85 +/- 57 at time 0 to 49 +/- 35 at 180 min (P less than 0.05). No changes in either AVP or NE were observed. Fetal plasma prolactin, AVP, and NE did not change during control infusion of isotonic artificial cerebrospinal fluid.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance↗

The diagnostic value of liver scanning in The Gambia.

A simple radioisotope scanner was used in a study of liver diseases in The Gambia. Scans were of value in localizing areas for biopsy or aspiration and in defining the liver in the presence of gross ascites. Although the scan was not helpful in diagnosis it provided a measure of the size of filling defects during treatment.

Carcinoma, Hepatocellular↗

Immunohistochemical localization of insulin-like growth factors (IGFs) and IGF binding proteins -1, -2 and -3 in human placenta and fetal membranes.

Insulin-like growth factor (IGF) I and II are synthesized within the placenta and are believed to play an important role in the regulation of placental growth and endocrine function. IGF bioavailability is determined at a cellular level by several specific binding proteins (IGF BPs), which are widely but selectively distributed in all developing tissues. We have used immunohistochemistry to localize IGF I and II peptides, and IGF BP-1, -2, and -3 in human placentae, fetal membranes and umbilical cord at 6-8 weeks after therapeutic termination and at term after spontaneous delivery. Primary antisera were directed against human IGF I, human IGF BP-1, bovine IGF BP-2, and human IGF BP-3 respectively. Immunoreactive IGF BP-2 was found in association with the syncytiotrophoblast, intermediate trophoblasts of the fetal villi and chorion, amnion and decidua; while weaker staining was seen in some but not all cytotrophoblasts. A similar but less intense staining pattern was observed for IGF BP-1 and IGF peptides in placenta and amnio-chorion. Strong immuno-staining for IGF BP-1 was seen in decidual cells. No immunoreactive IGF BP-3 was found in placenta or membranes. A co-distribution of IGF BP-2, BP-1 and IGF peptides in placenta suggests a role for these IGF BPs in determining the localization of the IGFs for actions on target tissues.

Abortion, Therapeutic↗

Double-blind randomized study comparing brand-name and generic phenytoin monotherapy.

Ten patients with well-controlled seizures receiving chronic phenytoin (PHT) monotherapy for seizure prophylaxis completed a randomized double-blind crossover study comparing brand-name and generic PHT. Each patient received the same dose of each preparation for 3 months during which trough PHT concentrations and adverse effects were monitored. The average predose steady-state total PHT concentration was 11.9 +/- 4.9 micrograms/ml during brand-name therapy and 14.2 +/- 8.2 micrograms/ml during generic therapy. The average predose steady-state free PHT concentrations were 0.93 +/- 0.47 micrograms/ml (brand name) and 1.14 +/- 0.64 micrograms/ml (generic), respectively (p less than 0.005). The potency (capsule content) values for the lots used in the study were 99.2% for the brand-name and 104.6% for generic. Because of the nonlinear Michaelis-Menten kinetics of PHT, a 5.4% difference in potency could account for the observed differences in plasma concentrations. When compared with brand-name PHT therapy, the generic drug was associated with an increase in serum concentration. This increase was consistent with the reported difference in capsule content between the generic and brand-name lots used in this study.

Administration, Oral↗