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Effect of gamma-interferon on the expression of major histocompatibility complex class I and II gene products in neural cells isolated from the developing human fetal peripheral nervous system.

The effect of gamma-interferon (gamma-IFN) on the expression of major histocompatibility complex (MHC) gene products was examined in the developing human fetal peripheral nervous system. RNA blot hybridization analysis of total RNA isolated from human fetal dorsal root ganglia (DRG) neural cell populations cultured in vitro for 5 days resulted in the detection of both MHC class I- and class II-specific RNAs. As determined by protein immunoblotting and fluorescence-activated flow cytometry, MHC class I and II proteins were also readily detectable in cultured human fetal DRG neural cell populations 5 days after isolation. In addition, treatment of 3-day human fetal DRG neural cells with gamma-IFN (100 U/ml; 48 h) resulted in a marked increase in the level of MHC class I- and class II-specific RNA and protein without inhibiting the proliferation of the neural cell population. These results suggest that changes in the levels of selected cytokines such as gamma-IFN may alter the ability of specific neural cell populations present in the developing human nervous system to participate in immune reactions by alteration of MHC class I and II antigen expression which may lead to perturbation in glial cell function and ultimately to nervous system dysfunction in general.

Cell Division

Light and electron microscopic studies of postcapillary venules in developing human fetal lymph nodes.

Developing lymph nodes from 30 human fetuses with crownrump lengths (CRL) of 38 mm (8.7 wk) to 245 mm (26 wk) were studied by light and electron microscopy. Blood vessels that appear to be postcapillary venules (PCV) are present in nodes of 47 mm CRL and older fetuses. These venules first appear in nodes whehn the nodal population of lymphocytes is sparse. In these early nodes PCV are distributed randomly and consist of a low endothelium, underlying basal lamina and incomplete pericyte sheath. Early nodal PCV are distinguised from other nodal blood vessels by the presence of lymphocyte diapedesis and several luminal lymphocytes. In the late stages of nodal development PCV are the more common non-capillary blood vessel and appear in the parenchyma near the periphery of the node. Late nodal PCV are generally characterized by a cuboidal endothelium that is rich in Golgi apparatus, lysosomes and Weibel-Palade bodies. The lumen and wall of late nodal PCV contain lymphocytes. The relationship between the development of the parenchyma of fetal nodes and the appearance and activity of PCV, the passage of lymphocytes through the PCV wall and the fine structure of developing PCV are described. It is suggested that the lymphocytes that first appear in developing nodes, and the majority of the lymphocytes found in late nodes, migrate to the node via the blood vascular system and enter the nodal parenchyma by passing across PCV endothelium.

Abortion, Spontaneous

Phototherapy for neonatal hyperbilirubinemia: six-year follow-up of the National Institute of Child Health and Human Development clinical trial.

The National Institute of Child Health and Human Development Randomized, Controlled Trial of Phototherapy for Neonatal Hyperbilirubinemia was conducted to determine whether phototherapy used to control serum bilirubin is safe and is as effective in preventing brain injury as exchange transfusion. The study, conducted at six neonatal care centers, randomly assigned 1339 newborn infants to phototherapy or control groups by the following subgroups: (1) birth weight less than 2000 g; (2) birth weight 2000 to 2499 g and bilirubin level greater than 171 mumol/L (10 mg/dL); or (3) birth weight greater than or equal to 2500 g and bilirubin level greater than 222 mumol/L (13 mg/dL). Phototherapy was administered for 96 hours, and exchange transfusion was used to control hyperbilirubinemia at the same predetermined levels in both groups. Neurological and developmental examinations were conducted at 1 and 6 years of age, with follow-up rates of 83% and 62%, respectively. The two groups did not differ in mortality or diagnosed medical conditions. The phototherapy and control groups had similar rates of cerebral palsy (5.8% vs 5.9%), other motor abnormalities including clumsiness and hypotonia (11.1% vs 11.4%), and sensorineural hearing loss (1.8% vs 1.9%). The Wechsler Intelligence Scale for Children-Revised scores overall were not significantly different for the two groups (Verbal, 96.8 vs 94.8; Performance, 95.8 vs 95.1 for phototherapy and control groups, respectively). Phototherapy effectively controlled neonatal hyperbilirubinemia without evidence of adverse outcome at 6 years of age and was at least as effective as management with exchange transfusion alone.

Birth Weight

Human development through occupation: theoretical frameworks in contemporary occupational therapy practice, part 1.

In 1968, the report of a conference sponsored by the American Occupational Therapy Association called for the development of an integrated theory of occupational therapy. A review of the practical problems faced by therapists today, contrasted with major developments in the art and science of the field during the past decade, suggests that this goal has not been attained. However, three major theoretical frameworks for therapy have evolved through the work of Fidler and Mosey, Wilbarger, and Llorens, who participated in the conference on theory. Reilly and associates developed a fourth framework of significance. Through analysis of theoretical constructs, generic concepts that characterize occupational therapy can be identified. Theoretical constructs and research validation of the four approaches to occupational therapy are discussed in this article. A second article to appear in a subsequent issue of AJOT illustrates the use of the four theoretical frameworks to derive a philosophical basis for practice and a model of the practice process called "human development through occupation."

Human Development

[Transcription activity of ribosomal genes in the pre- and postnatal periods of human development].

Transcriptional activity of silver-stained nucleolar-organizing region (NOR) of human chromosomes was studied in 50 medical abortuses at 6-12 weeks of gestation and 125 healthy individuals from 20 to 85-years-old. Transcriptional activity of rRNA genes was higher at the prenatal period of ontogenesis than at the postnatal period. Decline in total activity of ribosomal genes in both sexes was shown. Linear regression coefficients of the NOR activity in dependence of age satisfactorily predict the level of total NOR activity at the prenatal period of human development.

Adult

[Transitional phases in human development (author's transl)].

Transitional phases in the course of Human Development which divide the course of development into different steps, have been searched far from the old. These transitional phases are very often seen to be at least initiated by physical resp. biological changes and accompanied by psychological or mental changes. The results of the Life-span-Psychology and especially the findings of the biographical studies of our Psychological Institue, which were started in the Fifties, shows that there are Transitional phases which neither related to biological change nor to role change nor to the change from the one decade of life to the other one. Much more important are very personal experiences which very often lead to a reorientation. - These findings are in agreement with cognitive theory of personality, according to which human behavior is dependent more on the situation as perceived, than on the stimulus-pattern contigent with this situation. Therefore the study of these situational concepts of individual is relevant for the Life-span-Psychology and specially for the analysis of transitional phases.

Aging

Sex differences in the developing human cortex intersect with genetic risk of neurodevelopmental disorders.

Autism is highly heritable and diagnosed more frequently in males than females. To identify neurodevelopmental processes that might present sex-biased vulnerability, we generated transcriptomic and epigenomic profiles of cell types present in the prenatally developing human cerebral cortex of 27 males and 21 females. By intersecting sex-biased molecular signatures and genes with de novo mutations in male and female autistic probands, we reveal two points of vulnerability contributing to the sex-biased penetrance in neurodevelopmental disorders (NDDs). First, we show that NDD risk genes are biased towards higher expression in females, identifying the NDD gene MEF2C as a critical transcription factor for female-biased expression. Second, we identify a significant contribution of X chromosome genes to NDD pathobiology. We construct a gene regulatory map of X-linked risk genes to enable functional studies of genetic variants that likely disrupt gene expression in the developing brains of autistic males. Together, these results point towards an outsized contribution of the X-chromosome to both the origin of sex differences in the developing human cortex and NDD vulnerability. We propose a model where female-biased vulnerability is driven by coding variation within genes while male-biased vulnerability is driven by noncoding variation in regulatory elements that affect gene expression.

Sex differences

Atrial natriuretic peptide during early human development.

The present review summarizes current and new knowledge on the role of atrial natriuretic peptide (ANP) during early human development. The significance of plasma ANP concentrations in relation to atrial size and ductus flow in preterm and full-term infants is emphasized. Evidence from the literature suggesting the importance of ANP in pulmonary hypertension of the newborn is explored. New information is included on the ontogeny of the renal ANP receptor system in the rat. Integrating the currently available knowledge, a hypothesis on the role of ANP in the circulatory adaptation of the human neonate to extrauterine life is presented.

Atrial Natriuretic Factor

Histochemical studies on hyaluronic acid in the developing human retina.

Changes in the distribution of hyaluronic acid in the developing human retina were investigated histochemically with alcian blue staining and the Streptomyces hyaluronidase digestion method using 56 human embryos and fetuses ranging from 5 to 41 weeks of gestational age. Hyaluronic acid was first detected in the inner layer of the retina at 12 weeks. The site of accumulation extended towards the outer layer by 20 weeks. At the neonatal stage, longitudinal fibers, possibly the processes of Müller cells, were proved to contain hyaluronic acid. These findings suggest that Müller cells produce hyaluronic acid transiently from 12 weeks' gestation to the neonatal stage.

Aged

Histochemical organization and cellular composition of ductal buds in developing human breast: evidence of cytochemical intermediates between epithelial and myoepithelial cells.

In developing human breast, terminal end buds (TEBs), lateral buds (LBs), and lobules of three to five alveolar buds (ABs) predominate in prepubertal females, whereas lobules of ABs and lobules of up to 60 ductules predominate in pubertal females. The appearance of clefts in TEBs and LBs suggests that they are precursors of ABs. In histological sections the ductal buds are composed of a heterogeneous collection of cells that include cortical and peripheral cells. The cortical cells can line small lumina in TEBs/LBs, whereas the peripheral cells which cap their distal tips are more irregular and loosely packed. Monoclonal antibodies (MAb) to epithelial milk-fat globule membranes and antiserum to epithelial membrane antigen immunocytochemically stain the cortical cells, particularly where such cells line lumina, and weakly stain the peripheral cap cells. Similar histochemical staining patterns are observed in desialylated sections with peanut lectin. Antiserum and MAb to smooth muscle actin moderately stain the peripheral cap cells, and this staining increases the closer the peripheral cells become to the myoepithelial cells of the subtending duct. Similar but weaker staining patterns are observed with antibodies to vimentin. Keratin MAb PKK2 and LP34, which stain myoepithelial cells in preference to epithelial cells in main ducts, as well as MAb to epithelium-specific keratin 18, all stain many of the cortical/luminal cells in buds and lobules of developing breast; the peripheral cap cells are relatively unstained. It is suggested that the undifferentiated peripheral cap cells show transitional forms both to the cortical epithelial cells that eventually line the lumina and to the myoepithelial cells of the subtending duct.

Actins

Expression of bone sialoprotein (BSP) in developing human tissues.

Bone sialoprotein (BSP) and its messenger RNA were localized in developing human skeletal and nonskeletal tissues by means of immunohistochemistry and in situ hybridization. Both protein and mRNA were found in mature, bone-forming cells but not in their immature precursors. In addition, osteoclasts displayed positive immunostaining and high densities of autoradiographic grains by in situ hybridization experiments. BSP was expressed in fetal epiphyseal cartilage cells, particularly in hypertrophic chondrocytes of growth plates. Though neither the protein nor the mRNA were identified in a variety of other connective and nonconnective tissues, an unexpected finding was the expression of BSP in the trophoblast cells of placenta. These findings show that BSP is primarily an osteoblast-derived component of the bone matrix expressed at late stages of differentiation. We have also found that osteoclasts produce BSP, possibly as a mediator of cell attachment to bone.

Animals

Pulmonary elastic fibers in normal human development and in pathological conditions.

Normal human pulmonary elastic fiber development and development in some pathological conditions were examined using elastic stains by light microscopy, electron microscopy, and immunohistochemistry. In normal development elastic fibers, composed mainly of microfibrils, first appeared around primitive bronchioles at 10 weeks of gestation. As they matured, their appearance became more amorphous, and they extended into the peripheral alveolar walls. Development of elastic fibers was retarded in the hypoplastic lungs of the oligohydramnios syndrome, diaphragmatic hernia, and hydrops fetalis. Elastic development was also retarded in congenital pulmonary lymphangiectasia and in focal areas of lungs with pulmonary dysplasia. Distribution of well-developed elastic fibers was found around the dilated bronchioles and alveoli in cases of congenital cystic adenomatoid malformation and extralobar pulmonary sequestration. Elastic fibers were distributed irregularly and unevenly in the lungs of bronchopulmonary dysplasia and ventilated cases of Wilson Mikity syndrome. In addition, four very immature infants who had progressively deteriorating respiratory function showed an almost total lack of elastic fibers in their alveolar walls.

Chronic Disease

Localisation of endothelin like immunoreactivity in adult and developing human gut.

The distribution of immunoreactivity for the potent vasoconstrictor endothelin-1 was studied in adult and developing human gut using antisera to endothelin-1 (1-21) and the C terminus of big endothelin-1. The coexistence of these peptides with other neuropeptides was investigated using comparative immunocytochemistry. Endothelin-1 like immunoreactivity was detected in extracts of adult (range 20-60 fmol/g wet weight) and fetal (33 fmol/g) gastrointestinal tract and was shown by chromatography to be the predominant isoform of endothelin present in both. It was localised by immunocytochemistry to ganglion cells in the submucous and myenteric plexuses and to scattered nerves, whereas big endothelin-1 like immunoreactivity was found in the submucous plexus only. Colocalisation studies showed immunoreactivity for both endothelin-1 and vasoactive intestinal peptide in the same ganglion cells of the submucous plexus. Although endothelin-1 immunoreactivity was not detected by immunocytochemistry in the fetal human gut until the 32nd week of gestation, big endothelin-1 was found as early as 11 weeks in the developing neural structures and epithelial cells. The latter were shown to be endocrine cells by their immunoreactivity for chromogranin. Our results indicate that endothelin is a neuropeptide found in adult human gut which shows transient expression in endocrine cells during development.

Adult

Analysis of major histocompatibility complex gene products in tissues isolated from the developing human nervous system.

We have examined the expression of the major histocompatibility complex (MHC) class I and II gene products in the developing human fetal peripheral nervous system. As determined by RNA blot hybridization analysis, MHC class I RNA was readily detectable in extracts prepared from dorsal root ganglia (DRG) obtained from aborted human fetal material. However, utilizing similar methodology, it was not possible to detect MHC class II RNA. In conjunction with these studies, expression of MHC class I and II proteins in primary human fetal DRG tissue was examined by fluorescence-activated flow cytometry and protein immunoblotting. Consistent with the detection of MHC-specific RNA, the accumulation of MHC class I-specific protein was readily detectable in human fetal DRG neural cell populations with little, if any, accumulation of MHC class II-specific protein evident. These studies suggest that MHC gene products may be expressed early in the development of the human nervous system resulting in the generation of specific immunocompetent neural cell populations.

Flow Cytometry

Intelligence at six years in relation to neonatal bilirubin levels: follow-up of the National Institute of Child Health and Human Development Clinical Trial of Phototherapy.

Results of the National Institute of Child Health and Human Development Randomized Controlled Trial of Phototherapy were examined for the relationship of neonatal bilirubin level to neurological and developmental outcome at 6-year follow-up. This analysis focused on 224 control children with birth weight of less than 2000 g. Bilirubin levels were maintained below previously specified levels by the use of exchange transfusion only (24%). Rates of cerebral palsy were not significantly higher for children with elevated maximum bilirubin level than for those whose level remained low. No association was evident between maximum bilirubin level and IQ (Full Scale, Verbal, or Performance) by simple correlation analysis (r = -.087, P = .2 for Full Scale) or by multiple linear regression adjusting for factors that covary with IQ (beta = -.15, P = .58). IQ was not associated with mean bilirubin level, time and duration of exposure to bilirubin, or measures of bilirubin-albumin binding. Thus, over the range of bilirubin levels permitted in this clinical trial, there was no evidence of bilirubin toxicity to the central nervous system. Measures used to control the level of bilirubin in low birth weight neonates appear to prevent effectively the risk of bilirubin-induced neurotoxicity.

Bilirubin