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The question of hormonal influences on intellectual development: growth hormone.

Contrary to expectations based on findings of enhanced brain development and learning in rats after prenatal growth-hormone administration, a sample of patients with growth-hormone deficiency of early onset did not show impairment of mental abilities when tested with standard intelligence tests. We conclude from our findings, as well as from other clinical reports, that growth-hormone deficiency of onset does probably not interfere with normal human brain development.

Child, Preschool↗

Long-term effects of Herbst treatment in relation to normal growth development: a cephalometric study.

The aim of this study was to evaluate the short- and long-term effects of Herbst appliance treatment in relation to normal growth and development. The sample consisted of 32 subjects (16 boys and 16 girls) with a Class II, division 1 malocclusion treated successfully with the Herbst appliance for an average period of 7 months. The patients were reinvestigated 6 months post-treatment when the occlusion had settled and at the end of the growth period, an average of 6.7 years (SD = 1.1 years) after therapy. The control group comprised of 32 subjects (16 boys and 16 girls) with excellent occlusion (Bolton Standards). Sagittal, skeletal, and dental changes occurring during three observation periods were evaluated on lateral cephalograms in centric occlusion. On a long-term basis, Herbst treatment improved the sagittal jaw base relationship, but did not normalize it. The sagittal dental arch relationship, on the other hand, was almost normalized.

Activator Appliances↗

The Hedgehog-inducible ubiquitin ligase subunit WSB-1 modulates thyroid hormone activation and PTHrP secretion in the developing growth plate.

WSB-1 is a SOCS-box-containing WD-40 protein of unknown function that is induced by Hedgehog signalling in embryonic structures during chicken development. Here we show that WSB-1 is part of an E3 ubiquitin ligase for the thyroid-hormone-activating type 2 iodothyronine deiodinase (D2). The WD-40 propeller of WSB-1 recognizes an 18-amino-acid loop in D2 that confers metabolic instability, whereas the SOCS-box domain mediates its interaction with a ubiquitinating catalytic core complex, modelled as Elongin BC-Cul5-Rbx1 (ECS(WSB-1)). In the developing tibial growth plate, Hedgehog-stimulated D2 ubiquitination via ECS(WSB-1) induces parathyroid hormone-related peptide (PTHrP), thereby regulating chondrocyte differentiation. Thus, ECS(WSB-1) mediates a mechanism by which 'systemic' thyroid hormone can effect local control of the Hedgehog-PTHrP negative feedback loop and thus skeletogenesis.

Amino Acid Sequence↗

Growth differentiation factor-9 promotes the growth, development, and survival of human ovarian follicles in organ culture.

Growth differentiation factor-9 (GDF-9) is a growth factor and a member of the TGFbeta superfamily that is secreted by oocytes in growing ovarian follicles. In the current study we cultured human ovarian follicles within slices of ovarian cortical tissue in the presence and absence of recombinant rat GDF-9. Ovarian tissue was obtained by biopsy during cesarean section (31 women) or gynecological laparoscopy (3 women). The mean age (+/-SD) of the women who donated tissue was 32.8 +/- 5.0 yr (range, 19-41 yr). In these biopsies a total of 900 follicles were analyzed. A significantly higher proportion of cultured primordial follicles showed growth initiation and reached the secondary stage of development in the presence of GDF-9. In serum-free cultures after 7 d, 53% of the follicles had reached the secondary stage with GDF-9 vs. 31% in the control group (P < 0.01). Follicle viability was also improved in the presence of GDF-9 after 7 d in culture (74% GDF-9 vs. 48% control), which resulted in a smaller reduction in follicle numbers due to atresia. Treatment with GDF-9 in vitro promoted the survival and progression of human follicular development to the secondary stage. This oocyte-derived factor may be essential for the development of somatic cells in early human follicles and useful in designing culture conditions for maturation of follicles and oocytes in vitro.

Adult↗

Growth, development and behaviour in adolescents born small-for-gestational-age.

OBJECTIVE: To examine the effects on adolescents of being born small-for-gestational-age (SGA). METHODOLOGY: The sample are members of a cohort longitudinal study in which growth, cognitive development and behaviour are being studied into adulthood. Ninety-one SGA subjects were available for comparison with the rest of the sample (n = 1037) on measures of height, weight, head circumference, cognitive performance and behavioural variables to the age of 18 years old. RESULTS: SGA subjects were shorter and lighter at 18 years of age than their appropriate-for-gestational-age (AGA) counterparts despite age of onset of menarche being the same in both groups. At age 13, SGA subjects scored significantly lower than the AGA group on the WISC-R scales. They were rated by parents as having more behaviour problems at age of 15. CONCLUSIONS: SGA birth appears to be a potential problem which extends beyond childhood in its effects on growth, behaviour and cognitive performance.

Adolescent↗

Growth, development and differentiation: a functional food science approach.

Few other aspects of food supply and metabolism are of greater biological importance than the feeding of mothers during pregnancy and lactation, and of their infants and young children. Nutritional factors during early development not only have short-term effects on growth, body composition and body functions but also exert long-term effects on health, disease and mortality risks in adulthood, as well as development of neural functions and behaviour, a phenomenon called 'metabolic programming'. The interaction of nutrients and gene expression may form the basis of many of these programming effects and needs to be investigated in more detail. The relation between availability of food ingredients and cell and tissue differentiation and its possible uses for promoting health and development requires further exploration. The course of pregnancy, childbirth and lactation as well as human milk composition and the short- and long-term outcome of the child are influenced by the intake of foods and particularly micronutrients, e.g. polyunsaturated fatty acids, Fe, Zn and I. Folic acid supplementation from before conception through the first weeks of pregnancy can markedly reduce the occurrence of severe embryonic malformations; other potential benefits of modulating nutrient supply on maternal and child health should be further evaluated. The evaluation of dietary effects on child growth requires epidemiological and field studies as well as evaluation of specific cell and tissue growth. Novel substrates, growth factors and conditionally essential nutrients (e.g. growth factors, amino acids, polyunsaturated fatty acids) may be potentially useful as ingredients in functional foods and need to be assessed carefully. Intestinal growth, maturation, and adaptation as well as long-term function may be influenced by food ingredients such as oligosaccharides, gangliosides, high-molecular-mass glycoproteins, bile salt-activated lipase, pre- and probiotics. There are indications for some beneficial effects of functional foods on the developing immune response, for example induced by antioxidant vitamins, trace elements, fatty acids, arginine, nucleotides, and altered antigen contents in infant foods. Peak bone mass at the end of adolescence can be increased by dietary means, which is expected to be of long-term importance for the prevention of osteoporosis at older ages. Future studies should be directed to the combined effects of Ca and other constituents of growing bone, such as P, Mg and Zn, as well as vitamins D and K, and the trace elements F and B. Pregnancy and the first postnatal months are critical time periods for the growth and development of the human nervous system, processes for which adequate substrate supplies are essential. Early diet seems to have long-term effects on sensory and cognitive abilities as well as behaviour. The potential beneficial effects of a balanced supply of nutrients such as I, Fe, Zn and polyunsaturated fatty acids should be further evaluated. Possible long-term effects of early exposure to tastes and flavours on later food choice preferences may have a major impact on public health and need to be further elucidated. The use of biotechnology and recombinant techniques may offer the opportunity to include various bioactive substances in special dietary products, such as human milk proteins, peptides, growth factors, which may have beneficial physiological effects, particularly in infancy and early childhood.

Adolescent↗

Growth, development and body composition in three genetic stocks of swine.

Differences in growth, chemical body composition and visceral organ development were evaluated in three genetic stocks: Beltsville Highfat (HF) and Lowfat (LF) Duroc-Yorkshire composites and a Hampshire X Large White cross (CX). Ten sets of littermate barrows were used from each stock. One pig from each set was slaughtered at 10, 17 and 24 wk of age. After slaughter, each pig was dissected into three fractions: carcass, head and feet, viscera and blood. Backfat was measured at three locations and visceral organs were weighed separately. Each fraction was frozen, ground, sampled and analyzed in duplicate for protein, fat, water and ash. The CX pigs were heaviest at all ages and contained the most fat-free mass (FFM). The HF pigs were smallest and contained the most fat, while LF pigs tended to be intermediate. The LF pigs deposited a greater proportion of weight in head and feet and a greater proportion of total FFM in the carcass than HF and CX pigs. Estimated allometric growth coefficients for non-fat chemical components relative to empty body weight (EBWT) were lower for HF than LF and CX, which were similar. Coefficients for fat were similar among stocks yet intercepts differed widely. Relative to total FFM, water increased at a faster rate and ash a slower rate in CX pigs compared to HF and LF. Growth coefficients were calculated for internal organs relative to EBWT. Coefficients for organs of the digestive tract were not different among stocks. However, significant differences among stocks were found for heart, lung, spleen and liver that were not explained by differences in body composition.

Animals↗

Growth, development, and carcass composition in five genotypes of swine.

An experiment with 127 barrows representing five genotypes, 1) H x HD, 2) SYN, 3) HD x L[YD], 4) L x YD, and 5) Y x L (H = Hampshire, D = Duroc, SYN = synthetic terminal sire line, L = Landrace, and Y = Yorkshire), was conducted to evaluate growth and development of swine from 59 to 127 kg live weight. Animals were allowed ad libitum access to a pelleted finishing diet containing 18.5% CP, .95% lysine, and 10.5% fat, with an energy density of 3,594 kcal of ME/kg. Pigs were serially slaughtered at either 59, 100, 114, or 127 kg live BW. After slaughter, carcasses were chilled and backfat was measured at four locations. The right side of each carcass was fabricated into primal cuts of ham, loin, Boston Butt, picnic, and belly. Composition of each primal cut was determined by physical dissection into lean, fat, bone, and skin. Estimated allometric growth coefficients for carcass length, carcass weight, and longissimus muscle area relative to BW; carcass lean, fat, bone, and skin relative to both BW and carcass weight; and lean in each of the primal cuts relative to total carcass lean did not differ (P greater than .05) among genotypes. Relative to BW, the pooled growth coefficient(s) for carcass weight was (were) greater (P less than .001) than unity, whereas those for carcass length, longissimus muscle area, and backfat at first rib were smaller (P less than .001) than unity. Those for other backfat measurements were close to 1.00. Relative to either BW or carcass weight, the pooled coefficient(s) for fat was (were) greater (P less than .001) than unity, whereas those for lean, bone, and skin were smaller (P less than .001) than unity. Growth of lean, backfat, bone, and skin in the carcass were nearly linearly associated with increases in BW. The increase in fat weight was curvilinear as the pig grew and was accelerated in later growth stages, indicating that carcass fat percentage increased with increased BW.

Adipose Tissue↗

Studies of play: implications for growth, development, and for clinical practice.

The clinical yields of studies of play conducted by graduate students in occupational therapy are identified, and the boundaries of the studies are described. The theme of change in play over time is acknowledged as prominent in all the studies. Open systems and hierarchy are helpful concepts for understanding the process of change in growth and development through play. Clinical tasks to facilitate the change process are cited.

Adolescent↗

Effect of lithium on rat embryos in culture: growth, development, compartmental distribution and lack of a protective effect of inositol.

Lithium chloride (LiCl) was tested at various concentrations (50, 100, 150 and 200 micrograms/ml) using a rat whole-embryo culture system beginning on gestation day 9.5 (headfold stage) in order to establish a concentration-response relationship. Open neural tubes--as described in former publications (Tesh 1988)--were not induced by lithium. A significant reduction of embryonic growth and development occurred at the lowest concentration tested (50 micrograms/ml). Clear-cut dysmorphogenetic effects (absence of the eye cup, kink in the spinal anlage, "bleb" at the rostral head region) occurred at a concentration of 150 micrograms/ml LiCl. LiCl concentrations in the embryo, visceral yolk sac, exocoelomic fluid and medium were determined after the embryos had been cultured for 48 h in the presence of a moderately embryotoxic dose of LiCl (3.5 mEq/l or 150 micrograms/ml). Medium supplementation with myo-inositol in different concentrations was ineffective in antagonizing the embryotoxicity induced by LiCl.

Animals↗

Growth, development and pairing of Leucochloridiomorpha constantiae (Trematoda) metacercariae on the chorio-allantois of chick embryos cultivated in vitro.

A simple in vitro technique was devised to culture chick embryos in Petri dishes from the 4th to the 21st day of incubation. Leucochloridiomorpha constantiae (Trematoda) metacercariae were placed either singly or multiply (5/embryo) on the chorio-allantois of in vitro grown embryos on day 7 and were removed on day 14. Growth and development studies were also made on worms grown singly or multiply (5/chick) in the bursa of Fabricius of the domestic chick. Worms grown singly or multiply in embryos were sexually mature, although eggs from these worms were abnormal when compared with eggs from worms recovered from chicks. The mean body area of worms from chicks was 2-3 times greater than that of worms from embryos. The mean body area of single worms from embryos was significantly larger than that of worms grown multiply in this site. However, the mean body area of multiple worms from the chick was significantly larger than that of single worms from this site. Worm pairs or clusters were seen in all embryos with the multiple infections.

Allantois↗

Birth data for patients who later develop growth hormone deficiency: preliminary analysis of a national register. The Executive Scientific Committee of the Kabi International Growth Study and the Swedish Paediatric Study Group for Growth Hormone Treatment.

This study analyses gestational age, mode of delivery and size at birth in children who later developed idiopathic or organic growth hormone deficiency (GHD). A data register of children on growth hormone (GH) treatment in Sweden was compared with the Swedish Medical Birth Register during a 14-year period (1973-1986) comprising 1.4 million newborn children. Size at birth was evaluated using a new Swedish reference standard based on data from around 500,000 newborn children. It was found that the children who later develop idiopathic GHD (IGHD) were born with a normal distribution of gestational age. They were more often born with breech delivery (7.1% versus 2.8%) or caesarean section (16.6% versus 10.4%) compared with normal children. The children's condition at birth was poorer than normal, as shown by the frequency of Apgar scores below 7 at 5 minutes (5.2% versus 1.2%). Finally, it was found that children who later develop IGHD (n = 220) had a median birth length of 0.87 SDS below the mean and a median birth weight of 0.60 SDS below the mean of the standard. In contrast, both the birth length and weight of the children who later develop organic GHD (OGHD) (n = 92) did not differ from that of the reference.

Apgar Score↗

Silencing of ribosomal protein L3 genes in N. tabacum reveals coordinate expression and significant alterations in plant growth, development and ribosome biogenesis.

The expression of ribosomal protein genes is coordinately regulated in bacteria, yeast, and vertebrates, so that equimolar amounts of ribosomal proteins accumulate for assembly into ribosomes. To understand how expression of ribosomal protein genes is regulated in plants, we altered expression of the large subunit ribosomal protein L3 (RPL3) genes in Nicotiana tabacum using post-transcriptional gene silencing (PTGS). L3 is encoded by two genes, RPL3A and RPL3B, with 80.2% amino acid sequence identity in tobacco. Two types of 'hairpin' RNA (hpRNA) vectors carrying the RPL3A or RPL3B sequences in both sense and antisense orientation were generated in order to alter the expression level of both RPL3 genes. Tobacco plants transformed with a vector containing a 5'-terminal fragment of RPL3A gene displayed decreased RPL3A mRNA levels and a marked increase in the abundance of RPL3B mRNA. These results indicated that expression of the RPL3 genes is coordinately regulated in tobacco. The transgenic plants that contained higher levels of RPL3B mRNA exhibited leaf overgrowth and mottling. Epidermal cells of these plants were increased in number and decreased in size. The precursor rRNA (pre-rRNA) and the mature rRNAs accumulated in these plants, suggesting that ribosome biogenesis is upregulated. Tobacco plants transformed with an hpRNA vector harboring the full-length RPL3B cDNA exhibited efficient silencing of both RPL3A and RPL3B genes, reduced L3 levels, and an abnormal phenotype characterized by a delay in development, stunting, and inhibition of lateral root growth. L3 deficiency led to a reduction in cell number and an increase in cell size, suggesting that L3 positively regulates cell division. Decreasing RPL3 gene expression resulted in a decrease in accumulation of the pre-rRNA, establishing a prominent role for L3 in ribosome biogenesis in plants.

Gene Expression Regulation, Plant↗

The influence of maternal glucose metabolism on fetal growth, development and morbidity in 917 singleton pregnancies in nondiabetic women.

To study the effects on the fetus of variations in maternal glucose tolerance, a 25 g rapid intravenous glucose tolerance test was performed at or about 32 weeks gestation in 917 randomly selected nondiabetic women with singleton pregnancies. The results were withheld from the patients and their obstetricians and paediatricians, and no treatment or advice was offered. Fasting plasma glucose and indices of glucose disposal (including a new index which we have termed "summed glucose") were distributed unimodally, with no evidence of a separate pathological group towards the diabetic end of the distributions. Significant associations were found between maternal glucose metabolism and various measures of neonatal nutrition and morbidity, including the incidence of congenital malformations and morbidity related to asphyxia, suggesting that variations within the normal range in maternal glucose metabolism can influence growth and development in the fetus. These relationships were continuous throughout the range of maternal glucose tolerance and were not of predictive value in individual cases.

Birth Weight↗

Correlated responses to artificial body size selection in growth, development, phenotypic plasticity and juvenile viability in yellow dung flies.

Most life history traits are positively influenced by body size, whereas disadvantages of large body size are poorly documented. To investigate presumed intrinsic costs of large size in the yellow dung fly (Scathophaga stercoraria; Diptera: Scathophagidae), we established two replicates each of three body size laboratory selection lines (small, control and large; selection on males only), and subjected flies of the resulting extended body size range to various abiotic stresses. Response to selection was symmetrical in the small and large lines (realized h(2) = 0.16-0.18). After 24 generations of selection body size had changed by roughly 10%. Female size showed a correlated response to selection on male size, whereas sexual size dimorphism did not change. Development time also showed a correlated response as, similar to food limited flies, small line flies emerged earlier at smaller body size. At the lowest larval food limit possible, flies of all lines emerged at the same small body size after roughly the same development time; so overall phenotypic plasticity in body size and development time strongly increased following selection. Juvenile mortality increased markedly when food was extremely limited, large line flies showing highest mortality. Winter frost disproportionately killed large (line) flies because of their longer development times. Mortality at high temperatures was high but size-selective effects were inconsistent. In all environments the larger males suffered more. Initial growth rate was higher for males and at unlimited food. Small line individuals of both sexes grew slowest at unlimited larval food but fastest at limited larval food, suggesting a physiological cost of fast growth. Overall, extension of the natural body size range by artificial selection revealed some otherwise cryptic intrinsic juvenile viability costs of large size, mediated by longer development or faster growth, but only in stressful environments.

Animal Nutritional Physiological Phenomena↗

Growth development and its relationship to intellectual functioning of children with phenylketonuria.

Growth measurements, including weight, height, and head circumference, of 67 early treated children with phenylketonuria (PKU) were compared to normal standards from infancy up to six years of age. Children with PKU, both girls and boys, achieved growth parameters that were similar to those of normals. Head circumference of the boys at six years of age and of the girls at three and four years of age correlated positively with IQ scores. Weight/height (W/H) ratios at one year of age correlated positively with IQ scores for boys. Similar correlations between IQs and weight/height ratios were found for girls at one, two, and three years of age.

Body Height↗

Development, growth and eruption of permanent incisor teeth in Romney sheep.

The development of permanent incisor teeth of sheep was followed from the age of six weeks to 116 weeks. The teeth were observed through the bud, cap and bell stages, and the development of enamel and dentine. At the same time that amelogenesis started, the papillary layer developed from the intermediate layer and the outer dental epithelium began to form the cell rests of Malassez. The ameloblasts went through secretory, transitional and maturational phases, and in due course disappeared, after which cementum was laid down over the enamel surface. Initially the connective tissue of the follicle surrounding the growing tooth was very loose, but was replaced from the crown end as the tooth developed, by more dense connective tissue. Around the time of eruption, melanocytes were found on the lingual surface of the coronal end of the follicle. The root was formed under the influence of Hertwig's epithelium, and the cell rests of Malassez appeared to continue to develop from the outer enamel epithelium. Odontoblasts, which arose from the pulp connective tissue, were initially cuboidal but became fusiform as the tooth matured. At the time of eruption, amelogenesis was almost complete and cementum covered the majority of the tooth surface. The cell rests and melanocytes of the tootth follicle appeared to migrate with the tooth as it erupted. The deciduous tooth was resorbed from the lingual surface. The junctional epithelium of the erupted permanent tooth may have arisen from the cell rests, remnants of the dental lamina or gingival epithelium, depending on the presence or absence of inflammation.

Amelogenesis↗