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Early development of the neorectum by balloon dilations after ileoanal anastomosis.

Recently, young people with chronic ulcerative colitis and familial polyposis have been undergoing colectomy with rectal mucosectomy and ileoanal anastomosis with encouraging clinical results. However, during the early period after closing the temporary ileostomy, some patients have frequent stools, which decrease with time as the terminal ileum dilates and becomes a reservoir. To enhance the early development of the neorectal reservoir and to minimize the frequent stooling, we instituted balloon dilations of the neorectum before ileostomy closure. A group of 16 patients not undergoing balloon dilations were compared with a similar group of 13 patients who had balloon dilations. Patients undergoing balloon dilations were observed to have an increase of 40.6% per month in the measured volume of the neorectum, along with a decrease of approximately 40% in the mean number of stools at 3 mo and 34% at 6 mo, with a very acceptable clinical result.

Adolescent↗

Effects of estrogenic hormones on early development of Xenopus laevis.

Many chemicals released into the environment have estrogenic activity and can disrupt animal development and the function of endocrine systems. In order to study the effects of estrogens on aquatic animals, we examined the effects of certain estrogens on early development in Xenopus laevis. X. laevis embryos were kept in water containing 10(-10), 10(-9), 10(-7), 10(-6), and 10(-5) M 17 beta-estradiol (E2); 17 alpha-estradiol; diethylstilbestrol (DES); 10(-5) M progesterone (P); or dihydrotestosterone (DHT) beginning at developmental stage 3. Survival rates of the embryos developed in water containing 10(-10)-10(-6) M E2 or DES, all concentrations of 17 alpha-estradiol, and 10(-5) M P or DHT, which were over 70% after stage 48, whereas the rates of the embryos treated with 10(-5) M E2 and DES decreased remarkably after stage 27 and all embryos were dead by stages 42 and 32, respectively. Embryos treated with 10(-5) M E2 showed malformations of the head and abdomen and suppressed organogenesis, including crooked vertebrae at stage 38; the head was smaller and the abdomen was larger than in the controls. Similar effects were observed in embryos developed in 10(-5) M DES but not in 10(-5) M 17 alpha-estradiol, P, or DHT. After 10(-5) M E2 treatment, abnormalities were induced only when the treatment was started before stage 39. However, on day 30 after fertilization, the stage of the embryos treated with 10(-6) M E2 was more progressed than that of the controls. Estrogen receptor (ER 4) mRNA was examined in eggs, embryos, and adult female liver by reverse-transcription polymerase chain reaction. ER4 mRNA was expressed in adult liver, unfertilized and fertilized eggs, and embryos, but ER3 mRNA was not expressed. ER4 mRNA in 10(-6) and 10(-5) M E2-treated embryos showed different expression patterns, which may result from the diverse developmental effects of E2. The present results demonstrate that 10(-5) M E2 and DES induced embryo death and malformations and that ER may be involved in the induction of various developmental defects in X. laevis embryos.

Abdomen↗

Characterization of the constituent fatty acids in phosphatidylinositol during early development in Rana nigromaculata.

1. Qualitative and quantitative changes in phosphatidylinositol (PI) were analyzed in the eggs, embryos and tadpoles of the Japanese pond frog, Rana nigromaculata, at various stages of development. 2. The weight percentage of PI to total phospholipid and lipid was about 8.4-15.2% and 1.4-2.6%, respectively, during embryonic life. 3. At the early stages of the unfertilized egg and the two-cell embryo, the predominant fatty acids are palmitic, stearic, oleic and linoleic acid. From the dorsal lip, early gastrula stage and beyond, the percentage of linoleic acid declines and there is an increase in palmitoleic acid. A relatively large amount of arachidonic acid was noted at the unfertilized egg stage at the 1-position. 4. A large amount of arachidonic acid was also observed at the 2-position of PI in the unfertilized egg, hatching embryo and post-hatching tadpole stages, relative to palmitic and stearic acid. 5. Palmitic and stearic acid were increased at the 2-position of PI in the other embryo and the feeding tadpole stages, relative to arachidonic acid, indicating a shift in these molecular species. 6. Thus, there were marked changes in the positional distribution of the constituent fatty acids in PI during early development of R. nigromaculata.

Aging↗

The horror! The horror! Reflections on our culture of violence and its implications for early development and morality.

This commentary draws on two dimensions of chronic community violence, with thoughts that have been mobilized by the foregoing contributions. One concerns the importance of culture and the other concerns the importance of thinking about early development. Culture permeates all of our actions, and we are in a culture of violence. In other papers in this issue, Richters and Martinez point out that the United States is the most violent country in the industrialized world, and Ciccheti and Lynch state that violence "is becoming a defining characteristic of American society." We are fascinated by violence and in an implicit way we love violence-a fact that we need to acknowledge. Our fascination with violence in American culture is permeating and deep, and, as horrible as it is, I believe we need to face it in order to try to counter it.

Adolescent↗

Evidence for abnormal early development in a mouse model of Rett syndrome.

Rett syndrome (RTT) is a neurodevelopmental disorder that affects mainly females, associated in most cases to mutations in the MECP2 gene. After an apparently normal prenatal and perinatal period, patients display an arrest in growth and in psychomotor development, with autistic behaviour, hand stereotypies and mental retardation. Despite this classical description, researchers always questioned whether RTT patients did have subtle manifestations soon after birth. This issue was recently brought to light by several studies using different approaches that revealed abnormalities in the early development of RTT patients. Our hypothesis was that, in the mouse models of RTT as in patients, early neurodevelopment might be abnormal, but in a subtle manner, given the first descriptions of these models as initially normal. To address this issue, we performed a postnatal neurodevelopmental study in the Mecp2(tm1.1Bird) mouse. These animals are born healthy, and overt symptoms start to establish a few weeks later, including features of neurological disorder (tremors, hind limb clasping, weight loss). Different maturational parameters and neurological reflexes were analysed in the pre-weaning period in the Mecp2-mutant mice and compared to wild-type littermate controls. We found subtle but significant sex-dependent differences between mutant and wild-type animals, namely a delay in the acquisition of the surface and postural reflexes, and impaired growth maturation. The mutant animals also show altered negative geotaxis and wire suspension behaviours, which may be early manifestations of later neurological symptoms. In the post-weaning period the juvenile mice presented hypoactivity that was probably the result of motor impairments. The early anomalies identified in this model of RTT mimic the early motor abnormalities reported in the RTT patients, making this a good model for the study of the early disease process.

Animals↗

Accelerated head growth in early development of individuals with autism.

Macrocephaly is one of the most consistent physical findings reported in autistic individuals. Previous studies attempted to determine if macrocephaly is associated with risk for autism. This study hypothesizes that an abnormal acceleration in head growth during early development, rather than macrocephaly, is associated with autism risk. To investigate this hypothesis, head circumference data were examined in 251 individuals from 82 multiplex (at least two individuals with autism) and 113 sporadic (no family history) families with autism. This examination included longitudinal measurements for 79 individuals. Nineteen percent of the original 251 individuals were found to have macrocephaly (head circumference >97%). Abnormal acceleration in head growth was defined as an increase of 25 or more percentile points in head circumference between two consecutive measurements. Thirty-five percent of individuals with multiple head circumference records had an abnormal increase in head circumference. Furthermore, autistic individuals with accelerated head growth in early childhood displayed higher levels of adaptive functioning and less social impairment. This study confirms the presence of abnormal acceleration in head growth during the first and second months of life in a subgroup of autistic individuals.

Adaptation, Psychological↗

Characterization of cellular nucleic acid binding protein from Xenopus laevis: expression in all three germ layers during early development.

The Xenopus CNBP homologue (XCNBP) has been cloned from stage 14 neurula. XCNBP encodes a 18.4-kDa protein containing seven highly conserved zinc finger (Zn-finger) repeats (CX2CX4HX4CX2), with sequence similarity to human, mouse, rat, and yeast CNBP. A unique feature of XCNBP is that it contains a 10 amino acid (aa) deletion in the linker region between Zn-fingers 1 and 2, immediately downstream from an alternatively spliced exon of human CNBP isoforms. A similar deletion is found in mouse and yeast CNBP proteins. The deleted region lacks potential PEST and casein kinase II phosphorylation sites. Because CNBP proteins from a variety of species contain deletions in a similar region, these results suggest that the pattern of alternative processing of CNBP isoforms is highly conserved among metazoa and unicellular eukaryotes. XCNBP RNA is initially maternally derived and is widely expressed throughout early development at the gastrula, neurula, and tailbud stages. At the early gastrula stage, XCNBP is expressed in ectodermal, endodermal, and mesodermal germ layers. Previous data have demonstrated the presence of CNBP in the cytoplasm and nucleus. The interactions of CNBP with single-stranded DNA and RNA suggest that CNBP may serve dual functions in transcriptional and translational regulation in a wide variety of tissues during development.

Alternative Splicing↗

Social rearing effects on HPA axis activity over early development and in response to stress in rhesus monkeys.

Previous studies have found evidence of behavioral and psychophysiological differences between nonhuman primates reared in different social environments, however, few of these have employed longitudinal study of the animals over early development. In this study, HPA axis activity was assessed via measurement of ACTH and cortisol values over the first 6 months of life and in response to two stressful housing transitions in 48 infant rhesus monkeys that were either mother- or peer-reared. ACTH and cortisol values declined over the first 6 months in both rearing groups. Peer-reared monkeys showed lower levels of ACTH over the first 6 months of life than mother-reared, but the rearing groups did not differ in basal cortisol values over this period. Mother-reared animals showed a greater ACTH response to the mild stress of being moved to a new cage, and male monkeys showed higher values than females. Mother-reared animals showed the largest cortisol increase in response to the caging transition. Both groups showed increases in ACTH and cortisol in response to the more severe stress of separation from their rearing partners and housing with unfamiliar age-mates. Mother-reared animals again showed the largest increase in ACTH in response to these events, but increases in cortisol were similar among both sexes and rearing groups. These results suggest an interaction of sex and rearing history in response to stressful events.

Adrenocorticotropic Hormone↗

Stabilization and expression of high levels of p53 during early development in Xenopus laevis.

We previously isolated a p53 cDNA from a Xenopus oocyte library. To determine if p53 has a function in the developmental period, we have studied its expression at the RNA and protein levels during the early development of Xenopus laevis. Two p53 transcripts (3 and 2.2 kb) are expressed from the beginning of Xenopus oogenesis, and the major one (2.2 kb) reaches a level of 7 x 10(5) to 7 x 10(6) transcripts per mature oocyte. After fertilization only the 2.2-kb RNA is detected, but its level decreases and at the neurula stage p53 RNA becomes undetectable. The p53 protein is highly expressed during Xenopus development, in contrast to an undetectable level in Xenopus cells in culture. Most of the p53 protein is synthesized during late oogenesis and a stage VI oocyte contains 7 x 10(11) molecules of p53 protein. This maternal p53 store is maintained at a constant level during Xenopus development, at least until the tadpole stage. This high level of expression is mainly due to stabilization of the p53 protein. Unusually for p53, the protein is strictly located in the cytoplasm of oocytes and this localization might indicate that it is stored in an inactive form at this stage. These data are discussed relative to previous observations made in transgenic mice.

Animals↗

Down-regulation of gp63 in Leishmania amazonensis reduces its early development in Lutzomyia longipalpis.

The zinc protease (gp63) of promastigotes was found to play a role in the sand fly part of the Leishmania life cycle. Lutzomyia longipalpis females were fed with promastigotes (10(6) per ml) of a Leishmania amazonensis clone whose gp63 was up- and down-regulated by directional cloning into P6.5 for sense- and anti-sense transcription. Early development was found to differ significantly between the sense- and anti-sense transfectants 2 days post-feeding. The sense transfectants overexpressing gp63 were found similar to those with the vector alone: both developed in the gut at high rates of approximately 90-100% and at a high density with moderate to heavy parasite loads in >70% of the infected females. In contrast, the anti-sense transfectants with gp63 down-regulated developed at a lower rate (approximately 70%) and, significantly, at a very low density, with moderate to heavy parasite loads only in approximately 30% of the infected females. On day 9 post-feeding, all three groups of transfectants developed at a similar rate of approximately 50% with comparable parasite loads. Thus, gp63 plays a role at the early stage of L. amazonensis establishment in L. longipalpis.

Animals↗

Nutritional deficits during early development affect hippocampal structure and spatial memory later in life.

Development rates vary among individuals, often as a result of direct competition for food. Survival of young might depend on their learning abilities, but it remains unclear whether learning abilities are affected by nutrition during development. The authors demonstrated that compared with controls, 1-year-old Western scrub jays (Aphelocoma californica) that experienced nutritional deficits during early posthatching development had smaller hippocampi with fewer neurons and performed worse in a cache recovery task and in a spatial version of an associative learning task. In contrast, performance of nutritionally deprived birds was similar to that of controls in 2 color versions of an associative learning task. These findings suggest that nutritional deficits during early development have long-term consequences for hippocampal structure and spatial memory, which, in turn, are likely to have a strong impact on animals' future fitness.

Age Factors↗

Cytochemical evidence for stage-specific changes of nuclear RNA and nonhistone protein content during early development of Triturus vulgaris.

During early embryogenesis of Triturus vulgaris, RNA and nonhistone protein contents of neuroectoderm nuclei change with stage specifically. Maximum values were found in the late gastrula after embryonic induction, and in the late neurula with the formation of the neural tube. The stage-specific increases of RNA and nonhistone protein are correlated with a preceding increase of Feulgen-DNA content.

Animals↗

An octamer element is required for the expression of the alpha H2B histone gene during the early development of the sea urchin.

Early (alpha) histone genes are one of several histone gene families in the sea urchin genome. They are expressed at high levels in blastula-stage embryos and are inactivated by the early gastrula stage. By microinjecting mutant early H2B genes into sea urchin zygotes and monitoring their transcriptional activity in blastula- and gastrula-stage embryos, we sought to identify the cis-regulatory elements responsible for this dramatic change in early H2B gene activity. We found that deletion of DNA 5' of -71 and 3' of +591 did not affect the timing or magnitude of early H2B gene expression. Neither was early H2B gene expression affected by the replacement of sequences downstream of -36 with the corresponding region of the L1 late H2B gene, expressed after the peak transcription of the early H2B gene. Further deletion of early H2B promoter sequences from -71 to -56, removing a conserved octamer element, resulted in near-complete inactivation of the early H2B gene in both blastula- and gastrula-stage embryos. Also inactivating early H2B gene expression were an internal deletion of the octamer element and a base substitution mutation that altered its sequence. This base substitution mutation also caused a parallel reduction in the ability of the octamer element to bind a factor present in nuclear extracts of sea urchin blastulae. These data strongly suggest that the proper expression of the early H2B gene in cleavage- and blastula-stage embryos depends on the octamer element and a factor with which it interacts.

Animals↗

Effects of exposure to 17alpha-ethinylestradiol during early development on sexual differentiation and induction of vitellogenin in zebrafish (Danio rerio).

To determine the critical stage of zebrafish development where exposure to xenoestrogens can affect sex ratio and vitellogenin induction, zebrafish (Danio rerio) were exposed to 17alpha-ethinylestradiol (actual concentration 15.4+/-1.4 ng EE2/l) during early development: from fertilisation to hatch; hatch to 10 days post hatch (dph); 10-20 dph; 20-30 dph; 20-40 dph; 20-60 dph; fertilisation to 25 dph; or hatch to 60 dph. Vitellogenin was measured in whole body homogenate 30 dph by ELISA and sex ratio was determined 60 dph by histological examination of the gonads. All exposure periods significantly induced vitellogenin synthesis and affected the sex differentiation leading to development of ovo-testis or complete feminisation of the exposed fish depending on exposure period. Complete sex reversal was obtained in groups exposed from 20 to 60 dph and hatch to 60 dph. The half-life for degradation of vitellogenin was calculated. Juvenile zebrafish were exposed to 15.4+/-1.4 ng EE2/l (actual concentration) from fertilisation to 25 dph and transferred to clean water, after which weekly measurements of vitellogenin concentration in whole body homogenate were performed until day 46 post hatch. The half-life of vitellogenin was 2.4 days.

Animals↗

Science and early development of mental health nursing.

Until very recently, the history of mental health care received little critical investigation. This paper seeks to explore how the western scientific tradition shaped mental health nursing and investigates the pivotal influences which affected its early development, emphasising the role played by mid-19th century asylum care.

History, 18th Century↗

[Immunohistochemical studies on the TGF beta-related protein in the early development of Xenopus laevis].

By the method of immunocytochemistry, using the polyclonal antibodies raised against the 1-29 N-terminal residues of TGF beta-1, we found that the protein could bind to the antibodies was present in the early embryos of Xenopus. The protein was named TGF beta-related protein. It was distributed mainly in the endoderm from blastula (stg. 7) to late neurula. In the blastula (stg. 8), the protein was localized in the vegetal hemisphere near the floor of the blastocoel [Plate I, Fig. 1]. In the early gastrula (stg. 10.5) [Plate I, Fig. 2], it was localized in the central part of the vegetal hemisphere. In late gastrula (stg. 12), it was mainly distributed around the gastrocoel [Plate I, Fig. 3], but the fluorescence in endoderm cells (ventral part beneath the gastrocoel) was stronger than in the mesoderm cells (dorsal part of the gastrocoel). In the early neurula (stg. 14), the whole endoderm displayed strong fluorescence and the part of dorsal mesoderm (presumptive somite & notochord) close to endoderm was also found to be positively stained [Plate I, Fig. 4,5], but the part close to neural plate was negative. In The late neurula (stg. 20) [Plate I, Fig. 6], it was found in the central area of yolk mass (endoderm cells). No positive stain was detected in the unfertilized egg, embryos earlier than stage and later than stage 20/21.2+ protein in early development.

Animals↗

Changes in the electrophoretic mobility of cells from chick blastoderms during early development.

A change in cell surface charge density during early avian development is shown with a free-flow electrophoresis apparatus. The blastoderms of freshly laid eggs consist of two electrophoretically distinct cell populations. After the onset of gastrulation a third cell population with an intermediate electrophoretic mobility appears. With increasing time of incubation there is a shift in the proportion of these populations and an increase in the mobility of the fastest fraction.

Animals↗

Early development of climbing skills in harvest mice.

The tiny harvest mouse, Micromys minutus, is skilled at climbing among grasses. Owing to the short lactation period of 15-16 days, young harvest mice need to achieve this climbing skill very rapidly. We examined the early development of five components of climbing behaviour and the final climbing pattern of harvest mice from birth to weaning. During the lactation period, the pups' climbing ability developed rapidly and they were able to climb a vertical bar by the time they first emerged from their nest. Climbing skills were acquired in the following order: hand grasping at 3-7 days; foot grasping at 6-9 days; quadruped stance at 6-11 days; tail prehension at 10-11 days; and righting at 10-12 days. The ratio of foot digit length to foot length was greater in harvest mice than in laboratory mice, Mus musculus, indicating a better grasping ability in the former. Copyright 1999 The Association for the Study of Animal Behaviour.

Journal Article↗