PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Embryonic Structures”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 109 records · Page 6Linked to original sources

SWiP-1: novel SOCS box containing WD-protein regulated by signalling centres and by Shh during development.

We describe a novel chick WD-protein, cSWiP-1, expressed in somitic mesoderm and developing limb buds as well as in other embryonic structures where Hedgehog signalling has been shown to play a role. Using embryonic manipulations we show that in somites cSWiP-1 expression integrates two signals originating from structures adjacent to the segmental mesoderm: a positive signal from the notochord and a negative signal from intermediate and/or lateral mesoderm. In explant cultures of somitic mesoderm, Shh protein induces cSWiP-1, while a blocking antibody to Shh inhibits the induction of cSWiP-1 by the notochord. These results show that the positive signal from the notochord is mediated by Shh. We also show that in limb buds cSWiP-1 is upregulated by ectopic Shh. This occurs in about the same time period as upregulation of BMP2, placing cSWiP-1 among the earliest markers for the change of limb pattern caused by ectopic Shh. We also describe a human homologue of cSWiP-1 and a mouse gene, mSWiP-2, that is more distantly related to SWiP-1, suggesting that SWiP-1 belongs to a novel subfamily of WD-proteins.

Amino Acid Sequence↗

[Importance of ultrasonographic examinations in predicting abortion during the first trimester of gestation].

OBJECTIVE: Draw attention to the possibility to use ultrasonographic examination to predict abortion in the 1st trimester of gestation. DESIGN: Review. SETTING: Institute for the Care of Mother and Child, Prague. SUBJECT AND METHOD: Review article on possibilities of ultrasonographic examination to predict abortion during the first trimester of gestation. The article is divided according to the images of different extraembryonic and embryonic structures which may be important for prediction of abortion during the first trimester of gestation. Illustrations are from the author's own observations. CONCLUSION: The presented review draws attention to the possible use of transvaginal ultrasonography in prediction of gestational complications in early stages of the first trimester of gestation. Abnormalities in the size and shape of some embryonic and extraembryonic structures make it possible to detect early complications, still in the stages of embryogenesis, which may lead to early gestational loss.

Abortion, Spontaneous↗

T-box genes in vertebrate development.

The myriad developmental roles served by the T-box family of transcription factor genes defy easy categorization. Present in all metazoans, the T-box genes are involved in early embryonic cell fate decisions, regulation of the development of extraembryonic structures, embryonic patterning, and many aspects of organogenesis. They are unusual in displaying dosage sensitivity in most instances. In humans, mutations in T-box genes are responsible for developmental dysmorphic syndromes, and several T-box genes have been implicated in neoplastic processes. T-box transcription factors function in many different signaling pathways, notably bone morphogenetic protein and fibroblast growth factor pathways. The few downstream target genes that have been identified indicate a wide range of downstream effectors.

Animals↗

Three-dimensional measurement of gestational and yolk sac volumes as predictors of pregnancy outcome in the first trimester.

Along with crown-rump length (CRL), the size (diameter) of embryonic structures such as gestational sac (GS) and yolk sac (YS) may have prognostic value for embryonic development. We proposed that first-trimester volume calculations of these structures using transvaginal three-dimensional ultrasound technique may have value as predictors of adverse reproductive outcome. Forty-nine consecutive patients (treated for infertility) with singleton pregnancies were included in this prospective study. Seventy-three examinations were performed in case of pregnancies with normal, and 12 with abnormal outcome. GS and YS volumes were plotted against gestational age (GA) (25-65 days post ovulation) to create nomograms for normal outcome and the same procedure was carried out with CRL measurements as well. Measurements of abnormal pregnancies were compared with these nomograms. Specificity, sensitivity, positive and negative predictive values were also calculated. Regression analysis revealed a power correlation between GS volumes and GA, logarithmic relationship was observed when YS volumes were plotted against GA. CRL showed logarithmic correlation with GA as well. Both GS volumetry and CRL measurements proved to have statistically significant predictive value for adverse outcome (p<0.05). However, no statistically significant difference was found when YS volumes of normal and abnormal pregnancies were compared. Specificity, sensitivity, positive and negative predictive values of GS volumes and CRL were similar. Mean YS/GS ratios also had good predictive values (p<0.05). Volume determination of YS and GS can be performed quickly and simply applying three-dimensional sonography. Volumetry of GS proved to be a sensitive predictor for pregnancy outcome and can be a good supplement to CRL measurements.

Embryonic and Fetal Development↗

Some observations of the structure of the choroid plexus and its cysts.

The structure of the choroid plexus was studied in five normal human embryos, three normal fetuses and three fetuses with choroid plexus cysts. These were detected by ultrasound and the fetuses were karyotypically normal. The choroid plexus appears in the lateral cerebral ventricles at the seventh developmental week. The early structure is lobulated with vessels running in the mesenchymal stroma and forming capillary nets under the single-layered ependymal epithelium. This embryonal structure is converted into the fetal type during the ninth developmental week as the embryonal capillary net is replaced by elongated loops of wavy capillaries that lie under regular longitudinal epithelial folds. The choroid plexus cysts exhibited accumulation of fluid within distended mesenchymal stroma and did not show the wavy folds on this surface, which was smooth. Within this connective tissue of the cyst wall were distended angiomatous interconnecting thin-walled capillaries. Therefore, filled cavities were not lined by any epithelium. We suggest that fetal choroid plexuses cysts (at least in many cases) are in fact pseudocysts exhibiting angiomatous patterns of capillaries in their walls.

Capillaries↗

[Characteristics of phenotypic expression of autosomal monosomies during pathological postimplantation human development].

Autosomal monosomies represent a severe form of genomic disbalance which determines elimination of human embryos already at the preimplantation stages. As a rule, they occur very rarely in the materials of spontaneously aborted embryos and fetuses. Molecular-cytogenetic studies were carried out on the karyotype of cells of 60 spontaneous abortuses of I trimester of pregnancy with cell degeneration or absence of cell proliferation in the cultures, as a result of which the cells could not be studied using the standard metaphase analysis. The embryos were characterized by an unexpectedly high frequency of mosaic variants of monosomies for chromosomes 7, 15, 21, and 22, which amounted to 19% of all chromosome aberrations. Lethal forms of monosomies for human chromosomes 7 and 15 were described for the first time, since they are not found in spontaneous abortuses by standard cytogenetic methods. A hypothesis was proposed which accounts for the possibility of early postimplantation lethality of the embryos with mosaic forms of autosomal monosomies. The differences were found between the cells with monosomies for different autosomes in the mechanisms of origin, intertissue localization, and phenotypic effects. It was shown that monosomies for chromosomes 7, 15, 21, and 22 in a mosaic state with the normal cell line can be compatible with the early stages of postimplantation differentiation of the cytotrophoblast. Predominant compartmentalization of the cells with monosomies for chromosomes 21 and 22 in the extraembryonic mesoderm, a derivative of epiblast, can be a critical factor, which makes it impossible the normal morphogenesis of embryonic structures.

Aborted Fetus↗

Differential expression of the TEF family of transcription factors in the murine placenta and during differentiation of primary human trophoblasts in vitro.

We describe the molecular cloning of murine (m) Transcriptional Enhancer Factor (TEF)-5 belonging to the TEF family of transcription factors. We show that mTEF-5 is specifically expressed in trophoblast giant cells and other extra-embryonic structures at early stages of development. At later stages, mTEF-5 is specifically expressed in the labyrinthine region of the placenta and in several embryonic tissues. We further show that the other mTEFs are differentially expressed in extraembryonic structures and in the mature placenta. Interestingly, human (h)TEF-5 is specifically expressed in the differentiated syncytiotrophoblast of the human term placenta and its expression is upregulated during the differentiation of cytotrophoblasts to syncytiotrophoblast in vitro, whereas that of hTEF-1 is down-regulated. Together with previous results describing hTEF-binding sites in the human placental lactogen-B gene enhancer, these novel observations support a role for hTEF-5 in the regulation of this gene. We further propose that the hTEF factors may play a more general role in placental gene regulation and development.

Amino Acid Sequence↗

Generation of insulin-expressing cells from mouse embryonic stem cells.

The therapeutic potential of transplantation of insulin-secreting pancreatic beta-cells has stimulated interest in using pluripotent embryonic stem (ES) cells as a starting material from which to generate insulin secreting cells in vitro. Mature beta-cells are endodermal in origin so most reported differentiation protocols rely on the identification of endoderm-specific markers. However, endoderm development is an early event in embryogenesis that produces cells destined for the gut and associated organs in the embryo, and for the development of extra-embryonic structures such as the yolk sac. We have demonstrated that mouse ES cells readily differentiate into extra-embryonic endoderm in vitro, and that these cell populations express the insulin gene and other functional elements associated with beta-cells. We suggest that the insulin-expressing cells generated in this and other studies are not authentic pancreatic beta-cells, but may be of extra-embryonic endodermal origin.

Animals↗

Developmental expression of glycocomponents in the chick chorioallantoic membrane.

Widespread interest has focused on the research of the chorioallantoic membrane (CAM) and its functional contribution to gaseous exchange, calcium reabsorption, water and electrolyte transport during chick embryogenesis. Nevertheless, very little information is available on the glycoconjugate components of this extra-embryonic structure. In the present study, we investigated by lectin histochemistry, the glycosylation pattern expressed in the CAM epithelia during embryonic development. Occurrence of sialic acid-associated glycoproteins was detailed by either specific lectins, which discriminate alpha2,3 and alpha2,6 sialoderivatives, or sialidase digestion combined with appropriate lectins to identify the sialic acid acceptor sugars. Lectin affinities proved to depend greatly on differentiation of the CAM epithelia which showed highest expression of binding sites during the second half of incubation up to hatching. Differences emerged between the chorionic and the allantoic epithelium, regarding qualitative, quantitative and temporal expression of sugar moieties. A cell type-specific distribution of glycocomponents was found in the chorionic epithelium where lectin binding sites were specifically located in the villus cavity cells. In the allantoic epithelium, high and heterogeneous occurrence of sialoglycoconjugates as well as specific presence of fucose residues were evidenced mostly in the granule cells. We conclude from these findings that various glycoconjugates in the CAM could participate in different physiological functions characteristic of the chorionic and the allantoic epithelium.

Acetylgalactosamine↗

Embryology of the lamprey and evolution of the vertebrate jaw: insights from molecular and developmental perspectives.

Evolution of the vertebrate jaw has been reviewed and discussed based on the developmental pattern of the Japanese marine lamprey, Lampetra japonica. Though it never forms a jointed jaw apparatus, the L. japonica embryo exhibits the typical embryonic structure as well as the conserved regulatory gene expression patterns of vertebrates. The lamprey therefore shares the phylotype of vertebrates, the conserved embryonic pattern that appears at pharyngula stage, rather than representing an intermediate evolutionary state. Both gnathostomes and lampreys exhibit a tripartite configuration of the rostral-most crest-derived ectomesenchyme, each part occupying an anatomically equivalent site. Differentiated oral structure becomes apparent in post-pharyngula development. Due to the solid nasohypophyseal plate, the post-optic ectomesenchyme of the lamprey fails to grow rostromedially to form the medial nasal septum as in gnathostomes, but forms the upper lip instead. The gnathostome jaw may thus have arisen through a process of ontogenetic repatterning, in which a heterotopic shift of mesenchyme-epithelial relationships would have been involved. Further identification of shifts in tissue interaction and expression of regulatory genes are necessary to describe the evolution of the jaw fully from the standpoint of evolutionary developmental biology.

Animals↗

Transvaginal ultrasonographic (TVS) evaluation of baboon gestation from 37-62 days postconception.

Our objective was to determine the growth of the embryo and surrounding structures during baboon (Papio anubis) gestation using transvaginal sonography (TVS). To this end, we evaluated 19 timed-mated baboons using TVS between 37 and 62 days of gestation. After visualization of the gestational sac, amniotic sac, and yolk sac, the three largest diameters of each of these extra embryonic structures were measured using longitudinal and transverse views. Embryonic crown-rump length (CRL) was also recorded. Embryonic heart rates were determined using the M-mode function of the ultrasound equipment. All 19 gestations developed without complications. No significant trend could be demonstrated for heart rate or yolk sac diameters over the 37-62 day gestational age period. Mean (SD) gestational age in days, heart rate, and yolk sac diameter, respectively, for the group were 48 (7.8) days (range: 37-61), 180 (15) beats per minute (range: 156-221) and 5 (0.1) mm (range: 3-8). Significant correlations (P < 0.0001) were determined between gestational age and CRL and gestational and amniotic sacs. We conclude that TVS allows a clear visualization of the embryo proper and all the cavities within the gestational sac of the baboon gestation. This study has determined the normal pattern of changes of these cavities from 37-62 days of gestation. Future applications of these findings may include sampling fluid from these cavities for biochemical, cytological, and metabolic studies.

Animals↗

Abundant and dynamic expression of G protein-coupled P2Y receptors in mammalian development.

Extracellular ATP mediates diverse biological effects by activating two families of receptors, the P2X and P2Y receptors. There is growing evidence to show that activation of G protein-coupled P2Y receptors can produce trophic effects in many cell types. Yet the expression and function of the P2Y receptors in development has rarely been studied and has never been investigated in mammalian development. This study used the reverse transcription-polymerase chain reaction and immunohistochemistry to demonstrate the abundant and dynamic expression of P2Y receptors in rat development. These receptors were expressed in a wide range of embryonic structures, notably somites, skeletal muscle, the central and peripheral nervous system, the heart, lung, and liver. All the P2Y receptors studied were expressed as early as embryonic day 11, when most embryonic organs were far from being functional and still in the process of being formed. P2Y receptor proteins were strongly expressed in temporary, developmental structures that do not have a correlate in the adult animal, including the somites (P2Y1, P2Y2, and P2Y4) and the floor plate of the neural tube (P2Y1). P2Y receptors were also dynamically expressed, with receptor mRNA and protein being both up- and down-regulated at different developmental stages. The down-regulation of the P2Y1, 2, and 4 receptor proteins in skeletal muscle and heart, and the disappearance of the P2Y4 receptor from the brainstem and ventral white matter of the spinal cord postnatally, demonstrated that many P2Y receptors were likely to be involved in functions specific to embryonic life. Thus, these findings strongly suggest that P2Y receptors play an important role in the development of many tissues, and pioneer further studies into the role of purinergic signalling in development.

Adenosine Triphosphate↗

Disruption of the HNF-4 gene, expressed in visceral endoderm, leads to cell death in embryonic ectoderm and impaired gastrulation of mouse embryos.

Expression of HNF-4, a transcription factor in the steroid hormone receptor superfamily, is detected only in the visceral endoderm of mouse embryos during gastrulation and is expressed in certain embryonic tissues from 8.5 days of gestation. To examine the role of HNF-4 during embryonic development, we disrupted the gene in embryonic stem cells and found that the homozygous loss of functional HNF-4 protein was an embryonic lethal. Cell death was evident in the embryonic ectoderm at 6.5 days when these cells normally initiate gastrulation. As assessed by expression of Brachyury and HNF-3 beta, primitive streak formation and initial differentiation of mesoderm do occur, but with a delay of approximately 24 h. Development of embryonic structures is severely impaired. These results demonstrate that the expression of HNF-4 in the visceral endoderm is essential for embryonic ectoderm survival and normal gastrulation.

Animals↗

Proteomic profiling of facial development in chick embryos.

Craniofacial disorders are associated with one-third of human birth defects but the underlying molecular and cellular causes remain poorly understood. Proteomics seems well-placed to benefit this medically important area but the scarcity of embryonic tissues poses a major challenge. In this study, we applied a microsample proteomics strategy to investigate the first branchial arch, an embryonic structure crucial for facial development, and found that proteome analysis is both practicable and informative despite the scarcity of tissue. Exploiting the embryonic chick as a tractable source of accurately staged tissue, we developed a sequential extraction procedure to interface with one-dimensional polyacrylamide gel electrophoresis (1-D PAGE) and 2-D PAGE. In 2-D gels, about 8% of the visible proteome changed between embryonic days 3 and 5, and the identities determined for 21 proteins accorded with the rapid growth during this period. These results led to the first molecular identification of chicken alpha-fetoprotein, and an unusual localisation of vimentin to endoderm. With over 470 protein spots accessible, this comparative proteomics approach has good prospects for providing new markers, functional hypotheses and genes to target in functional tests. A broader value of extending these approaches to facial development in other species and to other areas in embryology can be anticipated.

Albumins↗

Cdx2 is essential for axial elongation in mouse development.

Inactivation of Cdx2 leads to preimplantation embryonic lethality. Rescue of the implantation defect by tetraploid fusion established that Cdx2 is necessary for trophoblastic development, vasculogenesis in the yolk sac mesoderm, allantoic growth, and chorioallantoic fusion. "Rescued" Cdx2 mutants die at late gastrulation stages because of failure of placental development. Cdx2 is also needed for the completion of the normal process of gastrulation and tail bud elongation. Presegmental paraxial mesoderm is severely restricted in amount and somites posterior to somite 5 are abnormal. The Cdx2 mutation, like mutations impairing Wnt and Fgf signaling, causes posterior truncations and disturbs axial patterning of the embryonic structures, indicated by changes in the Hox expression domains. The gene appears to be important in the integration of the pathways controlling embryonic axial elongation, and anterior-posterior patterning.

Animals↗

Vertebrate craniofacial development: the relation between ontogenetic process and morphological outcome.

Many structures that are present, often transiently, in the head of extant vertebrate embryos appear to be segmentally organized. These include the brain, particularly the hindbrain (e.g., rhombomeres), and adjacent axial structures such as paraxial mesoderm (e.g., somites, somitomeres) and neural crest cells. Also present in the head are additional sets of serially arranged structures that develop in more ventral and lateral locations. Examples of these are epibranchial placodes, aortic arches, and pharyngeal pouches. All these embryonic structures are frequently used both individually and collectively as characters to assist in defining homologies. New cell labeling and identification methods are providing detailed accounts of cell movements and tissue lineages that reveal a range of disparate behaviors not previously appreciated. The well-known migrations of neural crest cells bring all but the neurogenic members of this mesenchymal population form dorsal, axial locations into ventral and rostral locations where they largely surround the pharynx, stomdeum, and prosencephalon. Equally dramatic movements of neural plate cells, myoblasts, angioblasts, and placode-derived cells have recently been documented. These movements may occur in concert with those of other nearby tissues (e.g., branchiomeric myoblasts, neural crest cells, and surface ectoderm) or may be independent (e.g., placodal neuroblasts). Migrating cells may be clustered and follow definable pathways towards their destination (e.g., neural crest cells), or they may be solitary and wander invasively without a prespecified destination (e.g., angioblasts). These extensive morphogenetic movements bring cells into contact with a greater variety of other tissues and matrix environments than has heretofore been recognized. Moreover, because of these rearrangements, the cells present in a particular location, such as a branchial arch, may trace their ancestry to many axial levels, which complicates the analyses of segmental relations. Comparative morphological studies of craniofacial development have recently been augmented by descriptions of the sites and times of expression of many matrix components, growth factors and their receptors, and regulatory genes. Particularly important has been the discovery of a network of genes called the homeobox family. These genes are similar in their sequence and their organization along a chromosome to genes that establish the spatial identity of prospective body parts in drosophila. The combination of cellular and molecular descriptive studies of vertebrate craniofacial development provide exciting opportunities to catalogue patterns of gene expression and morphogenesis during the gastrula, neurula, and early organogenesis stages. Moreover, such data form the basis for proposing and then testing hypotheses about the mechanisms controlling cell movements, tissue formation, and the assembly of functionally integrated sets of structures.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Structure of very early protein folding intermediates: new insights through a variant of hydrogen exchange labelling.

BACKGROUND: Hydrogen exchange labelling has been a key method in characterizing the structure of transient folding intermediates. In studies of several proteins, however, there has been clear spectroscopic evidence for partial folding of some kind at very early times, before any protection from exchange was measurable. These results, presumably a consequence of limited stability of specific backbone interactions, have made it difficult to assess the extent of native-like folding in the very early intermediates. We have used a variant of the labelling method to investigate marginally stable structures formed within the first few milliseconds of refolding of two such proteins, hen lysozyme and ubiquitin. RESULTS: In lysozyme, population of a subset of native-like secondary structures on this timescale is revealed, thus reconciling the exchange behaviour with circular dichroism measurements and confirming the significance of the rapidly formed embryonic structure as a foundation for the subsequent folding pathway. In the case of ubiquitin, by contrast, no significantly protective structure was detectable, suggesting that here secondary structural elements can be populated only marginally ahead of the major cooperative folding event; this was also supported by stopped-flow circular dichroism measurements. CONCLUSIONS: The hydrogen exchange approach can be extended to probe the formation of native-like structure formed in very early folding intermediates, even when the stability of specific interactions is marginal. In the case of lysozyme, this has provided a new window on an early stage of organization of the alpha-helical domain.

Animals↗

Pyourachus: study of two cases.

The urachus, or median umbilical ligament, is a midline tubular structure that extends upward from the anterior dome of the bladder toward, the umbilicus and represents the vestigial remnant of at least two embryonic structures, the cloaca and the allantois. The tubular urachus normally involutes before birth, remaining as a fibrous band, however its persistence can give rise to various clinical problems, not only in infants and children but also in adults. We report two cases of pyourachus at our institute with a review of the clinical presentation, imaging findings and surgical management. Both our patients were young males, with haematuria being the presenting feature in one case which has not been previously described in literature.

Adult↗