PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Embryonic Development”

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 1,477 records · Page 82Linked to original sources

Mammalian embryonic development--insights from studies on the X chromosome.

This paper reviews our early studies on the cycle of changes of X chromosome activity in different lineages of the developing female mouse embryo. The emphasis is placed on the insights gained into key developmental processes such as the temporal and spatial aspects of developmental totipotency, the timing and cell numbers involved in the origin of the germ line, the molecular mechanisms of genetic deprogramming, reprogramming and X chromosome imprinting, and transgenerational epigenetic inheritance. When viewed in this way, it is quite remarkable to see how much was learned about mammalian development from early studies on the X chromosome. Indeed several paradigm shifts occurred as a result of these studies and these are highlighted in this review.

Animals↗

Effect of oxygen concentration in the gas atmosphere during in vitro insemination of bovine oocytes on the subsequent embryonic development in vitro.

In vitro matured bovine oocytes were co-incubated with sperm for 18 hr in a droplet of fertilization medium under a gas atmosphere of 5% CO2 with 5 or 20% O2. After removing the cumulus cells, they were fixed to examine their fertilization rate, or cultured for another 154 hr in a chemically defined medium under 5% O2 to determine their development to the blastocyst stage. There was no difference between the 5 and 20% O2 groups in the fertilization rate. However, the percentage of inseminated oocytes which developed to the blastocyst stage was higher when in vitro insemination was conducted under 5% O2 compared with that under 20% O2 (34.4 vs. 24.7%, P < 0.05).

Animals↗

The embryonic development of the inferior olivary complex in normal and reeler (rlORL) mutant mice.

The development of the inferior olivary complex has been studied comparatively in normal and reeler mutant mice, from embryonic day 14 to birth. In both genotypes, cells migrate tangentially, from the lateral recess of the fourth ventricle, until they reach the ventral rhombencephalon where they enter the olive radially. Some cells also enter the olive laterally, from its external side. In both genotypes, olivary neurons differentiate following the same morphological sequence, both in terms of dendritic deployment and of axonal growth. Olivofugal axons cross the midline as early as E14. Synapses are rare in the inferior olivary complex during the prenatal period. Radial glial cells and the first stages of astrocytogenesis appear similar in both genotypes. The process of olivary maturation begins at E15. In normal embryos, this occurs concurrently with a subdivision of the olivary complex, clearly defined at birth: the principal olive (PO) is "U" shaped and located between the medial accessory olive (MAO) and the dorsal accessory olive (DAO). In reeler mutants, there are abnormalities in the configuration of the inferior olivary complex. Even the earliest lobulated contours are anomalous. The ultimate configuration, though containing the principal elements of the normal complex, is blunted, compact, and very much less "calligraphic" in its undulation than in the normal animal. The reeler dysplasia is mild at E15 and becomes increasingly evident at later developmental stages. These observations show that the reeler gene primarily affects the position of neuronal cells relative to other cellular elements and to fiber strata, while leaving relatively intact the phenomena of cell migration and differentiation. Afferent fibers from spinal and midbrain origin are probably involved in the division of the olivary complex into its components (Martin et al., '80). In addition, the development of the cerebellar cortex could influence the morphogenesis of the olivary nuclei. However, the architectonic malformation of the reeler inferior olive can hardly be exclusively attributed to perturbations of its hodological relationships. It is proposed that the abnormal development of the inferior olive in reeler mutants is largely dependent on a local, intrinsic action of the mutant gene on the olivary primordium.

Animals↗

Early embryonic development in vitro and embryo transfer in the cat.

Ten female cats were given a total dose of 200 IU PMSG over 3 days to induce superovulation. One to four-cell stage embryos were collected by flushing the oviducts 48 to 54 hr after the initial 250 IU dose of hCG. Some of the normal embryos collected were examined for culture in Medium-199 supplemented with 20% FCS. After 72 hr of culture, 222/248 (89.5%) had developed to the morula stage, and by 96-168 hr, 110 (64.7%) out of 170 morulae had developed into blastocysts. Four to 12 embryos cultured in vitro per cat were transferred to one of the uterine horns of 12 recipients in which synchronous ovulation had been induced with hCG. All 4 recipients of embryos which had developed to the morula stage on culture day 3, 3 of the 5 recipients of blastocysts on culture days 4-6, and none of the 3 recipients of blastocysts on culture day 7 became pregnant. It is concluded that early feline embryos are capable of efficiently developing into transferable morulae in vitro by ordinary culture methods, but that there is partial developmental arrest from the morula to the blastocyst stage.

Animals↗

Expression of the vitronectin receptor during embryonic development; an immunohistological study of the ontogeny of the osteoclast in the rabbit.

The development of the osteoclast during embryogenesis was studied in the rabbit by immunohistological techniques. Two monoclonal antibodies, 13C2 and 23C6, which react with the alpha-chain of the vitronectin receptor were used to define mono and multi-nucleate osteoclasts; being unreactive with other haemopoietic cells these antibodies could discriminate between osteoclasts and cells of the mononuclear phagocyte system. Staged rabbit embryos, from 14 to 28 days of age, were analysed and compared with findings from newborn and adult rabbits. No 13C2/23C6 immunoreactivity was seen in any of the tissues studied prior to day 17. 13C2/23C6-positive, mononuclear cells--presumptive osteoclast precursors--were first observed in the outer perichondrium of long-bones adjacent to the zone of hypertrophic cartilage in day 17 embryos. From day 17 onwards mono and multi-nucleate cells accumulated progressively in the perichondrium/periosteum, and by day 22 within the developing bone marrow cavity attached to bone spicules. No cells expressing the vitronectin receptor were seen at sites of embryonic or foetal haemopoiesis in yolk sac or foetal liver, that is, prior to the formation of the marrow cavity. Macrophages, defined by cross-reactivity with an antibody to human HLA-DR, first appeared in developing marrow spaces 11 days after the first osteoclast precursor appeared, suggesting that osteoclasts and definitive macrophages might develop from separate cell lineages, or that they diverge at an early stage of differentiation of haemopoietic stem cells.

Animals↗

Culture media for mouse oocyte maturation affect subsequent embryonic development.

These experiments were done to determine whether the culture medium used for the spontaneous maturation of mouse oocytes can affect the subsequent capacity of the ova to become fertilized and complete preimplantation development in vitro and development to live young. Oocytes obtained from antral follicles of gonadotropin-primed immature mice underwent spontaneous maturation in control medium, i.e. Eagle's Minimum Essential Medium (MEM) supplemented with 5% fetal bovine serum, or in one of eight different media which were also supplemented with serum. All of the ova were fertilized in Whitten's medium and were assessed for cleavage to the 2-cell stage and for further preimplantation development to blastocysts during culture in Whitten's medium. Three of the eight media used for oocyte maturation improved the capacity of the ova to develop to the blastocyst stage when compared with the control: Waymouth MB 752/1, MEM with non-essential amino acids, and MEM Alpha; Waymouth medium promoted the highest frequency of development of ova to the blastocyst stage. Moreover, the blastocysts derived from oocytes that matured in Waymouth medium contained more cells than blastocysts derived from oocytes that matured in control medium. Although BGJb medium promoted the cleavage of eggs to the 2-cell stage when present during oocyte maturation, it had a detrimental effect on their subsequent preimplantation developmental capacity. Following transfer to foster mothers, more 2-cell stage embryos developed to live young after oocyte maturation in Waymouth medium (21%) than in control medium (13%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Distribution of extracellular matrix components during early embryonic development in the macaque.

The distribution of fibronectin (FN), laminin (LM), hyaluronic acid (HA) and chondroitin sulfate (CS) were examined by peroxidase immunocytochemistry in long-tailed monkey embryos during the period of neural tube and notochord formation (stages 8-11). Reactivity for each component in the neuroepithelial basement membrane (BM) increased with advancing development. Discontinuous staining was observed in areas of epithelial-to-mesenchymal transformation, i.e. in dorsolateral sites of neural crest emigration and in the axial region of the primitive streak. The BM forming around the developing notochord also showed increased reactivity for FN, LM, HA and CS between stages 8 and 11. No staining occurred within the notochord. Stage-related increases in reactivity in the mesenchymal matrix was particularly notable for FN and HA which were ubiquitous throughout the mesoderm by stage 11. The results of this study are consistent with the proposed role of these components in maintaining epithelial integrity and providing a permissive substrate for cell migration during development. The observed temporal and regional staining patterns suggest that these glycoproteins and glycosaminoglycans are important morphogenetic factors in the macaque.

Animals↗

Knockout and knockin of the beta1 exon D define distinct roles for integrin splice variants in heart function and embryonic development.

The beta1D integrin is a recently characterized isoform of the beta1 subunit that is specifically expressed in heart and skeletal muscle. In this study we have assessed the function of the beta1D integrin splice variant in mice by generating, for the first time, Cre-mediated exon-specific knockout and knockin strains for this splice variant. We show that removal of the exon for beta1D leads to a mildly disturbed heart phenotype, whereas replacement of beta1A by beta1D results in embryonic lethality with a plethora of developmental defects, in part caused by the abnormal migration of neuroepithelial cells. Our data demonstrate that the splice variants A and D are not functionally equivalent. We propose that beta1D is less efficient than beta1A in mediating the signaling that regulates cell motility and responses of the cells to mechanical stress.

Animals↗

Mammalian copper chaperone Cox17p has an essential role in activation of cytochrome C oxidase and embryonic development.

Cox17p is essential for the assembly of functional cytochrome c oxidase (CCO) and for delivery of copper ions to the mitochondrion for insertion into the enzyme in yeast. Although this small protein has already been cloned or purified from humans, mice, and pigs, the function of Cox17p in the mammalian system has not yet been elucidated. In vitro biochemical data for mammalian Cox17p indicate that the copper binds to the sequence -KPCCAC-. Although mouse embryos homozygous for COX17 disruption die between embryonic days E8.5 and E10, they develop normally until E6.5. This phenotype is strikingly similar to embryos of Ctr1(-/-), a cell surface copper transporter, in its lethality around the time of gastrulation. COX17-deficient embryos exhibit severe reductions in CCO activity at E6.5. Succinate dehydrogenase activity and immunoreactivities for anti-COX subunit antibodies were normal in the COX17(-/-) embryos, indicating that this defect was not caused by the deficiency of other complexes and/or subunits but was caused by impaired CCO activation by Cox17p. Since other copper chaperone (Atox1 and CCS)-deficient mice show a more moderate defect, the disruption of the COX17 locus causes the expression of only the phenotype of Ctr1(-/-). We found that the activity of lactate dehydrogenase was also normal in E6.5 embryos, implying that the activation of CCO by Cox17p may not be essential to the progress of embryogenesis before gastrulation.

Alleles↗

[Discrete probability of a model for information provision on early embryonic development].

A percolation model of the diffuse redistribution of morphogenetic information in early regulative development is analyzed. It is demonstrated that the statistical average values of cell connectedness remaining below the percolation threshold of the spatial redistribution of developmental determinants do not provide for the formation of cell structures of the necessary size. The average number of cell interactions should exceed the percolation threshold, and, therefore, the carriers of morphogenetic information in early development can move over distances comparable with the size of the entire embryo. The assumption concerning the percolation mechanism of cell death is used as a basis for estimating the statistical average value of cell connectedness at which the predicted number of cells theoretically isolated from the flow of signal molecules corresponds to the observed frequencies of dying embryonic cells. The estimated average number of cell interactions significantly exceeds the threshold of information resource percolation in the embryonic space and agrees with estimations of other authors, based on direct observations. The probable role of the diffusion front, or percolation cluster shell, in the regionalization of embryonic structures differing in their prospective values is discussed. It is shown that the duration of the communicative period, along with the statistical average number of channels providing for the intercellular transfer of signal molecules by diffusion, is a parameter controlling the processes of determination of embryonic structures.

Embryo, Mammalian↗

Embryonic development of an endoparasitoid, Microplitis croceipes (Hymenoptera: Braconidae) in cell line-conditioned media.

Embryos of the parasitoid Microplitis croceipes develop from pregerm band stage to first larval instar in cell culture medium conditioned by a cell line (IPLB-LdFB) derived from fat body from an atypical host Lymantria dispar. However, the percentage of eggs that develop normally to the first larval instar stage is significantly less than for those maintained in IPL-52B medium conditioned with host fat body tissue. Therefore, we examined the capacity of five insect cell lines to promote growth and development of pregerm band eggs in five media, IPL-52B, TC-199, TC-100, Grace's, and ExCell 400. The developmental response of M. croceipes was dependent both on the cell line and the cell culture medium used. TC-100, TC-199, and Grace's media promoted development to the germ band stage without the need for conditioning with host tissue. IPL-52B supported development to the germ band stage when a defined lipid concentrate was added. In IPL-52B medium, the IPLB-LdFB cell line promoted a significantly higher number of eggs developing to germ band relative to the other cell lines; however, none of the cell line-conditioned IPL-52B medium significantly stimulated egg hatch relative to the control medium. None of the cell line-conditioned Grace's media had a significant effect on eggs attaining germ band stage compared with the Grace's control medium. However, Grace's medium conditioned with the IAL-TND1 and IPLB-LdFB cell lines promoted development beyond germ band, resulting in a significantly higher percentage of hatching eggs than the Grace's control medium.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

mCelsr1 is an evolutionarily conserved seven-pass transmembrane receptor and is expressed during mouse embryonic development.

Mcelsr1 encodes a protein of 3034 amino acids predicted to contain seven membrane spanning domains having homology to a group of peptide hormone binding G-protein coupled receptors. Its extracellular domain comprises epidermal growth factor-like repeats, laminin A G-domains and cadherin repeats. Homologous genes have been identified in C. elegans and D. melanogaster suggesting that the Celsr gene family is ancient. mCelsr1 mRNA expression precedes gastrulation, is subsequently restricted primarily to ectodermal derivatives and is tightly regulated in the developing central nervous system (CNS). We observe segmentally-restricted gene expression in the developing hindbrain and in the spinal cord dynamic dorso-ventrally restricted 'stripes' of expression.

Amino Acid Sequence↗

Nidogen-1 and nidogen-2 are found in basement membranes during human embryonic development.

The recently identified nidogen-2 is a matrix protein showing homology to the well-known basement membrane molecule nidogen-1. Nidogen-1 might well serve as a link between laminin-1 and collagen type IV and thus stabilise certain basement membranes in vivo and play a major role in embryogenesis. However, the exact tissue distribution of nidogen-1 and nidogen-2 during human embryogenesis is still unclear. As a first step towards the elucidation of their possible cell biological functions during human development, we compared the distribution of both nidogens during human organogenesis at the light microscope level. Nidogen-2 and nidogen-1 were found to be ubiquitous components of basement membrane zones underneath developing epithelia of most of the major organ systems. However, in the developing intestine and the pancreas anlage, only nidogen-1 was present in the epithelial basement membrane zones of all developmental stages investigated. Our data suggest that nidogen-2 and nidogen-1, as is known for mouse development, could well participate in cell biological functions during human development. These two proteins might well be able to fulfil identical functions during human organogenesis.

Animals↗

Heat shock transcription factor 2 is not essential for embryonic development, fertility, or adult cognitive and psychomotor function in mice.

Members of the heat shock factor (HSF) family are evolutionarily conserved regulators that share a highly homologous DNA-binding domain. In mammals, HSF1 is the main factor controlling the stress-inducible expression of Hsp genes while the functions of HSF2 and HSF4 are less clear. Based on its developmental profile of expression, it was hypothesized that HSF2 may play an essential role in brain and heart development, spermatogenesis, and erythroid differentiation. To directly assess this hypothesis and better understand the underlying mechanisms that require HSF2, we generated Hsf2 knockout mice. Here, we report that Hsf2(-/-) mice are viable and fertile and exhibit normal life span and behavioral functions. We conclude that HSF2, most probably because its physiological roles are integrated into a redundant network of gene regulation and function, is dispensable for normal development, fertility, and postnatal psychomotor function.

Acetylcysteine↗

Effects of embryo density and co-culture of unfertilized oocytes on embryonic development of in-vitro fertilized mouse embryos.

We have evaluated the effects of embryo density and the co-culture of unfertilized (degenerating) oocytes on the development of in-vitro fertilized (IVF) mouse embryos. In experiment 1, groups of one, five, 10 or 20 zygotes were cultured in 20 microliter drops of modified human tubal fluid (HTF) medium for 168 h at 38.7 degrees C in 5% CO2 and 95% air. As the embryo density increased, significantly (P < 0.05) higher rates of embryos reached hatched blastocyst stage. In addition, the time required for hatching after IVF was significantly (P < 0.05) shortened by the increase in embryo density. In experiment 2, 10 IVF zygotes were cultured with or without 10 unfertilized (degenerating) oocytes in 20 microliter drops of HTF medium. The rates of IVF embryos that developed to morula, blastocyst, expanded blastocyst and hatched blastocyst stages were decreased significantly (P < 0.01) by culturing embryos with unfertilized oocytes compared with culturing embryos alone. In experiment 3, groups of one or 10 IVF zygotes or 10 IVF zygotes plus 10 unfertilized oocytes were cultured in 20 microliter drops of HTF medium and the number of cells per blastocyst was examined at 120 h after IVF. Increasing embryo density resulted in a significant (P < 0.05) increase in the number of cells per blastocyst. In contrast, the cell number of IVF embryos that developed to blastocyst decreased significantly (P < 0.05) when they were cultured with unfertilized oocytes. The results suggest that in-vitro development of IVF mouse embryos is enhanced by increasing embryo density and is impaired by co-culture with unfertilized (degenerating) oocytes.

Animals↗

Embryonic development of the innervation of the locust extensor tibiae muscle by identified neurons: formation and elimination of inappropriate axon branches.

Intracellular dye fills have been used to reveal the pattern of embryonic growth of each of the four neurons which innervate the extensor tibiae muscle (ETi) of the hind leg of the locust. The growth cone of the slow extensor tibiae motoneuron (SETi), the first of the four neurons to leave the central nervous system, pioneers nerve 3 (N3). The fast extensor motoneuron (FETi), the next neuron to grow out, follows earlier outgrowing motoneurons into the periphery in nerve 5 (N5) and then rejoins SETi in N3. As it transfers from N5 to N3, it is transiently dye-coupled to the Tr1 pioneer neuron which spans the gap between the two nerves. It then follows SETi onto the ETi muscle in the femur. The common inhibitory neuron and the dorsal unpaired median neuron (DUMETi) follow SETi and FETi in nerves 3B2 and 5B1, respectively. SETi's growth cone requires almost twice as long to reach ETi as those of the three later motoneurons, all of which follow preexisting neural pathways. At least three of the four developing motoneurons form one or more axon branches not found in the adult. These branches may occur (1) at segmental boundaries; (2) where the nerve, which the growth cone is following, itself branches or the growth cone encounters another nerve; or (3) when the axon continues to grow beyond its target muscle. These findings contrast with the apparent absence of inappropriate axon branches in another developing locust neuromuscular system and during the innervation of zebrafish myotomes, but resemble in some ways the transient production of inappropriate axonal branches reported for embryonic leech motoneurons.

Animals↗

Sex difference in mouse embryonic development at neurulation.

Sixty-seven mouse embryos from 10 litters collected on the morning of Day 9 of gestation, when neurulation is beginning, were classified according to the precise stage of development reached, and sex-chromatin analysis was performed on the yolk sac. Within litters, the least developed embryos were more likely to be female than male, while the most advanced embryos were predominantly male. Taking all embryos, the mean somite number was greater in males than females.

Animals↗

[Reinsemination of oocytes by intracytoplasmic sperm injection after the failure of conventional fertilization. Early embryonal development].

OBJECTIVE: To analyze the influence of intracytoplasmic sperm injection (ICSI) on early embryo development used for reinsemination of unfertilized 1-day-old oocytes. DESIGN: Prospective observational study. MATERIALS AND METHODS: A total of 126 embryos resulted from reinsemination by ICSI were analyzed with regard for the time course of cleavage and the quality of embryos at 48 hours after injection. Results were compared with those obtained in 698 embryos obtained after routine ICSI program. RESULTS: It has been shown that embryos derived from reinsemination developed slower in comparison with those obtained after regular ICSI program. At 48 hours after microinjection 50% of embryos achieved 4 blastomeres stage and 37% remained on 2 cells stage. 71% of regular ICSI embryos at this same time showed 4 blastomere or more, only 16% remained on 2 blastomeres stage. The quality of embryos was similar in two compared groups, however those obtained following reinsemination at 4 blastomere stage were significantly poorer quality. CONCLUSION: Embryos derived from reinsemination of 1-day old oocytes unfertilized after conventional IVF developed slower and the quality of embryos at 4 blastomere stage was poorer comparing to regular ICSI embryos.

Embryo Transfer↗