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Potential roles for tumour necrosis factor alpha during embryonic development.

This paper reviews the evidence indicating possible roles for tumour necrosis factor-alpha (TNF alpha) in development. It is proposed that TNF alpha may have essentially three major roles during embryonic development, which may be analogous to its roles in the immune system and during inflammation: a role in programmed cell death; a role as a cellular growth and differentiation factor; and also a role in the remodelling of extracellular matrix, and the regulation of cell adhesion molecules and integrins. The concept of the existence of a cytokine array during embryogenesis, analogous to that occurring in inflammation, is discussed, as well as potential roles for TNF alpha in the induction of ubiquitin; protective mechanisms embryonic cells may employ against TNF alpha-mediated cytotoxicity; and a consideration of the role TNF alpha may play in a "free radical theory of development".

Animals↗

Effects of male accessory sex gland secretions on early embryonic development in the golden hamster.

The ventral prostates, dorsolateral prostates, coagulating glands, seminal vesicles and/or ampullary glands were bilaterally removed from adult male hamsters. Removal of these glands did not affect the fertilization rate and cleavage of the embryos at 48 h post coitum (p.c.). Air-dried preparations of the embryos showed a delay in cleavage at 72 h p.c. and a significant number of degenerated embryos was also found in females mated with males from which all the male accessory sex glands had been removed. A significant implantation loss was also observed at 122 h p.c. The results suggest that, in the golden hamster, removal of the male accessory sex gland causes a slower cleavage rate in embryonic development and a significant embryonic loss during pregnancy.

Animals↗

Phosphotyrosine-containing proteins are concentrated in differentiating cells during chicken embryonic development.

Protein tyrosine phosphorylation may be an important indicator of both the proliferative status and differentiation status of cells during embryonic development. To determine how each of these factors contributes to the level of phosphotyrosine-containing proteins detectable in embryonic tissues we have used immunohistochemistry with anti-phosphotyrosine antibodies on sections of developing chicken embryos. In contrast to an earlier study (Takata and Singer, 1988) we found proteins phosphorylated on tyrosine residues to be present in many different cells of the developing chicken embryo. The successful detection of phosphotyrosine-containing proteins in many cell types required the presence of sodium orthovanadate, a phosphotyrosine phosphatase inhibitor, during fixation. Despite the fact that the majority of tyrosine kinases identified to date are growth factor receptors, the highest levels of phosphotyrosine-containing proteins in many tissues were localized to populations of cells which were differentiating or migrating rather than dividing.

Animals↗

Effect of endometriosis on early embryonic development in the rabbit.

The reasons for sub-fertility in patients with mild endometriosis remain unclear. Peritoneal fluid constituents may alter tubal transport and embryonic cleavage, with subsequent implantation disturbances. We used an animal model to study the influence of endometrial implants on early embryonic development. In 25 rabbits, endometrium from the right uterine horn was transplanted onto the peritoneum (Experimental group = Group E). In 25 rabbits, fat was transplanted (control group = group C). After a recovery period of 12 weeks the does were mated, and killed 24 h later. In the experimental group the implants had changed into cysts of 5-15 mm in diameter. Histological examination revealed endometrial glands and stroma in every specimen. Periadnexal adhesions did not develop in any animal. No marked differences were found between Groups E and C in embryonic cleavage stage, 24 h after mating. Additional culturing of the embryos for 48 h in a suitable culture medium revealed normal further development of the embryos. Bearing in mind the restrictions of extrapolating a rabbit model to the human, it is suggested that the decreased fecundity in mild endometriosis is not caused by altered early embryonic cleavage rate. The results of this study offer indirect evidence for implantation disturbances as a cause of endometriosis-associated sub-fertility.

Animals↗

Stages of embryonic development in the Atlantic cod Gadus morhua.

The early development of the Atlantic cod, Gadus morhua was studied from fertilization until first-feeding. Multiple families were reared at 7 degrees C and a developmental staging series was prepared using morphological landmarks visible with the light microscope. Stages were named rather than numbered to allow for future additions and broadly grouped into larger time intervals called periods. The most useful staging features were found to be initially cell number, and later in development, somite number. The mean cell cycle time for the first six cleavages was 135 min and the linear regression equation for development of somites(s) over time (t) was s = 0.29t - 18.14. The segmentation period began at 220 h postfertilization (hpf), and unlike some other teleosts, the addition of new somites continued throughout the majority of embryonic development, until just prior to hatching. Hatching occurred at 256 hpf, after which individuals remained motionless at the water's surface, undergoing negative phototaxis only after the first day posthatch. The first-feeding stage was reached at the end of the third day posthatch, subsequent to development of a functional jaw and hindgut. This staging series provides an essential baseline reference for future experiments involving developing cod embryos and for the aquaculture industry.

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Effects of simulated microgravity on mammalian fertilization and preimplantation embryonic development in vitro.

OBJECTIVE: To study the effects of simulated microgravity on mammalian fertilization and preimplantation embryonic development in vitro with the use of a horizontal clinostat device. DESIGN: Controlled animal study. SETTING: Research laboratory at a university medical school. ANIMAL(S): B6D2F1 (C57BL/6 x DBA/2) and ICR mice between 8 and 10 weeks old. INTERVENTION(S): The first experiment was performed to investigate whether gravity is required for fertilization in vitro under three conditions: clinostat rotation, rotational control, and stationary control. In the second experiment, one-cell embryos were cultured under each condition and their morphology and viability were assessed at 96 hours. MAIN OUTCOME MEASURE(S): The fertilized numbers and embryonic numbers at the morula and blastocyst stages were recorded in each condition. RESULT(S): In the first experiment, there were no statistically significant differences in the efficiency of achieving normal fertilization in vitro among the conditions. In the second experiment, there was a statistically significant decrease in the number of embryos reaching the morula and blastocyst stages after 96 hours in culture under clinostat rotation. CONCLUSION(S): These results suggest that the process of fertilization in vitro is not sensitive to the gravitational vector. However, the possibility exists that the frequency of early embryonic lethality is increased by microgravity.

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The tenascin family of ECM glycoproteins: structure, function, and regulation during embryonic development and tissue remodeling.

The determination of animal form depends on the coordination of events that lead to the morphological patterning of cells. This epigenetic view of development suggests that embryonic structures arise as a consequence of environmental influences acting on the properties of cells, rather than an unfolding of a completely genetically specified and preexisting invisible pattern. Specialized cells of developing multicellular organisms are surrounded by a complex extracellular matrix (ECM), comprised largely of different collagens, proteoglycans, and glycoproteins. This ECM is a substrate for tissue morphogenesis, lends support and flexibility to mature tissues, and acts as an epigenetic informational entity in the sense that it transduces and integrates intracellular signals via distinct cell surface receptors. Consequently, ECM-receptor interactions have a profound influence on major cellular programs including growth, differentiation, migration, and survival. In contrast to many other ECM proteins, the tenascin (TN) family of glycoproteins (TN-C, TN-R, TN-W, TN-X, and TN-Y) display highly restricted and dynamic patterns of expression in the embryo, particularly during neural development, skeletogenesis, and vasculogenesis. These molecules are reexpressed in the adult during normal processes such as wound healing, nerve regeneration, and tissue involution, and in pathological states including vascular disease, tumorigenesis, and metastasis. In concert with a multitude of associated ECM proteins and cell surface receptors that include members of the integrin family, TN proteins impart contrary cellular functions, depending on their mode of presentation (i.e., soluble or substrate-bound) and the cell types and differentiation states of the target tissues. Expression of tenascins is regulated by a variety of growth factors, cytokines, vasoactive peptides, ECM proteins, and biomechanical factors. The signals generated by these factors converge on particular combinations of cis-regulatory elements within the recently identified TN gene promoters via specific transcriptional activators or repressors. Additional complexity in regulating TN gene expression is achieved through alternative splicing, resulting in variants of TN polypeptides that exhibit different combinations of functional protein domains. In this review, we discuss some of the recent advances in TN biology that provide insights into the complex way in which the ECM is regulated and how it functions to regulate tissue morphogenesis and gene expression.

Adult↗

Early embryonic development in the rat following in utero exposure to alcohol and caffeine.

The influence of both alcohol and caffeine on early embryonic development was investigated in pregnant rats. Compared to the corresponding controls, a high incidence of resorptions and abnormal embryos was induced following treatment of the animals with alcohol (0.015 ml/g body weight, 12.5% v/v, i.p.) on gestational days 6 through 12 and with caffeine (25 mg/kg body weight, i.v.) on gestational day 10. In addition, embryonic growth was severely affected. Reduction of placental blood circulation and impairment of cellular proliferation may account for the observed deleterious effects on the embryo.

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The gene for the homeodomain-containing protein Cart-1 is expressed in cells that have a chondrogenic potential during embryonic development.

We have examined the expression of the gene for Cart-1, a new homeodomain-containing protein, during rat embryonic development. In early embryos, Cart-1 RNA was detected at high levels in head mesenchyme, lateral mesoderm, sclerotomes and limb bud mesenchyme. These tissues contain prechondrocytic mesenchymal cells responsible for the formation of the cartilaginous skeleton. In addition, Cart-1 RNA was also found in lung buds, tendons and mesonephros. Cells in these tissues have the potential of undergoing chondrogenesis either in explants for mesonephros and tendons, or in vivo for tendons and the precursors of bronchi cartilages. No hybridization was observed in brain, spinal cord, heart, spleen, gastrointestinal tract, liver and muscle. Our results support the hypothesis that Cart-1 may play a role in the pathway of chondrogenesis. The gene for Cart-1 was mapped to a segment of mouse chromosome 10 between the genes for phenylalanine hydroxylase and interferon gamma.

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Embryonic development period and the prevalence of avian blood parasites.

Variation in prevalence of avian hematozoa is related to taxonomic affiliation at the level of the family or subfamily but not of the genus within families. Prevalence is comparatively insensitive to the influences of habitat and season; however, temperate species have higher incidences of infection than tropical species belonging to the same families. Among taxa of nonraptorial altricial landbirds, hematozoan prevalence is inversely related to the length of the incubation period but shows little relationship to body size and rate of postnatal development. This finding suggests a possible link between the duration of embryonic development and the ability to resist or control infection, possibly due to maturational processes in the avian immune system.

Animals↗

Rhodanese activity during the embryonic development of mouse liver and kidney.

Changes in specific activity and total activity levels of rhodanese in mouse kidney and liver were studied during development of the embryo, neonate and adult. The enzyme profiles during embryonic development were different for kidney and liver. The kidney showed a lower but constant activity from day 11 to 15, then an increase to reach the fully differentiated level at birth. The liver specific activity increased linearly from day 11 to reach a maximum 1 day before birth. The level of rhodanese may be correlated with the onset of organogenesis. The kidney results are discussed in terms of a protodifferentiated level of activity followed by a biphasic increase in specific protein synthesis.

Age Factors↗

Evidence that somatotroph differentiation during chicken embryonic development is stimulated by a blood-borne signal.

We reported previously that GH-secreting cells differentiate by day 16 of chicken embryonic development. In the present study, primary cultures of anterior pituitary cells from 10-, 12-, 14-, and 16-day-old chicken embryos were incubated for 2 or 6 days in serum-free medium or medium supplemented with serum from day 12 or day 16 embryos (1% serum by volume). After this culture period, the pituitary cells were recovered and subjected to reverse hemolytic plaque assays for chicken GH. GH-secreting cells did not differentiate spontaneously in serum-free cultures derived from any of the embryonic ages tested, indicating that differentiation of somatotrophs does not occur based only on the relative age of the presumptive GH cell. However, we found that treatment for as little as 2 days with serum from day 16 (but not day 12) embryos stimulated somatotroph differentiation in cultures derived from day 12, 14, and 16 embryos. These results indicate that an activity capable of stimulating GH cell differentiation in vitro is present in day 16 embryonic serum and that the presumptive GH cells were responsive to the somatotroph-differentiating effects of day 16 embryonic serum as early as day 12 of development. Next, serum from day 12, 14, and 16 embryos was evaluated over a 25-fold-range in concentration (0.2-5.0% by volume) using pituitary cells from day 12 embryos as an in vitro bioassay. Treatment with day 12 serum at any of the concentrations tested had no significant effect (P > 0.05), relative to that in serum-free cultures, in which 0.8 +/- 0.4% of all pituitary cells released GH. In contrast, treatment with day 14 and day 16 serum increased the percentage of cells that released GH to 8.0 +/- 1.3% and 12.0 +/- 0.8%, respectively (1% serum by volume). Thus, the level of somatotroph-differentiating activity in embryonic serum was undetectable in day 12 embryos, intermediate in day 14 embryos, and increased to high levels by day 16 of development concomitant with the appearance of GH-secreting cells in vivo reported previously. Next, the specificity of this response to day 16 serum was tested further by treating day 12 cells with peptides known to stimulate GH release in adult animals, GH-releasing hormone and TRH, and a GH-releasing hormone-related peptide (vasoactive intestinal peptide). None of these peptides was found to stimulate somatotroph differentiation at the doses tested (10-9 and 10-7 M).(ABSTRACT TRUNCATED AT 250 WORDS)

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Embryonic development of a population of spiking local interneurones in the locust (Schistocerca gregaria).

We examined the embryonic development of an identified group of thoracic spiking local interneurones in the locust. These interneurones are primary integrators of mechanosensory information from the legs and make inhibitory output connections with motor neurones, nonspiking local interneurones, and intersegmental interneurones. Using intracellular dye injection, we traced the origins of these interneurones and described their morphological development. All of the interneurones in this population are produced by neuroblast NB4-1. The interneurones are produced during the latter stages of the neuroblast lineage and could not be identified before 55% development. Their growth could be divided into three distinct phases: first, a period of initial outgrowth (55-70%) during which the basic skeleton of major neurites is formed; second, a shorter period of rapid growth (70-80%) during which the basic skeleton is elaborated by the addition of many side branches; and third, a period of maturation (80-95%) during which the branches formed during earlier growth appear to be pruned. The possible implications of these results for neural development and synaptogenesis are discussed.

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Embryonic development of the head and neck: part 4, organs of special sense.

A synopsis of the embryonic development of the eye, the ear, and the olfactory organ and taste buds is presented. The eye is discussed in terms of the sensory and nonsensory protions of the eyeball and of such associated structures as the extrinsic eye muscles, eyelids, conjuctiva, and lacrimal apparatus. The embryology of the internal, middle, and external ear is reviewed, as well as positional changes of both the eye and ear relative to other sturctures of the head and neck. Various congenital defects affecting the eye and ear are also discussed.

Ear↗

Acid phosphatase activity in the chick ovary during embryonic development.

Acid phosphatase activity was studied in the left and right ovaries of the chick during embryonic development. The cytochemical study indicated that local enzymatic activity is localized mainly in germ and somatic cells. From the results obtained in the study on the specific activity of this acid hydrolase, it can be inferred that the higher concentration of this enzyme in the right ovary would be determined by a decrease of total proteins in the total homogenate and in the cellular fractions of this organ. Besides, a decrease in the enzymatic activity of this ovary is not observed, but it occurs in the left ovary. This finding would indicate a lack of enzymatic segregation that could be related to the phenomenon of ovarian atrophy. Finally, the electrophoretic study indicated that it would apparently exist only one molecular form of the enzyme. Our results support the hypothesis that acid phosphatase would be involved in the atrophic processes of the right ovary during embryonary differentiation.

Acid Phosphatase↗

Possible role of cell death during embryonic development in the fruit bat, Cynopterus sphinx Vahl.

Cynopterus sphinx breeds twice annually in quick succession at Varanasi. The first pregnancy lasts for about 150 days and the second for 121 days. Data suggest that in C. sphinx retarded development of embryo during late November to early January accounts for the longer duration of gestation in the first pregnancy. Most interestingly noticed in the present dead cells within the inner cell mass during the period of retarded embryonic development. Cell death appears to cause the formation of the amniotic cavity by the cavitation process.

Animals↗

[RNA/DNA ratio as an index of physiological condition of Colossoma macropomum and Piaractus branchypomus (Pisces: Characiformes) during embryonic development].

We evaluated RNA/DNA ratio as an index of physiological condition during larval development of a hybrid between the fishes Colossoma macropomum (cachama) and Piaractus brachypomus (morocoto). The samples were obtained by induced reproductive technology and the eggs were maintained in acrylic conical incubator with a continuous waterflow. Embryonic development, from egg fertilization to cell division and hatch out, took 12 hours 20 minutes at 29.5 degrees C, dissolved oxygen contents of 6.0 ppm and pH 7.5. Nucleic acids quantification was determined by fluorometry with ethidium bromide and Hoechst 33258 dyes. We observed significant changes of RNA/DNA ratios during all stages of the embryonic larval development. Therefore, RNA/DNA relation is an useful technique to evaluate physiological condition in short period and could be utilized as nutritional condition and/or instantaneous growth for routine check to verify the health status in early life of cultivated species.

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Effect of centchroman on tubal transport and preimplantation embryonic development in rats.

A single oral administration of centchroman (1.25 mg/kg) to adult female rats within 24 h of mating induced slight acceleration in the rate of transport of embryos through the oviducts. The compound did not seem to produce any deleterious effect on preimplantation embryonic development since well organized and apparently normal embryos were collected from the genital tract up to Day 12 of pregnancy. The recovery rate of embryos from centchroman-treated rats was, however, significantly reduced after Day 4 of pregnancy. There was some stimulation in the rate of cleavage of embryos and morula to blastocyst transformation, but retardation in the shedding of the zona pellucida. The rate of blastocyst formation was not altered when 6-8-cell embryos collected from the oviducts of control rats were transferred to the uteri of control or centchroman-treated females. A delay in zona shedding was observed in the centchroman-treated recipients.

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