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Two-cell block to development of cultured hamster embryos is caused by phosphate and glucose.

The failure of hamster 2-cell embryos to develop in vitro (2-cell block) was examined with experiments in which concentrations of glucose and phosphate in the culture medium were varied. Embryos were cultured in a protein-free modified Tyrode's solution that normally contains 5.0 mM glucose and 0.35 mM sodium dihydrogen phosphate. In the presence of 0.35 mM phosphate but without glucose, 23% of 2-cell embryos reached the 4-cell stage or further after culture for 1 day and 27% after 2 days. Glucose inhibited embryo development even at 0.1 mM (4% development to greater than or equal to 4-cells after culture for 2 days); there was no dose-related inhibition above this glucose concentration. In a second experiment, phosphate levels were varied in the absence of glucose. Phosphate was highly inhibitory to development, with 97% of 2-cell embryos reaching the 4-cell stage or further after culture for 1 day in the absence of phosphate compared to 9-21% in the presence of 0.1-1.05 mM phosphate. After culture for 2 days, 26% of embryos reached the 8-cell stage or further when phosphate was absent compared to 0% development to 8-cells with 0.1 mM phosphate or higher. In a factorial experiment, phosphate blocked development when glucose was present or absent, whereas glucose did not block embryo development in the absence of phosphate. However, 2-deoxyglucose (a non-metabolizable analogue of glucose) inhibited embryo development in the absence of phosphate. These data show that the in vitro block to development of hamster 2-cell embryos is caused at least in part by glucose and/or phosphate. Deletion of these compounds from the culture medium eliminates the 2-cell block to development in virtually all embryos, and approximately 25-75% of embryos develop to the 8-cell or morula stages in vitro. The observations provide a possible explanation for the 2-cell and 4-cell blocks that occur in conventional culture media: stimulation of glycolysis by glucose and/or phosphate may result in inefficient adenosine triphosphate (ATP) production. The data indicate marked dissimilarities in the regulation of in vitro development of early cleavage stage hamster embryos compared with embryos of inbred mice, since the latter have an inactive glycolytic pathway prior to the 8-cell stage of development and will grow from 1-cell to blastocyst with both phosphate and glucose in the culture medium.

Animals↗

Cryopreservation of bovine pre-morula-stage in vitro matured/in vitro fertilized embryos after delipidation and before use in nucleus transfer.

We have determined that the tolerance of in vitro matured/in vitro fertilized (IVM/IVF) bovine embryos to cryopreservation at the pre-morula stage can be improved by removal of cytoplasmic lipid droplets by centrifugation. Nucleus transfer was also performed using cryopreserved, delipated (lipid droplets removed) 8- to 16-cell-stage blastomeres of IVM/IVF embryos as donor nuclei. In vitro developmental ability of the delipated embryos to the blastocyst stage (20 of 126) was found to be equal to that of undelipated embryos (35 of 176); and of 53 delipated embryos cryopreserved at the 8- to 16-cell stage, 12 developed into blastocysts in vitro after thawing. On the other hand, only 2 of 43 undelipated embryos and 5 of 59 sham-operated embryos survived (p < 0.05). When blastomeres isolated from cryopreserved, delipated 8- to 16-cell-stage embryos were used for nucleus transfer, 57 of 80 successfully fused with enucleated oocytes, which was significantly lower than the fusion rate obtained with blastomeres of unfrozen, undelipated embryos (93 of 104, p < 0.01). However, the developmental rate to the blastocyst stage for nucleus transfer embryos reconstituted with frozen, delipated blastomeres (9 of 57) was not different from that of the nucleus transfer embryos with unfrozen, undelipated embryos (23 of 93). These results confirm that removal of cytoplasmic lipid droplets from bovine IVM/IVF zygotes allows for successful cryopreservation at the 8- to 16-cell stage and that blastomeres from these embryos can be used as donors of karyoplasts for nucleus transfer.

Animals↗

Seasonal effect on zebu embryo quality as determined by their degree of apoptosis and resistance to cryopreservation.

In order to optimize the production of embryos under tropical conditions and to test a possible seasonal effect on embryo quality, 40 Zebu cows were superovulated during the dry season (April to May) and during the rainy season (July to August). A total of 116 (average 2.7/cow) and 83 embryos (3.5 average/cow) were obtained during the respective seasons. After classification as good, fair or poor quality, embryos were tested based on their ultrastructural differences (n = 53 dry season 16 good, 20 fair and 17 poor and n = 61 rainy season 21 good, 20 fair and 20 poor) and their degree of apoptosis using the TUNEL technique (n = 30 during the dry season and n = 55 in the rainy season). Structural characteristics determining embryo quality varied between good and fair quality embryos. No difference, however, was observed between good, fair and poor quality embryos from the two seasons. The number of TUNEL-positive cells was different among embryos (p < 0.001), being lower in labelled cells of good quality embryos regardless of the season. Fewer apoptotic cells were observed in embryos assigned in all three quality levels during the rainy season (p < 0.001). Ultrastructural evaluations confirmed the results obtained by TUNEL. Cryopreserved embryos of good (n = 25 in each season) and fair quality (n = 11 dry season; n = 17 rainy season) showed a significant decrease of TUNEL-positive cells during the rainy season (p < 0.05). Results suggest that embryos collected in the dry season have more cellular damage in contrast; embryos cryopreserved in the rainy season appeared morphologically better equipped to result in a pregnancy following transfer.

Animals↗

Aspects of multiple embryo transfer.

Three hundred seventy-two patients underwent laparoscopy for in vitro fertilization and embryo transfer. Of these, 156 were treated with clomiphene citrate alone, 203 with clomiphene citrate and hMG, and 13 with hMG alone. Two-hundred seventy-two of these patients underwent embryo transfer, and 55 pregnancies resulted. Of these, 30 were ongoing, 14 biochemical, 6 ectopic, and 5 aborted. Where four embryos were transferred, the pregnancy rate was found to be significantly higher than when a lesser number were transferred. When the embryos transferred were analyzed, however, it was found that fewer than 10% of all transferred embryos implanted and it was largely a function of multiple embryo transfer per patient that led to success. When the type of hyperstimulation was compared, clomiphene citrate cycles were found to be less successful in that they produced fewer oocytes and embryos than did cycles in which hyperstimulation was achieved by supplementary hMG. It is conceded that this is an overall analysis and that individuals, especially those producing twins, had more than one good embryo transferred into a receptive uterus. The data suggest that unsuccessful cycles had somewhat poorer quality embryos, nonreceptive endometria, or a combination of these factors when compared with those of the successful embryo transfer cycles. The only predictive factor as to outcome relates to the multiplicity of embryos transferred. The fact that some IVF cycles produce multiple pregnancies indicates that a predictor of embryo health is urgently required. However, until such a reliable predictor is obtained, multiple embryo transfer remains a major advance in the success of IVF and ET.

Abortion, Spontaneous↗

Development of spinal reflex pathways from muscle afferents to motoneurones in chick embryos devoid of descending inputs.

1. The synaptic connections of reflex pathways between hindlimb muscle afferents and motoneurones were investigated in chicken embryos. Descending inputs to the lumbar spinal cord were eliminated by removing two to four segments of the thoracic spinal cord at embryonic day 2 (E2; gap operation). Intracellular recordings from motoneurones innervating the lateral gastrocnemius (LG) muscle were performed in isolated spinal cord preparations of normal and gap-operated embryos at E14-E15. 2. In both normal and gap-operated embryos, homonymous and synergistic muscle nerve stimulation evoked EPSPs in LG motoneurones at a short and fixed latency, suggesting that they were evoked monosynaptically. EPSPs from synergistic muscle afferents were much smaller than those from homonymous muscle afferents. The volleys from the antagonistic muscle nerve evoked IPSPs at a longer central latency than found for EPSPs in both embryos. 3. The maximal amplitudes of homonymous and synergistic EPSPs in gap-operated embryos were 1.3 and 1.7 times, respectively, larger than in normal embryos. Homonymous EPSPs were observed in all LG motoneurones examined, but synergistic EPSPs were more common in gap-operated than in normal embryos. 4. Antagonistic IPSPs were more common in motoneurones of gap-operated embryos than in those of normal embryos. Homonymous and synergistic muscle nerve stimulation also elicited IPSPs in LG motoneurones in both normal and gap-operated embryos. IPSPs evoked both by homonymous and by synergistic muscle nerve stimulation were more common in gap-operated than in normal embryos. 5. The spatial pattern of reflex pathways from hindlimb muscle afferents to motoneurones in chick embryos devoid of both supraspinal and long propriospinal inputs to the lumbar spinal cord is similar to that in normal embryos. However, both mono- and polysynaptic connections in these pathways are enhanced by the blockade of descending projections.

Animals↗

Virulence of Escherichia coli strains for chick embryos.

Powell, Calvin J., Jr. (Walter Reed Army Institute of Research, Washington, D.C.), and Richard A. Finkelstein. Virulence of Escherichia coli strains for chick embryos. J. Bacteriol. 91:1410-1417. 1966.-Fifty-three strains of Escherichia coli, freshly isolated from patients at Children's Hospital, Washington, D.C., were tested for virulence for 13-day chick embryos by allantoic inoculation of serial dilutions of viable cell suspensions. No clear-cut relationship could be demonstrated between inoculum size and response (death of the embryos) which would permit comparisons of virulence based on ld(50) determinations. However, the strains were classified into three groups according to the proportion of embryos which succumbed, regardless of inoculum size. There was no association between enteropathogenicity and embryo virulence, although there was high correlation between hemagglutinative activity for chicken erythrocytes and virulence of strains for embryos. Differences in virulence were not related to ability to multiply in the allantoic cavity nor did bacteremia appear to be essential for death of the embryos. Serial passage in eggs failed to alter virulence. Both the route of inoculation and the age of the embryos had a marked effect on the outcome of challenge with strains of varying virulence. The embryos were most susceptible to challenge by the intravenous route. The susceptibility of younger embryos decreased with increasing embryonic maturity, although some reversal of this trend was noted with 19-day embryos. The toxicity of culture filtrates and filtrates of allantoic fluid from infected embryos seemed to be related to strain virulence, suggesting that elaboration and availability of toxic factors may have an important bearing on the lethality of E. coli strains for chick embryos.

Animals↗

Removal of the chorion before hatching results in increased movement and accelerated growth in rainbow trout (Oncorhynchus mykiss) embryos.

We investigated the effects of the chorion on movement and growth in rainbow trout (Oncorhynchus mykiss) embryos. To test if the chorion restricts movement and growth before hatching, we manually removed the chorion 3-6 days before the natural time of hatching (dechorionated) and compared movement, growth and oxygen consumption in dechorionated embryos and in embryos whose chorions remained intact until the time of hatching (chorionated). Dechorionated embryos exhibited 36 times more movement before hatching compared with intact embryos. By 10 h post-hatch there was no difference in the number of movements between the two groups. At the time of hatching [30 days post-fertilization (d.p.f.)], dechorionated embryos had a significantly greater embryonic body dry mass compared with chorionated embryos, which persisted up to 45 d.p.f. At first feeding (50 d.p.f.) there was no significant difference in embryonic body dry mass between the two groups. Dechorionated embryos had a significantly greater embryonic body protein content after hatching (32, 33 d.p.f.) compared with chorionated embryos. Despite the differences in movement and growth, there were no significant differences in oxygen consumption between chorionated and dechorionated embryos. Furthermore, there was no correlation between the number of movements and oxygen consumption in rainbow trout embryos (chorionated, dechorionated, and hatched). Taken together, the data indicate that rainbow trout embryos have the capacity to be relatively active before hatching, but that the chorion restricts or inhibits movement. Moreover, precocious activity in pre-hatch embryos is correlated with accelerated growth and higher protein content, suggesting that the exercise training effect observed in adult salmonids is also present in early developmental stages.

Animals↗

Effects of in utero exposure to bisphenol A on expression of RARalpha and RXRalpha mRNAs in murine embryos.

Retinoic acid receptor (RAR) alpha and retinoid X receptor (RXR) alpha are key factors in a nuclear receptor-dependent signal. To evaluate the effects of bisphenol A (BPA), a candidate endocrine disruptor (ED), on embryonic development, we examined the mRNA levels of RARalpha and RXRalpha in murine embryos, exposed in utero to BPA (2 microg/kg/day) at 6.5-17.5 days post-coitum (dpc), by the real-time reverse transcription-polymerase chain reaction (RT-PCR) method. Higher levels of RARalpha mRNA in cerebra of male and female embryos of control groups were detected at 14.5 dpc. In utero BPA reduced the RARalpha mRNA expression. Higher levels of RXRalpha mRNA in cerebra of male and female embryos were seen at 12.5 dpc. The exposure decreased RXRalpha mRNA expression in male but not female embryos. No remarkable change in the RARalpha mRNA expression level was noted in cerebella of male or female embryos of the control group during embryonic development. Exposure to BPA increased expression levels of RARalpha mRNA in cerebella of male and female embryos at 12.5 dpc. Higher levels of RXRalpha mRNA in cerebella of male and female embryos were seen, but no remarkable changes were noted during embryonic development. BPA significantly decreased the expression levels of RXRalpha mRNA in cerebella of female embryos at 12.5, 14.5 and 18.5 dpc. RARalpha and RXRalpha mRNAs were expressed in gonads (testes and ovaries) of murine embryos from 12.5 to 18.5 dpc. In utero exposure to BPA decreased levels of RARalpha mRNA in testes of 14.5- and 18.5-dpc-embryos, levels of RXRalpha mRNA in testes of 14.5-dpc-embryos, and levels of RXRalpha mRNA in ovaries of 14.5-dpc-embryos. The present findings indicate that RARalpha and RXRalpha play crucial roles in organogenesis, and the growth and development of murine embryos, and will contribute to the assessment of the toxic effects of BPA on retinoid signals in embryogenesis.

Animals↗

Trophic effects of myeloid leukaemia inhibitory factor (LIF) on mouse embryos.

Myeloid leukaemia inhibitory factor (LIF) is expressed at highest concentrations in the maternal endometrial glands at about the stage of blastocyst implantation. LIF is also expressed by the extraembryonic membranes of the early mouse embryo. Embryos of different ages were cultured with, or without, LIF, and embryo growth in vivo and in vitro was examined to determine whether LIF is important for embryo development. Supplementing embryo culture media with 1000 U recombinant human LIF ml-1 increased the number of eight-cell mouse embryos developing beyond the hatched blastocyst stage in vitro from 62.1% to 85.1% (P < 0.05). LIF significantly increased the number of embryos hatching (33.8% versus 7.65% for controls 96 h after hCG injection, P < 0.001), completely hatching (85.1% versus 62.1%, P < 0.05), and exhibiting trophoblast outgrowth (13.5% versus 0% 120 h after hCG treatment, 85.1% versus 47.0% 144 h after hCG treatment, P < 0.001) in vitro. LIF-treated embryos also displayed a significantly greater area of trophoblast outgrowth than did controls as early as day 5 in culture (P < 0.005). These data show that LIF enhances mouse eight-cell embryo development in vitro, as seen by the accelerated rate of embryo hatching and trophoblast outgrowth. In addition, enhanced embryo survival in vivo is shown, following the transfer of LIF-treated embryos into a pseudopregnant recipient female. Expression of mRNA encoding LIF was detected in endometrial cells cultured in monolayer from uteri of day 3 pregnant females, explaining the known embryotrophic effects of endometrial coculture. This expression was not enhanced significantly by treatment with oestradiol (3.7 x 10(-5) mol l-1) or progesterone (3.2 x 10(-6) mol l-1) or both hormones. These results indicate that LIF could have a dual action in early embryogenesis as an embryotrophin and as a factor required for embryo implantation. Multiple roles for LIF are consistent with the expression of this factor at embryonic, extraembryonic and maternal sites during early embryogenesis.

Animals↗

Increased TNF-alpha expression in cultured mouse embryos exposed to teratogenic concentrations of glucose.

Diabetes-induced early embryonic death is accompanied by an increased expression of tumour necrosis factor alpha (TNF-alpha) in the embryonic microenvironment. The aim of the present study was to evaluate whether diabetes-induced embryopathic stress may also alter the expression of TNF-alpha produced by the embryo itself. As a model, whole postimplantation embryos were cultured for 24 h in a medium with high concentrations of glucose, one of the main diabetes-associated teratogenic metabolites. An anomaly such as an open neural tube was used as an end-point characterizing the glucose-induced teratogenic effect and the number of somites was counted to evaluate growth retardation induced by glucose. The expression of TNF-alpha (by immunohistochemistry), apoptosis (by TdT-mediated dUTP nick-end labelling; TUNEL) and the activity of caspases 3 and 8 (by a fluorometric assay) were evaluated in normal and malformed embryos. Ninety-seven per cent of the embryos exposed to 1300 mg glucose dl(-1) exhibited an open neural tube. The percentage of malformed embryos was smaller in media containing 800 and 500 mg glucose dl(-1) (68 and 37%, respectively) but it still exceeded significantly the value registered in embryos developing in a normoglycaemic medium (12%). In addition, a significant decrease in the number of somites was observed in embryos developing in media containing 1300 and 800 mg glucose dl(-1). Malformed embryos exhibited a greater number of nuclei that were positive in the TUNEL assay as well as a higher amount of active caspase 8 compared with normal embryos (with closed neural folds). TNF-alpha expression was detected in the neuroepithelial layer of the neural tube of the malformed embryos, whereas the expression of this cytokine was weak, if detectable, in normal embryos. Together, these findings indicate that TNF-alpha produced by the embryo may be involved in regulating the response of embryos to diabetes-generated embryopathic stress.

Abnormalities, Drug-Induced↗

Preimplantation development of tetraploid mouse embryo produced by cytochalasin B.

Tetraploid mouse embryos usually cease to develop early after implantation, though they can develop to blastocysts. To characterize the failure of development in detail, tetraploid mouse embryos at the preimplantation period were examined as to both their morphology and number of cells. The tetraploid embryos were produced by 12 hr treatment with cytochalasin B (CB) at the 2-cell stage of backcross of (C57BL/6 x C3H/He) F1 x C3H/He. The tetraploid embryos in the preimplantation period exhibited compaction at 72 hr after hCG injection and blastocyst formation at 96 hr, as well as diploid embryos, but the number of cells composing the embryos was significantly smaller than that in the diploid embryos. At the term 60-96 hr after hCG injection, mean cell cycles were 14.03 hr in the tetraploid embryos, but 12.02 hr in the diploid. When tetraploid embryos were transferred into the oviducts of pseudopregnant recipients immediately after CB treatment, the number of cells in tetraploid blastocysts was increased compared with the embryos cultured in vitro, though the number did not reach that of diploid embryos. These results suggested that compaction and blastocyst formation in preimplantation development of tetraploid embryos depended on the time after hCG injection, irrespective of the number of cells or the length of the cell cycle. The lengthening of the cell cycle in tetraploid embryos may be one of the causes of failure in postimplantation development.

Animals↗

Investigations into the control of litter size in swine: I. Comparative studies on in vitro development of Meishan and Yorkshire preimplantation embryos.

Three experiments were conducted to examine the in vitro development of preimplantation embryos from the prolific Chinese Meishan pig. Experiment 1 was conducted to assess whether Meishan embryos would develop in vitro and retain their viability, whereas Exp. 2 and 3 examined the developmental pattern of Meishan embryos. In all three experiments, Yorkshire embryos served as a contemporary comparison. Ovulation and embryo recovery rates were not different between Meishan and Yorkshire gilts. Meishan embryos cultured for 96 h were capable of establishing pregnancies. The number of cell nuclei present after 144 h of culture was lower (P < .01) for Meishan than for Yorkshire blastocysts. Meishan preimplantation embryos exhibited a slower (P < .02) in vitro rate of development from the four-cell to the compact morula stage than did Yorkshire embryos. Early blastocysts from Meishan gilts, although morphologically similar in size, contained fewer (P < .06) cells than did their counterpart Yorkshire embryos. These data demonstrate that Meishan embryos develop more slowly and contain fewer cells than do Yorkshire embryos. This differing developmental pattern of Meishan preimplantation embryos, if similar to that previously reported in miniature swine and mice, may relate to increased embryo survival.

Animals↗

[Evaluation of environmental factors affecting embryo development in vitro].

Human in vitro fertilization and embryo transfer (IVF-ET) became an indispensable modality for treating infertile patients. The principle of this method is simple: that is, recovery of gametes from the gonads of men and women and transfer of the embryos into the uterus. This method can be expected, therefore, to be applied to many patients with a variety of causes of infertility. Unfortunately, the success rates are not satisfactory in the majority of clinics in the 14 years since the first report of a test tube in 1978. In view of improving the success rate, one major issue is the protocol used for ovulation induction, which may influence the quality of eggs as well as the environmental conditions in the endometrium at the time of embryo replacement. Another major issue should be the technique for embryo culture because, in general, mammalian embryos, including humans', are known to exhibit developmental retardation in vitro. In a significant number of embryos, cleavage is arrested at the first or second cell cycle when cultured under the conventional culture conditions. This phenomenon in rodents is known as "block to development in vitro" or "two-cell block in vitro". Recently, the mouse two-cell block was found to be attenuated by the addition of superoxide dismutase (SOD) to the culture medium. SOD is the enzyme that catalyzes the dismutation reaction of superoxide anion radicals: 2O2- + 2H(+)----H2O2 + O2. This suggests that developmental retardation in vitro may be related to the potential oxygen toxicity that embryos encounter in vitro. Following to this finding, a variety of culture conditions have been found to attenuate blocking phenomenon and to increase blastulation rate in the mouse embryos. By the addition of chemicals to the culture medium such as L-Cysteine, L-Ascorbic acid, EDTA, DTPA or thiredoxine, blastulation rates could be increased overcoming blocking phenomenon. From these findings, it seemed possible to hypothesize that developmental retardation is caused by the oxidative stress that embryos encounter in vitro. Oxidative stress is defined as an increased intracellular concentration of the active oxygen species in a stead-state condition. To make the hypothesis validated, intracellular generation of active oxygen species was measured by using DCHF-DA, a fluorescence dye precursor. The results showed that the fluorescent emissions of embryos were lowest in embryos cultured under 5% O2 and highest under 40% O2. L-Cysteine and thioredoxin, both of which have been shown to promote the embryo development, decreased the fluorescence emissions of embryos.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

The relationship between embryo quality and the occurrence of multiple pregnancies.

OBJECTIVE: To study the relationship between the quality of the transferred embryos and the occurrence of multiple pregnancies. Embryo quality was defined by the cleavage rate and by morphological parameters such as blastomere size and the presence or absence of anucleate fragments. DESIGN: A retrospective analysis of 1,915 consecutive transfers of fresh embryos between January 1986 and December 1989. SETTING: All the embryo transfers (ETs) were performed in patients from the in vitro fertilization program of the Center for Reproductive Medicine, Vrije Universiteit Brussel, Brussels, Belgium. RESULTS: We confirmed the relationship between the number of embryos transferred and the pregnancy rate (PR): 11.9% of the single, 19.0% of the double, and 34.1% of the triple ETs were successful. Thirty-one percent of these triple embryo replacements resulted in a multiple gestation. At the time of transfer (44 to 48 hours after insemination), we observed that embryos that had undergone at least two mitotic divisions implanted better than two-cell embryos of comparable morphological appearance (implantation rate per transferred embryo: 21.3% versus 12.3%, P less than 0.001) and that heavily fragmented embryos did not implant as well as embryos without or with fewer anucleate fragments (1.5% versus 14.1%, P less than 0.001). The PR, implantation rate, and the incidence of multiple pregnancies increased significantly with the number of good quality embryos that were transferred. CONCLUSIONS: Our study indicated that embryo quality based on morphological observations could predict the occurrence of multiple pregnancies.

Blastocyst↗

[The embryo yield in relation to the method of processing the irrigation fluid in superovulated donor cows].

Total 240 flushings of superovulated donor cows were examined after double sedimentation. Altogether 2,810 ova and embryos, i.e. average of 11.7 per donor, including 9.0 (76.97%) transferable embryos, were obtained after the first sedimentation. The sedimentation was carried out separately for the respective uterine horns. The second sedimentation, which was carried out in the flushing from both uterine horns simultaneously, yielded ova and embryos in 82.9% (199/240) of the cases. Total 679 ova and embryos were found, i.e. 3.41 per donor, including 2.61 (76.58%) transferable embryos per donor. The increase of the yield of total ova and embryos, and transferable embryos, was 2.82 and 2.16 (24:16 and 24.04%) respectively after the second sedimentation. Altogether 3.489 total ova and embryos were obtained from 240 donors. The average embryo yield was 14.53 per donor with 76.89% (11.17) transferable embryos. The embryo yield/corpora lutea ratio was at the number of corpora lutea 12.04 on the average 120.68%. It is concluded that the second sedimentation of the flushing provides for the release of a part of the embryos for the mucous and cell aggregations, which density is usually lower. The effect of the second sedimentation is considerable, because as much as 24% of the total number of transferable embryos can be saved. The total efficiency of superovulation may be considerably decreased if no attention is paid to the above mentioned facts.

Animals↗

Experimental transmission of bovine viral diseases by insemination with contaminated semen or during embryo transfer.

Three experimental approaches were used to study transmission of blue tongue (BT), infectious bovine rhinotracheitis (IBR) and bovine virus diarrhoea (BVD) viruses. These were insemination with contaminated semen, experimental infection of embryo donor cows, or transfer of embryos experimentally exposed to virus in vitro to normal recipients. Parameters assessed included number and quality of embryos produced, virus detection (isolation and electron microscopy), serology and histopathology. All superovulated sesceptible cows inseminated with semen containing blue tongue virus (BTV) (n = 2) or infectious bovine rhinotracheitis virus (IBRV) (n = 2) became infected. One cow inseminated with semen containing BTV produced seven virus-free seven-day-old embryos; the second cow failed to produce any embryos. One of two cows inseminated with semen containing IBRV produced two underdeveloped, virus-free embryos while no embryos were produced by the second cow. One of two cows inseminated with semen containing bovine viral diarrhoea virus (BVDV) became infected. Two poorly developed, virus-free seven-day-old embryos were recovered from one of these cows. Superovulated susceptible cows inoculated either intramuscularly with BTV (n = 3) or intranasally with IBR virus (n = 2) became infected. Virus was isolated from some tissues of two BTV-infected cows, neither of which produced embryos. A third BTV-infected cow produced two virus-free embryos collected at necropsy five days after inoculation. One of two cows experimentally infected with IBR virus, produced three embryos but virus was not detected either by electron microscopy (1 embryo) or in cell culture by cytopathic alterations (1 embryo).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Effects of electric field on fusion rate and survival of 2-cell rabbit embryos.

Electric-field-induced blastomere fusion was studied in 2-cell rabbit embryos. Field strengths (1 to 3kV cm-1) and durations (35 to 1000 microseconds) were chosen so as to provide the right balance between fusion rate, viability and developmental capacity of embryonic cells. Maximum plasma membrane tolerance of 2-cell rabbit embryos was observed at about 3kV cm-1 for 1000 microseconds. All surviving 'fused' embryos were able to develop in vitro and most of them formed expanded blastocysts. Observation of 'fused' embryos immediately after fusion and during the whole cell cycle showed that 27.7% of the two diploid nuclei remained separated in the hybrid cell. More than one metaphase plate was formed at the onset of mitosis causing direct cleavage into three or four 'cells'. In the remaining embryos the two diploid nuclei seemed to form a common metaphase plate and cleaved into two equal blastomeres. After transfer to recipient does, 54.4% of these tetraploid embryos developed beyond implantation. Between day 11 and 20, ten live and morphologically fully normal embryos were recovered. Nine embryos were uniformly tetraploid and one recovered on day 18 was a diploid/tetraploid mosaic. The remaining implantation sites contained either abnormal, very retarded embryos or indefinable embryo remnants. After transfer of 'nonfused' embryos treated with 3kV cm-1, 49% gave birth to normal live young. These results suggest that the electric field can be applied successfully in a relatively wide strength and duration range without causing any visible teratogenic effect on treated embryos. Thus, tetraploid embryos can develop normally at least until two-thirds of pregnancy, but the question whether they are able to survive till term remains open.

Animals↗

[Embryotoxic effects of a combination of zearalenone and vomitoxin (4-dioxynivalenole) on the chick embryo].

Mycotoxins zearalenone and vomitoxin (4-deoxynivalenol) are often joint contaminants of grains infested by micromycetes of the genus Fusarium. Toxic effects of both mycotoxins on experimental organisms and farm animals are well known, but we have not found any literary reference to toxic effects of the combination zearalenone and vomitoxin. Embryotoxic effects of zearalenone, vomitoxin and combinations of various doses of zearalenone with constant addition of vomitoxin were studied in a three-day chick embryo. The objective of the study was to determine the coaction of vomitoxin on zearalenone embryotoxicity. Thermostat-incubated fertile eggs of White Leghorn hens were candled after three-day incubation, the shell above the embryo was removed, and within the embryotoxicity range zearalenone, vomitoxin and various doses of zearalenone with constant addition of 2 micrograms vomitoxin were applied to morphologically normal embryos. The groups of ten embryos were applied mycotoxins and their combinations in 10 microliters of their solutions to amnions using a special glass micropipette. Control group comprised twenty embryos which were applied 10 microliters of solvents used, 1% NaHCO3 and 10% ethanol. The eggs were covered with glass plates and their incubation was going on until the eighth day of their development. The embryos that died during incubation were discarded. On the eighth day of development, surviving embryos were taken out from the eggs and malformations of head, orofacial region, body wall, limbs and heart were determined microscopically. Tab. I shows total numbers of dead and malformed embryos after application of the particular doses of zearalenone, vomitoxin, their combinations and control solvents. The embryotoxicity range started at a dose of 5 to 20 micrograms per embryo. Zearalanone did not have any teratogenic effects on chick embryos. Applications of high doses of zearalenone (100 and 30 micrograms) instantly caused arrhythmia, atrio-ventricular dissociation or even heart stoppage. The beginning of the embryotoxicity range for vomitoxin was found to be within the narrow range of 1 to 3 micrograms per embryo. Among malformations, only a defect of the interventricular septum of the heart was found in 4% of the cases. The combined embryotoxic effects of zearalenone and vomitoxin were of additive, and mostly embryolethal nature. Among the malformations searched for, only 5% of the embryos exhibited a defect of the interventricular septum of the heart. Due to the good prediction fitness of chick embryo that has been proved by estimates of mycotoxin toxicity to mammals it is possible to suppose that toxic effects of the frequently occurring combinations of zearalenone and vomitoxin in fusarium-infected feeds will also be of additive nature for farm animals.

Abnormalities, Drug-Induced↗