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Alterations in intercellular junctions of the uterine epithelium during the preimplantation phase in the rabbit.

In the rabbit, the pseudopregnant uterus has been used as a model for studying alterations characteristic of the preimplantation phase. Alterations in intercellular junctions of the uterine epithelium were investigated during early pseudopregnancy (day 0 to day 6) by means of the freeze-fracture technique. In the uterine epithelium of oestrous females the zonula occludens belongs to the "tight" type of tight junctions. During pseudopregnancy an impressive proliferation of tight junctional belts can be observed. The basal strands proliferate, forming loops perpendicular to the luminal surface, whereas the more or less parallel arrangement of the luminal strands is maintained. At day 4 of pseudopregnancy macular tight junctions begin to develop on the lower portions of the lateral plasmalemma and are extensive by day 6 post hCG. Small gap junctions are infrequent between cells of the uterine epithelium and show no significant changes during the preimplantation phase. The physiological significance of the present morphological observations is discussed in the light of changes occurring during the preimplantation period.

Animals↗

On a fallacious invocation of the Barker hypothesis of anomalies in newborn rats due to mothers' food restriction in preimplantation phases.

A statistical re-evaluation indicates serious flaws in the paper by Kwong et al., reporting that low birthweight and impaired development, and perhaps anomalous preimplantation embryo growth, were associated with food restriction during the preimplantation period. This paper has been used to confirm that early forms of protein deprivation in the preimplantation phase carry risks to IVF children. Errors in interpreting the nature of their study and a failure to apply the correct principles of statistical analysis in their hierarchical data structure have led to their flawed investigation. It is therefore proposed that such serious flaws cast doubt on their conclusions. The findings reported in this study should be withdrawn, and a rigorous statistical evaluation should be carried out to provide a proper assessment of the data.

Animals↗

Activity of platelet-activating factor acetylhydrolase in the mouse uterus during the estrous cycle, throughout the preimplantation phase of pregnancy, and throughout the luteal phase of pseudopregnancy.

Platelet-activating factor (PAF) is a potent autacoid produced by the embryo and the endometrium during early pregnancy. Its actions in vivo are dependent upon its half-life, which in turn is largely governed by its metabolism. PAF:acetylhydrolase is a major metabolic enzyme for PAF and is widespread in body tissues and fluids. This study was an examination of the activity of this enzyme in the uterus (uterine luminal fluids and endometrial scrapings) of mice in the periovulatory period, throughout the preimplantation phase of pregnancy, and throughout the luteal phase of pseudopregnancy. PAF:acetylhydrolase activity was found in uterine washings and endometrial tissue; it was dependent upon incubation time and protein concentration and was destroyed by boiling. The activity was not affected by cations (Mg2+ and Ca2+) and was not inhibited by bromophenacyl bromide, a phospholipase A2 inhibitor. The specific and total activity changed dramatically throughout the reproductive cycle. Total tissue activity did not change significantly during the follicular phase. On the day after ovulation, tissue activity was lower in naturally mated mice and was maintained at this level until Day 4; there was no difference in this value between pregnant and pseudopregnant animals. On days 5 and 6 of pseudopregnancy the total tissue activity increased, reaching a peak on Day 6 of 4609 pmol acetate released.min-1, approximately 780% higher than the value obtained on Day 4. Activity then decreased so that by Day 8 it was not different from preovulatory levels. For uterine luminal fluids, total activity significantly decreased during the follicular phase. This continued throughout the preimplatation phase with minimum activity being reached on Days 3 and 4 (7.68 pmol acetate.min-1 on Day 4 pseudopregnancy).(ABSTRACT TRUNCATED AT 250 WORDS)

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

[Morphologic characteristics of the development of embryos in the preimplantation phase of the process of extracorporeal fertilization].

The authors presented results of the assessment of morphological parameters and human embryo division rate in preimplantation when various schemes of superovulation stimulation were used in the routine for extracorporeal fertilization. A great number of embryos with favourable morphologic signs were obtained due to the routine. It was demonstrated that over 50% of all the embryos employed in various schemes of superovulation stimulation were at the stage of four and more blastomeres by the moment of their implantation to the uterine cavity 44-48 hrs after the in vitro insemination. A significant increment in the rate of embryo preimplantation development in vitro was revealed during superovulation stimulation with clomifen citrate in combination with an inductor versus the stimulation with the inductor alone. There was no difference in the frequency of conception induced by the transfer of embryos in all the groups exposed to simulation of superovulation.

Blastomeres↗

Developmental control of heat shock and chaperone gene expression. Hsp 70 genes and heat shock factors during preimplantation phase of mouse development.

Heat shock genes are found in all organisms, and synthesis of heat shock proteins is induced by various stressors in nearly all the cells forming these organisms. However, a particular situation is noticed for hsp 70 genes in mouse embryos at the beginning of their development. First, spontaneous expression of hsp 70 is observed at the onset of zygotic genome activity. Second, inducible expression is delayed until morula or early blastocyst stages. A better understanding of both these points depends on a more careful analysis of hsp 70 expression in relation to their major regulators, the heat shock factors. In this review, we will see how the development of the preimplantation embryo highlights the complexity of heat shock gene regulation involving trans-cis interactions and the cellular and nuclear environment.

Animals↗

Embryonic platelet activating factor production in the rabbit increases during the preimplantation phase.

OBJECTIVE: This study measured platelet activating factor (PAF) production by rabbit embryos in vitro and ascertained if there is increased PAF production associated with advancing embryonic development. STUDY DESIGN: Two-cell rabbit embryos were recovered from superovulated New Zealand White does and cultured in vitro for 96 hr. Every 24 hr embryos were scored for developmental stage and PAF activity from the corresponding culture medium was measured by platelet aggregation and organic phosphate analyses. RESULTS: PAF was detected in culture medium at all stages from two cells to blastocysts and rose significantly (P < 0.001) at each 24-hr interval, reaching maximal levels at the expanded blastocyst stage. CONCLUSION: Maximal PAF production by expanded blastocysts may be an embryonic paracrine signal that facilitates implantation.

Animals↗

Neoglycoprotein-binding sites (endogenous lectins) in the Fallopian tube, uterus and blastocyst of the rabbit during the preimplantation phase and implantation.

Regulation of the initial phase of embryo implantation may involve the recognition interplay of glycoconjugates and respective receptors such as endogenous lectins on both cellular surfaces. Whereas changes in glycoconjugate composition have been detected in preparation for embryo implantation and described in detail, knowledge on endogenous lectins has remained scant. Affinity probes (carrier-immobilized carbohydrate structures as ligand part on a histochemically inert backbone) are used in the present investigation in order to gain further insights in this area. Cryostat sections of rabbit Fallopian tubes and uteri in nonpregnant and early pregnant [tubes: 3 days post coitum (d p.c.); uteri: 3, 5, 7 and 9 d p.c.] states were studied for binding patterns of a series of biotinylated (neo)glycoproteins. A high density of binding sites was detected with beta-galactosides (with decreasing intensity: beta-D-galactose-BSA, asialofetuin with its triantennary glycan chains, lactose-BSA). Considerably less binding (but with the same pattern) was obtained with beta-N-acetyl-D-glucosaminide-BSA and is interpreted to originate from a cross-reactivity of such sites which may bind physiologically to Gal-beta1,3/4-GlcNAc sequences. In contrast, no evidence for the presence of binding molecules with specificities for a-D-mannose-BSA, maltose-BSA, N-acetyl-galactosaminide-BSA and N-acetyl-D-neuraminic acid-BSA was obtained in these tissues under the same conditions. The epithelium of the Fallopian tube showed a high density of beta-galactoside-binding sites at the apical cell poles (including the cytoplasm and membrane region) already in the nonpregnant state. At 3 d p.c., a strong reaction in all epithelial cells of the isthmus and a marked decrease in the ampulla were noted. The putative lectin(s) appear(s) to be synthesized and secreted by the tubal epithelium. A physiological role in forming the mucoprotein layer of the blastocyst coverings by precipitating the appropriate mucin-type molecules can be considered. Within the endometrium, the beta-galactoside-binding molecules were almost exclusively localized at the apical cell pole of epithelial cells, whereas there was hardly any binding in the epithelial cytoplasm or in the endometrial stroma. The reaction was very weak in the non-pregnant state but increased considerably until 5 d p.c., starting in the luminal-most parts of the epithelium. While the reaction was rather homogeneous at the surface of the luminal epithelium at 5 d p.c., the degree of heterogeneity increased stepwise from 7 to 9 d p.c. In the implantation chamber, the density of these beta-galactoside-specific 'receptors' was further enhanced in particular at the epithelial surface of the placental folds. In contrast, the reaction was less intense at the antimesometrial uterine epithelium and in interblastocyst segments of the uterus, and it remained weak in the middle and deep crypts. The trophoblast showed a high density of galactoside-binding sites at its surface, and less in the cytoplasm. Neoglycoprotein binding to the blastocyst coverings observed at 7 d p.c. was strong in particular at the outer and inner surfaces. Physical factors (e.g. differential texture at surfaces) are discussed to influence the staining patterns of these extracellular coverings. Nevertheless, the observations made on the tubal and the uterine mucosa suggest that the putative lectin(s) detected here is (are) secreted by these epithelia and could be involved in the structural organization of the various layers of the blastocyst coverings with their remarkable content of oligosaccharide chains. This effect on topological aspects of the zona pellucida equivalents may be important for the interplay between trophoblast and uterine epithelium and the cascade leading to implantation initiation.

Animals↗

Maternal blood platelet physiology and luteal-phase endocrinology as a means of monitoring pre- and postimplantation embryo viability following in vitro fertilization.

The discovery that the fertilized mouse ovum triggers an increased demand for platelets and results in thrombocytopenia during the preimplantation phase of pregnancy provides a monitor for embryo survival and viability. This paper reports a study in which the platelet count was significantly reduced throughout the human preimplantation phase of pregnancy and returned to normal following embryo implantation. The human embryo was shown to produce a platelet activating factor in vitro which caused the reduction in platelet count after embryo transfer. This factor in the embryo culture medium could be measured using a bioassay which provided a means of assessing embryo viability prior to transfer. Some women showed no reduction in platelets after transfer. These embryos failed to produce a platelet activating factor in vitro and pregnancy was not established. Other women displayed a reduction in platelets following transfer but failed to become pregnant. All of these women had elevated luteal-phase plasma E2 levels compared to pregnant patients, which may have interfered with the implantation process. Our observations provide a possible rapid and simple means for monitoring the viability of human embryos cultured in vitro and the survival of embryos in utero.

Blood Platelets↗

Histology of midluteal corpus luteum and endometrium from clomiphene citrate-induced cycles.

OBJECTIVE: To determine the histologic development of midluteal corpus luteum (CL) and endometrium in normal fertile women after induction of ovulation with clomiphene citrate (CC). DESIGN, PATIENTS, INTERVENTIONS: Twelve normally cycling women planning to undergo an elective tubal ligation were treated with 50 to 150 mg of CC daily on days 5 through 9 of the cycle. Luteectomy and endometrial biopsy were performed simultaneously 7 days after the urinary luteinizing hormone surge. RESULTS: Because polyovulation occurred in 10 of the 12 women, 22 CL and 12 endometrial biopsies were studied. Ten women had luteal and endometrial histology that were within 2 days of the ovulation to biopsy interval. The 2 remaining women had endometrial histology that lagged 3 days behind the chronological postovulatory date. In these women, out-of-phase endometrium occurred despite polyovulatory cycles in which two and three histologically normal CL lutea were present and associated with elevated progesterone concentrations. CONCLUSIONS: In CC-induced ovulatory cycles: (1) midluteal CL histology is normal and (2) apparently out-of-phase preimplantation endometrium occurs in midluteal phase.

Adult↗

Effect of tumour necrosis factor alpha on rat blastocyst growth and glucose metabolism.

Tumour necrosis factor alpha (TNF-alpha) synthesis has recently been described in the uterus during the preimplantation phase of pregnancy. The present study was undertaken to determine whether preimplantation embryos are a potential target for TNF-alpha in rats. First, the expression of TNF-alpha receptors by blastocysts was demonstrated by ligand binding assay with human 125I-labelled TNF-alpha and reverse transcription-amplification for the p60 receptor form. The functionality of these receptors was then assessed by incubating blastocysts with 3 nmol mouse TNF-alpha l-1 in vitro and determining their morphology and the number of cells after 24 h. At that concentration, cell proliferation in blastocysts was inhibited by TNF-alpha but this was not accompanied by any change in the morphology of the embryos. Similar results were obtained when lower doses of TNF-alpha (30 and 300 pmol l-1) were tested. The rate of glucose consumption of rat blastocysts exposed to 3 nmol TNF-alpha l-1 was not altered when they were incubated with the cytokine for 4 h, but the rate of glucose incorporation decreased over the same period. Our data indicate that rat blastocysts are responsive to physiological concentration of TNF-alpha and that this cytokine has the potential to influence the preimplantation development of rats.

Animals↗

Oestradiol enhances in vitro the histamine release induced by embryonic histamine-releasing factor (EHRF) from uterine mast cells.

The relationship between maternal hormones and factors secreted by the implanting embryo is still controversial. We have analysed the in-vitro effect of oestradiol and human embryo-derived histamine-releasing factor (EHRF) on histamine release from rat uterine mast cells. Rat uterine mast cells which were preincubated with oestradiol and then challenged with human EHRF gave histamine release values two- to threefold higher than those without preincubation. The enhancement observed was time- and temperature-dependent. A similar enhancement was obtained with human sensitized basophils but not with rat peritoneal mast cells. Oestradiol, used as a direct challenge, did not induce any histamine release from either rat uterine or peritoneal mast cells, or from human sensitized basophils. Oestradiol preincubation also enhanced the histamine release induced by anti-IgE but did not enhance the histamine release induced by substance P or compound 48/80, two secretagogues that are not mediated by IgE. Moreover, uterine fragments derived from rats at various oestrus phases, with different amounts of endogenous oestrogen, were challenged in vitro with EHRF. The release of histamine by mast cells was higher at the proestrus and preimplantation phases than at dioestrus. All these findings suggest that the interaction of oestradiol with rat uterine mast cells was capable of enhancing in vitro the histamine releasing effect of EHRF.

Animals↗

Preimplantation genetic diagnosis and chromosome analysis of blastomeres using comparative genomic hybridization.

Numerical chromosome errors are known to be common in early human embryos and probably make a significant contribution to early pregnancy loss and implantation failure in IVF patients. Over recent years fluorescent in situ hybridization (FISH) has been used to document embryonic aneuploidies. Many IVF laboratories perform preimplantation genetic diagnosis (PGD) with FISH to select embryos that are free from some aneuploidies in an attempt to improve implantation, pregnancy and live birth rates in particular categories of IVF patients. The usefulness of FISH is limited because only a few chromosomes can be detected simultaneously in a single biopsied cell. Complete karyotyping at the single cell level can now be achieved by comparative genomic hybridization (CGH). CGH enables not only enumeration of all chromosomes but gives a more complete picture of the entire length of each chromosome and has demonstrated that chromosomal breakages and partial aneuploidies exist in embryos. CGH has provided invaluable information about the extent of mosaicism and aneuploidy of all chromosomes in early human conceptuses. CGH has been applied to clinical PGD and has resulted in the birth of healthy babies from embryos whose full karyotype was determined in the preimplantation phase.

Aneuploidy↗

Estrogen induces expression of endometrial epidermal growth factor receptors before implantation.

PROBLEM: Pharmacological doses of 17 beta-estradiol increase epidermal growth factor binding to uterine membranes. METHODS: To determine whether physiological elevated E2 concentrations in the preimplantation phase of rabbits and preovulatory phase of women cause epidermal growth factor (EGF) receptor expression, we performed radioligand binding studies of endometrial membranes with [125I]-EGF. RESULTS: Unmated rabbits revealed a binding maximum (Bmax) of 514 +/- 197 fmol/mg protein for [125I]-EGF. The Bmax values increased significantly to 1424 +/- 430 fmol/mg on day 1 and to 2244 +/- 224 fmol/mg on day 2 after mating. On day 3 the Bmax values decreased to 1409 +/- 238 fmol/mg and on days 4 to 8 the binding maxima were not significantly different from the Bmax values of unmated rabbits. In ovariectomized rabbits a significant increase of [125I]-EGF-binding could be mimicked 12 and 18 h after the intramuscular injection of estradiol (40 micrograms/kg). The estradiol-induced increase of [125I]-EGF Bmax values was blocked by the parallel application of the antiestrogen tamoxifen. Progesterone (2 mg/kg) did not influence [125I]-EGF-binding to endometrial membranes. Membrane preparations of the human endometrium from the periovulatory phase bound significantly more [125I]-EGF compared to endometrium of the early proliferative phase. The expression of EGF receptor mRNA was localized in the epithelial cells of the human endometrium by in situ hybridization technique. CONCLUSIONS: These results provide insight into the regulation of the autocrine and paracrine factor EGF in the endometrium during the preimplantation period.

Adult↗

Ultrastructural evidence of stromal/epithelial interactions in the human endometrial cycle.

We found ultrastructural evidence of interactions between glandular epithelium and superficial stromal cells of the human endometrium during phases of the menstrual cycle. Four significant changes were observed in the transition from early proliferative (days 5 to 9) to early secretory (days 15 to 19) phases. These changes included: (1) an increase in the number and size of lamina densa disruptions, (2) an increase in the number and size of gap junctions, (3) an increase in the number and complexity of epithelial cell projections that extended through the lamina densa, and (4) an increase in close contacts between stromal and epithelial cells. The complex epithelial cell projections that extended through the lamina densa were in close proximity to stromal cells. These interactions were seen primarily in the early secretory phase. After that time (days 20 to 28) the interactions were less frequent. These morphologic results reveal complex physical interactions between epithelial and stromal cells of the adult endometrium. The interactions reach maximal development during the preimplantation phase of the endometrial cycle.

Adult↗

Progesterone induces calcitonin gene expression in human endometrium within the putative window of implantation.

The human endometrium acquires the ability to implant the developing embryo within a specific time window that is thought to open between days 19-24 of the secretory phase of the menstrual cycle. During this period the endometrium undergoes pronounced structural and functional changes induced by the ovarian steroids, estrogen and progesterone, that prepare it to be receptive to invasion by the embryo. The identification of reliable biochemical markers to assess this critical receptive phase in the context of the natural cycle remains one of the major challenges in the study of human reproduction. Our previous studies in a rat model system demonstrated that the expression of calcitonin, a peptide hormone involved in calcium homeostasis, is transiently induced by progesterone in the glandular epithelium at the onset of implantation. Attenuation of calcitonin synthesis in the uterus during the preimplantation phase by administration of calcitonin antisense oligodeoxynucleotides severely impairs implantation of rat embryos, suggesting that this peptide hormone plays a critical role in uterine receptivity. To investigate whether calcitonin is also expressed in the human endometrium during implantation, we monitored the spatio-temporal expression of calcitonin on various days of the menstrual cycle. Our studies employing RT-PCR showed that calcitonin messenger ribonucleic acid is expressed in human endometrium during the postovulatory midsecretory phase (days 17-25) of the menstrual cycle, with maximal expression occurring between days 19-21. Very little calcitonin expression was detected in the endometrium in either the preovulatory proliferative (days 5-14) or the late secretory (days 26-28) phase. In situ hybridization and immunocytochemical analyses localized the calcitonin expression predominantly in the glandular epithelial cells of the endometrium. Our studies further showed that calcitonin expression in the human endometrium is under progesterone regulation. Treatment of women with an antiprogestin, mifepristone (RU-486), drastically reduced calcitonin expression in the endometrium. Collectively, these findings reveal that progesterone-induced expression of calcitonin in the secretory endometrium temporally coincides with the putative window of implantation in the human.

Adult↗