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Biomedical subjects

R D Lambert

Publications and source records attributed to R D Lambert.

At least 19 recordsLinked to original sources

Ontogeny of Ha-ras and c-myc mRNA levels in rabbit embryo and extraembryonic tissues by quantitative in situ hybridization.

A large variety of proto-oncogenes are known to be of key importance in cellular growth and differentiation during embryonic development. Using quantitative in situ hybridization, we studied in detail the levels of the proto-oncogenes Ha-ras and c-myc mRNA in embryos and extraembryonic tissues (maternal and embryonic placentas, trophoblast, and endometrial epithelium) during prenatal life of rabbit. cDNA probes encoding for Ha-ras (fragment Kpn 1-BstE II of 883 bp) and c-myc (fragment Pst 1-Pst 1 of 490 bp) were used to detect specific transcripts in fixed cryostat sections. High levels of Ha-ras and c-myc mRNA were detected in the rabbit embryo as well as in the decidua and in the trophoblast as early as day 9 of gestation. At 12 and 15 days of gestation, Ha-ras and c-myc mRNA levels decreased in both embryonic and maternal placenta while in the embryo a significant increase of Ha-ras and c-myc expression was detected with particular evidence in the central nervous system. Finally, at 25 days of gestation the expression of the two proto-oncogenes, Ha-ras and c-myc, was greatly decreased in both the embryo and extraembryonic tissues, and was undetectable by 30 days of gestation. These results show that in rabbit the expression of the two proto-oncogenes Ha-ras and c-myc is localized in the same tissues with similar intensity and follows an unparallel temporal modulation in the embryo and in the extraembryonic tissues during prenatal development.

Animals

Rabbit embryo-fetal fluid decreases the cell cycle activities of DU-145 cells.

Successful reproduction requires tight control of cell proliferation and differentiation. Rabbit blastocoelic fluid contains such regulatory factors. For instance, it inhibits tumour or transformed cell proliferation. In this study, DU-145 cells have been used to characterize further this inhibitory activity. Maximal inhibition of cell proliferation is observed at day 12 of embryo-fetal development and this is accompanied by a strong reduction of [3H]-thymidine incorporation. DNA specific staining and analysis by flow cytometry show that cells are not stopped at any specific stage of the cell cycle. Using bromodeoxyuridine incorporation in combination with propidium iodide labelling, it has been possible to estimate the percentage of labelled cells, the duration of the S phase of the cell cycle derived from their relative movement and also the proportion of cells participating to the cell cycle. In the presence of embryonic and fetal fluids collected on day 12 (EFF D-12) the duration of the S phase and the doubling time are considerably increased and the percentage of cells participating in the cell cycle is decreased. The results also show that treatment with EFF D-12 induces the release of the cells from the monolayer. Taken altogether, these results suggest that EFF D-12 increases the duration of the cell cycle. This reduction of the mitotic activities lead up to cell death with subsequent release of cells into the culture medium.

Animals

Decrease in calmodulin concentrations during heparin-induced capacitation in bovine spermatozoa.

Concentrations of the intracellular Ca(2+)-mediator calmodulin (CaM), were measured by radioimmunoassay during heparin-induced capacitation of bull spermatozoa. Heparin reduced sperm CaM concentrations in a dose-dependent manner corresponding with an increase in in-vitro fertilization rates. Such reductions were observed after heparin treatment for 4-6 h, which is in agreement with the length of the capacitation period in bulls and was concomitant with an increase in CaM concentration in the incubation medium, suggesting translocation of CaM from the spermatozoa to the surrounding milieu. This CaM translocation was inhibited partly by the protease inhibitor benzamidine, suggesting a role for the sperm protease in this process.

Acrosome

Possible implication of lysophosphatidylcholine in cell fusion accompanying implantation in rabbits.

Implantation in rabbits involves the cellular fusion of trophoblastic and uterine epithelial cells resulting in embryo penetration of the uterine endometrium. Since lysophospholipids, known to have fusigenic properties, could be responsible for this cell fusion, the metabolism of lysophospholipids was studied throughout gestation in blastocyst/yolk sac and extracoelic amnioallantoic fluids. Analysis of phospholipid composition revealed that lysophospholipids are present in blastocyst/yolk sac fluid. Their concentrations and haemolytic activity change during pregnancy. They increase and reach their highest values during days 7 to 9, the implantation days in rabbits. A clear correlation was observed between lysophosphatidylcholine concentrations in blastocyst/yolk sac fluid and haemolysis induced by this fluid. Phosphatidylcholine concentrations, phospholipase A2 activity, which generates lysophospholipids, and lysophospholipase A activity which hydrolyses lysophosphatidylcholine into fatty acid, were at their highest value at day 12. These data suggest that a transient accumulation of lysophospholipids could ensure local cell fusion. Moreover, we propose that the lysophospholipid concentrations in blastocyst/yolk sac fluid are dependent upon activities of phospholipase A2 and lysophospholipase.

Animals

Local alteration in adenylate cyclase activity and stimulation response at implantation site in rabbit endometrium during early pregnancy.

Adenylate cyclase activity and its hormonal stimulation were measured in endometrial tissue, and sex steroid levels were quantified in uterine tissue collected from pregnant and estrous rabbits. The tissues from pregnant animals were separated into implantation (ES) and interimplantation (IES) sites. Adenylate cyclase activity was measured in broken cell preparations by enzymatic conversion of alpha-32P-adenosine triphosphate (ATP) into 32P-cyclic adenosine 3', 5'-monophosphate using Mg2(+)-ATP as a substrate. The activity was measured with no addition (basal) and after stimulation with guanosine triphosphate (GTP), NaF, or increasing doses (1 nM to 100 microM) of isoproterenol (ISO) and prostaglandin E2 (PGE2). The presence of GTP was necessary to observe a stimulation by ISO and PGE2. During pregnancy, adenylate cyclase activity was reduced compared to activity at estrus on Day 6.5 (IES and ES) and on Day 9 (IES); however, it reached its highest level at ES (Day 9). The regulation of isoproterenol response followed a similar pattern. Dose responses to PGE2 were markedly affected by physiological status. The response was higher during pregnancy than at estrus, and response (percent of GTP), as well as sensitivity, was higher in IES than in ES on Day 6.5 and even greater on Day 9. The levels of estradiol (E2) were reduced during pregnancy, but comparable in ES and IES; however, progesterone (P) levels were reduced in ES, and the E2/P ratio was significantly higher (p less than 0.01) in ES (15 +/- 1, 17 +/- 2) than in IES (8 +/- 1, 6 +/- 0.8) on Days 6.5 and 9, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenylyl Cyclases

Decreased binding of calmodulin to bull sperm proteins during heparin-induced capacitation.

The 125I-calmodulin gel overlay procedure was used to evaluate the effect of a heparin treatment on the calmodulin-binding proteins of bull spermatozoa. At concentrations that increase the in vitro fertilization rate of in vitro-matured oocytes, heparin induced a decrease in the binding to calmodulin (CaM) in 3 sperm proteins of 28, 30, and 49 kDa. The binding of these proteins to CaM was higher when Ca2+ was absent from the overlay procedure, and this binding was negatively correlated to the fertilization rate. These results suggest that sperm capacitation is associated with a decrease in the binding of CaM to the 28, 30, and 49 kDa sperm CaM-binding proteins. Implications of such a decrease are discussed.

Animals

Rabbit blastocoelic fluid regulation of tumor-cell proliferation in vitro.

To determine whether rabbit blastocoelic fluid could inhibit tumor-cell proliferation, day-9 and day-12 embryonic fluids, together with autologous and homologous sera, were collected from pregnant or pseudopregnant rabbits and tested against 13 different cell lines and on human carcinoma cells in primary culture. An inhibitory effect on cell proliferation was observed in the presence of blastocoelic fluids, but not with homologous or heterologous sera. This suppression was higher with samples collected at day 12 than at day 9 of pregnancy. No such inhibition could be detected on one-cell rabbit embryos or on freshly prepared uterine stromal or myometrial cells. In addition, the inhibitory activity on tumor cells was completely reversible upon removal of the fluids. Incorporation of 3H-thymidine, 3H-uridine and 35S-methionine revealed that, in the presence of blastocoelic fluids, both DNA and RNA syntheses were rapidly inhibited. Inhibition of protein synthesis did not occur before 24 hr of treatment. We conclude that rabbit blastocoelic fluid suppresses the proliferation of tumor cells via inhibition of RNA and DNA synthesis by a process which may involve the expression of growth-suppression gene(s).

Animals

Modulation of the immunosuppressive activities by blastocoelic fluid during rabbit pregnancy.

Temporal variation in immunosuppressive activity was determined in biological samples such as embryo-foetal fluids (blastocoelic- or amino-allantoic fluid) and blood collected from pregnant and pseudopregnant rabbits. Each of the fluids to be analyzed was pre-incubated with mitogen stimulated human lymphocytes for 48 h and then inhibition of [3H]thymidine incorporation or IL-2 receptor expression was estimated. Both means of assessing immunosuppression indicated variations in the suppressive activity throughout pregnancy. This was observed in embryo-foetal fluids but not in autologous peripheral blood nor in homologous pseudopregnant blood. At days 9-13 of pregnancy, the immunosuppressive effects of blastocoelic fluids were higher than that of the autologous sera, reached a peak at days 12 and 13 and declined thereafter, to reach the lowest levels. In order to further characterize the biological activity of day-12 blastocoelic fluid and autologous serum, they were submitted to ultracentrifugation. No suppressive activity could be demonstrated in the lipoprotein fractions. But all the activity was found in the protein fraction. Precipitation with cold ethanol confirmed that the biologically active compound was a protein. Furthermore, results obtained after ultrafiltration suggest biologically active compounds of high mol. wt (greater than 300 kDa). From the above findings, we can suggest that in the rabbit, there is no pregnancy specific systemic immunosuppression. We can also infer that (1) the immuno-tolerance of the mother towards the embryo is more due to a localized effect; (2) this effect decreases with the progression of gestation and (3) a high mol. wt factor is responsible for the immunosuppression.

Allantois

Local effect of the rabbit embryo-foetus on uterine progesterone and pregnenolone levels.

Rabbit peripheral serum and uterine tissue (embryonic (EZ) and interembryonic (IEZ) zones) were assayed for the main C21, C19 and C18 steroids throughout pregnancy and pseudopregnancy (PSPG). Pregnenolone concentrations in PSPG and IEZ were comparable and remained relatively stable, while its level in EZ increased, reaching a peak value of 18.2 +/- 0.8 ng/g by day 15, and decreasing thereafter to a level comparable to oestrus by day 25. Tissue concentrations of progesterone were comparable in PSPG and IEZ, reached their maximal level on days 6.5 and 9, and decreased significantly (P less than 0.01) on day 15. In EZ, progesterone level was significantly lower than in IEZ and decreased on day 9 compared to day 6.5. A further decrease was observed from days 9 to 15 but no difference between tissues was observed on the latter day. Thus, the blastocyst-foetus exerts a local effect by decreasing progesterone content and increasing pregnenolone level in the uterine tissue adjacent to its implantation (EZ). The conversion of progesterone in uterine tissue to less-active metabolites does not appear to occur towards the C19 and C18 steroids.

Animals

Regulation of adenylate cyclase activity and stimulation response in relation to endometrial receptivity in the rabbit.

Adenylate cyclase activity was measured in broken cell preparations of whole endometrial tissue from rabbits on Days 0, 1, 6.5, 9 and 15 of pseudopregnancy and in endometrial epithelial and stromal cells on Days 1 and 6.5 to assess the specific response of individual cell types. In dispersed cells, adenylate cyclase activity was higher (P less than 0.01) in stromal than in epithelial cells and reduced on Day 6.5 compared to Day 1 in both cell types. The response of adenylate cyclase to isoproterenol appeared more important relative to the PGE-2 response in epithelial than in stromal cells and strongly reduced in the former on Day 6.5. In endometrium, the overall adenylate cyclase activity was increased significantly on Day 1 of pseudopregnancy compared to Day 0 (oestrus), only 18 h after injection of hCG. On the following days, the activity decreased progressively on Days 6.5 and 9 and exhibited a recovery on Day 15. Adenylate cyclase response to isoproterenol (% over GTP) was comparable on Days 0, 1 and 6.5, abolished on Day 9 and recovered on Day 15. Maximal response to PGE-2 (% over GTP) was observed on Day 6.5, at the time of implantation, maintained on Day 9 and reduced on Day 15 towards the low levels measured in oestrus and Day 1 of pseudopregnancy. Our results demonstrate a dramatic alteration of adenylate cyclase activity in rabbit endometrium during pseudopregnancy. It suggests a possible involvement of catecholamines and prostaglandin E-2 in the regulation of endometrial receptivity through a cAMP-mediated process.

Adenylyl Cyclases

Effect of heparin on the expression of calmodulin-binding proteins in bull spermatozoa.

A 125I-labelled calmodulin gel overlay procedure in the presence and the absence of Ca2+ was used to evaluate bull spermatozoa calmodulin-binding proteins. Frozen spermatozoa were thawed, washed and incubated for 6 h before being processed for SDS polyacrylamide gel electrophoresis and the 125I-labelled calmodulin gel overlay procedure. In non-incubated spermatozoa, up to 14 binding proteins were detected. Some exhibited greater calmodulin binding in the presence of Ca2+ while others exhibited greater binding when Ca2+ was absent. When heparin (2 micrograms/ml) was present in the incubation medium, a decrease in the calmodulin binding to the proteins of Mr 28,000 and 30,000 was detected in the presence of Ca2+ and EGTA. This effect of heparin was time- and dose-dependent and was increased by the presence of the acrosin inhibitor benzamidine. Sperm capacitation could thus be related to a decrease in the binding of calmodulin to these proteins.

Animals

Cytogenetic study of parthenogenetically activated bovine oocytes matured in vivo and in vitro.

Three experiments were performed to evaluate the potential for parthenogenetic activation of bovine oocytes in in vitro fertilization systems and to determine the chromosome complement of the resulting parthenogenotes. In the first experiment, immature oocytes from slaughtered cattles were matured in vitro in Defined Medium (DM) for 24 h to simulate in vitro fertilization conditions. Subsequently, a portion was fixed, and the remainder were transferred to rabbit oviducts. Oocytes were then cultured for 6-8 h or for 24 h with Colcemid present during the last 6 to 8 h and fixed on slides and examined. In the second experiment, mature oocytes were collected from the preovulatory follicles, and the oocytes were subjected to the same culture as in experiment I. In the third experiment, oocytes were treated as in experiment II, except that instead of transfer to rabbit oviducts, they were cultured an additional 48 h in vitro. In experiment I, 131 oocytes were fixed after culture in DM. Of the 79 oocytes analyzed in the pre-rabbit group, 71 (90%) were at the second meiotic metaphase (MII), and 8 (10%) were at pre-MII stage; none were activated. After transfer to rabbits, 291 were fixed. Of these, 80 were analyzed; 37 (46.3%) were MII, 7 (8.6%) were pre-MII, and 36 (45%) were activated. Of the 36 activated oocytes, 26 (72.2%) were haploid, 4 (11.1%) were diploid, 1 (12.8%) was tetraploid, and 5 (13.8%) were in the process of endoreduplication. In experiment II, 51 oocytes were fixed after culture in DM of which 36 (70.6%) could be analyzed; 30 (83.3%) were MII, and 6 (16.7%) were pre-MII. After culture in the rabbit, 68 were fixed of which 27 (39.7%) could be analyzed. Of these 27, 20 (74.1%) were MII, and 7 (25.9%) were activated; 6 were haploid, and 1 was endoreduplicating. In experiment III, 30 oocytes were fixed at the end of the culture period; only 10 could be analyzed of which 8 (80%) were MII and 2 (20%) were pre-MII. In all, 46% of in vitro and 26% of in vivo matured oocytes were activated, based on chromosomal analysis. Of those activated, the majority (74.4%) were haploid, suggesting that activation occurs at or after completion of MII. Endoreduplication appears to be one of the mechanisms leading to the formation of diploid and polyploid parthenogenotes.

Animals

The embryo influences adenylate cyclase activity and hormonal response in rabbit myometrium during early pregnancy.

The effect of pseudopregnancy (PSPG; days: 0 (estrus), 1, 6.5, 9 and 15) and pregnancy (PG; days: 6.5, 9 and 15) on adenylate cyclase (AC) activity was verified in rabbit myometrium. During PSPG, there was a time related decline in basal activity from 71 +/- 16.2 (D 0) to 13.1 +/- 1.6 (PSPG-D9) pmoles cAMP formed/mg prot-min. Stimulation of the enzyme by GTP, Isoproterenol (ISO), Prostaglandin E2 (PGE2) or Sodium Fluoride (NaF) followed a similar pattern. AC activity was compared in myometrial tissues of pregnant animals (PG) separated into embryonic (ES) and interembryonic (IES) sites. On days 6.5 and 9, AC activity measured in tissues from PG rabbits (ES and IES) was always higher than that found in tissues from PSPG animals on corresponding days. On day 6.5, AC activity was slightly higher (p less than 0.01) in ES than in IES. This was confirmed on day 9 where basal as well as GTP, ISO and PGE2 stimulated activities were higher in ES than in IES (p less than 0.001). Dose response to ISO, expressed as % of GTP, were similar on D0, 1, 6.5 and 15 of PSPG. However, on day 9, there was a striking diminution in response reflected by a lower stimulation at suboptimal dose (0.1 microM; p less than 0.05) from 115 +/- 2 on day 0 to 104 +/- 4 on day 9. These results suggest that protein content which is increased during pseudopregnancy could be responsible for the decline of AC activity. However, results obtained on day 9 and 15 suggest that other factors are involved. Dose responses to ISO during PG showed an alteration in response on days 6.5 and 9 at ES. It was reflected by a higher stimulation at suboptimal (0.1 microM) and optimal doses (100 microM). These results suggest that myometrial AC activity could be regulated by the presence of the embryo.

Adenylyl Cyclases

Immunosuppressive effects of rabbit blastocoelic fluid and embryo culture medium.

In order to understand the mechanism of the feto-maternal immune relationship, we assayed the immunosuppression activities of fresh blastocoelic fluid and decomplemented peripheral serum collected from day-9 pregnant white New Zealand rabbits and of rabbit embryo culture medium (ECM). Because the viability of the human lymphocytes was not affected by either of these biological fluids and since they were easy to obtain in sufficient quantities, they were used uniformly in all the experiments. Immunosuppressive effect was calculated by the relative inhibition of proliferation of Con A-stimulated lymphocytes. The immunosuppressive effect of blastocoelic fluid of the 9-day pregnant rabbits was significantly higher than that of autologous decomplemented serum (P less than 0.001). The inhibition by the serum was non-specific because sera from non-pregnant animals as well as sera from different stages of pregnancy and pseudo-pregnancy showed the same level of inhibition. The ECM of 6.5-7-day-old embryo showed a pronounced immunosuppressive effect. When embryos of 1,3 and 5 days were cultured and their culture media were assayed only with 5-day-old embryo the effect had begun to appear, but it was far less than that of 7-day-old embryo (P less than 0.02). The suppressive activity of both the blastocoelic fluid and ECM was not due to cytotoxic effect, since this fluid supported the in vitro growth of single-cell rabbit embryos up to the stage of blastocyst. These results suggest that the immunologic tolerance of the embryo might be due to the immunosuppressors secreted by the embryo and that there might be a localized effect at the implantation site rather than a maternal systemic immunosuppressive effect.

Animals

Cell-specific localization of prostaglandin E2-sensitive adenylate cyclase in rabbit endometrium.

Epithelial and stromal cells were isolated from endometrium of Day 1 pseudopregnant rabbits by enzymatic digestion with trypsin or trypsin:collagenase:deoxyribonuclease. Dispersed cells were grown in RPMI 1640 supplemented with 10% whole or steroid-depleted fetal bovine serum (FBS). Epithelial and stromal cells reached confluency after 6 to 7 days in culture and showed specific characteristics. Cells could be differentiated according to morphology, growth patterns, electrophoretic patterns, and response to estrogen or progesterone. Hormonal stimulation of adenylate cyclase activity was measured in broken cell preparations by catalytic transformation of alpha-32P-adenosine triphosphate into 32P-adenosine 3'-5' cyclic monophosphate (cAMP). Adenylate cyclase activity was present in fresh endometrial tissue and in dispersed cells after 7 days in culture. The enzyme activity was significantly higher in stromal than in epithelial cells at all stimulation levels: basal (9.2 +/- 1.0 vs. 2.3 +/- 0.6, p less than 0.001) and guanosine triphosphate (GTP, 300 microM) (25.4 +/- 2.9 vs. 7.0 +/- 1.6, p less than 0.001). Net response to prostaglandin E2 (PGE2, 10 microM) was three times higher (p less than 0.001) in stromal (17 +/- 2) than in epithelial (5.0 +/- 1) cells. These results suggest that PGE2 can stimulate adenylate cyclase in rabbit endometrium and that the enzyme is preferentially localized in the stroma. Our results are in agreement with the hypothesis that cAMP formed in endometrium in response to PGE2 might be involved in the decidual reaction.

Adenylyl Cyclases

Birth of calves after in vitro fertilisation using laparoscopy and rabbit oviduct incubation of zygotes.

The infertility of many cows could be treated by in vitro fertilisation. In the present study laparoscopy was utilised to recover the in vivo matured oocytes from the ovary of a standing donor. After the capacitation of fresh semen with high ionic strength medium and in vitro fertilisation, a rabbit oviduct was employed as an incubator for four to five days, in order to obtain sufficiently aged embryos to be transferred to the uterus of a recipient. Using surgical or non-surgical transfer six calves were obtained.

Animals

In vitro fertilization of bovine follicular oocytes obtained by laparoscopy.

Bovine follicular oocytes (n = 454), obtained after laparoscopy, were used to study in vitro capacitation, fertilization, and embryo development. Capacitation was accomplished by treating bovine spermatozoa with high ionic strength medium. Maturation, fertilization, and development studies were carried out in Brackett's defined medium or in Ham's F-10. In vitro fertilization rates, ranging from 14% to 55%, were found to be influenced by individual variations among males. Brackett's defined medium was found to be superior to Ham's F-10 for oocyte maturation, fertilization, and growth, these media giving cleavage rates of 60% and 32%, respectively. Oocytes with expanded cumuli at the time of recovery cleaved at a rate of 43%, which is significantly different from oocytes recovered without granulosa cells (22%) or oocytes with compact cumuli and corona cells (5%). The in vitro development pattern of the in vitro-fertilized embryos was found to be similar to that observed in vivo. Embryos were observed at the 2-cell stage 44.5 +/- 6.3 h after in vitro insemination, 4-cell after 59.0 +/- 9.4 h, 8-cell after 74.8 +/- 12.7 h, and 16-cell after 96.2 +/- 13.9 h (observations at 12-h intervals). The procedures described here resulted in cleavage rates of up to 60% using follicular oocytes embedded in expanded cumuli cells and semen samples from selected males.

Animals

[Confirmation of the presence of uteroglobin in tubal secretions].

The acrylamide gel electrophoresis of rabbit serum, of rabbit tubal secretions at the oestrus stage (STO) and at the luteal stage (STL), followed by immunodiffusion with anti-serum, was done to detect any tubal proteins which were not found in the rabbit serum. The anti-rabbit STO goat anti-serum was absorbed with rabbit plasma in order to purify antibodies to proteins found specifically in tubal secretions. This technique revealed the presence of a protein (STx) in STO and STL but not in the rabbit serum. The electrophoretic migration (Rf = 0.72) of the tubal protein (STx) is similar to uteroglobin (Rf = 0.74). The tubal protein was detected immunologically only in tissues where uteroglobin had been found by other workers: lungs, semen, Fallopian tubes and uterine secretions (5 days post-ovulation); further more a complete identity for the precipitating line existed between these extracts. These results corroborate the presence of uteroglobin or of a very similar protein in oestrus of luteal tubal secretions and in some other rabbit tissues.

Animals