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1.
Reprod Domest Anim ; 59(6): e14630, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38847348

ABSTRACT

This study evaluated whether the treatment of pseudopregnancy in bitches with vitamin B6 modulates uterine expression of receptors for progesterone (PR), oestrogen (ERα), androgen (AR), thyroid hormone (TRα) and the kisspeptin/Kiss1r system. Eighteen pseudopregnant bitches were treated for 20 days in groups receiving placebo (n = 6); cabergoline (5 µg/kg/day; n = 6); or vitamin B6 (50 mg/kg/day; n = 6). Blood was collected on the 1st day of drug administration and 120 h later to measure serum prolactin (PRL). After treatment, they were ovariohysterectomized and uterine fragments were collected for histomorphometry and immunohistochemical evaluation of PR, ERα, AR, TRα, Kiss1 and Kiss1r. After 120 h of cabergoline or vitamin B6 treatment, PRL levels were reduced in the bitches, confirming the antiprolactinemic effect of these drugs. Furthermore, regardless of treatment, the animals exhibited uterine histomorphometry consistent with dioestrus. The PR showed strong immunostaining in all regions and an increase in scores was observed for this receptor in animals treated with vitamin B6 in deep glands. In contrast, ERα and Kiss1R receptors showed weak to no immunostaining in all uterine regions and no changes between groups. Regarding AR, most animals treated with vitamin B6 showed increased trends in the deep gland and myometrium marking scores. In contrast, in both vitamin B6 and cabergoline treatments, a reduction in TRα marking scores was observed compared to the control group. In addition, on the endometrial surface, a reduction was observed in the marked area of Kiss1 after administration of cabergoline when compared to the pseudopregnant control group. These findings shed valuable insight into the use of vitamin B6 as a drug with actions similar to cabergoline in reducing PRL and uterine modulation in bitches.


Subject(s)
Cabergoline , Kisspeptins , Prolactin , Pseudopregnancy , Uterus , Animals , Female , Dogs , Kisspeptins/pharmacology , Kisspeptins/metabolism , Uterus/drug effects , Uterus/metabolism , Cabergoline/pharmacology , Prolactin/metabolism , Pseudopregnancy/veterinary , Pseudopregnancy/metabolism , Receptors, Progesterone/metabolism , Receptors, Androgen/metabolism , Ergolines/pharmacology
2.
Mol Hum Reprod ; 26(3): 154-166, 2020 03 26.
Article in English | MEDLINE | ID: mdl-31977023

ABSTRACT

The study investigated the effect of normal and supraphysiological (resulting from gonadotropin-dependent ovarian stimulation) levels of estradiol (E2) and progesterone (P4) on mouse uterine aquaporin gene/protein (Aqp/AQP) expression on Day 1 (D1) and D4 of pregnancy. The study also examined the effect of ovarian stimulation on uterine luminal closure and uterine receptivity on D4 of pregnancy and embryo implantation on D5 and D7 of pregnancy. These analyses revealed that the expression of Aqp3, Aqp4, Aqp5 and Aqp8 is induced by E2 while the expression of Aqp1 and Aqp11 is induced by P4. Additionally, P4 inhibits E2 induction of Aqp3 and Aqp4 expression while E2 inhibits Aqp1 and Aqp11 expression. Aqp9, however, is constitutively expressed. Ovarian stimulation disrupts Aqp3, Aqp5 and Aqp8 expression on D4 and AQP1, AQP3 and AQP5 spatial expression on both D1 and D4, strikingly so in the myometrium. Interestingly, while ovarian stimulation has no overt effect on luminal closure and uterine receptivity, it reduces implantation events, likely through a disruption in myometrial activity and embryo development. The wider implication of this study is that ovarian stimulation, which results in supraphysiological levels of E2 and P4 and changes (depending on the degree of stimulation) in the E2:P4 ratio, triggers abnormal expression of uterine AQP during pregnancy, and this is associated with implantation failure. These findings lead us to recognize that abnormal expression would also occur under any pathological state (such as endometriosis) that is associated with changes in the normal E2:P4 ratio. Thus, infertility among these patients might in part be linked to abnormal uterine AQP expression.


Subject(s)
Aquaporins/physiology , Embryo Implantation/drug effects , Estradiol/physiology , Ovulation Induction , Progesterone/physiology , Animals , Aquaporins/biosynthesis , Aquaporins/genetics , Embryo Implantation/physiology , Embryo Transfer , Estradiol/pharmacology , Female , Gene Expression Regulation, Developmental , Mice , Mice, Inbred C57BL , Mifepristone/pharmacology , Pregnancy , Progesterone/pharmacology , Pseudopregnancy/metabolism , Uterus/physiopathology , Water/metabolism
3.
Reproduction ; 159(3): 303-314, 2020 03.
Article in English | MEDLINE | ID: mdl-31990672

ABSTRACT

Decidualization is a critical process for successful embryo implantation and subsequent placenta formation. The characterization and physiological function of lncRNA during decidualization remain largely unknown. In the present study, we conducted RNA-sequencing analysis to compare gene expression between decidua of days 6 and 8, and normal pregnant endometrium (day 4). A total of 2332 high-confidence putative lncRNA transcripts were expressed. Functional clustering analysis of cis and trans lncRNA targets showed that differentially expressed lncRNAs may regulate multiple gene ontology terms and pathways that have important functions in decidualization. Subsequent analyses using qRT-PCR validated that eight of all lncRNAs were differentially regulated in mice uteri during decidualization, both in vivo and in vitro. Furthermore, we showed that differentially expressed lncRNA of Hand2os1 was specifically detected in stromal cells on days 2 to 5 of pregnancy and was strongly upregulated in decidual cells on days 6-8 of pregnancy. Similarly, Hand2os1 expression was also strongly expressed in decidualized cells following artificial decidualization, both in vivo and in vitro. In uterine stromal cells, P4 was able to significantly upregulate the expression of Hand2os1, but upregulation was impeded by RU486, whereas E2 appeared to have no regulating effect on Hand2os1 expression. Concurrently, Hand2os1 significantly promoted the decidual process in vitro and dramatically increased decidualization markers Prl8a2 and Prl3c1. Our results provide a valuable catalog for better understanding of the functional roles of lncRNAs in pregnant mouse uteri, as it relates to decidualization.


Subject(s)
Endometrium/metabolism , Pregnancy, Animal/metabolism , Progesterone/metabolism , RNA, Long Noncoding/metabolism , Receptors, Progesterone/metabolism , Animals , Female , Gene Expression Profiling , Gonadal Steroid Hormones/metabolism , Male , Mice , Pregnancy , Pseudopregnancy/metabolism
4.
Reproduction ; 159(4): 493-501, 2020 04.
Article in English | MEDLINE | ID: mdl-31967970

ABSTRACT

Maintenance of a suitable uterine milieu is important for embryo development and subsequent implantation during early pregnancy. High estrogen level in proestrous and estrous stages is essential for uterine anti-bacterial activity during preimplantation period. Lipocalin-2 is an essential molecule which prevents bacterial infection by sequestering iron. In this study, the highest expression of lipocalin-2 is observed in the endometrial epithelium on day 1 of normal pregnancy and pseudopregnancy, which exhibit a similar hormone scenario. By injecting the agonists for estrogen receptor α and estrogen receptor ß in ovariectomized mice, we found estrogen receptor α is the dominant member for estrogen regulation on lipocalin-2 expression. Estrogen treatment in estrogen receptor α-knockout mice further confirmed the role of estrogen receptor α. Using published data from whole-genome estrogen receptor α binding site assay, significant estrogen receptor α recruitment peaks are found at the downstream of lipocalin-2 gene after estrogen treatment. Furthermore, to study the anti-bacterial activity of lipocalin-2 in uterus, Escherichia coli is injected to mimic bacterial infection. Our results showed an obvious induction of lipocalin-2 in Escherichia coli-treated group. Taken together, this study indicates estrogen regulation of lipocalin-2 in uterine epithelium is mediated by estrogen receptor α, and lipocalin-2 may have anti-bacterial activity during early pregnancy.


Subject(s)
Estrogen Receptor alpha/metabolism , Lipocalin-2/metabolism , Pregnancy, Animal/metabolism , Uterus/metabolism , Animals , Epithelium/metabolism , Escherichia coli , Female , Lipopolysaccharides , Mice , Mice, Knockout , Pregnancy , Pseudopregnancy/metabolism
5.
Biol Reprod ; 99(5): 982-999, 2018 11 01.
Article in English | MEDLINE | ID: mdl-29901777

ABSTRACT

Tubulin polymerization promoting protein 3 (TPPP3) is known to be expressed in the endometrium in a cyclic manner, and its functional role in the physiology of implantation remains unknown. Here we demonstrate a novel function of TPPP3 during the window of implantation and in the establishment of pregnancy using a mouse model. The increased protein expression of TPPP3 and ß-catenin during peri-implantation period, i.e. D5 (receptive phase, 0800 h), was observed as compared to that on D1 (nonreceptive phase, 0800 h). SiRNATPPP3-mediated knockdown of uterine TPPP3 resulted in implantation failure and inhibited the expression of receptivity markers: LIF, Integrin-ß3, IHH, and Wnt4. TPPP3 silencing in mouse endometrial epithelial cells also prevented blastocyst attachment and the adhesion reaction. In delayed implantation experiment, expression of TPPP3 was increased in active implantation group (E2 + P4) compared to delayed implantation group (P4). The increased expression of TPPP3 in E2 + P4-treated Ishikawa cells compared to vehicle or P4 or E2 alone-treated Ishikawa cells also revealed its upregulation by E2. The suppression of ß-catenin in uterus under the condition of transient knockdown of TPPP3 and the co-immunoprecipitation experiment revealed that regulation of ß-catenin was mediated via TPPP3 during implantation. Additionally, in order to gain insight into TPPP3 collaborators, we identified TPPP3 interacting proteins by nanoLC-MS analysis in mouse uterus which might be involved during implantation. In conclusion, our study suggests that TPPP3 is important for embryo implantation and for the establishment of early pregnancy through modulation of ß-catenin.


Subject(s)
Cell Adhesion Molecules/genetics , Cell Adhesion Molecules/physiology , Embryo Implantation/genetics , Embryo Implantation/physiology , Uterus/metabolism , beta Catenin/metabolism , Animals , Blastocyst , Cell Line, Tumor , Estradiol/pharmacology , Female , Gene Knockdown Techniques , Mice , Mice, Inbred BALB C , Pregnancy , Pseudopregnancy/genetics , Pseudopregnancy/metabolism
6.
Biol Reprod ; 99(2): 319-325, 2018 08 01.
Article in English | MEDLINE | ID: mdl-29579157

ABSTRACT

Prion protein (PrP) is encoded by a single copy gene Prnp in many cell and tissue types. PrP is very famous for its infectious conformers (PrPSC) resulting in transmissible spongiform encephalopathies. At present, physiological functions of its cellular isoform (PrPC) remain ambiguous. Although PrPC expression has been found in uterus, whether it functions in maternal-fetal dialogue during early pregnant is unknown. In this study, we examined PrPC mRNA and protein in the uterus of peri-implantation mice, and found that they were expressed with a spatiotemporal dynamic pattern. Interestingly, PrPC was significantly increased in the decidual zones around the implanting embryos at the implantation window stage. To further demonstrate that PrPC is involved in the decidualization of mouse uterus during embryo implantation, we constructed the artificial decidualization models and the delayed implantation models. Once the pseudopregnant mice were artificially induced to decidualization, the PrPC expression then increased significantly in the decidua zone. And also, if the delayed implantation embryos were allowed to implant, PrPC protein was also simultaneously improved in stromal cells surrounding the implanting embryos. Moreover, PrPC expression can be inhibited by progesterone but upregulated by estrogen in mouse uterus. These results suggest that PrPC may play an important role in embryo implantation and decidualization.


Subject(s)
Embryo Implantation/physiology , Prion Proteins/metabolism , Uterus/metabolism , Animals , Decidua/drug effects , Decidua/metabolism , Embryo Implantation/drug effects , Embryo Implantation, Delayed/drug effects , Embryo Implantation, Delayed/physiology , Estradiol/pharmacology , Female , Mice , Progesterone/pharmacology , Pseudopregnancy/metabolism , Stromal Cells/drug effects , Stromal Cells/metabolism , Uterus/drug effects
7.
Reproduction ; 155(4): 393-402, 2018 04.
Article in English | MEDLINE | ID: mdl-29459402

ABSTRACT

Embryo implantation is a complex process involving synchronised crosstalk between a receptive endometrium and functional blastocysts. Apoptosis plays an important role in this process as well as in the maintenance of pregnancy. In this study, we analysed the expression pattern of programmed cell death 4 (Pdcd4), a gene associated with apoptosis in the mouse endometrium, during early pregnancy and pseudopregnancy by real-time quantitative polymerase chain reaction, in situ hybridisation, Western blotting and immunohistochemistry. The results showed that Pdcd4 was increased along with days of pregnancy and significantly reduced at implantation sites (IS) from day 5 of pregnancy (D5). The level of Pdcd4 at IS was substantially lower than that at interimplantation sites (IIS) on D6 and D7. In addition, Pdcd4 expression in the endometrium was reduced in response to artificially induced decidualisation in vivo and in vitro Downregulation of Pdcd4 gene expression in cultured primary stromal cells promoted decidualisation, while upregulation inhibited the decidualisation process by increasing apoptosis. These results demonstrate that Pdcd4 is involved in stromal cell decidualisation by mediating apoptosis and therefore plays a role in embryo implantation in mice.


Subject(s)
Apoptosis Regulatory Proteins/metabolism , Blastocyst/metabolism , Embryo Implantation , Endometrium/metabolism , Gene Expression Regulation, Developmental , Pseudopregnancy/metabolism , RNA-Binding Proteins/metabolism , Stromal Cells/metabolism , Animals , Apoptosis Regulatory Proteins/genetics , Blastocyst/cytology , Endometrium/cytology , Female , Mice , Pregnancy , RNA-Binding Proteins/genetics , Stromal Cells/cytology
8.
Biochem Biophys Res Commun ; 473(4): 828-833, 2016 05 13.
Article in English | MEDLINE | ID: mdl-27033606

ABSTRACT

Successful implantation of an embryo requires adequate depth of invasion in the endometrium, which depends upon decidualization. The aim of the present study was to elucidate why humans experience spontaneous decidualization and menstruation while most other mammals do not. We established a spontaneous decidualization model in pseudopregnant rats with vitamin E deficiency (VED) to investigate mechanisms associated with spontaneous decidualization. Vaginal smears were used to monitor bleeding while vitamin E levels were analyzed with a commercial vitamin E assay kit. Trypan blue staining was used to observe the implantation site at 5.5 days post-coitum (dpc). Uterine morphology, estradiol (E2) and progesterone levels, and the anti-oxidation system were evaluated at 5.5, 7.5, and 9.5 dpc. The proportion of rats in the VED group exhibiting endometrial bleeding gradually increased (5.9%, 32.3%, and 50%) over three consecutive cycles of pseudopregnancy. Vitamin E levels in the VED group were markedly lower compared to the control group in both the plasma and uterus, while the level of vitamin E in the liver did not differ between the control and VED groups. Spontaneous decidualization in the VED group was validated by histological examination and immunohistochemistry. At 5.5 dpc, the mean serum E2 level in the VED group was more than twice that of the control group. The mean total anti-oxidizing capability, catalase level, and glutathione peroxidase activity were significantly reduced in the decidualized portion of the VED group compared to controls, while the malondialdehyde level was also significantly higher in the decidualized portion of the VED group. We hypothesize that the E2 surge at 5.5 dpc and increasing levels of reactive oxygen species are responsible for spontaneous decidualization in VED rats.


Subject(s)
Deciduoma/physiopathology , Estradiol/metabolism , Pregnancy Complications/metabolism , Pseudopregnancy/metabolism , Reactive Oxygen Species/metabolism , Vitamin E Deficiency/complications , Vitamin E Deficiency/metabolism , Animals , Female , Pregnancy , Pseudopregnancy/complications , Rats, Wistar
9.
Reprod Biol Endocrinol ; 14(1): 65, 2016 Oct 07.
Article in English | MEDLINE | ID: mdl-27717400

ABSTRACT

BACKGROUND: ATF6α, one of the sensor proteins in the stress signaling pathway of the endoplasmic reticulum, is located in the membrane of the endoplasmic reticulum. To date, the physiological function of ATF6α in the process of embryo implantation has not been reported. METHODS: In this study, the expression pattern of ATF6α in the mouse uterus during peri-implantation and the estrous cycle was detected by real-time PCR, western blot and immunohistochemistry. RESULTS: ATF6α mRNA and protein levels were higher in the uterus near the implantation site on day 5 and were intensely expressed in the secondary decidual zone (SDZ) on days 7-8. In the uteri of pseudopregnant mice, ATF6α mRNA and protein levels were lower on day 5 than on other days. The activating blastocyst and artificial decidualization had an obvious effect of increasing the expression of ATF6α. In addition, the expression of ATF6α was affected by progesterone (P4) and estrogen (E2) in ovariectomized mice. This finding is further supported by evidence from mice during the estrous cycle. CONCLUSIONS: Thus, we have concluded that ATF6α may play an important role during embryo implantation and decidualization.


Subject(s)
Activating Transcription Factor 6/biosynthesis , Embryo Implantation/physiology , Gene Expression Regulation, Developmental , Uterus/metabolism , Activating Transcription Factor 6/genetics , Animals , Estrous Cycle/genetics , Estrous Cycle/metabolism , Female , Male , Mice , Pregnancy , Pseudopregnancy/genetics , Pseudopregnancy/metabolism , RNA, Messenger/biosynthesis , RNA, Messenger/genetics
10.
Reprod Biol Endocrinol ; 14(1): 68, 2016 10 18.
Article in English | MEDLINE | ID: mdl-27756404

ABSTRACT

BACKGROUND: Cyclooxygenase (COX)-derived prostanoids (PGE2, PGI2) are important contributors to the process of decidualization. Previous studies showed the presence of Ang-(1-7) in the primary and secondary decidualized zones of the implantation site at early pregnancy. Decreased concentrations of Ang-(1-7) were found in the decidualized uterus compared to the non-decidualized uterus of pseudopregnant rats, suggesting that low levels of Ang-(1-7) are required for successful decidualization at early pregnancy. METHODS: To understand the role of Ang-(1-7) in prostaglandin production in a decidualized uterus, induced by a bolus injection of sesame oil, Ang-(1-7) (24 µg/kg/h) or vehicle was then infused directly into the decidualized uterine horn using an osmotic minipump. The right horns were not injected or infused and served as non-decidualized uterine horns in both groups of animals. RESULTS: Decidualization increased PGE2 concentration in the uterus (0.53 ± 0.05 vs. 12.0 ± 3.2 pmol/mg protein, p < 0.001, non-decidualized vs. decidualized horns); Ang-(1-7) infusion attenuated the increase of PGE2 (12.0 ± 3.2 vs. 5.1 ± 1.3 pmol/mg protein, p < 0.01 control vs. Ang-(1-7) treated decidualized horns). The stable metabolite of PGI2 (6-keto PGF1α) was increased with decidualization (0.79 ± 0.17 vs. 3.5 ± 0.82 pmol/mg protein, p < 0.001, non-decidualized vs. decidualized horns). Ang-(1-7) infusion attenuated the increase in 6-keto PGF1α in the decidualized horn (3.5 ± 0.82 vs 1.8 ± 0.37 pmol/mg protein, p < 0.05 control vs. Ang-(1-7) treated decidualized horns). The circulating levels of 6-keto-PGF1a and TXB2 were decreased by Ang-(1-7) infusion, while no difference was observed in circulating PGE2. Although the global assessment of cleaved caspase 3 immunostaining, a marker of apoptosis, was unchanged within the Ang-(1-7) decidualized horn, there were localized decreases in cleaved caspase 3 staining in the luminal region in the decidualized uterus of Ang-(1-7)-treated rats. CONCLUSIONS: These studies show that increased local uterine Ang-(1-7) alters the uterine prostaglandin environment, possibly leading to disruptions of early events of decidualization.


Subject(s)
6-Ketoprostaglandin F1 alpha/metabolism , Angiotensin I/administration & dosage , Dinoprostone/metabolism , Peptide Fragments/administration & dosage , Pseudopregnancy/metabolism , Uterus/metabolism , 6-Ketoprostaglandin F1 alpha/antagonists & inhibitors , Animals , Decidua/drug effects , Decidua/metabolism , Dinoprostone/antagonists & inhibitors , Female , Pregnancy , Rats , Rats, Sprague-Dawley , Uterus/drug effects
11.
Connect Tissue Res ; 56(3): 253-63, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25738597

ABSTRACT

The embryo-implantation promotes deep changes in the uterus resulting in the formation of a new structure at the maternal-fetal interface, the decidua. Decidualization can also be induced in pseudopregnant rodents resulting in a structure called deciduoma that is morphologically and functionally similar to the decidua. Previous studies from our and other laboratories demonstrate that in rodents, decidualization of the endometrium requires remarkable remodeling of the endometrial extracellular matrix (ECM) that is mainly coordinated by estradiol and progesterone. The influence of the embryo in this process, however, has not yet been investigated. To enlarge the knowledge on this subject, the present study investigates the behavior of a set of ECM molecules, in the absence of paracrine cues originated from the embryo. For that deciduoma was induced in pseudopregnant Swiss mice, and the distribution of collagen types I, III, IV, V and the proteoglycans decorin and biglycan was investigated by immunolabeling from the fifth to the eighth day of pseudopregnancy. It was observed the deposition of collagen types III and IV as well as decorin and biglycan was similar to that previously described by our group in the decidua. However, in the absence of the embryo, some differences occur in the distribution of collagen types I and V, suggesting that beside the major role of ovarian hormones on the endometrial ECM remodeling, molecular signals originated from the conceptus may influence this process.


Subject(s)
Biglycan/metabolism , Decidua/metabolism , Embryo Implantation/physiology , Extracellular Matrix/metabolism , Pseudopregnancy/metabolism , Uterus/metabolism , Animals , Collagen Type I/metabolism , Collagen Type III/metabolism , Female , Mice
12.
Genet Mol Res ; 14(3): 8796-809, 2015 Aug 03.
Article in English | MEDLINE | ID: mdl-26345811

ABSTRACT

The corpus luteum is a temporary endocrine structure in mammals that plays an important role in the female reproductive cycle and is formed from a ruptured and ovulated follicle with rapid angiogenesis. Vascular endothelial growth factor (VEGF) is thought to be vital in normal and abnormal angiogenesis in the ovary, but the molecular regulation of luteal VEGF expression during corpus luteum development in vivo is still poorly understood at present. Therefore, we examined whether hypoxia-inducible factor-1a (HIF-1a) is induced and regulates VEGF expression and luteal function in vivo using a pseudopregnant rat model treated with a small-molecule inhibitor of HIF-1a, echinomycin. Corpus luteum development in the pseudopregnant rat ovary was determined after measuring plasma progesterone concentration and ovarian prostaglandin F2a content to reflect changes in HIF-1a and VEGF on different days of this developmental process. At day 7, the corpus luteum was formed and the expression of HIF- 1a/VEGF reached a maximum, while a significant decrease in HIF-1a/ VEGF expression was observed when luteolysis occurred at day 13. Additionally, echinomycin blocked luteal development by inhibiting VEGF expression mediated by HIF-1a and following luteal function by detecting the progesterone changes at day 7. These results demonstrated that HIF-1a-mediated VEGF expression might be an important mechanism regulating ovarian luteal development in mammals in vivo, which may provide new strategies for fertility control and for treating some types of ovarian dysfunction, such as polycystic ovarian syndrome, ovarian hyperstimulation syndrome, and ovarian neoplasia.


Subject(s)
Corpus Luteum/growth & development , Dinoprost/metabolism , Hypoxia-Inducible Factor 1, alpha Subunit/metabolism , Ovary/metabolism , Progesterone/blood , Pseudopregnancy/metabolism , Vascular Endothelial Growth Factor A/metabolism , Animals , Corpus Luteum/metabolism , Corpus Luteum Maintenance , Female , Gene Expression Regulation , Male , Pregnancy , Pseudopregnancy/blood , Rats , Rats, Sprague-Dawley , Signal Transduction
13.
Biol Reprod ; 90(2): 41, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24403546

ABSTRACT

The in vivo chronic and in vitro acute effects of di(2-ethylhexyl) phthalate (DEHP) on the reproductive function of peroxisome proliferator-activated receptor gamma (PPARG) were studied in rabbit corpora lutea (CL) at early stage (Day 4), midstage (Day 9), and late stage (Day 13) of pseudopregnancy. The rabbits were in vivo treated with DEHP for 15 days before induction of pseudopregnancy. Immunohistochemistry provided evidence for the presence of PPARG, prostaglandin endoperoxide synthase 1 (PTGS1), PTGS2, prostaglandin E2-9-ketoreductase (PGE2-9-K), and 3beta-hydroxysteroid dehydrogenase (3beta-HSD) in all the luteal cells during pseudopregnancy. DEHP decreased progesterone plasma levels and CL production in all the luteal stages and PPARG protein and gene expressions in early and mid-CL. DEHP in vivo treatment reduced PTGS2 protein expression at the late stage and that of PGE2-9-K at all the stages, whereas PTGS1 and 3beta-HSD were not affected. In in vitro cultured CL, DEHP alone, the PPARG antagonist T0070907 alone, or DEHP plus T0070907 diminished progesterone production and 3beta-HSD activity and increased PGF2alpha and PTGS2 in early and mid-CL, whereas DEHP plus the PPARG agonist 15d-PGJ2 did not affect these hormones and enzymes. All the in vitro treatments did not affect PGE2 secretion as well as PTGS1 and PGE2-9-K enzymatic activities in all the luteal stages. These results provided evidence that DEHP favors functional luteolysis of pseudopregnant rabbit CL, with a mechanism that seems to involve PPARG expression down-regulation, an increase of PTGS2 activity and prostaglandin F2alpha secretion, 3beta-HSD down-regulation, and decrease in progesterone.


Subject(s)
Corpus Luteum/drug effects , Diethylhexyl Phthalate/toxicity , PPAR gamma/physiology , Plasticizers/pharmacology , Pseudopregnancy , Animals , Cells, Cultured , Corpus Luteum/metabolism , Cyclooxygenase 2/metabolism , Environmental Pollutants/pharmacology , Female , Ovulation/drug effects , Ovulation/genetics , Ovulation/metabolism , Pseudopregnancy/genetics , Pseudopregnancy/metabolism , Pseudopregnancy/veterinary , Rabbits , Time Factors , Toxicity Tests, Acute , Toxicity Tests, Chronic
14.
Biochem Biophys Res Commun ; 441(1): 175-9, 2013 Nov 08.
Article in English | MEDLINE | ID: mdl-24140060

ABSTRACT

Progesterone (P4) and progesterone receptor (PR) have important functions in uterine environment. In previous studies, using high density DNA microarray analysis, we identified low density lipoprotein receptor-related protein 2 (Lrp2) is one of the genes upregulated by P4 and PR. In present studies, we examined the expression of Lrp2 through real-time PCR, in situ hybridization and immunohistochemistry by P4-PR response. Lrp2 mRNA transcript was significantly increased after P4 treatment in the luminal and glandular epithelium of the wild-type mice. However, Lrp2 expression was not observed in the progesterone receptor knock out (PRKO) mice treated with P4. The expression of Lrp2 expression is not regulated by estrogen. During early pregnancy, the expression of Lrp2 was detected at 2.5 dpc and then significantly increased at 3.5 dpc in luminal and glandular epithelium. These results suggest that Lrp2 is a novel target gene by P4 and PR.


Subject(s)
Low Density Lipoprotein Receptor-Related Protein-2/metabolism , Progesterone/pharmacology , Uterus/metabolism , Animals , Estradiol/pharmacology , Female , Gene Expression Regulation/drug effects , Low Density Lipoprotein Receptor-Related Protein-2/genetics , Mice , Mice, Inbred C57BL , Mice, Knockout , Pregnancy , Pseudopregnancy/metabolism , Pseudopregnancy/pathology , Uterus/drug effects , Uterus/pathology
15.
Biol Reprod ; 88(3): 62, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23365414

ABSTRACT

The expression of peroxisome proliferator-activated receptor gamma (PPARgamma) and its role in corpora lutea (CL) function were studied in pseudopregnant rabbits. Corpora lutea were collected at an early stage (Day 4), midstage (Day 9), and late stage (Day 13) of pseudopregnancy. Immunohistochemistry found evidence for the presence of PPARgamma in the perinuclear cytoplasm and nucleus of all the luteal cells; immunoreactivity decreased from the early to the late stage, with immunonegativity of the nuclei of late stage CL. PPARgamma mRNA transcript was expressed in all the luteal stages with the lowest level in the late stage. In CL cultured in vitro, the PPARgamma agonist (15-deoxy delta12,14 prostaglandin J2 [15d-PGJ2], 200 nM) increased and the antagonist (T0070907, 50 nM) decreased progesterone secretion at early and midluteal stages, whereas 15d-PGJ2 reduced and T0070907 increased PGF2alpha at the same stages. Prostaglandin-endoperoxide synthase 2 (PTGS2) activity was reduced by 15d-PGJ2 and increased by T0070907 in CL of early and midluteal stages. Conversely, 15d-PGJ2 increased and T0070907 reduced 3beta-hydroxysteroid dehydrogenase (3beta-HSD) activity in early and midluteal stage CL. PGE2 in vitro secretion as well as PTGS1 and 20alpha-HSD enzymatic activities were not affected by 15d-PGJ2 and T0070907 in any CL types. These results indicate that PPARgamma plays a luteotropic role in pseudopregnant rabbits, through PTGS2 down-regulation and 3beta-HSD up-regulation, with a consequent PGF2alpha decrease and progesterone increase.


Subject(s)
Corpus Luteum/enzymology , PPAR gamma/metabolism , Pseudopregnancy/metabolism , Animals , Cyclooxygenase 1/metabolism , Cyclooxygenase 2/metabolism , Dinoprost/metabolism , Dinoprostone/metabolism , Female , Gene Expression , Hydroxyprostaglandin Dehydrogenases/metabolism , Immunohistochemistry , Progesterone/metabolism , Progesterone Reductase/metabolism , RNA, Messenger/metabolism , Rabbits
16.
Biol Reprod ; 89(4): 86, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23946541

ABSTRACT

All mammalian uteri have luminal (LE) and glandular epithelia (GE) in their endometrium. The LE mediates uterine receptivity and blastocyst attachment for implantation, and the GE synthesize and secrete or transport bioactive substances involved in blastocyst implantation, uterine receptivity, and stromal cell decidualization. However, the mechanisms governing uterine epithelial development after birth and their function in the adult are not fully understood. Here, comprehensive microarray analysis was conducted on LE and GE isolated by laser capture microdissection from uteri on Postnatal Day 10 (PD 10) and day of pseudopregnancy (DOPP) 2.5 and 3.5. This data was integrated with analysis of uteri from gland-containing control and aglandular progesterone-induced uterine gland knockout mice from PD 10 and DOPP 3.5. Many genes were expressed in both epithelia, but there was greater expression of genes in the LE than in the GE. In the neonate, GE-expressed genes were enriched for morphogenesis, development, migration, and retinoic acid signaling. In the adult, LE-expressed genes were enriched for metabolic processes and steroid biosynthesis, whereas retinoid signaling, tight junction, extracellular matrix, and regulation of kinase activity were enriched in the GE. The transcriptome differences in the epithelia support the idea that each cell type has a distinct and complementary function in the uterus. The candidate genes and regulatory networks identified here provide a framework to discover new mechanisms regulating development of epithelia in the postnatal uterus and their functions in early pregnancy.


Subject(s)
Aging , Endometrium/cytology , Endometrium/metabolism , Gene Expression Regulation, Developmental , Transcription, Genetic , Transcriptome , Animals , Animals, Newborn , Decidua/cytology , Decidua/drug effects , Decidua/growth & development , Decidua/metabolism , Endometrium/drug effects , Endometrium/growth & development , Female , Fertility Agents, Female/pharmacology , Gene Expression Profiling , Gene Expression Regulation, Developmental/drug effects , Gene Knockout Techniques , Laser Capture Microdissection , Mice , Mice, Inbred C57BL , Mice, Inbred Strains , Oligonucleotide Array Sequence Analysis , Progesterone/pharmacology , Pseudopregnancy/chemically induced , Pseudopregnancy/metabolism , Transcription, Genetic/drug effects , Transcriptome/drug effects , Uterus/cytology , Uterus/drug effects , Uterus/growth & development , Uterus/metabolism
17.
Reproduction ; 146(1): 13-26, 2013 Jul.
Article in English | MEDLINE | ID: mdl-23633624

ABSTRACT

The present study identifies uterine fluid (UF) proteins that display differential abundance during the embryo-permissive phase in nonconception and conception cycles in rats. UF samples were collected from nonpregnant rats in the proestrous (n=17) and metestrous (n=18) phases and also from pregnant (n=17) and pseudopregnant (n=17) rats on day 4 post coitus. UF protein profile in the metestrous phase was compared with that in the proestrous phase. Similarly, UF protein profile of the pregnant rats was compared with that of the pseudopregnant rats. Two-dimensional PAGE, followed by densitometric analysis of the paired protein spots, revealed differential abundance of 44 proteins in the metestrous phase, compared with that in the proestrous phase. Of these, 29 proteins were identified by matrix-assisted laser desorption/ionization time-of-flight or liquid chromatography-tandem mass spectrometry. Functional groups such as proteases, protease inhibitors, and oxidoreductases were enriched in differentially abundant proteins. Total protease activity in UF was found to be significantly (P<0.05; t-test) higher in the proestrous phase, compared with that in the metestrous phase. Furthermore, 41 UF proteins were found to be differentially abundant in pregnant rats, compared with pseudopregnant rats. Of these, 11 proteins could be identified. Immunoblotting analysis confirmed significantly higher (P<0.05; t-test) abundance of ß-actin, Rho-specific guanine nucleotide dissociation inhibitor alpha (Rho-GDIα), and peroxiredoxin-2 and -6 in the metestrous phase, compared with that in the proestrous phase. Compared with pseudopregnant rats, pregnant rats had significantly higher (P<0.05; t-test) levels of UF ß-actin and Rho-GDIα. Furthermore, these proteins could be detected in the culture supernatants of endometrial epithelial cell lines, thereby providing an evidence of their secretion from endometrial epithelial cells. Data obtained from the study expand our knowledge on the uterine milieu that favours embryo implantation.


Subject(s)
Pregnancy, Animal/physiology , Uterus/metabolism , Actins/metabolism , Animals , Cell Line , Electrophoresis, Gel, Two-Dimensional , Embryo Implantation , Endometrium/metabolism , Female , Humans , Metestrus/physiology , Peptide Hydrolases/metabolism , Peroxiredoxin VI/metabolism , Pregnancy , Pseudopregnancy/metabolism , Rats , rho Guanine Nucleotide Dissociation Inhibitor alpha/metabolism
18.
Reproduction ; 145(6): 577-85, 2013 Jun.
Article in English | MEDLINE | ID: mdl-23579188

ABSTRACT

The aim of this study was to examine the expression and regulation of the crystallin, alpha B (Cryab) gene in mouse uterus during the peri-implantation period by in situ hybridization and real-time PCR. There was no detectable Cryab mRNA signal on days 1-4 of pregnancy. On day 5 of pregnancy when embryo implanted, a high level of Cryab mRNA signal was found in the subluminal stroma surrounding the implanting blastocyst. On days 6-8, Cryab mRNA was strongly expressed in the primary decidua. By real-time PCR, a high level of Cryab expression was detected on days 7 and 8 of pregnancy, although Cryab expression was seen from days 1 to 8. Under in vivo and in vitro artificial decidualization, Cryab expression was significantly elevated. Compared with the progesterone-primed delayed implantation uterus, a high level of Cryab mRNA expression was observed in estrogen-activated implantation uterus. In the uterine stromal cells, cAMP, estrogen, and progesterone could induce the expression of Cryab gene. In the ovariectomized mouse uterus, estrogen could also induce the expression of Cryab while progesterone inhibited its expression. Our data suggest that Cryab may play an important role during mouse embryo implantation and decidualization and that estrogen and progesterone can regulate the expression of Cryab gene.


Subject(s)
Decidua/metabolism , Embryo Implantation , Endometrium/metabolism , Fertile Period/metabolism , Gene Expression Regulation, Developmental , Uterus/metabolism , alpha-Crystallin B Chain/biosynthesis , Animals , Decidua/drug effects , Embryo Implantation/drug effects , Embryo Implantation, Delayed/drug effects , Endometrium/drug effects , Estrogen Replacement Therapy , Estrogens/pharmacology , Female , Gene Expression Regulation, Developmental/drug effects , In Situ Hybridization , Mice , Ovariectomy/adverse effects , Placentation/drug effects , Pregnancy , Progesterone/pharmacology , Progestins/pharmacology , Pseudopregnancy/metabolism , RNA, Messenger/metabolism , Stromal Cells/drug effects , Stromal Cells/metabolism , Uterus/drug effects , alpha-Crystallin B Chain/genetics , alpha-Crystallin B Chain/metabolism
19.
Reprod Biol Endocrinol ; 11: 39, 2013 May 14.
Article in English | MEDLINE | ID: mdl-23672289

ABSTRACT

This literature review on pseudocyesis or false pregnancy aims to find epidemiological, psychiatric/psychologic, gynecological and endocrine traits associated with this condition in order to propose neuroendocrine/endocrine mechanisms leading to the emergence of pseudocyetic traits. Ten women from 5 selected studies were analyzed after applying stringent criteria to discriminate between cases of true pseudocyesis (pseudocyesis vera) versus delusional, simulated or erroneous pseudocyesis. The analysis of the reviewed studies evidenced that pseudocyesis shares many endocrine traits with both polycystic ovarian syndrome and major depressive disorder, although the endocrine traits are more akin to polycystic ovarian syndrome than to major depressive disorder. Data support the notion that pseudocyetic women may have increased sympathetic nervous system activity, dysfunction of central nervous system catecholaminergic pathways and decreased steroid feedback inhibition of gonadotropin-releasing hormone. Although other neuroendocrine/endocrine pathways may be involved, the neuroendocrine/endocrine mechanisms proposed in this review may lead to the development of pseudocyetic traits including hypomenorrhea or amenorrhea, galactorrhea, diurnal and/or nocturnal hyperprolactinemia, abdominal distension and apparent fetal movements and labor pains at the expected date of delivery.


Subject(s)
Gonadotropin-Releasing Hormone/metabolism , Nervous System Physiological Phenomena , Pseudopregnancy/metabolism , Pseudopregnancy/physiopathology , Depressive Disorder, Major/diagnosis , Depressive Disorder, Major/metabolism , Depressive Disorder, Major/physiopathology , Diagnosis, Differential , Female , Humans , Polycystic Ovary Syndrome/diagnosis , Polycystic Ovary Syndrome/metabolism , Polycystic Ovary Syndrome/physiopathology , Pseudopregnancy/diagnosis
20.
Reprod Biol Endocrinol ; 10: 75, 2012 Sep 07.
Article in English | MEDLINE | ID: mdl-22958837

ABSTRACT

BACKGROUND: Beta-catenin is part of a protein complex associated with adherens junctions. When allowed to accumulate to sufficient levels in its dephosphorylated form, beta-catenin serves as a transcriptional co-activator associated with a number of signaling pathways, including steroid hormone signaling pathways. METHODS: To investigate the role of beta-catenin in progesterone (P4) signaling and female reproductive physiology, conditional ablation of Ctnnb1 from the endometrial mesenchymal (i.e. stromal and myometrial), but not epithelial, compartment was accomplished using the Amhr2-Cre mice. Experiments were conducted to assess the ability of mutant female mice to undergo pregnancy and pseudopregnancy by or through oil-induced decidualization. The ability of uteri from mutant female mice to respond to estrogen (E2) and P4 was also determined. RESULTS: Conditional deletion of Ctnnb1 from the mesenchymal compartment of the uterus resulted in infertility stemming, in part, from complete failure of the uterus to decidualize. E2-stimulated epithelial cell mitosis and edematization were not altered in mutant uteri indicating that the mesenchyme is capable of responding to E2. However, exposure of ovariectomized mutant female mice to a combined E2 and P4 hormone regimen consistent with early pregnancy revealed that mesenchymal beta-catenin is essential for indirectly opposing E2-induced epithelial proliferation by P4 and in some mice resulted in development of endometrial metaplasia. Lastly, beta-catenin is also required for the induced expression of genes that are known to play a fundamental role in decidualization such as Ihh, Ptch1, Gli1 and Muc1 CONCLUSIONS: Three salient points derive from these studies. First, the findings demonstrate a mechanistic linkage between the P4 and beta-catenin signaling pathways. Second, they highlight an under appreciated role for the mesenchymal compartment in indirectly mediating P4 signaling to the epithelium, a process that intimately involves mesenchymal beta-catenin. Third, the technical feasibility of deleting genes in the mesenchymal compartment of the uterus in an effort to understand decidualization and post-natal interactions with the overlying epithelium has been demonstrated. It is concluded that beta-catenin plays an integral role in selective P4-directed epithelial-mesenchymal communication in both the estrous cycling and gravid uterus.


Subject(s)
Cell Transdifferentiation , Decidua/physiology , Endometrium/metabolism , Epithelial Cells/metabolism , Myometrium/metabolism , Stromal Cells/metabolism , beta Catenin/metabolism , Animals , Decidua/cytology , Decidua/pathology , Endometrium/cytology , Endometrium/pathology , Epithelial Cells/cytology , Epithelial Cells/pathology , Epithelial-Mesenchymal Transition , Estrogens/metabolism , Estrous Cycle/metabolism , Female , Mice , Mice, Inbred ICR , Mice, Mutant Strains , Mice, Transgenic , Myometrium/cytology , Myometrium/pathology , Placentation , Pregnancy , Progesterone/metabolism , Pseudopregnancy/metabolism , Pseudopregnancy/pathology , Random Allocation , Signal Transduction , Stromal Cells/cytology , Stromal Cells/pathology , beta Catenin/genetics
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