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1.
Anim Reprod ; 21(1): e20230146, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38562607

RESUMO

The subcortical maternal complex, which consists of maternal-effect genes, plays a crucial role in the development of oocytes and preimplantation embryo until the activation of the zygote genome. One such gene, known as peptidyl-arginine deiminase VI (Padi6), is involved in the oocyte maturation, fertilization and embryonic development. However, the precise function of Padi6 gene in buffalo is still unclear and requires further investigation. In this study, the sequence, mRNA and protein expression patterns of Padi6 gene were analyzed in oocytes, preimplantation embryos and somatic tissues of buffalo. The coding sequence of gene was successfully cloned and characterized. Real-time quantitative PCR results indicated an absence of Padi6 transcripts in somatic tissues. Notably, the expression levels of Padi6 in oocytes showed an increased from the germinal vesicle stage to metaphase II stage, followed by a rapid decrease during the morula and blastocyst stages. Immunofluorescence analysis confirmed these findings, revealing a noticeable decline in protein expression levels. Our research provides the initial comprehensive expression profile of Padi6 in buffalo oocytes and preimplantation embryos, serving as a solid foundation for further investigations into the functionality of maternal-effect genes in buffalo.

2.
Reprod Biol ; 24(1): 100844, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38160587

RESUMO

Components of the plasminogen/plasmin system, known to be present in the oocyte, play a key role in maturation and fertilization. The objective of this study was to examine the effect of plasminogen activation and plasmin inhibition by exogenous supplementation of the IVF medium with streptokinase (SK) or ɛ-aminocaproic acid (ε-ACA), respectively, on fertilization parameters and preimplantation embryo development. After in vitro maturation, bovine cumulus-oocyte complexes (COCs) were inseminated in the presence of SK or ε-ACA. The addition of SK to the IVF medium facilitated the adhesion of the spermatozoa to the zona pellucida without affecting the percentages of monospermy. Cleavage rates and blastocyst yield were similar between the SK and Control groups while they were lower with the ε-ACA treatment. Additionally, we found that the expression levels of embryo quality-related genes (SDHA and DNMT3A) could be modified in blastocysts by the addition of SK or ε-ACA during IVF. The results obtained indicate that supplementation of the IVF medium with SK did not greatly alter the embryonic developmental parameters related to embryo quality in blastocysts. Moreover, we noticed that ε-ACA treatment compromises the success of in vitro embryo development, thus highlighting the importance of the plasminogen/plasmin activity during the early stages of embryogenesis in bovine.


Assuntos
Desenvolvimento Embrionário , Fibrinolisina , Animais , Bovinos , Feminino , Masculino , Gravidez , Blastocisto/metabolismo , Desenvolvimento Embrionário/fisiologia , Fertilização , Fertilização in vitro/veterinária , Fertilização in vitro/métodos , Fibrinolisina/metabolismo , Oócitos , Plasminogênio/metabolismo
3.
Genesis ; 58(3-4): e23350, 2020 03.
Artigo em Inglês | MEDLINE | ID: mdl-31815354

RESUMO

A previous animal study by our group found that sleep deprivation during preimplantation was associated with decreased pregnancy maintenance. Given its impact on human society, we aimed in the current study to assess whether sleep deprivation affects blastocyst gene expression and/or the implantation process. For this, pregnant mice (gestational day 0 [GD 0]) were assigned into paradoxical sleep deprivation (SD, 72 hr; multiple platform method) and, a control (CT) group. Animals were euthanized on GD 3.5 and blood, uterus (embryos) and fallopian tube were collected. Then, 89% of CT presented blastocysts in the uterus versus 25% from SD group. Compared to CT, SD presented lighter relative uterus weight, increased plasma concentrations of corticosterone and testosterone, decreased concentrations of progesterone and luteinizing hormone, but no statistical differences in plasma concentrations of 17ß-estradiol and follicle stimulating hormone. There were no differences in uterus and blastocyst gene expression related to embryo implantation and development, and no alteration in blastocysts global DNA methylation. Considering this, the decreased pregnancy maintenance after sleep deprivation seems not to be associated with implantation losses or developmental problems related to the blastocysts. It is likely that complications in morula development and/or its movement through the fallopian tubes affect the pregnancy rate, since only 25% of SD females presented a blastocyst on the GD 3.5. In fact, three out of four females without blastocysts in the uterus presented morula in the fallopian tubes due to a phase delay. Additionally, we suggest that the observed hormonal changes may play a role in this outcome.


Assuntos
Implantação do Embrião , Mórula/metabolismo , Reprodução , Privação do Sono , Útero/fisiologia , Animais , Biomarcadores , Blastocisto/metabolismo , Peso Corporal , Metilação de DNA , Epigênese Genética , Tubas Uterinas/metabolismo , Feminino , Imunofluorescência , Regulação da Expressão Gênica , Hormônios/metabolismo , Camundongos , Fatores de Tempo
4.
Biol Reprod ; 101(3): 549-566, 2019 09 01.
Artigo em Inglês | MEDLINE | ID: mdl-31077289

RESUMO

About 10% of women of reproductive age are unable to conceive or carry a pregnancy to term. Female factors alone account for at least 35% of all infertility cases and comprise a wide range of causes affecting ovarian development, maturation of oocytes, and fertilization competence, as well as the potential of a fertilized egg for preimplantation development, implantation, and fetal growth. Genetic abnormalities leading to infertility in females comprise large chromosome abnormalities, submicroscopic chromosome deletion and duplications, and DNA sequence variations in the genes that control numerous biological processes implicated in oogenesis, maintenance of ovarian reserve, hormonal signaling, and anatomical and functional development of female reproductive organs. Despite the great number of genes implicated in reproductive physiology by the study of animal models, only a subset of these genes is associated with human infertility. In this review, we mainly focus on genetic alterations identified in humans and summarize recent knowledge on the molecular pathways of oocyte development and maturation, the crucial role of maternal-effect factors during embryogenesis, and genetic conditions associated with ovarian dysgenesis, primary ovarian insufficiency, early embryonic lethality, and infertility.


Assuntos
Infertilidade Feminina/genética , Oogênese/genética , Animais , Modelos Animais de Doenças , Desenvolvimento Embrionário/genética , Feminino , Humanos , Relações Materno-Fetais/fisiologia , Reserva Ovariana/genética , Gravidez , Insuficiência Ovariana Primária/diagnóstico , Insuficiência Ovariana Primária/genética , Reprodução/genética , Transdução de Sinais/genética
5.
J Assist Reprod Genet ; 33(10): 1405-1413, 2016 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-27515309

RESUMO

PURPOSE: Crotamine is capable of penetrating cells and embryos and transfecting cells with exogenous DNA. However, no studies are available regarding its uptake by parthenogenetic (PA) embryos or its use for transfection in in vitro fertilized (IVF) embryos. This study aimed to determine the translocation kinetics of crotamine into PA and IVF bovine embryos and assess its effect over in vitro development of PA embryos. Moreover, crotamine-DNA complexes were used to test the transfection ability of crotamine in bovine IVF zygotes. METHODS: PA and IVF embryos were exposed to labeled crotamine for four interval times. Embryo toxicity was assayed over PA embryos after 24 h of exposure to crotamine. Additionally, IVF embryos were exposed to or injected with a complex formed by crotamine and pCX-EGFP plasmid. RESULTS: Confocal images revealed that crotamine was uptaken by PA and IVF embryos as soon as 1 h after exposure. Crotamine exposure did not affect two to eight cells and blastocyst rates or blastocyst cell number (p > 0.05) of PA embryos. Regarding transfection, exposure or injection into the perivitelline space with crotamine-DNA complex did not result in transgene-expressing embryos. Nevertheless, intracytoplasmic injection of plasmid alone showed higher expression rates than did injection with crotamine-DNA complex at days 4 and 7 (p < 0.05). CONCLUSIONS: Crotamine is able to translocate through zona pellucida (ZP) of PA and IVF embryos within 1 h of exposure without impairing in vitro development. However, the use of crotamine does not improve exogenous DNA expression in cattle embryos, probably due to the tight complexation of DNA with crotamine.


Assuntos
Blastocisto/citologia , Peptídeos Penetradores de Células/administração & dosagem , Venenos de Crotalídeos/administração & dosagem , Técnicas de Cultura Embrionária , Animais , Blastocisto/efeitos dos fármacos , Bovinos , Embrião de Mamíferos , Feminino , Fertilização in vitro , Partenogênese/efeitos dos fármacos , Partenogênese/genética , Zigoto
6.
Zygote ; 24(1): 48-57, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-25532535

RESUMO

The present study investigated the effects of crotamine, a cell-penetrating peptide from rattlesnake venom, at different exposure times and concentrations, on both developmental competence and gene expression (ATP1A1, AQP3, GLUT1 and GLUT3) of in vitro fertilized (IVF) bovine embryos. In Experiment 1, presumptive zygotes were exposed to 0.1 µM crotamine for 6, 12 or 24 h and control groups (vehicle and IVF) were included. In Experiment 2, presumptive zygotes were exposed to 0 (vehicle), 0.1, 1 and 10 µM crotamine for 24 h. Additionally, to visualize crotamine uptake, embryos were exposed to rhodamine B-labelled crotamine and subjected to confocal microscopy. In Experiment 1, no difference (P > 0.05) was observed among different exposure times and control groups for cleavage and blastocyst rates and total cells number per blastocyst. Within each exposure time, mRNA levels were similar (P > 0.05) in embryos cultured with or without crotamine. In Experiment 2, concentrations as high as 10 µM crotamine did not affect (P > 0.05) the blastocyst rate. Crotamine at 0.1 and 10 µM did not alter mRNA levels when compared with the control (P > 0.05). Remarkably, only 1 µM crotamine decreased both ATP1A1 and AQP3 expression levels relative to the control group (P < 0.05). Also, it was possible to visualize the intracellular localization of crotamine. These results indicate that crotamine can translocate intact IVF bovine embryos and its application in the culture medium is possible at concentrations from 0.1-10 µM for 6-24 h.


Assuntos
Blastocisto/efeitos dos fármacos , Blastocisto/fisiologia , Venenos de Crotalídeos/farmacologia , Regulação da Expressão Gênica no Desenvolvimento/efeitos dos fármacos , Animais , Aquaporina 3/genética , Blastocisto/citologia , Bovinos , Venenos de Crotalídeos/administração & dosagem , Venenos de Crotalídeos/farmacocinética , Feminino , Fertilização in vitro , Transportador de Glucose Tipo 1/genética , Transportador de Glucose Tipo 3/genética , Masculino , ATPase Trocadora de Sódio-Potássio/genética
7.
Anim. Reprod. (Online) ; 12(3): 428-436, July.-Sept.2015. graf, tab
Artigo em Inglês | VETINDEX | ID: biblio-1461170

RESUMO

The concept of developmental programming states that the function of an adult animal depends on environmental conditions to which it was exposed to before birth. Developmental programming can occur in the preimplantation period. Accordingly, certain environmental signals, acting either on the mother (for pregnancies established in vivo) or on the embryo directly (for cultured embryos), can program development of the preimplantation embryo to have effects on postnatal life. It is proposed that research on developmental programming in cattle could lead not only to elimination of adverse outcomes associated with in vitro production of embryos but also to discovery of approaches to produce a neonatal animal with superior prospects for achieving optimal production later in life.


Assuntos
Animais , Bovinos , Bovinos/embriologia , Transferência Embrionária/métodos
8.
Anim. Reprod. ; 12(3): 428-436, July.-Sept.2015. graf, tab
Artigo em Inglês | VETINDEX | ID: vti-26219

RESUMO

The concept of developmental programming states that the function of an adult animal depends on environmental conditions to which it was exposed to before birth. Developmental programming can occur in the preimplantation period. Accordingly, certain environmental signals, acting either on the mother (for pregnancies established in vivo) or on the embryo directly (for cultured embryos), can program development of the preimplantation embryo to have effects on postnatal life. It is proposed that research on developmental programming in cattle could lead not only to elimination of adverse outcomes associated with in vitro production of embryos but also to discovery of approaches to produce a neonatal animal with superior prospects for achieving optimal production later in life.(AU)


Assuntos
Animais , Bovinos , Bovinos/embriologia , Transferência Embrionária/métodos
9.
Zygote ; 23(4): 485-93, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-24735637

RESUMO

In vitro embryo production methods induce DNA damage in the embryos. In response to these injuries, histone H2AX is phosphorylated (γH2AX) and forms foci at the sites of DNA breaks to recruit repair proteins. In this work, we quantified the DNA damage in bovine embryos undergoing parthenogenetic activation (PA), in vitro fertilization (IVF) or somatic cell nuclear transfer (SCNT) by measuring γH2AX accumulation at different developmental stages: 1-cell, 2-cell and blastocyst. At the 1-cell stage, IVF embryos exhibited a greater number of γH2AX foci (606.1 ± 103.2) and greater area of γH2AX staining (12923.6 ± 3214.1) than did PA and SCNT embryos. No differences at the 2-cell stage were observed among embryo types. Although PA, IVF and SCNT were associated with different blastocyst formation rates (31.1%, 19.7% and 8.3%, P < 0.05), no differences in the number of γH2AX foci or area were detected among the treatments. γH2AX is detected in bovine preimplantation embryos produced by PA, IVF and SCNT; the amount of DNA damage was comparable among those embryos developing to the blastocyst stage among different methods for in vitro embryo production. While IVF resulted in increased damage at the 1-cell embryo stage, no difference was observed between PA and SCNT embryos at any developmental stage. The decrease in the number of double-stranded breaks at the blastocyst stage seems to indicate that DNA repair mechanisms are functional during embryo development.


Assuntos
Blastocisto/fisiologia , Clonagem de Organismos , Histonas/metabolismo , Partenogênese , Fosfoproteínas/metabolismo , Animais , Bovinos , Cromatina/metabolismo , Quebras de DNA de Cadeia Dupla , Dano ao DNA , Embrião de Mamíferos/metabolismo , Feminino , Fertilização in vitro , Masculino , Técnicas de Transferência Nuclear
10.
Diabetes Metab Res Rev ; 30(7): 575-81, 2014 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-24408841

RESUMO

BACKGROUND: Diabetic pregnancy have increased rates of congenital malformation and neonatal mortality. In vitro studies suggest hyperglycemia associated with diabetes impair embryogenesis but in vivo investigations on maternal hyperglycemic insult and early embryo development are scarce. We evaluated the embryofetal development on experimental diabetes models to assess whether hyperglycemia at preimplantation period impairs the progression of pregnancy. METHODS: Different hyperglycemic intensities were obtained by two experimental diabetes models. Female Sprague Dawley rats received streptozotocin at birth (mild diabetes) or at day 90 of life (severe diabetes). For both diabetic groups hyperglycemia was confirmed 5 days after diabetes induction and the mating was performed around 100 day of life. For preimplantation analysis, embryos were recovered at D4 of pregnancy. Another group of animals was submitted to laparotomy at D21 to assess contents of the uterus and fetal viability. RESULTS: Mild (i) and Severe (ii) diabetes modified the early development. Degenerating embryos percentage was higher compared to control (11%) (i) 30.7%, (ii) 37.3%. Cell number mean dropped according to hyperglycemic intensity (control 30.57, (i) 21.42, (ii) 13.42). Pre and post-implantation loss rates were higher in diabetic groups. The fetal viability also decreased from 96% in the control group to (i) 78.7% and (ii) 80.6%. CONCLUSION: Our results show that during diabetic pregnancy, preimplantation embryos present decreased cell number due to higher apoptosis rates, which are dependent of the hyperglycemic intensity. Moreover, fetal viability was also decreased suggesting that the quality of these embryos at long-term may be questioned.


Assuntos
Diabetes Mellitus Experimental/complicações , Diabetes Mellitus Experimental/fisiopatologia , Desenvolvimento Embrionário/fisiologia , Desenvolvimento Fetal/fisiologia , Gravidez em Diabéticas/fisiopatologia , Prenhez/fisiologia , Animais , Apoptose/fisiologia , Diabetes Mellitus Experimental/induzido quimicamente , Modelos Animais de Doenças , Feminino , Morte Fetal , Masculino , Gravidez , Ratos , Ratos Sprague-Dawley , Índice de Gravidade de Doença , Estreptozocina/efeitos adversos , Fatores de Tempo
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