Non-invasive assessment of embryonic sex in cattle by metabolic fingerprinting of in vitro culture medium
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M. Muñoz | S. Carrocera | E. Gómez | A. Uyar | E. Seli | B. Trigal | J. N. Caamaño | C. Díez | E. Correia | A. Fernández-González | Alfonso Fernández-González
[1] M. Muñoz,et al. Embryonic sex induces differential expression of proteins in bovine uterine fluid. , 2013, Journal of proteome research.
[2] P. Hansen,et al. Pregnancy rates of lactating cows after transfer of in vitro produced embryos using X-sorted sperm. , 2013, Theriogenology.
[3] M. Muñoz,et al. In vitro and in vivo quality of bovine embryos in vitro produced with sex-sorted sperm. , 2012, Theriogenology.
[4] D. C. Kieslinger,et al. Day 3 embryo selection by metabolomic profiling of culture medium with near-infrared spectroscopy as an adjunct to morphology: a randomized controlled trial. , 2012, Human reproduction.
[5] A. Uyar,et al. Embryo assessment strategies and their validation for clinical use: a critical analysis of methodology , 2012, Current opinion in obstetrics & gynecology.
[6] M. Muñoz,et al. Comparative study of PCR-sexing procedures using bovine embryos fertilized with sex-sorted spermatozoa , 2012 .
[7] M. Muñoz,et al. Proteome of the early embryo-maternal dialogue in the cattle uterus. , 2012, Journal of proteome research.
[8] M. Rubessa,et al. Effect of energy source during culture on in vitro embryo development, resistance to cryopreservation and sex ratio. , 2011, Theriogenology.
[9] D. Gardner,et al. Glucose consumption of single post-compaction human embryos is predictive of embryo sex and live birth outcome. , 2011, Human reproduction.
[10] A. Gutiérrez-Adán,et al. Transcriptional sexual dimorphism in elongating bovine embryos: implications for XCI and sex determination genes. , 2011, Reproduction.
[11] A. Gutiérrez-Adán,et al. Transcriptional sexual dimorphism during preimplantation embryo development and its consequences for developmental competence and adult health and disease. , 2011, Reproduction.
[12] P. Wijchers,et al. Epigenetic regulation of autosomal gene expression by sex chromosomes. , 2011, Trends in genetics : TIG.
[13] P. Bols,et al. Noninvasive bovine oocyte quality assessment: possibilities of a single oocyte culture. , 2010, Theriogenology.
[14] G. Thouas,et al. Sex-related physiology of the preimplantation embryo. , 2010, Molecular human reproduction.
[15] C. Robert,et al. OMICS in assisted reproduction: possibilities and pitfalls. , 2010, Molecular human reproduction.
[16] A. Gutiérrez-Adán,et al. Correction: Amino acid metabolism of bovine blastocysts: A biomarker of sex and viability , 2010 .
[17] R. Jaenisch,et al. Two-Step Imprinted X Inactivation: Repeat versus Genic Silencing in the Mouse , 2010, Molecular and Cellular Biology.
[18] A. Gutiérrez-Adán,et al. Amino acid metabolism of bovine blastocysts: a biomarker of sex and viability , 2010, Molecular reproduction and development.
[19] A. Gutiérrez-Adán,et al. Sex determines the expression level of one third of the actively expressed genes in bovine blastocysts , 2010, Proceedings of the National Academy of Sciences.
[20] A. Gutiérrez-Adán,et al. Developmental kinetics and gene expression in male and female bovine embryos produced in vitro with sex-sorted spermatozoa. , 2010, Reproduction, fertility, and development.
[21] A. Gutiérrez-Adán,et al. Changes in testosterone or temperature during the in vitro oocyte culture do not alter the sex ratio of bovine embryos. , 2009, Journal of experimental zoology. Part A, Ecological genetics and physiology.
[22] M. M. Franco,et al. Effect of Percoll volume, duration and force of centrifugation, on in vitro production and sex ratio of bovine embryos. , 2009, Theriogenology.
[23] Denny Sakkas,et al. Noninvasive metabolomic profiling of embryo culture media using proton nuclear magnetic resonance correlates with reproductive potential of embryos in women undergoing in vitro fertilization. , 2008, Fertility and sterility.
[24] A. Gutiérrez-Adán,et al. Can Bovine In Vitro-Matured Oocytes Selectively Process X- or Y-Sorted Sperm Differentially?1 , 2008, Biology of reproduction.
[25] Denny Sakkas,et al. Noninvasive metabolomic profiling of human embryo culture media using Raman spectroscopy predicts embryonic reproductive potential: a prospective blinded pilot study. , 2008, Fertility and sterility.
[26] J. Bromer,et al. Assessment of embryo viability in assisted reproductive technology: shortcomings of current approaches and the emerging role of metabolomics , 2008, Current opinion in obstetrics & gynecology.
[27] K. Kimura,et al. The effect of glucosamine concentration on the development and sex ratio of bovine embryos. , 2008, Animal reproduction science.
[28] Denny Sakkas,et al. Noninvasive metabolomic profiling of embryo culture media using Raman and near-infrared spectroscopy correlates with reproductive potential of embryos in women undergoing in vitro fertilization. , 2007, Fertility and sterility.
[29] Royston Goodacre,et al. Metabolic fingerprinting as a diagnostic tool. , 2007, Pharmacogenomics.
[30] K. Sinclair,et al. Metabolomics: approaches to assessing oocyte and embryo quality. , 2007, Theriogenology.
[31] F. Sinowatz,et al. Effects of Sex‐sorted Spermatozoa on the Efficiency of in vitro Fertilization and Ultrastructure of in vitro Produced Bovine Blastocysts , 2007, Anatomia, histologia, embryologia.
[32] David I. Ellis,et al. Metabolic fingerprinting in disease diagnosis: biomedical applications of infrared and Raman spectroscopy. , 2006, The Analyst.
[33] X. Yang,et al. Developmental potential of vitrified holstein cattle embryos fertilized in vitro with sex-sorted sperm. , 2006, Journal of dairy science.
[34] G. Seidel,et al. Embryo production from superovulated cattle following insemination of sexed sperm. , 2006, Theriogenology.
[35] R. Roberts,et al. Effects of D‐glucose concentration, D‐fructose, and inhibitors of enzymes of the pentose phosphate pathway on the development and sex ratio of bovine blastocysts , 2005, Molecular reproduction and development.
[36] J F Hasler,et al. Assisted reproductive technologies in cattle: a review. , 2005, Revue scientifique et technique.
[37] U. Mittwoch. The elusive action of sex-determining genes: mitochondria to the rescue? , 2004, Journal of theoretical biology.
[38] K. Lu,et al. Development of bovine embryos after in vitro fertilization of oocytes with flow cytometrically sorted, stained and unsorted sperm from different bulls. , 2003, Theriogenology.
[39] A. Farazmand,et al. Sex-chromosome linked gene expression in in-vitro produced bovine embryos. , 2002, Molecular human reproduction.
[40] E M Timmins,et al. Fourier transform infrared spectroscopy of follicular fluids from large and small antral follicles. , 2000, Human reproduction.
[41] A. Gutiérrez-Adán,et al. Differential expression of two genes located on the X chromosome between male and female in vitro–produced bovine embryos at the blastocyst stage , 2000, Molecular reproduction and development.
[42] D. G. Cran,et al. In vitro fertilization with flow-cytometrically-sorted bovine sperm. , 1999, Theriogenology.
[43] Ian H. Witten,et al. Data mining: practical machine learning tools and techniques, 3rd Edition , 1999 .
[44] P. Holm,et al. High bovine blastocyst development in a static in vitro production system using SOFaa medium supplemented with sodium citrate and myo-inositol with or without serum-proteins. , 1999, Theriogenology.
[45] อนิรุธ สืบสิงห์,et al. Data Mining Practical Machine Learning Tools and Techniques , 2014 .
[46] R. V. Sousa,et al. 273 BOVINE EMBRYO SEXING IN FIELD CONDITIONS: EFFICACY OF THE POLYMERASE CHAIN REACTION METHOD AND PREGNANCY RATES IN DAIRY HERDS LOCATED IN THE SOUTH AND SOUTHEAST REGIONS OF BRAZIL , 2013 .
[47] M. Wikland,et al. Non-invasive metabolomic profiling of Day 2 and 5 embryo culture medium: a prospective randomized trial. , 2012, Human reproduction.
[48] A. Gutiérrez-Adán,et al. Sex-specific embryonic origin of postnatal phenotypic variability. , 2012, Reproduction, fertility, and development.
[49] J. Xu,et al. Optimizing IVF with sexed sperm in cattle. , 2009, Theriogenology.
[50] A. Gutiérrez-Adán,et al. Epigenetic differences between male and female bovine blastocysts produced in vitro. , 2008, Physiological genomics.
[51] Barry Behr,et al. Symposium: innovative techniques in human embryo viability assessment. Non-invasive assessment of embryo viability by metabolomic profiling of culture media ('metabolomics'). , 2008, Reproductive biomedicine online.
[52] R. Goodacre,et al. Predicting human embryo viability: the road to non-invasive analysis of the secretome using metabolic footprinting. , 2007, Reproductive biomedicine online.