Human female meiosis: what makes a good egg go bad?
暂无分享,去创建一个
[1] J. Schimenti,et al. Mouse Pachytene Checkpoint 2 (Trip13) Is Required for Completing Meiotic Recombination but Not Synapsis , 2007, PLoS genetics.
[2] T. Hassold,et al. Maternal age-specific rates of numerical chromosome abnormalities with special reference to trisomy , 2004, Human Genetics.
[3] D. Warburton,et al. Biological aging and the etiology of aneuploidy , 2005, Cytogenetic and Genome Research.
[4] David Handelsman,et al. Rising follicle-stimulating hormone levels with age accelerate female reproductive failure. , 2007, Endocrinology.
[5] D. Keefe,et al. Germline stem cells and neo-oogenesis in the adult human ovary. , 2007, Developmental biology.
[6] G. Coop,et al. An evolutionary view of human recombination , 2007, Nature Reviews Genetics.
[7] G. Roeder,et al. The pachytene checkpoint. , 2000, Trends in genetics : TIG.
[8] D. Warburton. 2006 William Allan Award Address. Having it all. , 2007, American journal of human genetics.
[9] R. Anderson,et al. Expression of activin subunits and receptors in the developing human ovary: activin A promotes germ cell survival and proliferation before primordial follicle formation. , 2004, Developmental biology.
[10] L. Guillette,et al. Environmental contaminants, fertility, and multioocytic follicles: a lesson from wildlife? , 2006, Seminars in reproductive medicine.
[11] Y. Uesugi,et al. Polyovular follicles in mouse ovaries exposed neonatally to diethylstilbestrol in vivo and in vitro. , 1990, Biology of reproduction.
[12] T. Prolla,et al. Involvement of mouse Mlh1 in DNA mismatch repair and meiotic crossing over , 1996, Nature Genetics.
[13] Lonnie D Shea,et al. Fate of the initial follicle pool: empirical and mathematical evidence supporting its sufficiency for adult fertility. , 2006, Developmental biology.
[14] C. Combelles,et al. Origins and manifestations of oocyte maturation competencies. , 2003, Reproductive biomedicine online.
[15] W D Flanders,et al. Advanced maternal age and the risk of Down syndrome characterized by the meiotic stage of chromosomal error: a population-based study. , 1996, American journal of human genetics.
[16] C. Hodges,et al. Bisphenol A Exposure Causes Meiotic Aneuploidy in the Female Mouse , 2003, Current Biology.
[17] R. Newbold,et al. Estradiol, progesterone, and genistein inhibit oocyte nest breakdown and primordial follicle assembly in the neonatal mouse ovary in vitro and in vivo. , 2007, Endocrinology.
[18] E. Telfer,et al. A quantitative cytological study of polyovular follicles in mammalian ovaries with particular reference to the domestic bitch (Canis familiaris). , 1987, Journal of reproduction and fertility.
[19] D. D. de Rooij,et al. SYCE2 is required for synaptonemal complex assembly, double strand break repair, and homologous recombination , 2007, The Journal of cell biology.
[20] J. Tilly,et al. Germline stem cells and follicular renewal in the postnatal mammalian ovary , 2004 .
[21] J. Delhanty,et al. Mechanisms of aneuploidy induction in human oogenesis and early embryogenesis. , 2007, Cytogenetic and genome research.
[22] M. Pepling,et al. From primordial germ cell to primordial follicle: mammalian female germ cell development , 2006, Genesis.
[23] S. Keeney,et al. Chromosome synapsis defects and sexually dimorphic meiotic progression in mice lacking Spo11. , 2000, Molecular cell.
[24] J. Martin,et al. Births: final data for 2003. , 2005, National vital statistics reports : from the Centers for Disease Control and Prevention, National Center for Health Statistics, National Vital Statistics System.
[25] M. Sugiura-Ogasawara,et al. Exposure to bisphenol A is associated with recurrent miscarriage. , 2005, Human reproduction.
[26] J. Hoeijmakers,et al. Silencing of Unpaired Chromatin and Histone H2A Ubiquitination in Mammalian Meiosis , 2005, Molecular and Cellular Biology.
[27] D. Zarkower,et al. Mice Mutant in the DM Domain Gene Dmrt4 Are Viable and Fertile but Have Polyovular Follicles , 2006, Molecular and Cellular Biology.
[28] E. Telfer,et al. Natural history of the mammalian oocyte. , 2007, Reproductive biomedicine online.
[29] S. Kilen,et al. Neonatal exposure to estrogens suppresses activin expression and signaling in the mouse ovary. , 2007, Endocrinology.
[30] Josephine Bowles,et al. Retinoic acid, meiosis and germ cell fate in mammals , 2007, Development.
[31] Alfred Rademaker,et al. Abnormal progression through meiosis in men with nonobstructive azoospermia. , 2007, Fertility and sterility.
[32] P. Boer,et al. Chromosome pairing and fertility in mice. , 1989 .
[33] E. Revenkova,et al. SMC1β-deficient female mice provide evidence that cohesins are a missing link in age-related nondisjunction , 2005, Nature Genetics.
[34] Ho-Joon Lee,et al. Oocyte Generation in Adult Mammalian Ovaries by Putative Germ Cells in Bone Marrow and Peripheral Blood , 2005, Cell.
[35] B. V. Voorhis. Outcomes from assisted reproductive technology. , 2006 .
[36] D. Warburton,et al. Trisomic pregnancy and earlier age at menopause. , 2000, American journal of human genetics.
[37] P. Hunt,et al. The meiotic competence of in-vitro matured human oocytes is influenced by donor age: evidence that folliculogenesis is compromised in the reproductively aged ovary. , 1998, Human reproduction.
[38] Terry Hassold,et al. The origin of human aneuploidy: where we have been, where we are going. , 2007, Human molecular genetics.
[39] P. Hunt,et al. Bisphenol A Exposure In Utero Disrupts Early Oogenesis in the Mouse , 2007, PLoS genetics.
[40] C. Richter,et al. In vivo effects of bisphenol A in laboratory rodent studies. , 2007, Reproductive toxicology.
[41] Phil G Knight,et al. TGF-beta superfamily members and ovarian follicle development. , 2006, Reproduction.
[42] B. Daneholt,et al. The murine SCP3 gene is required for synaptonemal complex assembly, chromosome synapsis, and male fertility. , 2000, Molecular cell.
[43] J. Schimenti,et al. Synapsis or silence , 2005, Nature Genetics.
[44] A. Cohen. Female post‐reproductive lifespan: a general mammalian trait , 2004, Biological reviews of the Cambridge Philosophical Society.
[45] E. Feingold,et al. Relationship of recombination patterns and maternal age among non-disjoined chromosomes 21. , 2006, Biochemical Society transactions.
[46] Laura N. Vandenberg,et al. Human exposure to bisphenol A (BPA). , 2007, Reproductive toxicology.
[47] V. Lummaa,et al. Fitness benefits of prolonged post-reproductive lifespan in women , 2004, Nature.
[48] P. Hunt,et al. To err (meiotically) is human: the genesis of human aneuploidy , 2001, Nature Reviews Genetics.
[49] K. Mayo,et al. To β or Not To β: Estrogen Receptors and Ovarian Function , 2005 .
[50] C. Hodges,et al. Simultaneous analysis of chromosomes and chromosome-associated proteins in mammalian oocytes and embryos , 2002, Chromosoma.
[51] P. Cohen,et al. Extreme heterogeneity in the molecular events leading to the establishment of chiasmata during meiosis i in human oocytes. , 2005, American journal of human genetics.
[52] E. Revenkova,et al. Shaping meiotic prophase chromosomes: cohesins and synaptonemal complex proteins , 2006, Chromosoma.
[53] N. Morton,et al. Non-disjunction of chromosome 18. , 1998, Human molecular genetics.
[54] E. Revenkova,et al. Keeping sister chromatids together: cohesins in meiosis. , 2005, Reproduction.
[55] P. Hunt,et al. Genetic control of mammalian meiotic recombination. I. Variation in exchange frequencies among males from inbred mouse strains. , 2002, Genetics.
[56] G. Schatten,et al. On Regenerating the Ovary and Generating Controversy , 2005, Cell.
[57] N. Klein,et al. Influence of maternal age on meiotic spindle assembly in oocytes from naturally cycling women. , 1996, Human reproduction.
[58] P. Hunt,et al. Sex, not genotype, determines recombination levels in mice. , 2005, American journal of human genetics.
[59] Y. Taketani,et al. Positive relationship between androgen and the endocrine disruptor, bisphenol A, in normal women and women with ovarian dysfunction. , 2004, Endocrine journal.
[60] P. Cohen,et al. Not all germ cells are created equal: aspects of sexual dimorphism in mammalian meiosis. , 2005, Reproduction.
[61] P. Hunt,et al. Sex Matters in Meiosis , 2002, Science.
[62] M. Matzuk,et al. Synergistic roles of bone morphogenetic protein 15 and growth differentiation factor 9 in ovarian function. , 2001, Molecular endocrinology.
[63] D. Albertini,et al. An oocentric view of folliculogenesis and embryogenesis. , 2007, Reproductive biomedicine online.
[64] L. Westergaard,et al. Initiation of oogenesis in the human fetal ovary: ultrastructural and squash preparation study. , 1986, American journal of obstetrics and gynecology.
[65] Stuart Schwartz,et al. Synaptic defects at meiosis I and non-obstructive azoospermia. , 2006, Human reproduction.
[66] C. Hodges,et al. Experimental evidence that changes in oocyte growth influence meiotic chromosome segregation. , 2002, Human reproduction.
[67] R Kucherlapati,et al. MutS homolog 4 localization to meiotic chromosomes is required for chromosome pairing during meiosis in male and female mice. , 2000, Genes & development.
[68] S. Hamamah,et al. Effect of maternal age on the frequency of cytogenetic abnormalities in human oocytes , 2005, Cytogenetic and Genome Research.
[69] U. Eichenlaub-Ritter. Genetics of oocyte ageing. , 1998, Maturitas.
[70] M. Mitchell,et al. Pachytene asynapsis drives meiotic sex chromosome inactivation and leads to substantial postmeiotic repression in spermatids. , 2006, Developmental cell.
[71] K. Mayo,et al. Eggs in the nest. , 2007, Endocrinology.
[72] David C Page,et al. Retinoic acid regulates sex-specific timing of meiotic initiation in mice. , 2006, Proceedings of the National Academy of Sciences of the United States of America.