Literature DB >> 15579584

Embryonic diapause and its regulation.

Flavia L Lopes1, Joëlle A Desmarais, Bruce D Murphy.   

Abstract

Embryonic diapause, a condition of temporary suspension of development of the mammalian embryo, occurs due to suppression of cell proliferation at the blastocyst stage. It is an evolutionary strategy to ensure the survival of neonates. Obligate diapause occurs in every gestation of some species, while facultative diapause ensues in others, associated with metabolic stress, usually lactation. The onset, maintenance and escape from diapause are regulated by cascades of environmental, hypophyseal, ovarian and uterine mechanisms that vary among species and between the obligate and facultative condition. In the best-known models, the rodents, the uterine environment maintains the embryo in diapause, while estrogens, in combination with growth factors, reinitiate development. Mitotic arrest in the mammalian embryo occurs at the G0 or G1 phase of the cell cycle, and may be due to expression of a specific cell cycle inhibitor. Regulation of proliferation in non- mammalian models of diapause provide clues to orthologous genes whose expression may regulate the reprise of proliferation in the mammalian context.

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Year:  2004        PMID: 15579584     DOI: 10.1530/rep.1.00444

Source DB:  PubMed          Journal:  Reproduction        ISSN: 1470-1626            Impact factor:   3.906


  45 in total

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Review 2.  Arrested embryonic development: a review of strategies to delay hatching in egg-laying reptiles.

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3.  Autophagy's expanding role in development: implantation is next.

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Review 4.  Gene expression, metabolic regulation and stress tolerance during diapause.

Authors:  Thomas H MacRae
Journal:  Cell Mol Life Sci       Date:  2010-03-07       Impact factor: 9.261

5.  Muscle Segment Homeobox Genes Direct Embryonic Diapause by Limiting Inflammation in the Uterus.

Authors:  Jeeyeon Cha; Kristin E Burnum-Johnson; Amanda Bartos; Yingju Li; Erin S Baker; Susan C Tilton; Bobbie-Jo M Webb-Robertson; Paul D Piehowski; Matthew E Monroe; Anil G Jegga; Shigeo Murata; Yasushi Hirota; Sudhansu K Dey
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Review 6.  Mechanisms of implantation: strategies for successful pregnancy.

Authors:  Jeeyeon Cha; Xiaofei Sun; Sudhansu K Dey
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Review 7.  An overview of stress response and hypometabolic strategies in Caenorhabditis elegans: conserved and contrasting signals with the mammalian system.

Authors:  Benjamin Lant; Kenneth B Storey
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Review 8.  Lessons from biodiversity--the value of nontraditional species to advance reproductive science, conservation, and human health.

Authors:  David E Wildt; Pierre Comizzoli; Budhan Pukazhenthi; Nucharin Songsasen
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9.  Natural selection of human embryos: decidualizing endometrial stromal cells serve as sensors of embryo quality upon implantation.

Authors:  Gijs Teklenburg; Madhuri Salker; Mariam Molokhia; Stuart Lavery; Geoffrey Trew; Tepchongchit Aojanepong; Helen J Mardon; Amali U Lokugamage; Raj Rai; Christian Landles; Bernard A J Roelen; Siobhan Quenby; Ewart W Kuijk; Annemieke Kavelaars; Cobi J Heijnen; Lesley Regan; Jan J Brosens; Nick S Macklon
Journal:  PLoS One       Date:  2010-04-21       Impact factor: 3.240

10.  The integrative analysis of microRNA and mRNA expression in mouse uterus under delayed implantation and activation.

Authors:  Ren-Wei Su; Wei Lei; Ji-Long Liu; Zhi-Rong Zhang; Bo Jia; Xu-Hui Feng; Gang Ren; Shi-Jun Hu; Zeng-Ming Yang
Journal:  PLoS One       Date:  2010-11-29       Impact factor: 3.240

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