MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
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MicroRNAs: From Female Fertility, Germ Cells, and Stem Cells to Cancer in HumansExpression profiles and function analysis of microRNAs in postovulatory aging mouse oocytes.Identification and comparative analysis of the ovarian microRNAs of prolific and non-prolific goats during the follicular phase using high-throughput sequencing.MiR-133b regulates the expression of the Actin protein TAGLN2 during oocyte growth and maturation: a potential target for infertility therapy.Female aging alters expression of human cumulus cells genes that are essential for oocyte quality.Cell-free nucleic acids as non-invasive biomarkers of gynecological cancers, ovarian, endometrial and obstetric disorders and fetal aneuploidy.Characterization of the human cumulus cell transcriptome during final follicular maturation and ovulation.Oocyte ageing and epigenetics.Differential Expression of Long Noncoding RNAs in Human Cumulus Cells Related to Embryo Developmental Potential: A Microarray Analysis.Exosomal miR-10a derived from amniotic fluid stem cells preserves ovarian follicles after chemotherapy.MicroRNA Expression during Bovine Oocyte Maturation and Fertilization.MicroRNA-21 and PDCD4 expression during in vitro oocyte maturation in pigs.Circulating microRNAs in follicular fluid, powerful tools to explore in vitro fertilization processMicroRNA Profile of Granulosa Cells after Ovarian Stimulation Differs According to Maturity of Retrieved OocytesMicroRNAs: New Insight in Modulating Follicular Atresia: A Review.The study of mammalian oocyte competence by transcriptome analysis: progress and challenges.Identification of the key regulating genes of diminished ovarian reserve (DOR) by network and gene ontology analysis.The ART of selecting the best embryo: A review of early embryonic mortality and bovine embryo viability assessment methods.MicroRNA in ovarian function.Altered microRNA and Piwi-interacting RNA profiles in cumulus cells from patients with diminished ovarian reserve.Long non-coding RNAs in human early embryonic development and their potential in ART.Poor ovarian response in women undergoing in vitro fertilization is associated with altered microRNA expression in cumulus cells.SIRT1 signalling protects mouse oocytes against oxidative stress and is deregulated during aging.Differential long non-coding RNA expression profiles in human oocytes and cumulus cells.MicroRNA-21 plays a pivotal role in the oocyte-secreted factor-induced suppression of cumulus cell apoptosis.Extracellular microRNAs in follicular fluid and their potential association with oocyte fertilization and embryo quality: an exploratory study.The gametic synapse: RNA transfer to the bovine oocyte.MicroRNA Expression is Altered in Granulosa Cells of Ovarian Hyperresponders.MicroRNA Expression in Bovine Cumulus Cells in Relation to Oocyte Quality.miR-10a rejuvenates aged human mesenchymal stem cells and improves heart function after myocardial infarction through KLF4.Analyzing the Transcriptome Profile of Human Cumulus Cells Related to Embryo Quality via RNA Sequencing
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MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
description
2013 nî lūn-bûn
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2013年の論文
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2013年学术文章
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2013年学术文章
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2013年学术文章
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2013年学术文章
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2013年学术文章
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name
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
@en
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
@nl
type
label
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
@en
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
@nl
prefLabel
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
@en
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex.
@nl
P2093
P2860
P50
P356
P1433
P1476
MicroRNAs: new candidates for the regulation of the human cumulus-oocyte complex
@en
P2093
C-H Lecellier
N Philippe
O Aït-Ahmed
T Al-edani
P2860
P304
P356
10.1093/HUMREP/DET321
P407
P577
2013-07-30T00:00:00Z