MicroRNA-21 as a regulator of human cumulus cell viability and its

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Last updated 28 Juni 2024
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 as a regulator of human cumulus cell viability and its
Molecular Reproduction & Development, Reproductive Biology Journal
MicroRNA-21 as a regulator of human cumulus cell viability and its
STAT3 signaling stimulates miR-21 expression in bovine cumulus cells during in vitro oocyte maturation
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 is involved in oocyte maturation, blastocyst formation, and pre-implantation embryo development - ScienceDirect
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 as a regulator of human cumulus cell viability and its potential influence on the developmental potential of the oocyte
MicroRNA-21 as a regulator of human cumulus cell viability and its
IJMS, Free Full-Text
MicroRNA-21 as a regulator of human cumulus cell viability and its
Sweet Control: MicroRNA Regulation of the Glycome
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 as a regulator of human cumulus cell viability and its potential influence on the developmental potential of the oocyte
MicroRNA-21 as a regulator of human cumulus cell viability and its
Conserved miR-10 family represses proliferation and induces apoptosis in ovarian granulosa cells
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 as a regulator of human cumulus cell viability and its potential influence on the developmental potential of the oocyte
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 enhances estradiol production by inhibiting WT1 expression in granulosa cells in: Journal of Molecular Endocrinology Volume 68 Issue 1 (2022)
MicroRNA-21 as a regulator of human cumulus cell viability and its
PDF) Transcriptomics of cumulus cells – a window into oocyte maturation in humans
MicroRNA-21 as a regulator of human cumulus cell viability and its
Extracellular microRNAs: key players to explore the outcomes of in vitro fertilization, Reproductive Biology and Endocrinology
MicroRNA-21 as a regulator of human cumulus cell viability and its
Cancers, Free Full-Text
MicroRNA-21 as a regulator of human cumulus cell viability and its
Frontiers The relationship between miR-21, DNA methylation, and bisphenol a in bovine COCs and granulosa cells
MicroRNA-21 as a regulator of human cumulus cell viability and its
MicroRNA-21 Deficiency Alters the Survival of Ly-6Clo Monocytes in ApoE−/− Mice and Reduces Early-Stage Atherosclerosis—Brief Report

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