Ovaries, which provide a place for follicular development and oocyte maturation, are important organs in female mammals. Follicular development is complicated physiological progress mediated by various regulatory factors including microRNAs (miRNAs). To demonstrate the role of miRNAs in follicular development, this study analyzed the expression patterns of miRNAs in granulosa cells through investigating three previous datasets generated by Illumina miRNA deep sequencing. Furthermore, via bioinformatic analyses, we dissected the associated functional networks of the observed significant miRNAs, in terms of interacting with signal pathways and transcription factors. During the growth and selection of dominant follicles, 15 dysregulated miRNAs...
Sma-and Mad-related protein 4 (SMAD4) is the central mediator of the transforming growth factor β si...
Abstract Nuclear small RNAs have emerged as an important subset of non-coding RNA species that are c...
<div><p>More than 99% of ovarian follicles undergo atresia in mammals, but the mechanism of follicul...
BACKGROUND: mural granulosa cells (MGCs) and cumulus cells (CCs) are two specialized cell types that...
Abstract Ovarian follicular development and ovulation are complex and tightly regulated processes th...
4These authors contributed equally to this manuscript. The initiation of primordial follicle develop...
Proper understanding of ovarian follicular and luteal development is essential to improve and optim...
This study aimed to investigate the miRNA expression patterns in granulosa cells of subordinate (SF)...
This study aimed to investigate the miRNA expression patterns in granulosa cells of subordinate (SF)...
In bovine, ovarian follicles grow in a wave-like fashion with commonly 2 or 3 follicular waves emerg...
AbstractIn a previous microarray study, we identified a subset of micro RNAS (miRNAs), which express...
MicroRNAs (miRNAs) are known post-transcriptional regulators of various biological processes includi...
Cell-free RNAs have the potential to act as a means of gene expression regulation between cells and ...
More than 99 % of ovarian follicles undergo atresia in mammals, but the mechanism of follicular atre...
More than 99% of ovarian follicles undergo atresia in mammals, but the mechanism of follicular atres...
Sma-and Mad-related protein 4 (SMAD4) is the central mediator of the transforming growth factor β si...
Abstract Nuclear small RNAs have emerged as an important subset of non-coding RNA species that are c...
<div><p>More than 99% of ovarian follicles undergo atresia in mammals, but the mechanism of follicul...
BACKGROUND: mural granulosa cells (MGCs) and cumulus cells (CCs) are two specialized cell types that...
Abstract Ovarian follicular development and ovulation are complex and tightly regulated processes th...
4These authors contributed equally to this manuscript. The initiation of primordial follicle develop...
Proper understanding of ovarian follicular and luteal development is essential to improve and optim...
This study aimed to investigate the miRNA expression patterns in granulosa cells of subordinate (SF)...
This study aimed to investigate the miRNA expression patterns in granulosa cells of subordinate (SF)...
In bovine, ovarian follicles grow in a wave-like fashion with commonly 2 or 3 follicular waves emerg...
AbstractIn a previous microarray study, we identified a subset of micro RNAS (miRNAs), which express...
MicroRNAs (miRNAs) are known post-transcriptional regulators of various biological processes includi...
Cell-free RNAs have the potential to act as a means of gene expression regulation between cells and ...
More than 99 % of ovarian follicles undergo atresia in mammals, but the mechanism of follicular atre...
More than 99% of ovarian follicles undergo atresia in mammals, but the mechanism of follicular atres...
Sma-and Mad-related protein 4 (SMAD4) is the central mediator of the transforming growth factor β si...
Abstract Nuclear small RNAs have emerged as an important subset of non-coding RNA species that are c...
<div><p>More than 99% of ovarian follicles undergo atresia in mammals, but the mechanism of follicul...