The heart, more than any other organ, requires precise functionality on a second-to-second basis throughout the lifespan of the organism. Even subtle perturbations in cardiac structure or function have catastrophic consequences, resulting in lethal forms of congenital and adult heart disease. Such intolerance of the heart to variability necessitates especially robust regulatory mechanisms to govern cardiac gene expression. Recent studies have revealed central roles for microRNAs (miRNAs) as governors of gene expression during cardiovascular development and disease. The integration of miRNAs into the genetic circuitry of the heart provides a rich and robust array of regulatory interactions to control cardiac gene expression. miRNA regulatory...
The role of small, non-coding microRNAs (miRNAs) has recently emerged as fundamental in the regulati...
Heart development is a complex process, tightly regulated by numerous molecular mechanisms. Key comp...
The transcriptional regulation of cardiovascular development requires precise spatiotemporal control...
The heart, more than any other organ, requires precise functionality on a second-to-second basis thr...
The molecular biology dogma that DNA replicates its genetic information within nucleotide sequences ...
miRNAs have been found to play a major role in cardiomyopathy, a heart muscle disorder characterize...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
Heart development is a complex process, tightly regulated by numerous molecular mechanisms. Key comp...
Abstract—The transcriptional regulation of cardiovascular development requires precise spatiotempora...
Over the last few years, the field of microribonucleic acid (miRNA) in cardiovascular biology and di...
MicroRNAs (miRNAs) are a subfamily of small noncoding RNAs that play a variety of roles in regulatin...
The role of small, non-coding microRNAs (miRNAs) has recently emerged as fundamental in the regulati...
Heart development is a complex process, tightly regulated by numerous molecular mechanisms. Key comp...
The transcriptional regulation of cardiovascular development requires precise spatiotemporal control...
The heart, more than any other organ, requires precise functionality on a second-to-second basis thr...
The molecular biology dogma that DNA replicates its genetic information within nucleotide sequences ...
miRNAs have been found to play a major role in cardiomyopathy, a heart muscle disorder characterize...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
MicroRNAs (MiRNAs) have emerged as pivotal modulators of mammalian cardiovascular development and di...
Heart development is a complex process, tightly regulated by numerous molecular mechanisms. Key comp...
Abstract—The transcriptional regulation of cardiovascular development requires precise spatiotempora...
Over the last few years, the field of microribonucleic acid (miRNA) in cardiovascular biology and di...
MicroRNAs (miRNAs) are a subfamily of small noncoding RNAs that play a variety of roles in regulatin...
The role of small, non-coding microRNAs (miRNAs) has recently emerged as fundamental in the regulati...
Heart development is a complex process, tightly regulated by numerous molecular mechanisms. Key comp...
The transcriptional regulation of cardiovascular development requires precise spatiotemporal control...