© 2018 Springer Nature Publishing AGPervasive transcription of the human genome is responsible for the production of a myriad of non-coding RNA molecules (ncRNAs) some of them with regulatory functions. The pivotal role of ncRNAs in cardiovascular biology has been unveiled in the last decade, starting from the characterization of the involvement of micro-RNAs in cardiovascular development and function, and followed by the use of circulating ncRNAs as biomarkers of cardiovascular diseases. The human non-coding secretome is composed by several RNA species that circulate in body fluids and could be used as biomarkers for diagnosis and outcome prediction. In cardiovascular diseases, secreted ncRNAs have been described as biomarkers of several c...
Vast parts of mammalian genomes are actively transcribed, predominantly giving rise to non-coding RN...
Vast parts of mammalian genomes are actively transcribed, predominantely giving rise to non-coding R...
Until recently considered as rare, circular RNAs (circRNAs) are emerging as important regulators of ...
© 2018 Springer Nature Publishing AGPervasive transcription of the human genome is responsible for t...
Cardiovascular diseases (CVDs) are of multifactorial origin and can be attributed to several genetic...
Current clinical guidelines emphasize the unmet need for technological innovations to guide physicia...
In 2020, cardiovascular diseases (CVDs) remain a leading cause of mortality and morbidity, contribut...
Large-scale analyses of mammalian transcriptomes have identified a significant number of different R...
The cardiovascular system plays a pivotal role in regulating and maintaining homeostasis in the huma...
Coronary artery disease (CAD) is the leading death cause worldwide. Non-coding RNA (ncRNA) are key r...
The discovery of regulatory noncoding RNA molecules (ncRNA) revolutionized our previous understandin...
Recent research has demonstrated that the non-coding genome plays a key role in genetic programming ...
Vast parts of mammalian genomes are actively transcribed, predominantly giving rise to non-coding RN...
Vast parts of mammalian genomes are actively transcribed, predominantly giving rise to non-coding RN...
Vast parts of mammalian genomes are actively transcribed, predominantely giving rise to non-coding R...
Until recently considered as rare, circular RNAs (circRNAs) are emerging as important regulators of ...
© 2018 Springer Nature Publishing AGPervasive transcription of the human genome is responsible for t...
Cardiovascular diseases (CVDs) are of multifactorial origin and can be attributed to several genetic...
Current clinical guidelines emphasize the unmet need for technological innovations to guide physicia...
In 2020, cardiovascular diseases (CVDs) remain a leading cause of mortality and morbidity, contribut...
Large-scale analyses of mammalian transcriptomes have identified a significant number of different R...
The cardiovascular system plays a pivotal role in regulating and maintaining homeostasis in the huma...
Coronary artery disease (CAD) is the leading death cause worldwide. Non-coding RNA (ncRNA) are key r...
The discovery of regulatory noncoding RNA molecules (ncRNA) revolutionized our previous understandin...
Recent research has demonstrated that the non-coding genome plays a key role in genetic programming ...
Vast parts of mammalian genomes are actively transcribed, predominantly giving rise to non-coding RN...
Vast parts of mammalian genomes are actively transcribed, predominantly giving rise to non-coding RN...
Vast parts of mammalian genomes are actively transcribed, predominantely giving rise to non-coding R...
Until recently considered as rare, circular RNAs (circRNAs) are emerging as important regulators of ...