Cell reprogramming is a groundbreaking technology that, in few decades, generated a new paradigm in biomedical science. To date we can use cell reprogramming to potentially generate every cell type by converting somatic cells and suitably modulating the expression of key transcription factors. This approach can be used to convert skin fibroblasts into pluripotent stem cells as well as into a variety of differentiated and medically relevant cell types, including cardiomyocytes and neural cells. The molecular mechanisms underlying such striking cell phenotypes are still largely unknown, but in the last decade it has been proven that cell reprogramming approaches are significantly influenced by non-coding RNAs. Specifically, this review will f...
Stem cells are considered as the next generation drug treatment in patients with cardiovascular dise...
<div><p>MicroRNAs play a pivotal role in cellular maintenance, proliferation, and differentiation. T...
Cardiac Progenitor Cells (CPCs) are multipotent cells of the myocardium. They are located inside nic...
Cell reprogramming is a groundbreaking technology that, in few decades, generated a new paradigm in ...
Recent advances in cell reprogramming have permitted the development of different stem cell lines an...
The role of small, non-coding microRNAs (miRNAs) has recently emerged as fundamental in the regulati...
AbstractPluripotent stem cells display a unique expression pattern of microRNAs (miRNAs). These ~22 ...
Recent breakthroughs in creating induced pluripotent stem cells (iPS cells) provide alternative mean...
In addition to the well-characterized Induced Pluripotent Stem cells (iPSCs) that closely resemble E...
In mammals, short (mi-) and long non-coding (lnc) RNAs are immensely abundant and they are proving t...
The use of somatic cells to generate induced-pluripotent stem cells (iPSCs), which have gene charact...
Development of human bodies, organs, and tissues contains numerous steps of cellular differentiation...
Noncoding RNAs have emerged as important determinants of pluripotency and reprogramming. In this iss...
AbstractMicroRNAs (miRNAs) have emerged as critical regulators of gene expression. These small, non-...
The generation of pluripotent stem cells from adult somatic cells by cell reprogramming has put a wh...
Stem cells are considered as the next generation drug treatment in patients with cardiovascular dise...
<div><p>MicroRNAs play a pivotal role in cellular maintenance, proliferation, and differentiation. T...
Cardiac Progenitor Cells (CPCs) are multipotent cells of the myocardium. They are located inside nic...
Cell reprogramming is a groundbreaking technology that, in few decades, generated a new paradigm in ...
Recent advances in cell reprogramming have permitted the development of different stem cell lines an...
The role of small, non-coding microRNAs (miRNAs) has recently emerged as fundamental in the regulati...
AbstractPluripotent stem cells display a unique expression pattern of microRNAs (miRNAs). These ~22 ...
Recent breakthroughs in creating induced pluripotent stem cells (iPS cells) provide alternative mean...
In addition to the well-characterized Induced Pluripotent Stem cells (iPSCs) that closely resemble E...
In mammals, short (mi-) and long non-coding (lnc) RNAs are immensely abundant and they are proving t...
The use of somatic cells to generate induced-pluripotent stem cells (iPSCs), which have gene charact...
Development of human bodies, organs, and tissues contains numerous steps of cellular differentiation...
Noncoding RNAs have emerged as important determinants of pluripotency and reprogramming. In this iss...
AbstractMicroRNAs (miRNAs) have emerged as critical regulators of gene expression. These small, non-...
The generation of pluripotent stem cells from adult somatic cells by cell reprogramming has put a wh...
Stem cells are considered as the next generation drug treatment in patients with cardiovascular dise...
<div><p>MicroRNAs play a pivotal role in cellular maintenance, proliferation, and differentiation. T...
Cardiac Progenitor Cells (CPCs) are multipotent cells of the myocardium. They are located inside nic...