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MicroRNAs: modulators of cell identity, and their applications in tissue engineering.


ABSTRACT: MicroRNAs post-transcriptionally regulate the expression of approximately 60% of the mammalian genes, and have an important role in maintaining the differentiated state of somatic cells through the expression of unique tissuespecific microRNA sets. Likewise, the stemness of pluripotent cells is also sustained by embryonic stem cell-enriched microRNAs, which regulate genes involved in cell cycle, cell signaling and epigenetics, among others. Thus, microRNAs work as modulator molecules that ensure the appropriate expression profile of each cell type. Manipulation of microRNA expression might determine the cell fate. Indeed, microRNA-mediated reprogramming can change the differentiated status of somatic cells towards stemness or, conversely, microRNAs can also transform stem- into differentiated-cells both in vitro and in vivo. In this Review, we outline what is currently known in this field, focusing on the applications of microRNA in tissue engineering.

SUBMITTER: Ribeiro AO 

PROVIDER: S-EPMC4262937 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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MicroRNAs: modulators of cell identity, and their applications in tissue engineering.

Ribeiro Amanda O AO   Schoof Claudia R G CR   Izzotti Alberto A   Pereira Lygia V LV   Vasques Luciana R LR  

MicroRNA (Shariqah, United Arab Emirates) 20140101 1


MicroRNAs post-transcriptionally regulate the expression of approximately 60% of the mammalian genes, and have an important role in maintaining the differentiated state of somatic cells through the expression of unique tissuespecific microRNA sets. Likewise, the stemness of pluripotent cells is also sustained by embryonic stem cell-enriched microRNAs, which regulate genes involved in cell cycle, cell signaling and epigenetics, among others. Thus, microRNAs work as modulator molecules that ensure  ...[more]

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