MicroRNA-378a (miR-378a, previously known as miR-378) is one of the small noncoding RNA molecules able to regulate gene expression at posttranscriptional level. Its two mature strands, miR-378a-3p and miR-378a-5p, originate from the first intron of the peroxisome proliferator-activated receptor gamma, coactivator 1 beta (ppargc1b) gene encoding PGC-1β. Embedding in the sequence of this transcriptional regulator of oxidative energy metabolism implies involvement of miR-378a in metabolic pathways, mitochondrial energy homeostasis, and related biological processes such as muscle development, differentiation, and regeneration. On the other hand, modulating the expression of proangiogenic factors such as vascular endothelial growth factor, angio...
MicroRNAs have been appreciated in various cellular functions, including the regulation of angiogene...
ObjectiveTo determine the role of miR-378 as a biomarker for anti-angiogenic therapy response in ova...
microRNA-378 promotes mesenchymal stem cell survival and vascularization under hypoxic– ro in normox...
<p>Muscle development, or myogenesis, is a highly regulated, complex process. A subset of microRNAs ...
International audienceMicroRNAs are a novel class of powerful endogenous regulators of gene expressi...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Several microRNAs (miRs) have been shown to regulate gene expression in the heart, and dysregulation...
MicroRNAs are a novel class of powerful endogenous regulators of gene expression. MiR-378 and miR-37...
miRNAs have been linked to many human diseases, including ischemic stroke, and are being pursued as ...
BackgroundMiR-378 and miR-378* microRNAs are derived from an intron of the PGC-1β gene, a regulator ...
OBJECTIVE Proangiogenic effects of mobilized bone marrow-derived stem/progenitor cells are essential...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
MicroRNAs have been appreciated in various cellular functions, including the regulation of angiogene...
ObjectiveTo determine the role of miR-378 as a biomarker for anti-angiogenic therapy response in ova...
microRNA-378 promotes mesenchymal stem cell survival and vascularization under hypoxic– ro in normox...
<p>Muscle development, or myogenesis, is a highly regulated, complex process. A subset of microRNAs ...
International audienceMicroRNAs are a novel class of powerful endogenous regulators of gene expressi...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
Several microRNAs (miRs) have been shown to regulate gene expression in the heart, and dysregulation...
MicroRNAs are a novel class of powerful endogenous regulators of gene expression. MiR-378 and miR-37...
miRNAs have been linked to many human diseases, including ischemic stroke, and are being pursued as ...
BackgroundMiR-378 and miR-378* microRNAs are derived from an intron of the PGC-1β gene, a regulator ...
OBJECTIVE Proangiogenic effects of mobilized bone marrow-derived stem/progenitor cells are essential...
Objective: Abnormal proliferation or migration of vascular smooth muscle cells (VSMCs) can lead to v...
MicroRNAs have been appreciated in various cellular functions, including the regulation of angiogene...
ObjectiveTo determine the role of miR-378 as a biomarker for anti-angiogenic therapy response in ova...
microRNA-378 promotes mesenchymal stem cell survival and vascularization under hypoxic– ro in normox...