Morphology and changes in gene expression of vascular endothelium are mainly due to shear stress and inflammation. Cell phenotype modulation has been clearly demonstrated to be controlled by small noncoding micro-RNAs (miRNAs). This study focused on the effect of laminar shear stress (LSS) on human endothelial cells (HUVECs), with an emphasis on the role of miRNA-126 (miR-126). Exposure of HUVECs in vitro to LSS modified the shape of HUVECs and concomitantly regulated the expression of miR-126, vascular cell adhesion molecule 1 (VCAM-1), and syndecan-4 (SDC-4). A significant upregulation of miR-126 during long-term exposure to flow was shown. Interestingly, LSS enhanced SDC-4 expression on the HUVEC membranes. Overexpression of miR-126 in H...
SummaryEndothelial cells play essential roles in maintenance of vascular integrity, angiogenesis, an...
MicroRNAs are negative regulators of gene expression that play a key role in cell-type specific diff...
microRNAs (miRNAs) can regulate the interplay between perivascular cells (PVC) and endothelial cells...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
[[abstract]]Rationale: Endothelial microRNA-126 (miR-126) modulates vascular development and angioge...
Blood fluid shear stress (FSS) modulates endothelial function and vascular pathophysiology. The smal...
MicroRNAs (miRs) are small non-coding RNAs that control gene expression by inhibiting translation or...
RationaleIn atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microRNA ...
[[abstract]]In atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microR...
[[abstract]]In atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microR...
Changes in haemodynamic forces in the vascular system result in an altered expression of miRs, which...
Rationale: In atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microRN...
Abstract Changes in haemodynamic forces in the vascular system result in an altered expression of mi...
AIMS MicroRNA-126 (miR-126), which is enriched in endothelial cells, plays a role in angiogenesis. B...
Atherosclerosis, a hyperlipidemia-induced chronic inflammatory process of the arterial wall, develop...
SummaryEndothelial cells play essential roles in maintenance of vascular integrity, angiogenesis, an...
MicroRNAs are negative regulators of gene expression that play a key role in cell-type specific diff...
microRNAs (miRNAs) can regulate the interplay between perivascular cells (PVC) and endothelial cells...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
[[abstract]]Rationale: Endothelial microRNA-126 (miR-126) modulates vascular development and angioge...
Blood fluid shear stress (FSS) modulates endothelial function and vascular pathophysiology. The smal...
MicroRNAs (miRs) are small non-coding RNAs that control gene expression by inhibiting translation or...
RationaleIn atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microRNA ...
[[abstract]]In atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microR...
[[abstract]]In atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microR...
Changes in haemodynamic forces in the vascular system result in an altered expression of miRs, which...
Rationale: In atherosclerotic lesions, synthetic smooth muscle cells (sSMCs) induce aberrant microRN...
Abstract Changes in haemodynamic forces in the vascular system result in an altered expression of mi...
AIMS MicroRNA-126 (miR-126), which is enriched in endothelial cells, plays a role in angiogenesis. B...
Atherosclerosis, a hyperlipidemia-induced chronic inflammatory process of the arterial wall, develop...
SummaryEndothelial cells play essential roles in maintenance of vascular integrity, angiogenesis, an...
MicroRNAs are negative regulators of gene expression that play a key role in cell-type specific diff...
microRNAs (miRNAs) can regulate the interplay between perivascular cells (PVC) and endothelial cells...