Abstract / Summary
Fetal alcohol spectrum disorders (FASD) are caused by prenatal alcohol exposure (PAE), which leads to developmental defects during embryogenesis. Angiogenesis is one facet of development that is heavily dysregulated during PAE and where such impairment is poorly understood. Here we found that expression levels of focal adhesion molecules Tensin 1 (Tns1) and Tensin 2 (Tns2) were significantly reduced by alcohol exposure in brain microvascular endothelial cells (BMVECs). We also found that miR-150-5p, which we previously found was increased by PAE, regulates the expression of Tns1 and Tns2. Dual-luciferase assays demonstrated direct binding of miR-150-5p to the 3UTRs of Tns1 and Tns2. Additionally, we utilized sprouting angiogenesis bead assays to evaluate endothelial cell sprouting in response to ethanol (EtOH) treatment and following Tns1 and/or Tns2 overexpression as well as miR-150-5p modulation. Tns1 and Tns2 rescued both EtOH- and miR-150-5p-mediated deficits in sprouting angiogenesis. Overall, we found that miR-150-5p negatively regulates Tns1 and Tns2 in BMVECs and that augmenting Tns1 and Tns2 expression may reverse the negative effects of EtOH, and subsequent miR-150-5p elevation, thus improving endothelial cell sprouting during cerebrovascular development.