
RNA Details
Disease Name
myocardial infarction
Tissue
heart
RNA Symbol
mir-153-1
RNA ID
RNA Type
miRNA
Alteration Pattern
down regulation
Species
homo sapiens
Detection Methods
enzyme-linked immunosorbent assay;
Target
NA
Pathway
VEGF SIGNALING PATHWAY
PubMed ID
Title
Blocking exosomal miRNA-153-3p derived from bone marrow mesenchymal stem cells ameliorates hypoxia-induced myocardial and microvascular damage by targeting the ANGPT1-mediated VEGF/PI3k/Akt/eNOS pathway
Year
2021
Function
Mesenchymal stem cells (MSCs)-derived exosomes with low-expressed miR-153-3p notably promotes the activation of angpt1 and the VEGF/CEGFR2 /PI4k/Akt/Enos pathways.
RNA Details
Disease Name
myocardial infarction
Tissue
heart
RNA Symbol
mir-153-1
RNA ID
RNA Type
miRNA
Alteration Pattern
down regulation
Species
homo sapiens
Detection Methods
enzyme-linked immunosorbent assay;
Target
NA
Pathway
VEGF SIGNALING PATHWAY
PubMed ID
Title
Blocking exosomal miRNA-153-3p derived from bone marrow mesenchymal stem cells ameliorates hypoxia-induced myocardial and microvascular damage by targeting the ANGPT1-mediated VEGF/PI3k/Akt/eNOS pathway
Year
2021
Function
Mesenchymal stem cells (MSCs)-derived exosomes with low-expressed miR-153-3p notably promotes the activation of angpt1 and the VEGF/CEGFR2 /PI4k/Akt/Enos pathways.