Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial growth factors (VEGFs) and their receptors (VEGFRs), which are overexpressed in cancer cells. Therefore, the VEGF/VEGFR interaction represents a promising pharmaceutical target to fight cancer progression. The VEGF surface interacting with VEGFRs comprises a short α-helix. In this work, helical oligopeptides mimicking the VEGF-C helix were rationally designed based on structural analyses and computational studies. The helical conformation was stabilized by optimizing intramolecular interactions and by introducing helix-inducing Cα,α-disubstituted amino acids. The conformational features of the synthetic peptides were characterized by circular d...
Modulating angiogenesis is an attractive goal because many pathological conditions depend on the gro...
The angiogenic properties of VEGF are mediated through the binding of VEGF to its receptor VEGFR2. T...
The angiogenic properties of VEGF are mediated through the binding of VEGF to its receptor VEGFR2. T...
Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial gr...
Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial gr...
Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial gr...
Protein-protein interactions (PPIs) modulate most biological processes, but their inhibition by smal...
Angiogenesis is a fundamental process underlining physiological and pathological conditions. It is m...
Angiogenesis is a fundamental process underlining physiological and pathological conditions. It is m...
The interaction between vascular endothelial growth factor (VEGF) and its receptors (VEGFR) has impo...
Modulating angiogenesis is an attractive goal because many pathological conditions depend on the gro...
The design of efficient vascular endothelial growth factor (VEGF) inhibitors is a high-priority rese...
Inhibition of specific protein-protein interactions is attractive for a range of therapeutic applica...
The interaction between vascular endothelial growth factor (VEGF) and its receptors (VEGFR) has impo...
Modulating angiogenesis is an attractive goal because many pathological conditions depend on the gro...
The angiogenic properties of VEGF are mediated through the binding of VEGF to its receptor VEGFR2. T...
The angiogenic properties of VEGF are mediated through the binding of VEGF to its receptor VEGFR2. T...
Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial gr...
Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial gr...
Tumor angiogenesis, essential for cancer development, is regulated mainly by vascular endothelial gr...
Protein-protein interactions (PPIs) modulate most biological processes, but their inhibition by smal...
Angiogenesis is a fundamental process underlining physiological and pathological conditions. It is m...
Angiogenesis is a fundamental process underlining physiological and pathological conditions. It is m...
The interaction between vascular endothelial growth factor (VEGF) and its receptors (VEGFR) has impo...
Modulating angiogenesis is an attractive goal because many pathological conditions depend on the gro...
The design of efficient vascular endothelial growth factor (VEGF) inhibitors is a high-priority rese...
Inhibition of specific protein-protein interactions is attractive for a range of therapeutic applica...
The interaction between vascular endothelial growth factor (VEGF) and its receptors (VEGFR) has impo...
Modulating angiogenesis is an attractive goal because many pathological conditions depend on the gro...
The angiogenic properties of VEGF are mediated through the binding of VEGF to its receptor VEGFR2. T...
The angiogenic properties of VEGF are mediated through the binding of VEGF to its receptor VEGFR2. T...