Resistance Mechanisms to Anti-angiogenic Therapies in Cancer

dc.contributor.authorHaibe, Yolla
dc.contributor.authorKreidieh, Malek
dc.contributor.authorEl-Hajj, Hiba Ahmad
dc.contributor.authorKhalifeh, Ibrahim M.
dc.contributor.authorMukherji, Deborah M.
dc.contributor.authorTemraz, Sally N.
dc.contributor.authorShamseddine, Ali I.
dc.contributor.departmentInternal Medicine
dc.contributor.departmentExperimental Pathology, Microbiology, and Immunology
dc.contributor.departmentPathology and Laboratory Medicine
dc.contributor.departmentDivision of Hematology Oncology
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:58:20Z
dc.date.available2025-01-24T11:58:20Z
dc.date.issued2020
dc.description.abstractTumor growth and metastasis rely on tumor vascular network for the adequate supply of oxygen and nutrients. Tumor angiogenesis relies on a highly complex program of growth factor signaling, endothelial cell (EC) proliferation, extracellular matrix (ECM) remodeling, and stromal cell interactions. Numerous pro-angiogenic drivers have been identified, the most important of which is the vascular endothelial growth factor (VEGF). The importance of pro-angiogenic inducers in tumor growth, invasion and extravasation make them an excellent therapeutic target in several types of cancers. Hence, the number of anti-angiogenic agents developed for cancer treatment has risen over the past decade, with at least eighty drugs being investigated in preclinical studies and phase I-III clinical trials. To date, the most common approaches to the inhibition of the VEGF axis include the blockade of VEGF receptors (VEGFRs) or ligands by neutralizing antibodies, as well as the inhibition of receptor tyrosine kinase (RTK) enzymes. Despite promising preclinical results, anti-angiogenic monotherapies led only to mild clinical benefits. The minimal benefits could be secondary to primary or acquired resistance, through the activation of alternative mechanisms that sustain tumor vascularization and growth. Mechanisms of resistance are categorized into VEGF-dependent alterations, non-VEGF pathways and stromal cell interactions. Thus, complementary approaches such as the combination of these inhibitors with agents targeting alternative mechanisms of blood vessel formation are urgently needed. This review provides an updated overview on the pathophysiology of angiogenesis during tumor growth. It also sheds light on the different pro-angiogenic and anti-angiogenic agents that have been developed to date. Finally, it highlights the preclinical evidence for mechanisms of angiogenic resistance and suggests novel therapeutic approaches that might be exploited with the ultimate aim of overcoming resistance and improving clinical outcomes for patients with cancer. © Copyright © 2020 Haibe, Kreidieh, El Hajj, Khalifeh, Mukherji, Temraz and Shamseddine.
dc.identifier.doihttps://doi.org/10.3389/fonc.2020.00221
dc.identifier.eid2-s2.0-85082473072
dc.identifier.urihttp://hdl.handle.net/10938/31331
dc.language.isoen
dc.publisherFrontiers Media S.A.
dc.relation.ispartofFrontiers in Oncology
dc.sourceScopus
dc.subjectAngiogenesis
dc.subjectBevacizumab
dc.subjectColorectal cancer
dc.subjectResistance mechanisms
dc.subjectVegf
dc.subjectVegf-r
dc.subjectAngiogenesis inhibitor
dc.subjectAngiopoietin
dc.subjectFibroblast growth factor
dc.subjectGrowth factor
dc.subjectLigand
dc.subjectMatrix metalloproteinase
dc.subjectNeutralizing antibody
dc.subjectPlacental growth factor
dc.subjectPlatelet derived growth factor
dc.subjectProtein tyrosine kinase
dc.subjectTransforming growth factor beta
dc.subjectVasculotropin a
dc.subjectVasculotropin b
dc.subjectVasculotropin c
dc.subjectVasculotropin d
dc.subjectVasculotropin e
dc.subjectVasculotropin receptor
dc.subjectAntiangiogenic therapy
dc.subjectBone marrow cell
dc.subjectCancer associated fibroblast
dc.subjectCancer resistance
dc.subjectCell interaction
dc.subjectCell proliferation
dc.subjectClinical outcome
dc.subjectEndothelial progenitor cell
dc.subjectEndothelium cell
dc.subjectExtracellular matrix
dc.subjectExtravasation
dc.subjectHuman
dc.subjectMalignant neoplasm
dc.subjectNonhuman
dc.subjectPathophysiology
dc.subjectPhase 2 clinical trial (topic)
dc.subjectPhase 3 clinical trial (topic)
dc.subjectPreclinical study
dc.subjectReview
dc.subjectSignal transduction
dc.subjectStroma cell
dc.subjectTumor invasion
dc.subjectTumor vascularization
dc.titleResistance Mechanisms to Anti-angiogenic Therapies in Cancer
dc.typeReview

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