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Updated: Jan 29, 2026

A Simple Bioassay for the Evaluation of Vascular Endothelial Growth Factors
Published on: March 15, 2016
Microparticles from vascular endothelial growth factor pathway inhibitor-treated cancer patients mediate endothelial
Karla B Neves1, Francisco J Rios1, Robert Jones2,3,4
1Institute of Cardiovascular and Medical Sciences, University of Glasgow, 126 University Place, Glasgow, UK.
Abstract:
Vascular endothelial growth factor pathway inhibitors (VEGFi), used as anti-angiogenic drugs to treat cancer are associated with cardiovascular toxicities through unknown molecular mechanisms. Endothelial cell-derived microparticles (ECMPs) are biomarkers of endothelial injury and are also functionally active since they influence downstream target cell signalling and function. We questioned whether microparticle (MP) status is altered in cancer patients treated with VEGFi and whether they influence endothelial cell function associated with vascular dysfunction. Plasma MPs were isolated from cancer patients before and after treatment with VEGFi (pazopanib, sunitinib, or sorafenib). Human aortic endothelial cells (HAECs) were stimulated with isolated MPs (106 MPs/mL). Microparticle characterization was assessed by flow cytometry. Patients treated with VEGFi had significantly increased levels of plasma ECMP. Endothelial cells exposed to post-VEGFi treatment ECMPs induced an increase in pre-pro-ET-1 mRNA expression, corroborating the increase in endothelin-1 (ET-1) production in HAEC stimulated with vatalanib (VEGFi). Post-VEGFi treatment MPs increased generation of reactive oxygen species in HAEC, effects attenuated by ETA (BQ123) and ETB (BQ788) receptor blockers. VEGFi post-treatment MPs also increased phosphorylation of the inhibitory site of endothelial nitric oxide synthase (eNOS), decreased nitric oxide (NO), and increased ONOO- levels in HAEC, responses inhibited by ETB receptor blockade. Additionally, gene expression of proinflammatory mediators was increased in HAEC exposed to post-treatment MPs, effects inhibited by BQ123 and BQ788. Our findings define novel molecular mechanism involving interplay between microparticles, the ET-1 system and endothelial cell pro-inflammatory and redox signalling, which may be important in cardiovascular toxicity and hypertension associated with VEGFi anti-cancer treatment. New and noteworthy: our novel data identify MPs as biomarkers of VEGFi-induced endothelial injury and important mediators of ET-1-sensitive redox-regulated pro-inflammatory signalling in effector endothelial cells, processes that may contribute to cardiovascular toxicity in VEGFi-treated cancer patients.
Insights
Vascular endothelial growth factor pathway inhibitors (VEGFi) increase endothelial cell-derived microparticles (ECMPs), causing vascular dysfunction. These microparticles mediate inflammation and oxidative stress, contributing to cardiovascular toxicity in cancer patients.
Area of Science:
- Cardiovascular Biology
- Cancer Therapeutics
- Endothelial Cell Biology
Background:
- Vascular endothelial growth factor pathway inhibitors (VEGFi) are anti-cancer drugs.
- VEGFi are associated with cardiovascular toxicities via unknown mechanisms.
- Endothelial cell-derived microparticles (ECMPs) are biomarkers of endothelial injury and influence cell signaling.
Purpose of the Study:
- To investigate alterations in microparticle (MP) status in cancer patients treated with VEGFi.
- To determine if these MPs influence endothelial cell function and vascular dysfunction.
Main Methods:
- Plasma MPs were isolated from cancer patients before and after VEGFi treatment.
- Human aortic endothelial cells (HAECs) were stimulated with isolated MPs.
- MP characterization, gene expression, and signaling pathways were analyzed.
Main Results:
- VEGFi treatment significantly increased plasma ECMPs.
- Post-VEGFi ECMPs increased endothelin-1 (ET-1) production, reactive oxygen species, and proinflammatory mediators in HAECs.
- VEGFi-induced MPs decreased nitric oxide (NO) and increased eNOS phosphorylation and ONOO- levels.
Conclusions:
- Microparticles are novel biomarkers of VEGFi-induced endothelial injury.
- MPs mediate ET-1-sensitive redox and pro-inflammatory signaling.
- These processes contribute to cardiovascular toxicity and hypertension in VEGFi-treated cancer patients.
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