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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Anti-VEGF- and anti-VEGF receptor-induced vascular alteration in mouse healthy tissues
Yunlong Yang1, Yin Zhang, Ziquan Cao
1Department of Microbiology, Karolinska Institute, 171 77 Stockholm, Sweden.
Abstract:
Systemic therapy with anti-VEGF drugs such as bevacizumab is widely used for treatment of human patients with various solid tumors. However, systemic impacts of such drugs in host healthy vasculatures remain poorly understood. Here, we show that, in mice, systemic delivery of an anti-VEGF or an anti-VEGF receptor (VEGFR)-2 neutralizing antibody caused global vascular regression. Among all examined tissues, vasculatures in endocrine glands, intestinal villi, and uterus are the most affected in response to VEGF or VEGFR-2 blockades. Thyroid vascular fenestrations were virtually completely blocked by VEGF blockade, leading to marked accumulation of intraendothelial caveolae vesicles. VEGF blockade markedly increased thyroid endothelial cell apoptosis, and withdrawal of anti-VEGF resulted in full recovery of vascular density and architecture after 14 d. Prolonged anti-VEGF treatment resulted in a significant decrease of the circulating level of the predominant thyroid hormone free thyroxine, but not the minimal isoform of triiodothyronine, suggesting that chronic anti-VEGF treatment impairs thyroid functions. Conversely, VEGFR-1-specific blockade produced virtually no obvious phenotypes. These findings provide structural and functional bases of anti-VEGF-specific drug-induced side effects in relation to vascular changes in healthy tissues. Understanding anti-VEGF drug-induced vascular alterations in healthy tissues is crucial to minimize and even to avoid adverse effects produced by currently used anti-VEGF-specific drugs.
Insights
Systemic anti-VEGF therapy causes vascular regression in healthy tissues, particularly endocrine glands. Recovery occurs after treatment withdrawal, but chronic use may impair thyroid function.
Area of Science:
- Vascular biology
- Endocrinology
- Pharmacology
Background:
- Anti-VEGF drugs are used for cancer treatment.
- Their effects on healthy vasculature are not well understood.
Purpose of the Study:
- To investigate the systemic effects of anti-VEGF therapy on healthy vasculature in mice.
- To understand the structural and functional consequences of VEGF/VEGFR blockade.
Main Methods:
- Systemic administration of anti-VEGF or anti-VEGFR-2 neutralizing antibodies in mice.
- Analysis of vascular changes in various tissues, including endocrine glands.
- Assessment of thyroid hormone levels and endothelial cell apoptosis.
Main Results:
- Systemic anti-VEGF/VEGFR-2 blockade caused global vascular regression, most notably in endocrine glands, intestinal villi, and uterus.
- Thyroid vascular fenestrations were blocked, leading to increased caveolae vesicles and endothelial cell apoptosis.
- Withdrawal of anti-VEGF allowed vascular recovery within 14 days.
- Chronic anti-VEGF treatment reduced free thyroxine levels, suggesting impaired thyroid function.
- VEGFR-1 blockade showed no significant effects.
Conclusions:
- Anti-VEGF/VEGFR-2 therapy induces significant vascular alterations in healthy tissues.
- These changes can lead to functional impairment, such as in thyroid hormone production.
- Understanding these side effects is crucial for managing anti-VEGF therapies.

