Key result
Low-dose systemic anti-VEGF therapy caused marked vascular regression and functional impairment in endocrine organs, while leaving tumor vasculatures unaffected.
Why the study?
Does low-dose anti-VEGF therapy preferentially target endocrine vasculatures over tumor vasculatures?
Does low-dose anti-VEGF therapy preferentially target endocrine vasculatures over tumor vasculatures?
Low-dose anti-VEGF therapy preferentially damages fenestrated microvasculatures in endocrine organs over tumor vessels, potentially causing adverse effects like hypertension and hypothyroidism without anti-tumor benefit.
Raises caution for endocrine adverse effects with low-dose anti-VEGF; leaves open translation to clinical tumor therapy.
Anti-VEGF-based antiangiogenic drugs are designed to block tumor angiogenesis for treatment of cancer patients. However, anti-VEGF drugs produce off-tumor target effects on multiple tissues and organs and cause broad adverse effects. Here, we show that vasculatures in endocrine organs were more sensitive to anti-VEGF treatment than tumor vasculatures. In thyroid, adrenal glands, and pancreatic islets, systemic treatment with low doses of an anti-VEGF neutralizing antibody caused marked vascular regression, whereas tumor vessels remained unaffected. Additionally, a low dose of VEGF blockade significantly inhibited the formation of thyroid vascular fenestrae, leaving tumor vascular structures unchanged. Along with vascular structural changes, the low dose of VEGF blockade inhibited vascular perfusion and permeability in thyroid, but not in tumors. Prolonged treatment with the low-dose VEGF blockade caused hypertension and significantly decreased circulating levels of thyroid hormone free-T3 and -T4, leading to functional impairment of thyroid. These findings show that the fenestrated microvasculatures in endocrine organs are more sensitive than tumor vasculatures in response to systemic anti-VEGF drugs. Thus, our data support the notion that clinically nonbeneficial treatments with anti-VEGF drugs could potentially cause adverse effects.
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Zhang et al. (2016) studied Cancer. Anti-VEGF neutralizing antibody was evaluated on Vascular regression and functional impairment in endocrine organs versus tumors. Low-dose systemic anti-VEGF therapy caused marked vascular regression and functional impairment in endocrine organs, while leaving tumor vasculatures unaffected.
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