作者
Allen Clermont, Nivetha Murugesan, Qunfang Zhou, Takeshi Kita, Peter A Robson, Louise J Rushbrooke, D Michael Evans, Lloyd Paul Aiello, Edward P Feener
发表日期
2016/5/1
期刊
Investigative ophthalmology & visual science
卷号
57
期号
6
页码范围
2390-2399
出版商
The Association for Research in Vision and Ophthalmology
简介
Purpose: Plasma kallikrein is a serine protease and circulating component of inflammation, which exerts clinically significant effects on vasogenic edema. This study examines the role of plasma kallikrein in VEGF-induced retinal edema.
Methods: Intravitreal injections of VEGF and saline vehicle were performed in plasma prekallikrein–deficient (KLKB1−/−) and wild-type (WT) mice, and in both rats and mice receiving a selective plasma kallikrein inhibitor, VA999272. Retinal vascular permeability (RVP) and retinal thickness were measured by Evans blue permeation and optical coherence tomography, respectively. The retinal kallikrein kinin system was examined by Western blotting and immunohistochemistry. Retinal neovascularization was investigated in KLKB1−/− and WT mice subjected to oxygen-induced retinopathy.
Results: Vascular endothelial growth factor–induced RVP and retinal thickening were reduced in KLKB1−/− mice by 68% and 47%, respectively, compared to VEGF responses in WT mice. Plasma kallikrein also contributes to TNFα-induced retinal thickening, which was reduced by 52% in KLKB1−/− mice. Systemic administration of VA999272 reduced VEGF-induced retinal thickening by 57%(P< 0.001) in mice and 53%(P< 0.001) in rats, compared to vehicle-treated controls. Intravitreal injection of VEGF in WT mice increased plasma prekallikrein in the retina, which was diffusely distributed throughout the inner and outer retinal layers. Avascular and neovascular areas induced by oxygen-induced retinopathy were similar in WT and KLKB1−/− mice.
Conclusions: Vascular endothelial growth factor increases extravasation of plasma …
引用总数
201620172018201920202021202220232024532445333
学术搜索中的文章
A Clermont, N Murugesan, Q Zhou, T Kita, PA Robson… - Investigative Ophthalmology & Visual Science, 2016