Abstract

Objective. The aim of the study was to investigate the retinal expression of genes involved in the regulation of angiogenesis and endothelial barrier function after exposure of the retina to 577 nm laser light in a continuous mode in experimental conditions after intravitreal injection of VEGF165 (Vascular endothelial growth factor). Materials and methods. The study was performed on 4-5 week old male C57BL / 6J mice. 4 groups, 5 mice in each, were formed, one animal eye was experimental and the second remained intact. The animals of the first group received intravitreal injection of phosphate-buffered saline (PBS); animals in the second, third and fourth groups received intravitreal injection of 50 ng/ml of recombinant VEGF165; in the third and fourth groups, one day after the VEGF165 intravitreal administration, laser irradiation with a wavelength of 577 nm was performed on the retina in micropulse and continuous modes, respectively. Tissue samples from animals of the first and second groups were taken 2 days after PBS and VEGF165 administration, and in animals from the third and fourth groups one day after laser exposure to the retina. Results. Retinal expression of genes involved in the regulation of angiogenesis and endothelial barrier function as a result of retinal exposure to 577 nm laser radiation in continuous mode following intravitreal injection of VEGF165 was studied. Genes with significant changes in expression levels were identified (genes that regulate the processes of angiogenesis). Conclusion. Understanding the mechanisms of modulation of retinal gene expression may help to identify the key regulatory factors providing therapeutic effects of laser radiation in continuous and micropulsed modes and provide the basis for future therapeutic tactics for retinal diseases.

Highlights

  • Цель исследования – изучение ретинальной экспрессии генов, участвующих в регуляции ангиогенеза и функций эндотелиального барьера после воздействия лазерного излучения с длиной волны 577 нм в непрерывном режиме на сетчатку в экспериментальных условиях после интравитреального введения VEGF165 (Vascular endothelial growth factor)

  • The study was performed on 4-5 week old male C57BL

  • laser irradiation with a wavelength of 577 nm was performed on the retina

Read more

Summary

F11 Receptor

Note: Group 1 – injection of PBS, group 2 – injection of VEGF165, group 4 – injection of VEGF165 and laser therapy in a continuous mode. Наблюдалось снижение экспрессии гена F11R (уровень экспрессии был ниже, чем в контроле, после введения VEGF экспрессия была увеличена в 1,17 раза), кодирующего молекулу адгезии JAM-1(А). Снизилась экспрессия гена CTNNA1, кодирующего белок клеточной адгезии α-катенин 1, уровень экспрессии был ниже, чем в контроле. Была изучена ретинальная экспрессия генов, участвующих в регуляции ангиогенеза и функций эндотелиального барьера в результате воздействия на сетчатку лазерного излучения 577 нм в непрерывном режиме после интравитреального введения VEGF165. Human lactoferrin upregulates expression of KDR/Flk-1 and stimulates VEGF-A-mediated endothelial cell proliferation and migration. Saker S., Stewart E.A., Browning A.C., Allen C.L., Amoaku W.M. The effect of hyperglycaemia on permeability and the expression of junctional complex molecules in human retinal and choroidal endothelial cells. Wu W.C., Kao Y.H., Hu P.S., Chen J.H. Geldanamycin, a HSP90 inhibitor, attenuates the hypoxiainduced vascular endothelial growth factor expression in retinal pigment epithelium cells in vitro.

Objective
Materials and methods
Results
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call