Research Area
Working as a Chief Scientist at Zietchick Research Institute, I have been involved in planning and executing major research projects in vaso-proliferative retinopathies utilizing cellular, molecular and vascular biology methods. In particular, I have been involved in investigating the relationship between hormones and VEGF-associated disorders such as retinopathy of prematurity, diabetic retinopathy and diabetic nephropathy. My work has also included the analysis of pathological changes in the neonatal retina and diabetic retina of rodent models and the analysis of retinal vascular changes in genetically modified neonatal mice, with knocked out lutropin receptors. My research findings are published in high-tier journals, and I have delivered several domestic/international presentations at scientific meetings. I have been a co-investigator on several NIH grants.
Article Total : 1 | Year |
|---|---|
![]() Publication title Cited by 3 | 2020 |
Article | Year |
|---|---|
Vitreous Levels of Luteinizing Hormone and VEGF are Strongly Correlated in Healthy Mammalian Eyes. Current eye research| PubMed ID: 29677452 | 2018 |
| 2018 | |
Elimination of Signaling by the Luteinizing Hormone Receptor Reduces Ocular VEGF and Retinal Vascularization during Mouse Eye Development. Current eye research| PubMed ID: 29966451 | 2018 |
The potential effect of human chorionic gonadotropin on vasoproliferative disorders of the immature retina. Neuroreport| PubMed ID: 30300333 | 2018 |
The postnatal presence of human chorionic gonadotropin in preterm infants and its potential inverse association with retinopathy of prematurity. Pediatric research| PubMed ID: 31537012 | 2019 |