Articles by Noora Dbayat in JoVE
منهج في النسب الانسحاب من الخلايا القرنية عن طريق متعدد الألوان مراسل الفلورسنت الفئران Aya Amitai-Lange*1, Eran Berkowitz*2, Anna Altshuler1, Noora Dbayat2, Waseem Nasser1, Edith Suss-Toby3, Beatrice Tiosano2, Ruby Shalom-Feuerstein1 1Department of Genetics and Developmental Biology, The Ruth and Bruce Rappaport Faculty of Medicine, Technion, Israel Institute of Technology, 2Department of Ophthalmology, Hillel Yaffe Medical Center, 3Bioimging Center, Biomedical Core Facility, The Ruth and Bruce Rappaport Faculty of Medicine, Technion, Israel Institute of Technology
Other articles by Noora Dbayat on PubMed
Unilateral Angle-closure Glaucoma with Ciliochoroidal Effusion After the Consumption of Cannabis: a Case Report Case Reports in Ophthalmology. Sep-Dec, 2014 | Pubmed ID: 25606036 A 35-year-old male patient, diagnosed with acute angle-closure glaucoma, did not improve despite intensive treatment with antiglaucoma medications. Ultrasound biomicroscopy revealed a ciliochoroidal effusion. Due to his past history of drug abuse, a urine test was analyzed and found to be positive for cannabis. After topical cycloplegia and oral steroid therapy, his symptoms improved substantially. The present case highlights the role of ultrasound biomicroscopy in evaluating patients with acute angle-closure glaucoma and the role of cannabis abuse in the development of ciliochoroidal effusion.
Lineage Tracing of Stem and Progenitor Cells of the Murine Corneal Epithelium Stem Cells (Dayton, Ohio). Jan, 2015 | Pubmed ID: 25187087 Accumulating evidence supports the dogma that the corneal epithelium is regenerated by stem cells located exclusively in the limbal niche, at the corneal periphery. Accordingly, limbal stem cells (LSCs) give rise to progenitors that proliferate and migrate centripetally to repopulate the corneal epithelium, which has a short turnover. Moreover, LSC loss leads to corneal opacity and blindness, while limbal grafting restores patients' vision. However, contradicting data suggested that the limbus does not participate in corneal homeostasis and that the cornea contains stem cells. As of today, only indirect evidence for limbal cell migration under homeostasis or injury has been demonstrated. Here, we performed lineage tracing experiments using R26R-Confetti mice to follow K14+ limbal/corneal epithelial cells stochastically induced to express one out of four fluorescent genes. In homeostasis, radial limbal stripes of slow migrating cells proceeded toward the corneal center while, infrequently, slow cycling limbal clones resembling quiescent stem cells were observed. Additionally, rare corneal clones that did not migrate centripetally, but survived for over 4 months, were inspected. In contrast to limbal stripes, corneal clusters had minor contribution to tissue replenishment in homeostasis. Corneal cells, however, significantly contributed to mild wound repair while large limbal streaks appeared within a week following severe wounding that coincided with partial loss of corneal transparency. This data suggest that the mouse limbus largely contributes to corneal renewal while corneal progenitor cells have a long turnover and, therefore, may be able to maintain the corneal epithelium for several months.