Three-dimensional data capture and analysis of intact eye lenses evidences emmetropia-associated changes in epithelial cell organization
Autor: | John M. Girkin, Christopher D. Saunter, Miguel Jarrin, Roy A. Quinlan, Boguslaw Obara, Archie Isted, Alice Uwineza, Robert Pal, Alexia A. Kalligeraki |
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Jazyk: | angličtina |
Rok vydání: | 2020 |
Předmět: |
0301 basic medicine
Confocal Organogenesis Cell Emmetropia lcsh:Medicine Biology Epithelium Article law.invention 03 medical and health sciences Mice 0302 clinical medicine Image processing law Lens Crystalline medicine Animals Intermediate filaments Lentoid Cytoskeleton lcsh:Science Multidisciplinary Microscopy Confocal lcsh:R Spheroid Epithelial Cells Cell biology Lens (optics) Mice Inbred C57BL 030104 developmental biology medicine.anatomical_structure 030221 ophthalmology & optometry lcsh:Q sense organs Visual system Software |
Zdroj: | Scientific Reports, Vol 10, Iss 1, Pp 1-13 (2020) Scientific Reports |
ISSN: | 2045-2322 |
Popis: | Organ and tissue development are highly coordinated processes; lens growth and functional integration into the eye (emmetropia) is a robust example. An epithelial monolayer covers the anterior hemisphere of the lens, and its organization is the key to lens formation and its optical properties throughout all life stages. To better understand how the epithelium supports lens function, we have developed a novel whole tissue imaging system using conventional confocal light microscopy and a specialized analysis software to produce three-dimensional maps for the epithelium of intact mouse lenses. The open source software package geometrically determines the anterior pole position, the equatorial diameter, and three-dimensional coordinates for each detected cell in the epithelium. The user-friendly cell maps, which retain global lens geometry, allow us to document age-dependent changes in the C57/BL6J mouse lens cell distribution characteristics. We evidence changes in epithelial cell density and distribution in C57/BL6J mice during the establishment of emmetropia between postnatal weeks 4–6. These epithelial changes accompany a previously unknown spheroid to lentoid shape transition of the lens as detected by our analyses. When combined with key findings from previous mouse genetic and cell biological studies, we suggest a cytoskeleton-based mechanism likely underpins these observations. |
Databáze: | OpenAIRE |
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