Schepens Eye Research Institute (SERI) mission is to work on the preservation and restoration of vision. This application requests support for four research modules to enhance the research capabilities at SERI by providing resources to facilitate and enhance interaction among our Principal Investigators in the various visual disciplines represented at SERI. The modules will extend endeavors of individual research projects by providing support to Principal Investigators who do not have expertise, personnel or technical capabilities. The modules are: Animal Resource, Flow Cytometry, Laboratory Computer Applications and Morphology. The Animal Resource Module provides expertise and assistance in live animal imaging and visual assessment. In addition, it also provides training for the breeding and management of specialized rodent strains central to many of the NEI-funded research programs at the Institute. The Flow Cytometry Module is a centralized service providing principal investigators and collaborators access to equipment and technical support for flow cytometry. The module offers cell counting, sorting to obtain viable populations of cells according to specific cellular markers, and biomarker detection. The Laboratory Computer Applications Module provides support to individual and collaborative efforts by programming and developing software for gathering, processing, and analyzing experimental data by computer systems. The module will also provide assistance to projects involving image processing and analysis. The module interacts actively with the Animal, Flow Cytometry and Morphology Modules supporting analysis and export of data. The Morphology Module provides tissue preparation, laser microdissection, light and electron microscopy, and confocal microscopy. The module houses and maintains shared equipment, and provides instruction on use of equipment, making morphological protocols and techniques available to Principal Investigators. Personnel with specialized training in the respective fields and equipment staff the modules. Each module is under the immediate supervision of an established, experienced investigator.

Public Health Relevance

Schepens Eye Research Institute's (SERI) mission is to work on the preservation and restoration of vision. The Core Grant for Vision Research provides funds to support four research modules at SERI, which include: Animal Resource, Flow Cytometry, Laboratory Computer Applications and Morphology. The Modules allow individual researchers to access expertise and state-of-the-art facilities that are not available in their laboratories, supporting intensive investigation of ocular diseases to 26 vision scientists.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Center Core Grants (P30)
Project #
5P30EY003790-38
Application #
9741703
Study Section
Special Emphasis Panel (ZEY1)
Program Officer
Liberman, Ellen S
Project Start
1981-08-01
Project End
2022-06-30
Budget Start
2019-07-01
Budget End
2020-06-30
Support Year
38
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Schepens Eye Research Institute
Department
Type
DUNS #
073826000
City
Boston
State
MA
Country
United States
Zip Code
02114
Paschalis, Eleftherios I; Lei, Fengyang; Zhou, Chengxin et al. (2018) The Role of Microglia and Peripheral Monocytes in Retinal Damage after Corneal Chemical Injury. Am J Pathol 188:1580-1596
Rodriguez Benavente, Maria C; Argüeso, Pablo (2018) Glycosylation pathways at the ocular surface. Biochem Soc Trans 46:343-350
Uchino, Yuichi; Woodward, Ashley M; Mauris, Jérôme et al. (2018) Galectin-3 is an amplifier of the interleukin-1?-mediated inflammatory response in corneal keratinocytes. Immunology 154:490-499
Paschalis, Eleftherios I; Lei, Fengyang; Zhou, Chengxin et al. (2018) Microglia Regulate Neuroglia Remodeling in Various Ocular and Retinal Injuries. J Immunol :
Qiu, Cheng; Jung, Jae-Hyun; Tuccar-Burak, Merve et al. (2018) Measuring Pedestrian Collision Detection With Peripheral Field Loss and the Impact of Peripheral Prisms. Transl Vis Sci Technol 7:1
Kocaba, Viridiana; Katikireddy, Kishore Reddy; Gipson, Ilene et al. (2018) Association of the Gutta-Induced Microenvironment With Corneal Endothelial Cell Behavior and Demise in Fuchs Endothelial Corneal Dystrophy. JAMA Ophthalmol 136:886-892
Costela, Francisco M; Saunders, Daniel R; Kajtezovic, Sidika et al. (2018) Measuring the Difficulty Watching Video With Hemianopia and an Initial Test of a Rehabilitation Approach. Transl Vis Sci Technol 7:13
Qiu, Cheng; Lee, Kassandra R; Jung, Jae-Hyun et al. (2018) Motion Parallax Improves Object Recognition in the Presence of Clutter in Simulated Prosthetic Vision. Transl Vis Sci Technol 7:29
Hwang, Alex D; Tuccar-Burak, Merve; Goldstein, Robert et al. (2018) Impact of Oncoming Headlight Glare With Cataracts: A Pilot Study. Front Psychol 9:164
Cruzat, Andrea; Gonzalez-Andrades, Miguel; Mauris, Jérôme et al. (2018) Colocalization of Galectin-3 With CD147 Is Associated With Increased Gelatinolytic Activity in Ulcerating Human Corneas. Invest Ophthalmol Vis Sci 59:223-230

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