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Methods of Producing Thymic Emigrants from Induced Pluripotent Stem Cells
Abstract: Hematopoietic and pluripotent stem cells can be differentiated into T cells with potential clinical utility. Current approaches for in vitro T cell production rely on Notch signaling and artificial mimicry of thymic selection. However, these approaches result in unconventional or phenotypically aberrant T cells; which may lead to unpredictable...
Published: 4/8/2024   |   Inventor(s): Raul Sakoda, Nicholas Klemen, Nicholas Restifo
Keywords(s): DIFFERENTIATION, Induced Pluripotent Stem Cells, IPSCS, RESEARCH MATERIAL, Restifo, T Cells, Thymic Environment, Tool
Category(s): TherapeuticArea > Infectious Disease, Application > Therapeutics, TherapeuticArea > Oncology, Collaboration Sought > Licensing
Method for Reproducible Differentiation of Clinical Grade Retinal Pigment Epithelium Cells
Abstract: The retinal pigment epithelium (RPE) is a cell monolayer with specialized functions crucial to maintaining the metabolic environment and chemistry of the sub-retinal and choroidal layers in the eye. Damage or disease causing RPE cell loss leads to progressive photoreceptor damage and impaired vision. Loss of RPE is observed in many of the...
Published: 4/8/2024   |   Inventor(s): Kapil Bharti
Keywords(s): Age Related Macular Degeneration, AMD, Best Disease, Bharti, Human Induced Pluripotent Stem Cells, Human Retinal Pigment Epithelial Cells, IPSCS, National Eye Institute, National Institute of Arthritis and Muscoskeletal and Skin D, NEI, NIAMS, Photoreceptor, Retinal Degenerative Diseases, RPE, STEM CELLS, Vision Loss
Category(s): Application > Therapeutics, Collaboration Sought > Collaboration, TherapeuticArea > Opthamology, TherapeuticArea > Eye / Ear / Nose / Throat, Collaboration Sought > Licensing
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