The availability of in vitro models of the human retina in which to perform pharmacological and toxicological studies is an urgent and unmet need. An essential step for developing in vitro models of human retina is the ability to generate laminated, physiologically functional, and light-responsive retinal organoids from renewable and patient specific sources. We investigated five different human-induced pluripotent stem cell (iPSC) lines and showed a significant variability in their efficiency to generate retinal organoids. Despite this variability, by month 5 of differentiation, all iPSC-derived retinal organoids were able to generate light responses, albeit immature, comparable to the earliest light responses recorded from the neonatal mo...
The devastating effects and incurable nature of hereditary and sporadic retinal diseases such as Sta...
The development of improved methods to culture retinal organoids is relevant for the investigation o...
Retinal organoids (ROs) are 3D tissue structures derived from embryonic stem cells (ESCs) or induced...
The availability of in vitro models of the human retina in which to perform pharmacological and toxi...
The availability of in vitro models of the human retina in which to perform pharmacological and toxi...
SummaryThe plasticity of pluripotent stem cells provides new possibilities for studying development,...
International audienceThe reprogramming of human somatic cells to induced pluripotent stem cells (iP...
Urine cells, a body trash, have been successfully reprogrammed into human induced pluripotent stem c...
Aim: We aimed to compare the quantity and quality of aging retinal organoids generated by applying t...
Retinal degeneration often results in the loss of light-sensing photoreceptors, which leads to perma...
Induced pluripotent stem cell (iPSC)‐derived retinal organoids provide a platform to study human ret...
Retinal degeneration leads to loss of light-sensing photoreceptors eventually resulting in vision im...
Background: Recently, great efforts have been made to design protocols for obtaining ocular cells fr...
Summary: Pluripotent stem cells can be differentiated into 3D retinal organoids, with major cell typ...
Visual impairment is a major health concern globally resulting in a severe detriment to the quality ...
The devastating effects and incurable nature of hereditary and sporadic retinal diseases such as Sta...
The development of improved methods to culture retinal organoids is relevant for the investigation o...
Retinal organoids (ROs) are 3D tissue structures derived from embryonic stem cells (ESCs) or induced...
The availability of in vitro models of the human retina in which to perform pharmacological and toxi...
The availability of in vitro models of the human retina in which to perform pharmacological and toxi...
SummaryThe plasticity of pluripotent stem cells provides new possibilities for studying development,...
International audienceThe reprogramming of human somatic cells to induced pluripotent stem cells (iP...
Urine cells, a body trash, have been successfully reprogrammed into human induced pluripotent stem c...
Aim: We aimed to compare the quantity and quality of aging retinal organoids generated by applying t...
Retinal degeneration often results in the loss of light-sensing photoreceptors, which leads to perma...
Induced pluripotent stem cell (iPSC)‐derived retinal organoids provide a platform to study human ret...
Retinal degeneration leads to loss of light-sensing photoreceptors eventually resulting in vision im...
Background: Recently, great efforts have been made to design protocols for obtaining ocular cells fr...
Summary: Pluripotent stem cells can be differentiated into 3D retinal organoids, with major cell typ...
Visual impairment is a major health concern globally resulting in a severe detriment to the quality ...
The devastating effects and incurable nature of hereditary and sporadic retinal diseases such as Sta...
The development of improved methods to culture retinal organoids is relevant for the investigation o...
Retinal organoids (ROs) are 3D tissue structures derived from embryonic stem cells (ESCs) or induced...