Human Ipsc Retinal Organoids

Human iPSC retinal organoids are three-dimensional retinal tissues generated from reprogrammed human cells, providing an in vitro model of human eye development. During directed differentiation, culture conditions guide pluripotent cells toward retinal lineages, while cell-cell signaling and self-organization produce layered structures containing photoreceptors and other neural retinal cell types. In developmental biology, these organoids enable controlled studies of human retinal formation, cell fate decisions, and tissue organization. They also support research on inherited retinal diseases and therapeutic screening, helping address limitations of animal models and limited access to living human retinal tissue.

Human Ipsc Retinal Organoids - Related Videos

Research

JoVE Journal - Developmental Biology

Generation of iPSC-derived Human Brain Organoids to Model Early Neurodevelopmental Disorders

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Cited by 46 •

2017

Modeling human brain development has been hindered due to the unprecedented complexity of neural epithelial tissue. Here, a method for the robust generation of brain organoids to delineate early events of human brain development and to model microcephaly in vitro is described.

Developing Human iPSC-Derived Motor Nerve Organoids Using a Microfluidic Chip

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2025

This video demonstrates the method of creating motor nerve organoids by first culturing human induced pluripotent stem cells in a special medium to form spheroids, then differentiating them into motor neurons using specific inhibitors, and finally cultivating them in a microfluidic chip to extend axons and form motor nerve organoids.

PiggyBac Transposon-Mediated Gene Editing in Human iPSCs: A Procedure to Integrate Gene of Interest in Human iPSCs Using PiggyBac Transposon System

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2025

This video demonstrates the procedure to generate motor neurons by transfection of human iPSCs with PiggyBac transposon system by the ectopic expression of lineage-specific transcription factors.

Small-scale Propagation of Human iPSCs in Serum-free Conditions for Routine Immunocytochemical Characterization

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2017

Regular characterization of induced pluripotent stem cells (iPSCs), to ascertain maintenance of their pluripotent state, is an important step before these cells are used for other applications. Here we describe a method for the small-scale propagation of human iPSCs specifically designed to enable their easy and routine characterization via immunocytochemistry.

Toxicity Screens in Human Retinal Organoids for Pharmaceutical Discovery

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Cited by 15 •

2021

Here we present a step-by-step protocol to generate mature human retinal organoids and utilize them in a photoreceptor toxicity assay to identify pharmaceutical candidates for the age-related retinal degenerative disease macular telangiectasia type 2 (MacTel).

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