Human Fetal Rpe

Human fetal retinal pigment epithelium (RPE) is a specialized layer of pigmented cells that supports the developing neural retina and helps establish visual function. RPE cells maintain the blood-retina barrier, transport nutrients, recycle visual pigments through the retinoid cycle, and phagocytose shed photoreceptor outer segments, thereby preserving photoreceptor health. In neuroscience research, human fetal RPE provides a model for retinal development, cell-cell signaling, and mechanisms of degenerative disease. Its developmental properties also inform studies of RPE replacement, retinal repair, and potential cell-based therapies for conditions involving photoreceptor or RPE loss.

Human Fetal Rpe - Related Videos

Research

JoVE Journal - Biochemistry

Dissection of Human Retina and RPE-Choroid for Proteomic Analysis

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Cited by 7 •

2017

The human retina is composed of functionally and molecularly distinct regions, including the fovea, macula, and peripheral retina. Here, we describe a method using punch biopsies and manual removal of tissue layers from a human eye to dissect and collect these distinct retinal regions for downstream proteomic analysis.

MicroRNA Expression Profiles of Human iPS Cells, Retinal Pigment Epithelium Derived From iPS, and Fetal Retinal Pigment Epithelium

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Cited by 10 •

2014

The microRNA (miRNA) profiles of human induced-pluripotent stem (iPS) cells, retinal pigment epithelium (RPE) derived from human induced-pluripotent stem (iPS) cells (iPS-RPE), and fetal RPE, were compared.

Isolation of Leukocytes from the Human Maternal-fetal Interface

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Cited by 57 •

2015

Described herein is a protocol to isolate and further study the infiltrating leukocytes of the decidua basalis and decidua parietalis - the human maternal-fetal interface. This protocol maintains the integrity of cell surface markers and yields enough viable cells for downstream applications as proven by flow cytometry analysis.

Progenitor-derived Oligodendrocyte Culture System from Human Fetal Brain

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Cited by 38 •

2012

Primary, human fetal brain-derived, multipotential progenitor cells proliferate in vitro while maintaining the capacity to differentiate into neurons and astrocytes. This work shows that neural progenitors can be induced to differentiate through stages of the oligodendrocytic lineage by conditioning with select growth factors.

Generation of Neural Stem Cells from Discarded Human Fetal Cortical Tissue

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Cited by 19 •

2011

A simple and reliable method on isolation and culture of neural stem cells from discarded human fetal cortical tissue is described. Cultures derived from known human neurological disorders can be used for characterization of pathological cellular and molecular processes, as well as provide a platform to assess pharmacological efficacy.

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