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Updated: Apr 23, 2026

Derivation of Adult Human Fibroblasts and their Direct Conversion into Expandable Neural Progenitor Cells
Published on: July 29, 2015
Glucocorticoids promote neural progenitor cell proliferation derived from human induced pluripotent stem cells
Eiichi Ninomiya1, Taeka Hattori1, Masashi Toyoda2
1Department of Pediatrics, Osaka City University Graduate School of Medicine, 1-4-3 Asahi-machi, Abeno-ku, Osaka, 545-8585 Japan.
Insights
Glucocorticoids (GCs) promote neuronal progenitor cell proliferation. Hydrocortisone (HDC) may be preferable to dexamethasone (DEX) and betamethasone (BET) for infant neurodevelopment, especially under oxidative stress.
Area of Science:
- Neuroscience
- Developmental Biology
- Pharmacology
Background:
- Glucocorticoids (GCs) are vital for premature infants but raise neurodevelopmental concerns.
- The optimal GC for minimizing infant brain effects remains debated.
Purpose of the Study:
- To compare the effects of dexamethasone (DEX), betamethasone (BET), and hydrocortisone (HDC) on neuronal progenitor cell (NPC) proliferation.
- To assess GC impact on neuronal differentiation under normal and oxidative stress conditions.
Main Methods:
- Human induced pluripotent stem cell-derived NPCs were treated with varying GC concentrations.
- Cell proliferation assays and immunostaining for MAP2-positive neurons were performed.
- NPCs were also exposed to hydrogen peroxide (H2O2) to simulate oxidative stress.
Main Results:
- All tested GCs (DEX, BET, HDC) dose-dependently increased NPC proliferation.
- GC treatment generally increased MAP2-positive neurons.
- Under oxidative stress (H2O2), only HDC significantly increased MAP2-positive neurons, while all GCs maintained NPC proliferation.
Conclusions:
- GCs enhance human iPSC-derived NPC proliferation.
- Hydrocortisone (HDC) may offer neurodevelopmental advantages over DEX and BET in premature infants, particularly under oxidative stress.
Abstract:
Glucocorticoids (GCs) are frequently used for treating and preventing chronic lung disease and circulatory dysfunction in premature infants. However, there is growing concern about the detrimental effects of systemic GC administration on neurodevelopment. The first choice of GCs to minimize the adverse effects on the developing brain is still under debate. We investigated the effect of commonly used GCs such as dexamethasone (DEX), betamethasone (BET) and hydrocortisone (HDC) on the proliferation of human-induced pluripotent stem cell (iPSC)-derived neuronal progenitor cells (NPCs). In this study, NPCs were treated with various concentrations of GCs and subjected to cell proliferation assays. Furthermore, we quantified the number of microtubule-associated protein 2 (MAP2) positive neurons in NPCs by immunostaining. All GCs promoted NPC proliferation in a dose-dependent manner. We also confirmed that MAP2-positive neurons in NPCs increased upon GC treatment. However, differential effects of GCs on MAP2 positive neurons were observed when we treated NPCs with H2O2. The total numbers of NPCs increased upon any GC treatment even under oxidative conditions but the numbers of MAP2 positive neurons increased only by HDC treatment. GCs promoted human iPSCsâ€"derived NPC proliferation and the differential effects of GCs became apparent under oxidative stress. Our results may support HDC as the preferred choice over DEX and BET to prevent adverse effects on the developing human brain.
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