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Updated: Jul 20, 2026

Differentiation of the SH-SY5Y Human Neuroblastoma Cell Line
Published on: February 17, 2016
Dexamethasone blocks the migration of the human neuroblastoma cell line SK-N-SH
L A Casulari1, D Dondi, R Maggi
1Escola Superior em Ciências da Saúde, Brasília, DF, Brasil.
Abstract:
Glucocorticoids (Gc) influence the differentiation of neural crest-derived cells such as those composing sympathoadrenal tumors like pheochromocytomas, as well as neuroblastomas and gangliomas. In order to obtain further information on the effects of Gc on cells evolving from the neural crest, we have used the human neuroblastoma cell line SK-N-SH to analyze: 1) the presence and the binding characteristics of Gc receptors in these cells, 2) the effect of dexamethasone (Dex) on the migration of SK-N-SH cells, and 3) the effect of Dex on the organization of the cytoskeleton of SK-N-SH cells. We show that: 1) receptors that bind [(3)H]-Dex with high affinity and high capacity (Kd of 9.6 nM, Bmax of 47 fmol/mg cytosolic protein, corresponding to 28,303 sites/cell) are present in cytosolic preparations of SK-N-SH cells, and 2) treatment with Dex (in the range of 10 nM to 1 microM) has an inhibitory effect (from 100% to 74 and 43%, respectively) on the chemotaxis of SK-N-SH cells elicited by fetal bovine serum. This inhibition is completely reversed by the Gc receptor antagonist RU486 (1 microM), and 3) as demonstrated by fluorescent phalloidin-actin detection, the effect of Dex (100 nM) on SK-N-SH cell migration is accompanied by modifications of the cytoskeleton organization that appear with stress fibers. These modifications did not take place in the presence of 1 microM RU486. The present data demonstrate for the first time that Dex affects the migration of neuroblastoma cells as well as their cytoskeleton organization by interacting with specific receptors. These findings provide new insights on the mechanism(s) of action of Gc on cells originating in the neural crest.
Insights
Glucocorticoids (Gc) impact neural crest cell differentiation. Dexamethasone (Dex) inhibits neuroblastoma cell migration and alters cytoskeleton organization by binding to specific Gc receptors, offering new insights into Gc mechanisms.
Area of Science:
- Neuroscience
- Cell Biology
- Endocrinology
Background:
- Glucocorticoids (Gc) influence neural crest-derived cell differentiation, including cells in tumors like neuroblastomas.
- Understanding Gc mechanisms in these cells is crucial for potential therapeutic strategies.
Purpose of the Study:
- To investigate the presence and binding characteristics of Gc receptors in human neuroblastoma SK-N-SH cells.
- To analyze the effect of dexamethasone (Dex) on SK-N-SH cell migration and cytoskeleton organization.
Main Methods:
- Characterization of Gc receptors in SK-N-SH cell cytosol using radioligand binding assays.
- Assessment of Dex-induced effects on cell migration via chemotaxis assays.
- Fluorescent phalloidin-actin staining to visualize cytoskeleton modifications.
Main Results:
- SK-N-SH cells possess high-affinity, high-capacity Gc receptors.
- Dex (10 nM to 1 microM) significantly inhibited SK-N-SH cell chemotaxis, an effect reversed by RU486.
- Dex treatment induced cytoskeleton reorganization with stress fiber formation, which was blocked by RU486.
Conclusions:
- Dexamethasone affects neuroblastoma cell migration and cytoskeleton organization through specific Gc receptor interactions.
- These findings provide novel insights into the mechanisms of Gc action on neural crest-derived cells.
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