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Updated: Jul 15, 2026

Analysis of Retinoic Acid-induced Neural Differentiation of Mouse Embryonic Stem Cells in Two and Three-dimensional Embryoid Bodies
Published on: April 22, 2017
All-trans-retinoic acid induces cell growth arrest in a human medulloblastoma cell line
Qing Chang1, Zhengshan Chen, Jiangfeng You
1Department of Pathology, School of Basic Medical Sciences, Peking (Beijing) University Health Science Center, 38 Xueyuan Road, Beijing, 100083, China.
Abstract:
Medulloblastomas (MBs) are the most common malignant brain tumors of childhood. Antitumor agents promoting long-term survival with limited toxicities are thus far lacking. Preliminary findings suggest that retinoic acid (RA) derivatives (retinoids) exert antitumor effects by inhibiting cell proliferation and inducing cell differentiation, apoptosis, and growth arrest, and RAs have been specifically shown to induce apoptosis in some MB cells. However, there is no conclusive evidence of retinoids inducing cell growth arrest in MBs. The aim of this study is to investigate whether retinoids play a role in cell-cycle arrest of MB cells. All-trans-retinoic acid (ATRA) was selected for these studies as it is known to have the capacity of inducing cell cycle arrest and apoptosis in other types of cancer cells. Three MB cell lines (DAOY, D283 and D341) were subjected to ATRA treatment. The proportions of cells in the G0/G1 phase of cell cycle and in apoptosis were evaluated. The results showed that cell growth arrest, rather than apoptosis, was the main mechanism by which RA inhibited cell proliferation in the MB cell line DAOY, but not in the others (D283 and D341). Decreased expression of CyclinD1 and C-myc which regulate the transition of cell cycle was observed in DAOY cells following drug treatment, suggesting that these genes might be involved in ATRA retardation of cell cycle progression. Expression of RARbeta, a mediator of the action of retinoids, was also induced by RA in DAOY cells, implying that RAR-beta might also be involved in the mechanism of RA-induced cell cycle arrest. In conclusion, we have provided evidence for the first time that RA may induce cell cycle arrest in vitro in DAOY MB cells via inhibition of CyclinD1 or C-myc.
Insights
All-trans-retinoic acid (ATRA) induces cell cycle arrest in DAOY medulloblastoma cells, a common childhood brain tumor. This study shows ATRA inhibits growth by affecting cell cycle regulators like CyclinD1 and C-myc.
Area of Science:
- Pediatric Oncology
- Molecular Biology
- Cancer Research
Background:
- Medulloblastomas (MBs) are aggressive pediatric brain tumors with limited treatment options.
- Retinoids, including retinoic acid (RA), show potential antitumor effects, but their role in MB cell cycle arrest is unclear.
Purpose of the Study:
- To investigate the role of retinoids in inducing cell-cycle arrest in medulloblastoma cells.
- To determine if all-trans-retinoic acid (ATRA) can cause cell cycle arrest in MB cell lines.
Main Methods:
- Treatment of three MB cell lines (DAOY, D283, D341) with ATRA.
- Evaluation of cell cycle phase distribution (G0/G1) and apoptosis.
- Analysis of gene expression for cell cycle regulators (CyclinD1, C-myc) and retinoid receptors (RARbeta).
Main Results:
- ATRA induced significant cell growth arrest in the DAOY MB cell line, not apoptosis.
- Cell cycle arrest in DAOY cells was associated with decreased expression of CyclinD1 and C-myc.
- Retinoic acid receptor beta (RARbeta) expression was induced by RA in DAOY cells, suggesting its involvement.
Conclusions:
- Retinoids, specifically ATRA, can induce cell cycle arrest in vitro in the DAOY medulloblastoma cell line.
- This cell cycle arrest mechanism in DAOY cells appears to involve the inhibition of CyclinD1 and C-myc.
- Further research into retinoids as potential therapeutic agents for medulloblastoma is warranted.
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