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Updated: Nov 8, 2025

Isolation, Enrichment, and Maintenance of Medulloblastoma Stem Cells
Published on: September 1, 2010
Surviving Inhibition Induces Cell Cycle Arrest and Disrupts Multipotency in Haemangioma Stem Cells
Objective:
To explore the potential therapies for infantile haemangiomas by targeting survivin, a member of the inhibitor of apoptosis protein family, using its specific small molecule inhibitor YM155.
Methods:
The expression of survivin in human haemangioma tissue was explored using immunohistochemistry and immunohistofluorescence. Cell cycle analysis and EdU assays were used to measure cell proliferation. Heochst33342 and Annexin V/PI double staining were performed to measure cell apoptosis. The capacity for self-renewal and multilineage differentiation potential of haemangioma stem cells (HemSCs) were measured by clone formation assays and multiple differentiation assays. Murine haemangioma models were established to explore the therapeutic efficacy of YM155 in vivo.
Results:
Strong staining of survivin in stromal cells was observed in the proliferative haemangioma tissue. In vitro studies demonstrated that YM155 induced cell cycle arrest and proliferation suppression of HemSCs, and also caused cell apoptosis at a higher concentration. YM155 impaired the self-renewal capacities and damaged multiple differentiation potentials of HemSCs. Importantly, YM155 suppressed blood vessel formation and cell proliferation, and induced cell apoptosis in murine haemangioma models.
Conclusion:
The present study demonstrated that targeting survivin using its specific suppressant, YM155, prevented the progression of infantile haemangioma by suppressing cell proliferation, inducing cell apoptosis and disrupting the differentiation potential of HemSCs. These results indicate a novel and promising therapeutic approach for the treatment of infantile haemangioma.
Insights
YM155, a survivin inhibitor, effectively treats infantile haemangiomas by reducing cell proliferation and promoting apoptosis. This novel therapy targets haemangioma stem cells, offering a promising treatment for this common condition.
Area of Science:
- Oncology
- Developmental Biology
- Pharmacology
Background:
- Infantile haemangiomas (IH) are common benign vascular tumors.
- Survivin, an inhibitor of apoptosis protein, is upregulated in IH.
- Targeting survivin presents a potential therapeutic strategy for IH.
Purpose of the Study:
- To investigate the efficacy of YM155, a small molecule inhibitor of survivin, in treating infantile haemangiomas.
- To explore the effects of YM155 on haemangioma stem cells (HemSCs) in vitro and in vivo.
Main Methods:
- Immunohistochemistry and immunohistofluorescence to assess survivin expression in IH tissue.
- In vitro assays (cell cycle, EdU, apoptosis, clone formation, differentiation) to evaluate YM155 effects on HemSCs.
- In vivo studies using murine haemangioma models to determine YM155 therapeutic efficacy.
Main Results:
- Survivin was highly expressed in proliferative IH tissue.
- YM155 induced cell cycle arrest, suppressed proliferation, and promoted apoptosis in HemSCs.
- YM155 impaired HemSC self-renewal and differentiation potential.
- In vivo, YM155 inhibited angiogenesis, reduced proliferation, and induced apoptosis in haemangioma models.
Conclusions:
- Targeting survivin with YM155 is a promising therapeutic approach for infantile haemangiomas.
- YM155 effectively inhibits IH progression by modulating HemSC behavior and tumor microenvironment.
- Further clinical investigation of YM155 for IH treatment is warranted.
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