A bridge too far: Identification of bridge cell states as drivers of plasticity in neuroblastoma.
Journal articles
- Journal Article
Earnest-Noble, LB; Goldstein, BJ
Published in: Dev Cell
September 8, 2025
Understanding tumor cell plasticity, a potential mechanism driving therapeutic resistance in many cancers, represents a key oncologic challenge. In this issue of Developmental Cell, Xu et al. leverage neuroblastoma as a tractable model for exploring mechanisms of tumor plasticity and provide key insights into drivers of tumor cell states.
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Published In
Dev Cell
DOI
EISSN
1878-1551
Publication Date
September 8, 2025
Volume
60
Issue
17
Start / End Page
2211 / 2212
Location
United States
Related Subject Headings
- Neuroblastoma
- Humans
- Developmental Biology
- Cell Plasticity
- Animals
- 3101 Biochemistry and cell biology
Citation
APA
Chicago
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Earnest-Noble, L. B., & Goldstein, B. J. (2025). A bridge too far: Identification of bridge cell states as drivers of plasticity in neuroblastoma. Dev Cell, 60(17), 2211–2212. https://doi.org/10.1016/j.devcel.2025.06.010
Earnest-Noble, Lisa B., and Bradley J. Goldstein. “A bridge too far: Identification of bridge cell states as drivers of plasticity in neuroblastoma.” Dev Cell 60, no. 17 (September 8, 2025): 2211–12. https://doi.org/10.1016/j.devcel.2025.06.010.
Earnest-Noble LB, Goldstein BJ. A bridge too far: Identification of bridge cell states as drivers of plasticity in neuroblastoma. Dev Cell. 2025 Sep 8;60(17):2211–2.
Earnest-Noble, Lisa B., and Bradley J. Goldstein. “A bridge too far: Identification of bridge cell states as drivers of plasticity in neuroblastoma.” Dev Cell, vol. 60, no. 17, Sept. 2025, pp. 2211–12. Pubmed, doi:10.1016/j.devcel.2025.06.010.
Earnest-Noble LB, Goldstein BJ. A bridge too far: Identification of bridge cell states as drivers of plasticity in neuroblastoma. Dev Cell. 2025 Sep 8;60(17):2211–2212.
Published In
Dev Cell
DOI
EISSN
1878-1551
Publication Date
September 8, 2025
Volume
60
Issue
17
Start / End Page
2211 / 2212
Location
United States
Related Subject Headings
- Neuroblastoma
- Humans
- Developmental Biology
- Cell Plasticity
- Animals
- 3101 Biochemistry and cell biology