How Schwann cells facilitate cancer progression in nerves
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Summary
The Schwann cells enable cancer progression by adopting a de-differentiated phenotype, similar to the Schwann cell response to nerve trauma, which is essential to design strategies to inhibit tumor progression.
- Type
- article
- Published
- 2017-06-19
- Cited by
- 101
- References
- 152
- OpenAlex
- https://openalex.org/W28631007
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25007624
Keywords
Business
References
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- MIF promotes perineural invasion through EMT in salivary adenoid cystic carcinoma
- Perineural Invasion Assessed by Galanin and Protein Gene Product 9.5 in Oral Squamous Cell Carcinoma
- Reciprocal interactions between cancer and Schwann cells contribute to oral cancer progression and pain
- Melanoma-induced reprogramming of Schwann cell signaling aids tumor growth
- Nerves and Pancreatic Cancer: New Insights into A Dangerous Relationship
- Inhibition of tropomyosine receptor kinase B on the migration of human Schwann cell and dispersion of oral tongue squamous cell carcinoma in vitro
- IcarisideII facilitates the differentiation of ADSCs to SCs via let-7i/STAT3 axis to preserve erectile function
- Immunomodulation by Schwann cells in disease
- Modulation of BDNF–TRKB Interactions on Schwann Cell-induced Oral Squamous Cell Carcinoma Dispersion In Vitro
- Ping-Pong—Tumor and Host in Pancreatic Cancer Progression
- Schwann cell reprogramming and lung cancer progression: a meta-analysis of transcriptome data
- Perineural invasion in head and neck squamous cell carcinoma: background, mechanisms, and prognostic implications.
- Schwann cell plasticity regulates neuroblastic tumor cell differentiation via epidermal growth factor-like protein 8
- Tumor-neuroglia interaction promotes pancreatic cancer metastasis
- Automated image analysis of stained cytospins to quantify Schwann cell purity and proliferation
- The biology and engineered modeling strategies of cancer-nerve crosstalk.
- Novel Glial Cell Functions: Extensive Potency, Stem Cell-Like Properties, and Participation in Regeneration and Transdifferentiation
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