Identifying drivers of metastasis; towards a systematic approach
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Summary
To control metastasis in patients necessitates an understanding of the biological drivers of metastasis, and presently specific molecular drivers of tumour dissemination largely remain unidentified.
- Type
- article
- Published
- 2017-10-13
- Cited by
- 6
- References
- 22
- OpenAlex
- https://openalex.org/W2764246122
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:80507843
Keywords
Metastasis, Cancer metastasis, Cancer, Medicine, Oncology
References
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- From melanocytes to melanomas
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- The genomic landscape and evolution of endometrial carcinoma progression and abdominopelvic metastasis
- Integrative analysis of mutational and transcriptional profiles reveals driver mutations of metastatic breast cancers
- An Osteopontin/CD44 axis in RhoGDI2-mediated metastasis suppression
- Epigenetic determinants of metastasis
- Genome-wide methylation sequencing of paired primary and metastatic cell lines identifies common DNA methylation changes and a role for EBF3 as a candidate epigenetic driver of melanoma metastasis
- Targeted agents and immunotherapies: optimizing outcomes in melanoma
- A systems biology approach identifies FUT8 as a driver of melanoma metastasis
- Whole body imaging of lymphovascular niches identifies premetastatic roles of MIDKINE
Cited by
- Investigating the Roles of Fucosylation and Calcium Signaling in Melanoma Invasion
- The Diverse Contributions of Fucose Linkages in Cancer
- Ratio of Salivary Sialic Acid to Fucose as Tumor Markers in Potentially Malignant Disorders and Oral Cancer
- Surface glycan targeting for cancer nano-immunotherapy.
- Impad1 and Syt11 work in an epistatic pathway that regulates EMT-mediated vesicular trafficking to drive lung cancer invasion and metastasis
- The Anticancer Activity of Monosaccharides: Perspectives and Outlooks
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