reviewTop 1% cited
The pleiotropic effects of the SDF-1–CXCR4 axis in organogenesis, regeneration and tumorigenesis
Leukemia · 2006 · Vol. 20(11) · pp. 1915–1924
Mariusz Z. Ratajczak✉(University of Louisville)Ewa Zuba‐Surma(University of Louisville)Magda Kucia(University of Louisville)Ryan Reca(University of Louisville)Wojciech Wojakowski(Górnośląska Wyższa Szkoła Handlowa im. Wojciecha Korfantego)Janina Ratajczak(University of Louisville)
Chemokine receptors and signalingCancer Cells and MetastasisLiver physiology and pathologyBiologyCXCR4Homing (biology)Embryonic stem cellStem cellCell biologyStromal cellCancer researchInduced pluripotent stem cellCancer stem cell
MeSH terms
AnimalsHumansNeoplasmsRegenerationReceptors, CXCR4Chemokines, CXCOrganogenesisChemokine CXCL12
Funding
- China Scholarship Council
- National Institutes of Health
Citations
421
FWCI
13.03
field-weighted impact
References
138
Percentile
99%
vs. same field & year
Citations per year
Cited by
CXCL12 (SDF-1)/CXCR4 Pathway in Cancer
Clinical Cancer Research · 2010 · 1,452 citations
References
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Trafficking of Normal Stem Cells and Metastasis of Cancer Stem Cells Involve Similar Mechanisms: Pivotal Role of the SDF‐1–CXCR4 Axis
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Nature reviews. Cancer · 2005 · 3,647 citations
Expression of CXCR4 and CXCL12 (SDF‐1) in human prostate cancers (PCa) in vivo
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Nature · 2001 · 9,682 citations
G-CSF induces stem cell mobilization by decreasing bone marrow SDF-1 and up-regulating CXCR4
Nature Immunology · 2002 · 1,329 citations
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