Home LiteratureArticle Details
PMID: 18071913 Published · ppublish English Journal Article

Inhibition of the CXCR4/CXCL12 chemokine pathway reduces the development of murine pulmonary metastases.

Clinical & experimental metastasis ·Vol. 25 ·No. 3 ·2008-00-00 ·Pages 201-11

Kim SY, Lee CH, Midura BV, Yeung C, Mendoza A, Hong SH, Ren L, Wong D, Korz W, Merzouk A, Salari H, Zhang H, Hwang ST, Khanna C, Helman LJ

Abstract

Metastasis continues to be the leading cause of mortality for patients with cancer. High expression of the chemokine receptor CXCR4 correlates with poor prognosis in many cancers, including osteosarcoma and melanoma. CXCL12, the ligand for CXCR4, is expressed at high levels in the lung and lymph node, which are the primary sites to which these tumors metastasize respectively. These findings suggest that therapy aimed at disruption of this specific receptor/ligand complex may lead to a decrease in metastases. CTCE-9908, a small peptide CXCR4 antagonist was utilized in two murine metastasis models to test this hypothesis. Treatment of osteosarcoma cells in vitro with CTCE-9908 led to the following changes: decreased adhesion, decreased migration, decreased invasion, and decreased growth rate. Following tail vein injection of osteosarcoma cells, mice that were treated with CTCE-9908 had a 50% reduction in the number of gross metastatic lung nodules and a marked decrease in micro-metastatic disease. Similar findings were observed following injection of melanoma cells and treatment with CTCE-9908. However, these results could only be consistently reproduced when the cells were pre-treated with the inhibitor. A novel ex vivo luciferase assay showed decreased numbers of cells in the lung immediately after injection into mice, when treated with CTCE-9908, suggesting the importance of interactions between the receptor and the ligand. Our findings show that inhibition of the CXCR4/CXCL12 pathway decreases metastatic disease in two murine tumor models and expands on previous reports to describe potential mechanisms of action.

MeSH Terms
Animals Blotting, Western Cell Adhesion/drug effects,physiology Cell Movement Cell Proliferation Chemokine CXCL12/antagonists & inhibitors,metabolism Cytoskeleton Female Lung Neoplasms/prevention & control,secondary Lymphatic Metastasis Melanoma/prevention & control,secondary Mice Mice, Inbred BALB C Neoplasm Invasiveness Osteosarcoma/prevention & control,secondary Peptide Fragments/pharmacology Peptides/therapeutic use RNA, Messenger/genetics,metabolism Receptors, CXCR4/antagonists & inhibitors,metabolism Reverse Transcriptase Polymerase Chain Reaction Signal Transduction/drug effects Tumor Cells, Cultured
Chemicals
CTCE-9908 CXCL12 protein, human CXCR4 protein, human CXCR4 protein, mouse Chemokine CXCL12 Cxcl12 protein, mouse Peptide Fragments Peptides RNA, Messenger Receptors, CXCR4
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Kim Su Young
Pediatric Oncology Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Lee Chih Hung
Midura Brieanne V
Yeung Choh
Mendoza Arnulfo
Hong Sung Hyeok
Ren Ling
Wong Donald
Korz Walter
Merzouk Ahmed
Salari Hassan
Zhang Hong
Hwang Sam T
Khanna Chand
Helman Lee J
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Article Info
Journal
Clinical & experimental metastasis
Abbr.
Clin Exp Metastasis
ISSN
0262-0898
Published
2008-00-00
Epub
2007-00-11
Pages
201-11
Language
English
Region
Netherlands
NLM ID
8409970
PMCID
PMC2730112
Subset
IM
Grants
Intramural NIH HHS · Z99 CA999999 · United States
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