| Literature DB >> 18826577 |
Hironao Yasuoka1, Rieko Kodama, Mitsuyoshi Hirokawa, Yuuki Takamura, Akira Miyauchi, Tokio Sanke, Yasushi Nakamura.
Abstract
BACKGROUND: Metastasis to regional lymph nodes is a common step in the progression of cancer. Recent evidence suggests that tumor production of CXCR4 promotes lymph node metastasis. Nitric oxide (NO) may also increase metastatic ability in human cancers.Entities:
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Year: 2008 PMID: 18826577 PMCID: PMC2572635 DOI: 10.1186/1471-2407-8-274
Source DB: PubMed Journal: BMC Cancer ISSN: 1471-2407 Impact factor: 4.430
Clinico-pathological data for 56 papillary thyroid carcinoma cases and relationship between CXCR4 expression and covariates
| Factors | CXCR4 expression | |||
| Negative | Positive | |||
| Age | <45 | 10 | 11 | 0.4009 |
| ≧45 | 12 | 23 | ||
| Sex | Male | 4 | 3 | 0.4149 |
| Female | 18 | 31 | ||
| Histology | Well Diff. | 20 | 29 | 0.1989 |
| Follicular variant | 2 | 2 | ||
| Poorly Diff. | 0 | 3 | ||
| Tumor size | pT1 | 1 | 6 | 0.1585 |
| pT2 | 16 | 21 | ||
| pT3 | 3 | 1 | ||
| pT4 | 2 | 6 | ||
| Lymph node Metastasis | pN0 | 10 | 4 | 0.0116 |
| pN1a | 3 | 12 | ||
| pN1b | 9 | 18 | ||
| Nitrotyrosine Levels | Low grade | 19 | 8 | <0.001 |
| High grade | 3 | 26 | ||
*Tumor size, lymph node metastasis, and distant metastasis were classified according to the TNM classification of the UICC, 2002
*Fisher's exact test was used to examine the association between CXCR4 expression and covariates.
*Diff.: Differentiated
Figure 1Effects of NO on CXCR4 expression. Effects of DETA NONOate in the presence or absence of L-NAME on (A) nitrate/nitrite production, (B) CXCR4 mRNA expression, and (C) CXCR4 protein expression. K1 and B-CPAP cells were treated with 1 mM DETA NONOate in the presence or absence of L-NAME for various time periods and prepared for (A) measurement of nitrate/nitrite production, (B) real-time RT-PCR analysis, and (C) western blot analysis, as described in Materials and Methods. Determinations were performed in triplicate and expressed as mean of three experiments ± SE. (A) Control indicates cells with no treatment. (B-C) Data was expressed as ratio of mRNA or protein levels relative to control (untreated) cells. * indicates significant difference (p < 0.05) from control and/or L-NAME-treated cells.
Figure 2CXCL12 induced the chemoinvasion of papillary thyroid cancer cells. Cells were seeded into the upper compartments of Matrigel Invasion Chambers as described in Materials and Methods. Uncoated or Matrigel-coated membranes separated the upper compartments from lower compartments containing the indicated concentrations of CXCL12. Cells were treated with DETA NONOate with or without L-NAME. Two days later, cells that had migrated to the bottom of the membrane were stained and counted. The percentage of invasive cells (% Invasion) was calculated as the number of cells penetrating the Matrigel-coated membranes divided by the number penetrating the uncoated membranes. Determinations were performed in triplicate and expressed as mean of three experiments ± SE. * indicates significant difference (p < 0.05) from L-NAME-treated cells.
Figure 3CXCR4 expression in human papillary thyroid carcinoma tissue. (A) immunohistochemical localization of CXCR4 protein was cytoplasmic. (B) In some cases carcinoma cells showed positive staining in the membrane. (C) In the tumor in which CXCR4 immunodetection are unreactive, staining for CXCR4 occurred in inflammatory cells.