| Literature DB >> 20860816 |
Sandra Waalkes1, Faranaz Atschekzei, Mario W Kramer, Jörg Hennenlotter, Gesa Vetter, Jan U Becker, Arnulf Stenzl, Axel S Merseburger, Andres J Schrader, Markus A Kuczyk, Jürgen Serth.
Abstract
BACKGROUND: Fibronectin 1 (FN1) is a glycoprotein involved in cellular adhesion and migration processes. The aim of this study was to elucidate the role of FN1 in development of renal cell cancer (RCC) and to determine a prognostic relevance for optimal clinical management.Entities:
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Year: 2010 PMID: 20860816 PMCID: PMC2949811 DOI: 10.1186/1471-2407-10-503
Source DB: PubMed Journal: BMC Cancer ISSN: 1471-2407 Impact factor: 4.430
Clinical and histopathological data of patients with renal cell cancer
| Clinico-pathological parameters | Number of patients | % |
|---|---|---|
| Total | 109 | 100 |
| Age (mean; ± SD) | 63 ± 11.9 | |
| male | 70 | 64.2 |
| female | 39 | 35.8 |
| Side | ||
| left | 49 | 45 |
| right | 60 | 55 |
| Surgery | ||
| PN | 27 | 24.8 |
| RN | 82 | 75.2 |
| Histology | ||
| clear cell | 78 | 71.6 |
| papillary | 22 | 20.2 |
| chromophobe | 2 | 1.8 |
| other/not classified | 7 | 6.4 |
| Stage | ||
| pT1a | 34 | 31.2 |
| pT1b | 30 | 27.5 |
| pT2 | 5 | 4.6 |
| pT3a | 13 | 11.9 |
| pT3b/c | 27 | 24.8 |
| pT4 | 0 | 0 |
| LN metastasis 1 | 11 | 10.1 |
| Pulmonal/visceral | 23 | 21.1 |
| Advanced/metastatic disease (pT3-4 and/or N/M+) | 48 | 44.0 |
| Grade | ||
| G1 | 18 | 16.5 |
| G1-2 | 15 | 13.8 |
| G2 | 58 | 53.2 |
| G2-3 | 7 | 6.4 |
| G3 | 11 | 10.1 |
1 at time of renal surgery;
Abbreviations: SD = standard deviation, PN = partial nephrectomy, RN = radical nephrectomy, LN = lymph node.
Figure 1Bean plot analysis of relative . Bean plots represent an alternative to boxplots. The individual observations are shown as small lines in a one-dimensional scatter plot, the estimated density of the distributions is visible and the average is shown. Mean tissue specific FN1 mRNA expression was increased approx. 7 fold in RCC compared to corresponding normal renal tissue (p < 0.001) and oncocytoma (p = 0.016). There was no significant difference in FN1 expression between normal renal tissue and oncocytoma. Abbreviations: FN1RQ = Relative quantity of FN1 mRNA expression analysis using RPTEC primary cells as a biological calibrator; normal = normal renal tissue; Oncocyt = oncocytoma.
FN1 mRNA expression in normal renal tissue, RCC and oncocytoma
| Tissue | Number of tissues | FN1RQ |
|---|---|---|
| Normal | 86 | 0.0118 |
| RCC | 109 | 0.0821 |
| Oncocytoma | 17 | 0.0117 |
| Total | 212 | |
Abbreviations: FN1RQ = Relative quantity of FN1 mRNA expression.
Figure 2. Mean tissue specific FN1 expression was increased approx. 11 fold in clear cell RCC compared to papillary RCC (p < 0.001).
Abbreviations: FN1RQ = Relative quantity of FN1 mRNA expression analysis using RPTEC primary cells as a biological calibrator; ccRCC = clear cell RCC; pRCC = papillary RCC.
Figure 3Bean plot analysis of stage specific Expression: . Abbreviations: FN1RQ = Relative quantity of FN1 mRNA expression analysis using RPTEC primary cells as a biological calibrator; normal = normal renal tissue; local = organ-confined RCC; advanced = advanced RCC.
Figure 4Progression specific Expression in papillary RCC: higher . Abbreviations: FN1RQ = Relative quantity of FN1 mRNA expression analysis using RPTEC primary cells as a biological calibrator; local = organ-confined RCC; advanced = advanced RCC.
Figure 5Bean plot analysis of sage specific Expression in clear cell RCC: no significant difference in FN1 mRNA expression between organ-confined (pT ≤ 2 and N0/M0) and advanced (pT≥3 and/or N+/M+) RCC. Abbreviations: FN1RQ = Relative quantity of FN1 mRNA expression analysis using RPTEC primary cells as a biological calibrator; local = organ-confined RCC; advanced = advanced RCC.