RRC ID 43499
著者 Imai M, Muraki M, Takamatsu K, Saito H, Seiki M, Takahashi Y.
タイトル Spontaneous transformation of human granulosa cell tumours into an aggressive phenotype: a metastasis model cell line.
ジャーナル BMC Cancer
Abstract BACKGROUND:Granulosa cell tumours (GCTs) are frequently seen in menopausal women and are relatively indolent. Although the physiological properties of normal granulosa cells have been studied extensively, little is known about the molecular mechanism of GCT progression. Here, we characterise the unique behavioural properties of a granulosa tumour cell line, KGN cells, for the molecular analysis of GCT progression.
METHODS:Population doubling was carried out to examine the proliferation capacity of KGN cells. Moreover, the invasive capacity of these cells was determined using the in vitro invasion assay. The expression level of tumour markers in KGN cells at different passages was then determined by Western blot analysis. Finally, the growth and metastasis of KGN cells injected subcutaneously (s.c.) into nude mice was observed 3 months after injection.
RESULTS:During in vitro culture, the advanced passage KGN cells grew 2-fold faster than the early passage cells, as determined by the population doubling assay. Moreover, we found that the advanced passage cells were 2-fold more invasive than the early passage cells. The expression pattern of tumour markers, such as p53, osteopontin, BAX and BAG-1, supported the notion that with passage, KGN cells became more aggressive. Strikingly, KGN cells at both early and advanced passages metastasized to the bowel when injected s.c. into nude mice. In addition, more tumour nodules were formed when the advanced passage cells were implanted.
CONCLUSION:KGN cells cultured in vitro acquire an aggressive phenotype, which was confirmed by the analysis of cellular activities and the expression of biomarkers. Interestingly, KGN cells injected s.c. are metastatic with nodule formation occurring mostly in the bowel. Thus, this cell line is a good model for analysing GCT progression and the mechanism of metastasis in vivo.
巻・号 8
ページ 319
公開日 2008-11-4
DOI 10.1186/1471-2407-8-319
PII 1471-2407-8-319
PMID 18980698
PMC PMC2584659
MeSH Animals Biomarkers, Tumor / biosynthesis Cell Growth Processes / physiology Cell Line, Tumor Disease Progression Female Granulosa Cell Tumor / metabolism Granulosa Cell Tumor / pathology* Humans Mice Mice, Inbred BALB C Mice, Nude Mitomycin / pharmacology Neoplasm Invasiveness Neoplasm Metastasis Neoplasm Transplantation Ovarian Neoplasms / metabolism Ovarian Neoplasms / pathology* Transplantation, Heterologous
IF 3.15
引用数 10
WOS 分野 ONCOLOGY
リソース情報
ヒト・動物細胞 KGN(RCB1154)