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Biomedical subjects

Johji Inazawa

Publications and source records attributed to Johji Inazawa.

At least 55 records · Page 3Linked to original sources

Overexpression of PDZK1 within the 1q12-q22 amplicon is likely to be associated with drug-resistance phenotype in multiple myeloma.

We investigated DNA copy number aberrations in 37 cell lines derived from multiple myelomas (MMs) using comparative genomic hybridization, and 11 (29.7%) showed high-level gain indicative of gene amplification at 1q12-q22. A corresponding transcriptional mapping using oligonucleotide arrays extracted three up-regulated genes (IRTA2, PDZK1, and S100A6) within the smallest region of overlapping in amplifications. Among them PDZK1 showed amplification and consequent overexpression in the MM cell lines. Amplification of PDZK1 was observed in primary cases of MM as well. MM cell lines with amplification of PDZK1 exhibited the resistance to melphalan-, cis-platin-, and vincristin-induced cell death compared with MM cell lines without its amplifications. Furthermore, down-regulation of PDZK1 with an anti-sense oligonucleotide sensitized a cell line KMS-11 to melphalan, cis-platin, and vincristin. Taken together, our results indicate that PDZK1 is likely to be one of targets for 1q12-q22 amplification in MM and may be associated with the malignant phenotype, including drug resistance, in this type of tumor.

Antineoplastic Agents↗

Amplification and overexpression of SKP2 are associated with metastasis of non-small-cell lung cancers to lymph nodes.

SKP2, an F-box protein constituting the substrate recognition subunit of the SCF(SKP2) ubiquitin ligase complex, is implicated in ubiquitin-mediated degradation of the cyclin-dependent kinase inhibitor p27(KIP1). Our earlier studies revealed SKP2 as a target gene within the 5p13 amplicon that is often seen in small-cell lung cancers. In the present study we examined amplification status and expression levels of SKP2 in non-small-cell lung cancer (NSCLC) and investigated its clinicopathological significance in this type of tumor because amplification of DNA at 5p13 is observed frequently in NSCLCs as well as in small-cell lung cancers. SKP2 exhibited amplification in 5 (20%) of 25 cell lines derived from NSCLC, and the transcript was overexpressed in 11 (44%) of the 25 lines. Moreover, expression of SKP2 was up-regulated significantly in 60 primary NSCLC tumors as compared to nontumorous lung tissues (P < 0.0001). Elevated expression of SKP2 correlated significantly with positive lymph node metastasis (P = 0.007), with stage II or higher of the international TNM classification (P = 0.014), with poor or moderate differentiation (P < 0.001), and with the presence of squamous cell carcinoma (P = 0.037). Reduction of SKP2 expression by transfection of an anti-sense oligonucleotide inhibited invasion and migration of NSCLC cells in culture. Our results suggest that SKP2 may be involved in progression of NSCLC, and that targeting this molecule could represent a promising therapeutic option.

Blotting, Western↗

Comparative genomic hybridization (CGH)-arrays pave the way for identification of novel cancer-related genes.

Comparative genomic hybridization (CGH) has already made a significant impact on cancer cytogenetics. However, CGH to metaphase chromosomes can provide only limited resolution at the 5-10 Mb level. To circumvent this limitation, array-based CGH has been devised. Since spotted DNAs in a CGH-array contain sequence information directly connected with the genome database, we can easily note particular biological aspects of genes that lie within regions involved in copy-number aberrations. High-density, sub-megabase arrays can reveal nonrandom chromosome copy-number aberrations responsible for neoplastic transformation that have been masked under complex karyotypes in epithelial solid tumors. High-density CGH-array therefore paves the way for identification of disease-related genetic aberrations that have not yet been detected by existing technologies, and array-based CGH technology should soon be practical for diagnosis of cancer or genetic diseases in the clinical setting.

Chromosome Aberrations↗

Skp2 overexpression is a p27Kip1-independent predictor of poor prognosis in patients with biliary tract cancers.

To better understand the pathogenesis of biliary tract carcinoma (BTC) and to increase the accuracy of predicting outcomes for patients with this disease, we performed molecular cytogenetic analyses of BTC cell lines and tumors to identify non-random amplification(s) and target gene(s) within the amplicons. Among several non random chromosomal aberrations detected in BTC cell lines by comparative genomic hybridization, gain/ampli-fication of DNA at 5p was the most frequently observed alteration. We assessed the copy number and expression status of the possible target gene SKP2 for 5p amplification in cell lines and 33 primary stage II or III tumors of BTC. SKP2 was amplified, and subsequently overexpressed in both cell lines and primary tumors of BTC. However, levels of Skp2 and p27Kip1 proteins were not correlated inversely. Heightened expression of Skp2 and reduced expression of p27Kip1 were both associated with a shorter disease-free and/or overall survival in univariate analyses. In multivariate regression analyses, Skp2 and p27Kip1 were independent predictive factors. Those results suggest that (a) overexpression of Skp2 through an amplification mechanism may contribute to the progression of BTC, (b) not only each molecule, but also the combination of Skp2 and p27Kip1, might be a useful predictor of the prognosis of BTC, and (c) molecular targets of Skp2 other than p27Kip1 may also be important factors in the pathogenesis of this disease.

Aged↗

Identification of a novel fusion gene in a pre-B acute lymphoblastic leukemia with t(1;19)(q23;p13).

The most common nonrandom translocation found among childhood pre-B acute lymphoblastic leukemias (ALL) is t(1;19)(q23;p13), which frequently results in fusion of E2A with PBX1. However, rare cases of childhood ALL and various other hematological diseases with t(1;19) lack the E2A-PBX1 fusion. Analyzing a cell line with pre-B-cell phenotype, TS-2, that carries t(1;19)(q23;p13) but lacks the E2A-PBX1 fusion, we successfully cloned the breakpoints, which fell within introns of MEF2D and DAZAP1. Both chimeric transcripts, MEF2D-DAZAP1 and DAZAP1-MEF2D, whose sequences indicated in-frame fusions between MEF2D and DAZAP1, were expressed in TS-2 cells and in bone-marrow cells of the patient from whom the TS-2 was established. MEF2D-DAZAP1 and DAZAP1-MEF2D proteins were both located in the nucleus, and MEF2D-DAZAP1 was able to form dimers with MEF2D and HDAC4. In addition, exogenous expression of MEF2D-DAZAP1 and DAZAP1-MEF2D promoted the growth of HeLa cells. Given the frequency of t(1;19) without the E2A-PBX1 fusion in hematological malignancies, we suggest that MEF2D / DAZAP1 rearrangements might be involved in the pathogenesis of those diseases.

Child, Preschool↗

Association of over-expressed TFDP1 with progression of hepatocellular carcinomas.

DP-1 is a heterodimerization partner for members of the E2F family of transcription factors; E2F/DP-1 regulates the expression of various cellular promoters, particularly gene products that are involved in the cell cycle. Our earlier studies identified the DP-1 gene ( TFDP1) as a probable target within a 13q34 amplicon that is frequently detected in hepatocellular carcinomas (HCC) and esophageal squamous-cell carcinomas. The aim of the present study was to investigate the clinicopathological significance of up-regulation of TFDP1 in HCC. We determined expression levels of TFDP1 and E2F1 in 41 primary HCCs by means of quantitative real-time reverse transcription-polymerase chain reactions, and looked for relationships between those data and various clinicopathological parameters. To assess transactivating activity of E2F1/DP-1, we also analyzed expression of ten putative transcriptional targets of this complex in HCCs. Using antisense oligonucleotides, we down-regulated TFDP1 in Hep3B, an HCC cell line that had shown overexpression of the gene, to examine the role of elevated TFDP1 expression in the growth of Hep3B cells. Elevated expression of TFDP1, but not E2F1, was associated significantly with large (> or =5 cm) tumor size (P=0.021). Expression levels of TFDP1 and E2F1 correlated with those of seven transcriptional targets ( TYMS, DHFR, PCNA, RRM1, CCNE1, CDC2, and MYBL2) that play important roles in the G1/S transition, and down-regulation of TFDP1 inhibited growth of Hep3B cells. In conclusion, overexpression of TFDP1 may contribute to progression of some HCCs by promoting growth of the tumor cells.

Carcinoma, Hepatocellular↗

Unfavorable prognostic factors associated with high frequency of microsatellite instability and comparative genomic hybridization analysis in endometrial cancer.

PURPOSE: Although many articles have been published regarding chromosomal instability (CI) and microsatellite instability (MI) in endometrial adenocarcinoma, the relationship between prognostic factors and the biological mechanisms accounting for genetic instability in these tumors has not yet been precisely defined. To do that, it will be necessary to clarify the molecular mechanisms involved in endometrial carcinogenesis. EXPERIMENTAL DESIGN: Tissue samples from 43 human primary endometrioid endometrial adenocarcinomas (EACs) were analyzed for CI and MI status using comparative genomic hybridization and 11 microsatellite loci, respectively. Methylation status of the promoter of MLH1 was also determined. We analyzed all three of these parameters in relation to each other and to clinicopathological factors. RESULTS: Sixty-five percent of the EACs we examined had detectable CI. Frequent copy number gains were seen at 1q25-41 (23%), 8q11.1-q21.1 (23%), 8q21.3-qter (21%); 28% of these tumors exhibited high-frequency MI (MSI-H); Methylation of the MLH1 promoter was observed in 92% of EACs with MSI-H. Southern blotting showed amplification of MYCN in one tumor, which has been documented for the first time in a primary human EAC. CONCLUSIONS: MSI-H was correlated with histological grade, International Federation of Gynecologists and Obstetricians (FIGO) stage, myometrial invasion, and lymphonode metastasis. Our comparative genomic hybridization results demonstrated that the number of chromosomes involved in genomic alterations in EACs was distinctively fewer than those in other types of tumor. The carcinogenetic process leading to EAC appears to be highly complex; for example, MI and CI may act synergistically, whereas CI and/or MI are likely to be linked with tumor heterogeneity.

Adaptor Proteins, Signal Transducing↗

TERC identified as a probable target within the 3q26 amplicon that is detected frequently in non-small cell lung cancers.

PURPOSE: Cell lines derived from non-small cell lung cancers (NSCLCs) revealed frequent high-level gains of chromosomal DNA at 3q23-q29 when examined by comparative genomic hybridization (CGH). Within this amplicon, a minimal common region of amplification in lung tumors had been mapped to 3q26 by earlier studies. The aim of the present work was to identify specific targets of the 3q26 amplification in NSCLCs. EXPERIMENTAL DESIGN: We examined genomic alterations in 19 NSCLC cell lines (10 derived from squamous cell carcinomas and 9 from adenocarcinomas) by using CGH and fluorescence in situ hybridization. We determined amplification and expression levels of four candidates (EVI1, TERC, SNO, and PIK3CA) in those cell lines and also in 25 primary NSCLC tumors. Because the TERC gene encodes the RNA component of human telomerase, we examined telomerase activity by the telomeric repeat amplification protocol (TRAP) assay. RESULTS: Copy numbers of EVI1 and TERC increased more than those of SNO and PIK3CA in our panel of NSCLC cell lines. Significant correlation between amplification and expression levels was observed only for TERC (P = 0.006), however, among these four candidate genes. Expression of TERC was also up-regulated in 24 (96%) of 25 primary NSCLC tumors compared with their nontumorous counterparts (P = 0.0001), and elevated expression of TERC was associated with high levels of telomerase activity (P = 0.048). CONCLUSIONS: TERC is a likely target of the 3q26 amplification, and, therefore, may be a useful biomarker for diagnosis and an attractive, novel target for molecular therapy of NSCLC.

Blotting, Northern↗

Identification of ZASC1 encoding a Krüppel-like zinc finger protein as a novel target for 3q26 amplification in esophageal squamous cell carcinomas.

Among the transcription factors that direct proliferation, differentiation, and death of cells, several Krüppel-like zinc finger molecules such as GLI1 and ZNF147 can become oncogenic when the genes encoding them are overexpressed by the DNA amplification mechanism. Here, we report the discovery of a novel member of this class, ZASC1, from a recently reported critical region of 3q26 amplification frequently observed in various squamous cell carcinomas, including esophageal squamous cell carcinomas (ESCs). The deduced 485-amino acid protein product of ZASC1 contained a putative nuclear localization signal; the exogenously transfected ZASC1 was translocated into cell nuclei. ZASC1 was frequently coamplified and subsequently overexpressed with PIK3CA in our panel of ESC cell lines and primary tumors. In patients with ESC, a higher mRNA expression level of ZASC1 appeared to be associated with shorter overall survival, and a multivariate analysis demonstrated that ZASC1 mRNA expression was an independent prognosticator. In addition, exogenous expression of ZASC1 promoted the growth of ESC cells, whereas down-regulation of ZASC1 expression by means of an antisense oligonucleotide suppressed the growth of ESC cells. Taken together, our results suggest that ZASC1 might be involved in the pathogenesis of ESC as one of the targets for 3q26 amplification, alone or in concert with other targets.

Aged↗

Elevated expression levels of NCOA3, TOP1, and TFAP2C in breast tumors as predictors of poor prognosis.

BACKGROUND: Amplification of DNA in certain chromosomal regions plays a crucial role in the development and progression of human malignancies, specifically when protooncogenic target genes within those amplicons are overexpressed. Comparative genomic hybridization studies have revealed frequent amplification at 20q in primary breast tumors. The aim of the current study was to identify specific genes in the 20q amplicon that were likely to have clinical significance. METHODS: The authors examined 38 primary breast tumors by using a quantitative real-time reverse transcription-polymerase chain reaction assay to determine expression levels of 18 potential targets for amplification events involving 20q. Potential correlations between elevated expression of the genes in question and clinicopathologic parameters or clinical outcomes were analyzed. RESULTS: Elevated expression of NABC1 was significantly associated with positive estrogen (P < 0.001) and progesterone (P = 0.027) receptors in breast tumors, and high expression of PTK6 was significantly correlated with positive estrogen receptor status (P = 0.022) and postmenopausal status (P = 0.008). Patients whose tumors showed elevated expression of NCOA3 (AIB1) had significantly shorter disease-free (P = 0.017) and overall (P = 0.0021) survival times after surgery than did other patients with breast tumors. Reduced disease-free survival, but not reduced overall survival, was associated with high expression of TOP1 (P = 0.035) and TFAP2C (P = 0.035). CONCLUSIONS: TOP1, TFAP2C, and (particularly) NCOA3 may be prognostic indicators for patients with breast tumors.

Acetyltransferases↗

Correlation between genetic alteration and long-term clinical outcome of patients with oligodendroglial tumors, with identification of a consistent region of deletion on chromosome arm 1p.

BACKGROUND: In oligodendroglial tumors, allelic losses on chromosome arms 1p and 19q are not only diagnostic molecular markers but also statistically significant predictors of both chemosensitivity and longer recurrence-free survival. In the current study, the authors attempted to analyze 21 patients genetically and clinically, with special emphasis on the correlation between genetic alterations and long-term therapeutic results. METHODS: The authors reviewed the clinical cases of 21 patients who had undergone surgery for oligodendroglial tumors (13 oligodendrogliomas, World Health Organization [WHO] Grade II; 3 anaplastic oligodendrogliomas, WHO Grade III; 3 oligoastrocytomas, WHO Grade II; and 2 anaplastic oligoastrocytomas, WHO Grade III). Genetic testing for 1p deletions was performed using fluorescence in situ hybridization, and testing for 1p, 17p, and 19q deletions was carried out by microsatellite analysis. Survival was analyzed with univariate and multivariate Cox regression models. In addition, a high-resolution deletion map of 1p, which led to the discovery of a new deleted region on 1p, was obtained. RESULTS: Statistical analysis revealed that both loss of 1p and loss of 19q independently and significantly predicted overall survival. A high-resolution deletion map, which displayed unusually narrow deletions, revealed a new region of deletion between D1S513 and D1S458 (1p34.3-36.11). CONCLUSIONS: One of the putative tumor suppressor loci exists more proximally than ever reported. Based on the observation that 1p and 19q deletions predicted survival, the authors suggest further use of diagnostic and prognostic genetic testing in the clinical setting.

Adolescent↗

GPC5 is a possible target for the 13q31-q32 amplification detected in lymphoma cell lines.

Comparative genomic hybridization (CGH) analyses have detected gains of copy number on 13q, especially at 13q31-q32, in cell lines and primary cases of various types of lymphoma. Since amplification of chromosomal DNA is one of the mechanisms that can activate tumor-associated genes, and because 13q amplification had been reported in various other types of tumors as well, we attempted to define by fluorescence in situ hybridization (FISH) a common region at 13q31-q32 in which to explore genes that might be targets for the amplification events. Although the commonly amplified region we defined was relatively large (approximately 4 Mb), only one true gene, GPC5, was found there. GPC5 was over-expressed in lymphoma cell lines that had shown amplification, in comparison with those that had not. Our findings suggest that GPC5 is a likely target for amplification, and that over-expression of this gene may contribute to development and/or progression of lymphomas and other tumors.

Cell Line, Tumor↗

PPM1D is a potential target for 17q gain in neuroblastoma.

Neuroblastomas (NBs) show complex patterns of genetic abnormalities, which may include amplification of the MYCN gene, deletion of 1p, or a gain of DNA at 17q, the last being the most frequent observation in NB tumors. However, the specific genes and the molecular mechanisms responsible for development and progression of NB remain poorly understood. We investigated aberrations of DNA copy number in 25 NB cell lines using comparative genomic hybridization and identified a minimal common region of gain at 17q23. Although gain of distal 17q is the most powerful genetic predictor of adverse outcome currently available for patients with NB, thus far, no potential target genes have been reported for that region. Therefore, we defined the 17q23 amplicon in detail and determined expression levels of 15 genes located within the smallest region of overlap observed among our NB cell lines to identify the most likely target gene(s). Among them, seven (CLTC, VMP1, delta-tubulin, RPS6KB1, FLJ22087, APPBP2, and PPM1D) were consistently overexpressed through increases in regional copy number. Analysis of expression levels of those seven genes in 32 primary NB tumors revealed a significant correlation between higher expression and poorer clinical outcome only with respect to PPM1D. Moreover, down-regulation of PPM1D by transfection of an antisense oligonucleotide suppressed the growth of NB cell lines to a remarkable degree, at least partly by participating in a process leading to apoptotic cell death. Taken together, our results indicate that PPM1D is the most likely target of the 17q23 gain/amplification in NB tumors and may have an important role in the pathogenesis of this disease.

Cell Death↗

A consistent region of deletion on 1p36 in meningiomas: identification and relation to malignant progression.

We analyzed the genetic aberrations on chromosome arms 1p, 10q, and 14q, which are thought to be loci that include putative tumor suppressor genes in meningiomas. We initially conducted molecular genetic testing on a total of 72 tumors including 15 atypical and 8 anaplastic meningiomas using double-target fluorescence in situ hybridization. An incidence of deletion of 1p was observed in 16.3% of histologically benign, 86.7% of atypical, and 87.5% of anaplastic meningiomas. Microsatellite analysis for loss of heterozygosity on 1p, 10q, and 14q was performed in 15 tumors (6 benign, 6 atypical, and 3 anaplastic meningiomas). We detected alimited deleted region on 1p36 in two tumors and suggest a new consistent region of deletion at 1p36.21 approximately p23 distal to D1S507 and proximal to D1S214, which spans 8.21 megabases. In addition, loss of 10q was detected in two of three secondary atypical meningiomas, and loss of 14q in two of three primary anaplastic meningiomas. We suggest that one of the putative suppressor genes is located at 1p36.21 approximately p23, and that 10q loss may contribute to the malignant progression from benign to atypical meningiomas.

Adult↗

Physical map and haplotype analysis of 16q-linked autosomal dominant cerebellar ataxia (ADCA) type III in Japan.

Autosomal dominant cerebellar ataxia (ADCA) is a group of heterogeneous neurodegenerative disorders. We previously mapped a gene locus for ADCA with pure cerebellar syndrome (ADCA type III) to a 3-cM region in chromosome 16q, and found a common haplotype among affected individuals. This region was exactly within the locus for another ADCA, spinocerebellar ataxia type 4 (SCA4). To identify the gene causing 16q-linked ADCA type III, we constructed a contig with 38 bacterial artificial chromosome clones between D16S3043 and D16S3095. The size of this contig was estimated to be 4.8 Mb. We found more than 500 nucleotide tandem repeats, including 9 CAG/CTG repeats in this candidate region, although none of the 94 tandem repeats analyzed were expanded in affected individuals. However, we found 11 new polymorphic markers, giving 22 markers spanning the candidate region. By typing these markers on eight Japanese families with ADCA type III, including two new families, we found that a common "founder" haplotype is seen in a more restricted 3.8-Mb region, spanning markers GGAA05 and D16S3095. We present here a newly refined critical interval of 16q-ADCA type III/SCA4. Data of 11 new DNA markers on 16q22.1 would also be useful for other research of genes mapped to this region.

Cerebellar Ataxia↗

PTK2 and EIF3S3 genes may be amplification targets at 8q23-q24 and are associated with large hepatocellular carcinomas.

We investigated 39 primary hepatocellular carcinomas (HCCs) for aberrations in DNA copy number, using comparative genomic hybridization (CGH). Gain of DNA at 8q was common in these tumors; high-level gains, indicative of gene amplification, occurred most frequently at 8q23-q24. Gains of 8q correlated with large (>5 cm) tumor size. To identify targets of the amplification events involving 8q, we determined expression levels of 14 candidate genes within that region in a total of 41 HCCs by means of real-time quantitative reverse-transcription polymerase chain reactions (RT-PCR). Significant correlation was found between elevated levels of expression and increases in copy number for PTK2 (located at 8q24.3) and EIF3S3 (at 8q23.3), but for none of the other candidates, which included MYC (8q24.1). Southern blot analyses confirmed that PTK2 and EIF3S3 were amplified, respectively, in 5 (19%) and 7 (26%) of the 27 tumors examined in accordance with expression patterns, an indication that expression of PTK2 and EIF3S3 was probably up-regulated by the amplification mechanism. When we analyzed potential relationships between elevated expression of PTK2 and EIF3S3 and clinicopathologic parameters, high expression of the 2 transcripts was significantly associated with large (>5 cm) tumor size and with hepatitis B virus (HBV) infection. In conclusion, PTK2 and EIF3S3, which, respectively, encode focal adhesion kinase and the p40 subunit of the eukaryotic initiation factor 3, were probable targets within the amplification at 8q23-q24 and may be involved in progression of HCC.

Carcinoma, Hepatocellular↗

Down-regulation of SKP2 induces apoptosis in lung-cancer cells.

S-Phase kinase associated protein 2 (SKP2), an F-box protein constituting the substrate-recognition subunit of the SCF(SKP2) ubiquitin ligase complex, targets cell-cycle regulators, such as the cyclin-dependent kinase inhibitor p27(KIP1), for ubiquitin-mediated degradation. Our earlier studies indicated frequent amplification and over-expression of the SKP2 gene in primary small-cell lung cancers (SCLCs) and cell lines derived from this type of tumor, and showed that down-regulation of SKP2 expression by means of an antisense oligonucleotide inhibited the growth of SCLC cells in culture (Yokoi et al., Am J Pathol, 161, 207-216, 2002). The antisense effect was confirmed in two cell lines of non-small cell lung cancer (NSCLC) that also exhibited over-expression of the gene. In the work reported here, we examined the mechanism(s) responsible for antisense-mediated growth inhibition of SCLC- and NSCLC-derived cultures. SKP2-antisense treatment not only suppressed DNA synthesis, as determined by [(3)H]thymidine incorporation, but also induced spontaneous apoptosis characterized by an increase in the sub-G1 population, fragmentation of nuclei, and activation of caspase-3. Our results suggest that since down-regulation of SKP2 appears to induce apoptosis in lung-cancer cells directly, targeting this molecule could represent a promising new therapeutic approach for this type of cancer, and possibly other tumors that over-express SKP2.

Apoptosis↗

Cell culture in esophageal squamous cell carcinoma and the association with molecular markers.

PURPOSE: We reported previously that the patients in whom cancer cells could be cultured as continuous cell lines had a poor prognosis of esophageal squamous cell carcinoma (ESCC) patients. In this study, to evaluate additional evidence of prognostic significance and the genetic background of cell culture, we analyzed 203 ESCC patients. EXPERIMENTAL DESIGN: Culture samples were obtained from resected 203 primary ESCC (from 1986 to 1998; R0 resection). The expression of six molecular markers was evaluated retrospectively in resected primary esophageal tumors by immunohistochemical analysis, and the capability of establishing cell lines was compared. RESULTS: Thirty-five cell lines (17.2%) were established from 203 ESCC patients: group 1 (n = 35), from whom cancer cells could be cultured as continuous cell lines, and group 2 (n = 168), from whom cell lines could not be established. The cumulative survival rate of patients in group 1 was significantly lower than that of those in group 2 (P = 0.0006). Cox's proportional hazard model revealed that cell culture capability was an independent prognostic factor (risk ratio, 1.98; P = 0.007). Univariate logistic regression analysis revealed that cell culture capability had associations with the following molecular biological factors: cyclin D1, p53, murine double minute 2, p27, and fragile histidine triad gene (P < 0.05). However, multivariate logistic regression analysis revealed that p53 protein accumulation and MDM2 protein expression predict establishment of cell line in ESCC (odds ratio, 7.72 and 8.62, respectively). CONCLUSIONS: Cell culture capability is a significant prognostic factor in ESCC. p53 and MDM2 may have a crucial role in the establishment of ESCC cell lines.

Aged↗