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Iver Petersen

Publications and source records attributed to Iver Petersen.

At least 37 records · Page 2Linked to original sources

Profile of differentially expressed genes after transfer of chromosome 17 into the breast cancer cell line CAL51.

Previous studies have shown that transfer of chromosome 17 suppresses the tumorigenic phenotype of the breast cancer cell line CAL51, suggesting the presence of putative tumor suppressor genes on this chromosome. Suppression subtractive hybridization and oligonucleotide microarray analyses were performed to identify differentially expressed genes in nontumorigenic microcell hybrids, CAL/17-1 and CAL/17-3, when compared with CAL51 cells. In total, 263 differentially expressed transcripts were associated with these phenotypes. Of these, a high percentage is involved in various biological processes associated with tumorigenesis, including DNA-dependent regulation of transcription, regulation of cell cycle, signal transduction, and cell proliferation. Microarray analysis of selected chromosome 17 genes in a series of 25 human primary breast tumors showed associations with clinicopathologic parameters of the tumors. Of these genes, TOB1 (transducer of ERBB2) was selected for further expression analysis. Using RT-PCR and immunohistochemical staining of tissue microarrays, we could reveal a differential mRNA and protein expression of TOB1 in the majority of breast tumors and lymph node metastases compared with normal breast tissues, indicating a potential role of this protein in breast tumorigenesis.

Biomarkers, Tumor↗

Chromosomal imbalances in wood dust-related adenocarcinomas of the inner nose and their associations with pathological parameters.

Comparative genomic hybridization (CGH) was used to screen 42 wood dust-related sinonasal adenocarcinomas for chromosomal alterations. The tumour collection comprised 39 papillary-tubular cylinder cell adenocarcinomas (PTCCs; six cases G1, 23 G2, and ten G3), two alveolar goblet cell adenocarcinomas (AGCs), and one signet ring cell adenocarcinoma (SRC), according to the Kleinsasser and Schroeder classification. Copy number changes were detected in 41 tumours (97.6%). The one carcinoma without imbalances was a PTCC-G1. DNA gains were most frequently seen on chromosomes 12p (83%), 7q (74%), 8q (71%), and 20q (71%), 11q (61%), 22 (59%), and 1q (52%). Pronounced overrepresentations suggestive of high copy amplifications were detected on 8q (15 cases, 36%), 7q (six cases, 14%), 20q (five cases, 12%), 13q14 (three cases, 7%), 1q22, 5p, 12p and 20 (two cases, 5% each), and 2q24, 3q13, 3q22, 7p, 14q12, and 16q13 (one case, each 2%). Frequent chromosomal losses occurred at 5q (81%), 18q (76%), 4 (74%), 8p (61%), 9p (60%), 6q and 17p (52% each), and 3p, 13q, and 21 (50% each). There was a quantitative as well as a qualitative increase of alterations from PTCC-G1 to PTCC-G2 and finally PTCC-G3, confirming the usefulness of histopathological grading. While PTCC-G1 carried only a few alterations, namely gains on chromosomes 17 and 7 as well as losses of 4q and 13q, PTCC-G2 already carried many of the above-mentioned alterations, while PTCC-G3 showed significantly more gains of 7q, 8q, and 12p, and losses of 8p and 17p. Additionally, the latter subgroup was particularly prone to carry pronounced DNA gains. These data provide further evidence for a recurrent pattern of chromosomal imbalances in sinonasal adenocarcinomas and highlight distinct aberrations that are associated with tumour differentiation and progression.

Adenocarcinoma↗

Immunoprofiles of 11 biomarkers using tissue microarrays identify prognostic subgroups in colorectal cancer.

BACKGROUND AND AIMS: Genomewide expression profiling has identified a number of genes expressed at higher levels in colorectal cancer (CRC) than in normal tissues. Our objectives in this study were: 1) to test whether genes were also distinct on the protein level; 2) to evaluate these biomarkers in a series of well-characterized CRCs; and 3) to apply hierarchical cluster analysis to the immunohistochemical data. METHODS: Tissue microarrays (TMAs) comprising 351 CRC specimens from 270 patients were constructed to evaluate the genes Adam10, Cyclin D1, Annexin II, NFKB, Casein kinase 2 beta (CK2B), YB-1, P32, Rad51, c-fos, IGFBP4, and Connexin26 (Cx26). In total, 3,797 samples were analyzed. RESULTS: Unsupervised hierarchical clustering discovered subgroups of CRC that differed by tumor stage and survival. Kaplan-Meier analysis showed that reduced Cx26 expression was significantly associated with shorter patient survival and higher tumor grade (G1/G2 vs G3, P = .02), and Adam10 expression with a higher tumor stage (pT1/2 vs pT3/4, P = .04). CONCLUSIONS: Our study highlights the potential of TMAs for a higher-dimensional analysis by evaluating serial sections of the same tissue core (three-dimensional TMA analysis). In addition, it endorses the use of immunohistochemistry supplemented by hierarchical clustering for the identification of tumor subgroups with diagnostic and prognostic signatures.

Biomarkers, Tumor↗

[Cytogenetic aberrations of esthesioneuroblastoma studied by comparative genomic hybridization].

OBJECTIVE: To characterize the cytogenetic alterations of esthesioneuroblastoma (ENB). METHODS: Comparative genomic hybridization (CGH) was performed on genomic DNA extracted from 12 patients with primary ENB, 4 patients with tumor recurrence and 7 with metastasis. Equal amounts of biotin-labeled tumor DNA and digoxigenin-labeled normal reference DNA were hybridized to normal meta phase chromosomes. Tumor DNA was visualized by fluorescein (FITC) and normal DNA by rhodamin (TRITC ) and detected by fluorescence microscopy. The signal intensities of the different fluorochromes were quantitated as gray levels along the single chromosomes. The over-and under-represented DNA segments were determined by computation of FITC/TRITC ratio images and average ratio profiles. RESULTS: Consensus deletion regions were most frequently observed on chromosomes 1p, 2q, 3p/q, 4p/q, 5p/q, 6q, 8p/q, 9p, 10p/q, 11p, 12q, 13q, 18q, and 21q. DNA over-representations were identified on chromosomes 1p, 7q, 9q, 11q, 14q, 16p/q, 17p/q, 19p/q, 20p/q and 22p/q. The genetic pattern of ENB was distinct from that of other small round-cell tumor types and neuroblastomas. The deletion on chromosome band 1p21-p31 was associated with bad prognosis. In particular, all patients died whose tumors had combined 1p21-p31 deletion, with tumors in clinical stage C or D, and of low differentiation (grade III or IV). Clonality analysis revealed a high concordance between pairs of primaries and metastases. CONCLUSION: CGH analysis identifies characteristic cytogenetic aberrations of esthesioneuroblastoma associated with its malignant phenotype.

Adolescent↗

Differentially expressed genes associated with human lung cancer.

To investigate the gene expression of 9 cDNA clones generated by suppression subtraction hybridization (SSH), Northern blot analysis was performed on a panel of immortalized bronchial epithelial cell lines, lung cancer cell lines and normal human bronchial epithelial cells (HBEC). The clones were located on chromosomes 1q, 2q, 3p, 3q, 4q and 14q representing regions that are frequently affected by DNA imbalances as shown by comparative genomic hybridization (CGH). Two were unknown (H24, H103) whereas the others matched to the Pest-containing nuclear protein (H52), Rp11-767C1 gene (H134), the hypothetical gene AK025444 (H238), Guanine nucleotide binding protein (G protein)/alpha inhibiting activity polypeptide 2 (H268), Laminin gamma 1 (Y45), the DEAD (Asp-Glu-Ala-Asp/His) box polypeptide 9 (Y162) and the heat shock 90 kDa protein 1, alpha (Y238). Northern blot results indicated that all of the studied clones showed differential up- or down-regulation in immortalized cells and lung cancer cell lines. Of those, clone Y238 representing HSP90alpha showed a clearly over-expressed transcript. Subsequently, semi-quantitative RT-PCR was used to further confirm the over-expression of Y238, indicating that HSP90alpha was significantly over-represented in 49 primary lung tumors as compared to 14 normal lung samples (P<0.01). CGH showed that the majority of studied lung cancer cell lines (71.4%) carried an overrepresentation at 14q32 where HSP90alpha is located suggesting that it may be affected by DNA copy number changes. The further characterization of these clones will provide us with valuable information on its role in lung carcinogenesis and may help to develop new diagnostic or therapeutic targets for this lethal disease.

Blotting, Northern↗

The human LAPTM4b transcript is upregulated in various types of solid tumours and seems to play a dual functional role during tumour progression.

LAPTM4b (lysosome associated protein transmembrane 4 beta) was recently identified as a gene overexpressed in human hepatocellular carcinoma and belongs to the mammalian LAPTM family. By analysing genome-wide expression profiles of microdissected solid tumour samples by the means of Affymetrix GenChip hybridisation, we found LAPTM4b to be upregulated in 88% (23/26) of lung and in 67% (18/27) of colon carcinoma patients. Northern blots revealed additionally an overexpression of LAPTM4b in the majority of carcinomas of the uterus (30/44), breast (27/53) and ovary (11/16). Other members of the LAPTM family were not overexpressed in the investigated tumour samples according to GeneChip hybridisation data. Northen blot and quantitative RT-PCR on different normal tissues, detected highest levels of LAPTM4b mRNA in uterus, heart and skeletal muscle. Due to sequence analysis of bilaterian LAPTM proteins we suggests the presence of four transmembrane helices per protein, which are probably packed together by hydrophobic forces that are excerted by several evolutionary conserved aromatic residues within the alpha-helices. We discuss an active role for LAPTM4b during disease progression of malignant cells and conclude that its putative dual functional involvement in tumour cell proliferation as well as in multidrug-resistance may represent LAPTM4b as a target suitable for development of novel therapeutic agents.

Amino Acid Sequence↗

Cytomegalovirus is not associated with progression and metastasis of colorectal cancer.

Recently, it was hypothesized that human cytomegalovirus (HCMV) might be associated with colorectal cancer progression. However, the role of HCMV infection in colorectal cancer remains controversial. We aimed to assess whether nucleic acids and/or gene products of HCMV could be detected in primary and metastatic colorectal carcinomas. Fresh-frozen biopsy specimens from 77 primary and metastatic colorectal carcinomas of randomly selected patients were analyzed by PCR and immunohistochemistry. We investigated 57 primary tumors and 20 metastases, comprising 13 tumor pairs from the same patient. In PCR, four primary tumors showed a positive CMV result whereas all investigated metastases were negative including three paired samples from positive primaries. In immunohistochemistry, no specific staining could be determined in all neoplastic epithelial cells. In summary, we think that there is no association between CMV infection and tumor progression or metastasis formation of colorectal cancer.

Carcinoma↗

Overexpression of cyclooxygenase-2 correlates with chromosomal gain at the cyclooxygenase-2 locus and decreased patient survival in advanced colorectal carcinomas.

PURPOSE: Overexpression of cyclooxygenase-2 is observed in a variety of malignancies including colorectal cancer. However, to date, cyclooxygenase-2 expression by advanced human colorectal cancers and their metastases has been poorly characterized. This study was designed to evaluate the rate of cyclooxygenase-2 overexpression in our tumor collection and to clarify its correlation with the chromosomal status at the cyclooxygenase-2 locus in colorectal cancer. METHODS: Seventy-four specimens were analyzed immunohistochemically using a monoclonal cyclooxygenase-2 antibody. The staining was scored semiquantitatively as: -, negative; +, weak; ++, moderate; and +++, strong positive. Of these, 45 specimens were analyzed using comparative genomic hybridization and immunohistochemistry. We correlated the cyclooxygenase-2 overexpression with the chromosomal gain of 1q25.2-q25.3 and patients survival and compared primary colorectal cancers and their paired metastases at the DNA and protein level. RESULTS: Overexpression was observed in 58 percent of the cases (score > or = ++). Chromosomal gains at the cyclooxygenase-2 locus were clearly correlated with overexpression of the gene (P=0.009). Furthermore, the comparison of paired tumor samples showed additional overrepresentation in the metastases at the cyclooxygenase-2 locus, which could be confirmed by immunohistochemistry. Kaplan-Meier analysis showed that overexpression of cyclooxygenase-2 was significantly associated with poor survival and thus could serve as a prognostic marker. CONCLUSIONS: We conclude that cyclooxygenase-2 is related with tumor progression and metastasis in colorectal cancer, which can be observed on protein level, and reflects chromosomal gain at the locus at 1q25.2-q25.3.

Chromosome Aberrations↗

Array technology and proteomics in autoimmune diseases.

Two new technologies (tissue microarrays (TMAs) and proteomics) have generated a great amount of data in life science. High-density TMAs allow for the simultaneous analysis of proteins and RNA by various methods (immunohistochemistry, in situ hybridization, FISH) on a large scale and under highly standardized conditions. Proteomics includes a variety of techniques that are partly high throughput. These techniques aim at the innovation of proteins, the description of the domain structure, the determination of protein sequences and epitope characterization, and ultimately the definition of protein function and protein reactivities in immunologic processes. Proteins that have been characterized accordingly require validation mostly at the morphologic level of defined tissue, linking proteomics to TMAs. In autoimmune diseases, array-based antigenic fingerprinting of autoantibodies will drive the development and the selection of antigen-specific diagnostic tools and therapies. The powerful combination of genomics and proteomics formed in tissue arrays has the potential to change the way the biology of autoimmunity is studied. Novel targets of drug discovery, based on antigen-specific therapies to induce anergy, or regulatory T-cells using the targeted autoantigens of individual patients could be developed in the coming decades.

Autoimmune Diseases↗

CGH pattern of esthesioneuroblastoma and their metastases.

Comparative genomic hybridization (CGH) was used to screen 22 esthesioneuroblastomas (ENB) from 12 patients including 12 primary tumors and 10 metastasis/recurrent lesions for chromosomal imbalances being the most extensive study so far. The analysis revealed a characteristic pattern consisting of deletions on chromosomes 3p and overrepresentations on 17q in up to 100% of cases. Other important alterations being detectable in more than 80% of cases were deletions on 1p, 3p/q, 9p, 10p/q along with overrepresentation on 17p13, 20p and 22q. Particularly striking was the pattern for chromosomes 3, 10 and 17q and 20 being affected almost exclusively by deletions or overrepresentations, respectively. Pronounced overrepresentations suggestive for high copy amplifications were seen on 1p34, 1q23-q31, 7p21, 7q31, 9p23-p24, 17q11-q22, 17q24-q25, 19, 20p, 20q13 and 22q13. Comparing tumor pairs from the same patient revealed a high concordance indicating clonality and confirming the genetic homogeneity of the tumor entity. The analysis of metastatic/recurrent lesions indicated a higher percentage of pronounced alterations, e.g., high copy DNA gains at 1q34-qter, 7q11, 9p23-p24, 9q34, 13q33-q34, 16p13.3, 16p11, 16q23-q24 and 17p13. The analysis furthermore suggested specific alterations, e.g., deletions of chromosome 11 and gains of 1p to be associated with metastasis formation and/or worse prognosis. Our results indicate that ENB is a distinct entity and provides criteria for its genetic distinction from other small round cell tumor types.

Adult↗

PHOTOPROBE biotin: an alternative method for labeling archival DNA for comparative genomic hybridization.

Comparative genomic hybridization (CGH) represents a powerful method for screening the entire genome of solid tumors for chromosomal imbalances. Particularly it enabled the molecular cytogenetic analysis of archival, formalin-fixed, paraffin-embedded (FFPE) tissue. A well-known dilemma, however, is the poor DNA quality of this material with fragment sizes below 1000 bp. Nick translation, the conventionally used enzymatic DNA labeling method in CGH, leads to even shorter fragments often below a critical limit for successful analysis. In this study we report the alternative application of non-enzymatic, PHOTOPROBE biotin labeling for conjugation of the hapten to the DNA prior to in situ hybridization and fluorescence detection. We analyzed 51 FFPE tumor samples mainly from the upper respiratory tract by both labeling methods. In 19 cases, both approaches were successful. The comparison of hybridized metaphases showed a distinct higher fluorescence signal of the PHOTOPROBE samples sometimes with a discrete cytoplasm background which however did not interfere with specificity and sensitivity of the detected chromosomal imbalances. For further 32 cases characterized by an average DNA fragment size below 1000 bp, PHOTOPROBE biotin was the only successful labeling technique thus offering a new option for CGH analysis of highly degraded DNA from archival material.

Biotin↗

Analysis of the RNA helicase A gene in human lung cancer.

In this study we investigated the RNA helicase A (RHA) gene localized on chromosome 1q25 in 15 lung cancer cell lines, 54 primary carcinomas, bronchial epithelial cells and normal lung. Both RT-PCR and real-time RT-PCR showed that RHA is over-expressed in tumour samples compared to normal lung tissues (p=0.01). There was a tendency for higher expression levels in small cell lung cancer compared to non-small cell carcinomas. Over-expression of Y-162 correlated with high grade tumours (p=0.023). However, there was no correlation with tumour stage and survival. Our observations are compatible with the role of RHA in lung cancer development.

Autoantigens↗

[Evaluation of p63 expression in lung cancer by use of complementary DNA and tissue microarray].

OBJECTIVE: To study p63 expression at mRNA transcript and protein levels in human lung cancers, including squamous cell lung carcinoma (SCC), adenocarcinoma, large cell lung carcinoma (LCLC) and small cell lung carcinoma (SCLC), or the corresponding metastatic foci. The relationship of p63 expression and alterations in p63 locus at chromosomal 3q27-29 was also determined. METHODS: p63 gene expression in 72 cases of SCC, adenocarcinoma, LCLC and SCLC was analyzed by cDNA microarray technology. Tissue microarray of specimens from 150 cases of primary lung cancer was prepared for immunohistochemical study for p63 protein. Possible chromosomal alterations at the p63 locus in 70 cases of primary lung cancer were studied by comparative genomic hybridization (CGH) technology. RESULTS: p63 mRNA transcript expression was significantly increased by more than 10-fold in SCC, as compared with that in other histologic subtypes including adenocarcinoma, LCLC and SCLC. p63 mRNA expression in metastatic foci was also remarkably higher than that in their primary tumors (P < 0.001). Immunostaining showed that p63 protein expression was observed in 94.64% of SCC, whereas only one lung adenocarcinoma (1.79%) was positive. Immunopositivity was also demonstrated in 2 of the 4 LCLC cases studied. None of the SCLC cases was positive. There was a statistically significant difference in p63 expression between pT1 and pT2 tumors (P < 0.05). The CGH results showed that overrepresentation of p63 locus at chromosomal 3q27-29 was a typical finding in SCC. p63 immunopositivity also correlated significantly with pronounced gains of p63 locus at chromosomal 3q27-q29 (P < 0.000 1), suggesting that strong expression of p63 in lung SCC was associated with increased gene amplification. CONCLUSION: p63 may play a role in oncogenesis of human lung squamous cell carcinoma and development of metastasis.

Adenocarcinoma↗

Is the p53 inactivation frequency in squamous cell carcinomas of the head and neck underestimated? Analysis of p53 exons 2-11 and human papillomavirus 16/18 E6 transcripts in 123 unselected tumor specimens.

Mutations and interaction with high-risk human papillomavirus (HPV) E6 oncoprotein are well-established mechanisms of p53 inactivation. In a series of 123 unselected squamous cell carcinomas of the head and neck (SCCHN), we performed sequence analysis of the entire coding region of p53 transcript and determined the presence of the E6 transcripts of HPV 16 and 18. Aberrant p53 transcripts were identified in 97 (79%) SCCHN. HPV 16 and/or 18 E6 transcripts were detected in 37 (30%) tumor specimens, including 20 (77%) of the 26 p53 wild-type tumors. The likely inactivation of p53 in 117 (95%) of the 123 SCCHN suggests that this event could be obligatory in the multistep process of carcinogenesis.

Carcinoma, Squamous Cell↗

Identification of differentially expressed genes in immortalized human bronchial epithelial cell line as a model for in vitro study of lung carcinogenesis.

Suppression subtractive hybridization (SSH) was applied to identify differentially expressed genes in the SV40LT immortalized human bronchial epithelial cell line Y-BE, with normal human bronchial epithelial cells (HBEC) as a control. Two cDNA libraries of up- and downregulated genes were generated, comprising 218 known genes and 131 unknown genes in total. The expression of 22 clones from the 2 libraries was investigated by Northern blot analysis, and 86.4% (19/22) of them showed differential expression between Y-BE cells and HBEC. Although the Y-BE cells are nontumorigenic in nude mice, Comparative genomic hybridization (CGH) detected some DNA imbalances in Y-BE cells that were similar to lung cancer cells. Our data demonstrate that the studied cell line Y-BE and SSH is a reliable approach for identifying new genes that are associated with immortalization and early tumor development that may help to understand the pathogenesis of lung cancer.

Animals↗

Loss of PDCD4 expression in human lung cancer correlates with tumour progression and prognosis.

The programmed cell death 4 gene (PDCD4), a newly identified transformation suppressor, was analysed in lung tumour cell lines and primary lung carcinomas. Reduced PDCD4 mRNA expression was observed in two immortalized lung cell lines and 18 cancer cell lines by northern blot analysis. In the survey of primary lung tumours, PDCD4 cDNA was poorly represented in 47 lung tumours compared with normal lung tissue by cDNA microarray analysis and this poor representation was significantly associated with high-grade (G3) adenocarcinomas (p = 0.012). Immunohistochemical analysis of 124 primary carcinomas comprising all subtypes demonstrated that PDCD4 protein expression was widely lost in tumour samples (83%) and was negatively related to poor prognosis (p = 0.013). The loss of PDCD4 expression correlated with higher grade and disease stage (p = 0.045 and 0.034, respectively), but not tumour size and nodal status. Similarly to the cDNA data, lack of PDCD4 expression was significantly linked to tumour grade in adenocarcinoma (n = 59, p = 0.048), while in squamous cell carcinoma (n = 58), no relationship between PDCD4 expression and clinicopathological parameters was established. These data suggest that the loss of PDCD4 expression is a prognostic factor in lung cancer and may correlate with tumour progression.

Adenocarcinoma↗

Expression of the cell adhesion molecule CD146/MCAM in non-small cell lung cancer.

Expression of MCAM is observed in a variety of human malignancies. We aimed to determine the rate of MCAM expression in our non-small cell lung cancer (NSCLC) collection and to clarify its correlation with clinicopathological parameters and patient survival. 85 NSCLC were analysed immunohistochemically using a monoclonal MCAM antibody (clone N1238) on an NSCLC tissue micro array. The staining was semiquantitatively scored. We found MCAM expression in 51% of NSCLC, preferentially squamous cell carcinomas (p=0.004). No other correlations to tumour size, grade, or stage were found. Univariate survival analysis showed no significant differences of MCAM positive and negative tumours. In adenocarcinomas however, MCAM positivity was significantly associated with shorter patient survival (p=0.016). We conclude, that MCAM is expressed in a high proportion of NSCLC and might be predictive of shortened patient survival in adenocarcinomas of the lung. Colour figure can be viewed on http://www.esacp.org/acp/2003/25-2/kristiansen.htm

Adenocarcinoma↗

Identification of a novel homeobox-containing gene, LAGY, which is downregulated in lung cancer.

We have isolated a novel gene, lung cancer-associated gene Y (LAGY), by suppression subtractive hybridization. The nucleotide sequence of LAGY predicts a small protein of 73 amino acids containing a putative homeobox domain with a molecular mass of 8.1 kD. Multiple-tissue Northern blot analysis revealed that LAGY is present in human placenta, lung, brain, heart and skeletal muscle. Gene mapping locates LAGY on chromosome 4q11-13.1. The expression of LAGY mRNA was widely lost in 18 lung tumor cell lines comprising all major histological types, as shown by Northern blot analysis and semiquantitative reverse transcription-polymerase chain reaction. In an investigation of 72 primary lung tumors, this gene was significantly downregulated in tumors compared to 9 normal lung tissue samples. There was a significant reduction of LAGY expression in squamous cell carcinoma (SCC; n = 27) with increasing grade and stage. No expression was detectable in two high-grade SCCs or two small cell and large cell lung carcinomas (n = 4 for each). In adenocarcinoma (n = 37), expression was reduced; however, this did not reach statistical significance. Since homeodomain-containing genes are known to transcriptionally regulate key cellular processes and are associated with carcinogenesis, we suggest that LAGY might be linked to lung cancer development and progression.

Amino Acid Sequence↗