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Biomedical subjects

Jahn M Nesland

Publications and source records attributed to Jahn M Nesland.

At least 19 recordsLinked to original sources

Impact of disseminated tumor cells in bone marrow at diagnosis in patients with nonmetastatic prostate cancer treated by definitive radiotherapy.

The purpose of this study was to explore whether detection of disseminated tumor cells (DTCs) in bone marrow (BM) of nonmetastatic prostate cancer (PC) was associated with other clinical or histopathological factors at diagnoses or clinical outcome subsequent to definitive radiotherapy (RT). We evaluated BM aspirates from 272 cT(1-4)pN(0)M(0) PC patients by immunocytochemistry employing anticytokeratin antibodies (AE1/AE3). BM-status was compared with clinical and histopathological parameters. Long-term clinical outcome was assessed in 131 of the patients who all had completed definitive RT with or without androgen deprivation (AD), initiating treatment >5 years before cut-off date June 1, 2005. They had at least 1 unfavorable prognostic feature defined as cT(3-4) or Gleason score (GS) >or= 7B or PSA >or= 10 microg/l. Overall death, cause-specific death, distant metastases (DM) as first clinical relapse, local failure as first clinical relapse and biochemical failure were defined as end-points. DTCs were detected in 18% of the patients and were associated with increasing GS (p = 0.04) and percentage of Gleason pattern 4/5 (p = 0.04). The 7-year cumulative risk of DM was 21% for BM-positive patients vs. 6% for BM-negative patients (p = 0.07). In patients receiving RT without AD (n = 75), the 7-year cumulative risk of DM for BM-positive patients was 28% vs. 9% for BM-negative patients (p = 0.03). BM-status did not have impact on other end-points. In conclusion our study shows that presence of DTCs in BM at diagnosis was associated with the histological differentiation of the primary tumor and an increased risk of developing distant metastases after RT.

Aged↗

Nuclear expression of survivin is associated with improved survival in metastatic ovarian carcinoma.

BACKGROUND: Inhibitor of apoptosis proteins (IAPs) mediate cancer cell survival and chemoresistance. The expression of XIAP, Survivin, and Livin in ovarian carcinoma was analyzed. METHODS: Effusions (106) were analyzed for XIAP, Survivin, and Livin expression using immunoblotting. Effusions (220), corresponding primary tumors (60), and solid metastases (103) were further immunohistochemically analyzed for XIAP and Survivin expression. The results were analyzed for association with anatomic site, clinicopathologic parameters, and survival. RESULTS: Immunoblotting showed frequent expression of XIAP and Survivin, and no expression of Livin. Immunohistochemistry showed cytoplasmic XIAP expression in 208 of 220 (94%) effusions, 50 of 60 (83%) primary tumors, and 87 of 103 (84%) solid metastases, with a significantly higher staining extent in effusions (P < .001). Cytoplasmic Survivin was found in 194 of 220 (88%) effusions, 55 of 60 (92%) primary tumors, and 102 of 103 (99%) solid metastases, with a significantly higher cytoplasmic staining extent in solid metastases (P = .018 and P = .006 compared with primary tumors and effusions, respectively). Nuclear Survivin was expressed in 159 of 220 (72%) effusions, 54 of 60 (90%) primary carcinomas, and 96 of 103 (93%) solid metastases (P > .05). For patients with prechemotherapy effusions, higher nuclear Survivin expression correlated with better progression-free (P = .0003) and overall (P = .002) survival in univariate survival analysis. Nuclear Survivin expression was found to be an independent predictor of progression-free survival (P = .004). CONCLUSIONS: XIAP and Survivin, but not Livin, are frequently expressed in ovarian carcinoma. XIAP and cytoplasmic Survivin are up-regulated in effusions and solid metastases, respectively, possibly mediating survival at these sites. Nuclear Survivin expression predicts better outcome in prechemotherapy patients.

Adaptor Proteins, Signal Transducing↗

Gene expression profiles of primary colorectal carcinomas, liver metastases, and carcinomatoses.

BACKGROUND: Despite the fact that metastases are the leading cause of colorectal cancer deaths, little is known about the underlying molecular changes in these advanced disease stages. Few have studied the overall gene expression levels in metastases from colorectal carcinomas, and so far, none has investigated the peritoneal carcinomatoses by use of DNA microarrays. Therefore, the aim of the present study is to investigate and compare the gene expression patterns of primary carcinomas (n = 18), liver metastases (n = 4), and carcinomatoses (n = 4), relative to normal samples from the large bowel. RESULTS: Transcriptome profiles of colorectal cancer metastases independent of tumor site, as well as separate profiles associated with primary carcinomas, liver metastases, or peritoneal carcinomatoses, were assessed by use of Bayesian statistics. Gains of chromosome arm 5p are common in peritoneal carcinomatoses and several candidate genes (including PTGER4, SKP2, and ZNF622) mapping to this region were overexpressed in the tumors. Expression signatures stratified on TP53 mutation status were identified across all tumors regardless of stage. Furthermore, the gene expression levels for the in vivo tumors were compared with an in vitro model consisting of cell lines representing all three tumor stages established from one patient. CONCLUSION: By statistical analysis of gene expression data from primary colorectal carcinomas, liver metastases, and carcinomatoses, we are able to identify genetic patterns associated with the different stages of tumorigenesis.

Carcinoma↗

Activation of EDTA-resistant gelatinases in malignant human tumors.

Among the many proteases associated with human cancer, seprase or fibroblast activation protein alpha, a type II transmembrane glycoprotein, has two types of EDTA-resistant protease activities: dipeptidyl peptidase and a 170-kDa gelatinase activity. To test if activation of gelatinases associated with seprase could be involved in malignant tumors, we used a mammalian expression system to generate a soluble recombinant seprase (r-seprase). In the presence of putative EDTA-sensitive activators, r-seprase was converted into 70- to 50-kDa shortened forms of seprase (s-seprase), which exhibited a 7-fold increase in gelatinase activity, whereas levels of dipeptidyl peptidase activity remained unchanged. In malignant human tumors, seprase is expressed predominantly in tumor cells as shown by in situ hybridization and immunohistochemistry. Proteins purified from experimental xenografts and malignant tumors using antibody- or lectin-affinity columns in the presence of 5 mmol/L EDTA were assayed for seprase activation in vivo. Seprase expression and activation occur most prevalently in ovarian carcinoma but were also detected in four other malignant tumor types, including adenocarcinoma of the colon and stomach, invasive ductal carcinoma of the breast, and malignant melanoma. Together, these data show that, in malignant tumors, seprase is proteolytically activated to confer its substrate specificity in collagen proteolysis and tumor invasion.

Animals↗

Role of nucleotide excision repair deficiency in intestinal tumorigenesis in multiple intestinal neoplasia (Min) mice.

Mice deficient in the Xeroderma pigmentosum group A (Xpa) gene are defective in nucleotide excision repair (NER) and highly susceptible to skin carcinogenesis after dermal exposure to UV light or chemicals. Min (multiple intestinal neoplasia) mice, heterozygous for a germline nonsense mutation in the tumor suppressor gene adenomatous polyposis coli (Apc), develop intestinal tumors spontaneously and show additional intestinal tumors after exposure to the food mutagen 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP). In this study, we investigated the impact of loss of XPA function on PhIP-induced intestinal tumorigenesis in F1 offspring of Min/+ (Apc(+/-)) mice crossed with Xpa gene-deficient mice. Apc(+/-) mice lacking both alleles of Xpa had higher susceptibility towards toxicity of PhIP, higher levels of PhIP-DNA adducts in the middle and distal small intestines, as well as in liver, and a higher number of small intestinal tumors at 11 weeks, compared with Apc(+/-) mice with one or two intact Xpa alleles. Localization of tumors was not affected, being highest in middle and distal small intestines in all genotypes. At 11 weeks of age, the number of spontaneous intestinal tumors was not significantly increased by homozygous loss of Xpa, but untreated Apc(+/-)/Xpa(-/-) mice had significantly shorter life-spans than their XPA-proficient littermates. Heterozygous loss of Xpa did not affect any of the measured end points. In conclusion, the Xpa gene and the NER pathway are involved in repair of bulky PhIP-DNA adducts in the intestines and the liver, and most probably of DNA lesions leading to spontaneous intestinal tumors. These results confirm a role of the NER pathway also in protection against cancer in internal organs, additional to its well-known importance in protection against skin cancer. An effect of Apc(+/-) on adduct levels, additional to that of Xpa(-/-), indicates that the truncated APC protein may affect a repair pathway other than NER.

Animals↗

Radiation-induced effects on gene expression: an in vivo study on breast cancer.

BACKGROUND AND PURPOSE: Breast cancer is diagnosed worldwide in approximately one million women annually and radiation therapy is an integral part of treatment. The purpose of this study was to investigate the molecular basis underlying response to radiotherapy in breast cancer tissue. MATERIAL AND METHODS: Tumour biopsies were sampled before radiation and after 10 treatments (of 2 Gray (Gy) each) from 19 patients with breast cancer receiving radiation therapy. Gene expression microarray analyses were performed to identify in vivo radiation-responsive genes in tumours from patients diagnosed with breast cancer. The mutation status of the TP53 gene was determined by using direct sequencing. RESULTS AND CONCLUSION: Several genes involved in cell cycle regulation and DNA repair were found to be significantly induced by radiation treatment. Mutations were found in the TP53 gene in 39% of the tumours and the gene expression profiles observed seemed to be influenced by the TP53 mutation status.

Breast Neoplasms↗

Ex vivo and in vivo delivery of anti-tissue factor short interfering RNA inhibits mouse pulmonary metastasis of B16 melanoma cells.

PURPOSE: The coagulation trigger tissue factor has been implicated in tumor growth, angiogenesis, and metastasis. In this study, we explore the effects of ex vivo and in vivo delivery of short interfering RNA (siRNA) targeting tissue factor on B16 melanoma colonization of the lung in a murine model for metastasis. The purposes of this work are to establish a noncytotoxic in vivo model for investigation of tissue factor function and provide preclinical assessment of the therapeutic potential of tissue factor siRNA for prevention of metastasis. EXPERIMENTAL DESIGN AND RESULTS: C57BL/6 mice were evaluated for pulmonary metastases following tail vein injection of B16 cells transfected with either active or inactive siRNA. Mice receiving cells transfected with active siRNA had significantly lower numbers of pulmonary tumors compared with mice injected with control cells (transfected with inactive siRNA). The average time point at which the mice started to exhibit tumor-associated stress was also increased significantly from 22 days for the control group to 27 days for the experimental group (P = 0.01). In a therapeutically more relevant model, where the siRNA was delivered i.p. and the cells (untransfected) by tail vein injection, an inhibitory effect on metastasis was observed when the siRNA treatment was initiated either before or at the time of cell injection. CONCLUSIONS: The results suggest that tissue factor has a crucial function in promoting lung tumor metastasis of blood-borne tumor cells in the early stages of the tumor take process and further suggest that treatment with tissue factor siRNA may become a viable clinical strategy for prevention of tumor metastasis.

Animals↗

Monitoring of disseminated tumor cells in bone marrow in high-risk breast cancer patients treated with high-dose chemotherapy.

The present study aimed to investigate the clinical relevance of disseminated tumor cells (DTC) in breast cancer patients before and after high-dose adjuvant chemotherapy with or without progenitor stem-cell support. One hundred and eighteen high-risk stage II breast cancer patients entering the Scandinavian Study Group multicenter trial were randomized to 9 cycles of tailored and dose-escalated FEC (5-fluorouracil, epirubicin, cyclophosphamide) or 3 cycles of standard FEC followed by high-dose chemotherapy. Bone marrow (BM) samples at diagnosis and 6 months after completion of chemotherapy were assessed for the presence of cytokeratin positive (CK+) cells. Before treatment, 29% of the patients were CK+ (21% in the dose-escalated group and 36% in the high-dose-group). Six months after treatment, 17% of the patients were CK+ (17 and 16% respectively). Of the 95 patients who were evaluated 6 months after treatment, 60% were consistently CK-. CK+ cells in BM was evaluated as a prognostic and predictive marker and compared to other defined prognostic factors of the primary tumor. Monitoring BM changes at the time of diagnosis and 6 months posttreatment is an independent predictive factor for breast-cancer-specific survival (BCS) (p = 0.001). Those who have consistent CK negative (-) BM findings constitute a group of patients with good prognosis. Our results suggest that changes in CK+ cells in BM before and after chemotherapy can be used clinically as a surrogate maker to predict outcome in breast cancer patients.

Adult↗

Subcellular localization pattern of protoporphyrin IX is an important determinant for its photodynamic efficiency of human carcinoma and normal cell lines.

Photodynamic therapy (PDT) is a combination of light with a lesion-localizing photosensitizer or its precursor to destroy the lesion tissue. PDT has recently become an established modality for several malignant and non-malignant conditions, but it can be further improved through a better understanding of the determinants affecting its therapeutic efficiency. In the present investigation, protoporphyrin IX (PpIX), an efficient photosensitizer either endogenously induced by 5-aminolevulinic acid (ALA) or exogenously administered, was used to correlate its subcellular localization pattern with photodynamic efficiency of human oesophageal carcinoma (KYSE-450, KYSE-70) and normal (Het-1A) cell lines. By means of fluorescence microscopy ALA-induced PpIX was initially localized in the mitochondria, whereas exogenous PpIX was mainly distributed in cell membranes. At a similar amount of cellular PpIX PDT with ALA was significantly more efficient than photodynamic treatment with exogenous PpIX at killing all the 3 cell lines. Measurements of mitochondrial membrane potential and intracellular ATP content, and electron microscopy showed that the mitochondria were initially targeted by ALA-PDT, consistent with intracellular localization pattern of ALA-induced endogenous PpIX. This indicates that subcellular localization pattern of PpIX is an important determinant for its PDT efficiency in the 3 cell lines. Our finding suggests that future new photosensitizers with mitochondrially localizing properties may be designed for effective PDT.

Adenosine Triphosphate↗

Comparison of the clinical significance of occult tumor cells in blood and bone marrow in breast cancer.

Immunocytochemical (ICC) detection of disseminated tumor cells (DTC) in bone marrow (BM) in early breast cancer is an independent prognostic factor. The significance of circulating tumor cells (CTC) in peripheral blood (PB) needs further exploration and comparison to DTC detection. PB and BM were prospectively collected from 341 breast cancer patients median 40 months after operation. PB samples were analyzed for tumor cells by a negative immunomagnetic technique (10x10(6) cells/test). BM aspirates were analyzed by standard ICC (2x10(6) cells/test). CTC were present in 10% of the patients and DTC in 14%. Thirty-seven relapses and 14 breast cancer deaths have occurred at median 66 months after diagnosis. Both CTC-status and DTC-status were significantly associated with disease free survival (DFS) (event rate: CTC-positive 26.5% vs. CTC-negative 9.1%; DTC-positive 29.2% vs. DTC-negative 7.8%) (p<0.001/p<0.001, log rank) and breast cancer specific survival (event rate: CTC-positive 17.6% vs. CTC-negative 2.6%; DTC-positive 12.5% vs. DTC-negative 2.7%) (p<0.001/p<0.001). The presence of both CTC and DTC (n=8) resulted in an especially poor prognosis (p<0.001). In node negative patients, DTC-status, but not CTC-status, predicted differences in DFS (p=0.006 vs. p=0.503). Excluding 23 patients with breast cancer-related events prior to the sample collections, CTC detection was not significantly associated with DFS/distant-DFS (p=0.158/0.193), in contrast to DTC detection (p<0.001/<0.001). Presence of CTC and absence of DTC did not affect DFS (p=0.516). Applied to early stage disease, CTC analysis of increased volumes of PB appears less sensitive and prognostic than standard DTC analysis. Currently, this does not support an exchange of BM with PB for analysis of occult tumor cells.

Aged↗

Expression of HLA-G in malignant mesothelioma and clinically aggressive breast carcinoma.

The aim of the present study was to evaluate HLA-G expression in breast carcinoma and malignant mesothelioma (MM). Malignant breast carcinoma effusions (46) and corresponding solid tumors (39) and 104 MM (26 effusions, 78 solid tumors) were analyzed using immunohistochemistry (IHC). HLA-G protein and mRNA expression were further studied using immunoblotting (IB) and RT-PCR. HLA-ABC expression was analyzed using flow cytometry (FCM). IHC showed predominantly focal HLA-G expression in 12 of 46 (26%) breast carcinoma effusions and 16 of 39 (41%) solid lesions. In MM, 20 of 78 (26%) solid lesions and 14 of 26 (54%) effusions were focally HLA-G positive. Expression in MM was higher in effusions (p=0.008). IB showed more frequent HLA-G expression in MM compared with breast carcinoma effusions, while RT-PCR showed HLA-G mRNA expression in both tumors. FCM showed conserved HLA-ABC expression in 15 of 15 effusions. Breast cancer patients with HLA-G-positive tumor cells had shorter disease-free survival (mean 37 vs 85, median 25 vs 31 months), though not significantly (p=0.14). In conclusion, HLA-G is focally expressed in MM and breast carcinoma, while HLA-ABC expression is conserved. However, the up-regulated expression of HLA-G in MM effusions and its possible association with shorter disease-free survival in advanced stage of breast carcinoma suggest a possible role in immune response evasion in some tumors.

Adenocarcinoma↗

The prognostic impact of EphB2/B4 expression on patients with advanced ovarian carcinoma.

OBJECTIVES: To analyze expressions of the EphB2 and EphB4 receptors in ovarian carcinomas and explore their clinicopathological correlations and prognostic value. METHODS: 115 patients with advanced ovarian carcinoma FIGO IIB to IV were involved. RT-PCR and immunohistochemistry were used to examine the expressions of EphB2/B4 receptor mRNA and protein. Correlations between protein expression and clinicopathological factors were also analyzed. RESULTS: Ovarian carcinoma patients with age elder than 60 years had higher EphB2 expression than younger patients. Expression of EphB2 and EphB4 protein did not significantly correlate with any other clinical variables, including FIGO stage, residual tumor, histological type and differentiation grade. No significant correlation between mRNA and protein expression level for both of these receptors was seen. It was found that patients with strong immunostaining for EphB2 (P = 0.03) or EphB4 (P = 0.003) receptors had poorer survival, and patients with strong immunostaining for EphB4 receptor showed poorer response to chemotherapy (P = 0.036). CONCLUSIONS: These studies suggest that EphB2 and B4 receptors are of prognostic value and EphB4 receptor may be an independent predictor of chemotherapy response in ovarian cancer patients.

Adult↗

The mitogen-activated protein kinases (MAPK) p38 and JNK are markers of tumor progression in breast carcinoma.

OBJECTIVE: To investigate the activation of mitogen-activated protein kinases (MAPK) in breast carcinoma effusions and to analyze its relationship to anatomic site and clinical parameters. METHODS: Activated MAPK (p-ERK, p-JNK, and p-p38) expression was studied in 42 effusions and 51 corresponding solid tumors (23 primary, 28 metastases) using immunohistochemistry (IHC). Hormone receptor and HER2 status, proliferation (Ki-67), and apoptosis (p85-PARP fragment) were assessed. MAPK levels, activity, and activation ratio (phospho/pan-MAPK ratio) were analyzed in 19 effusions using immunoblotting (IB). RESULTS: Nuclear expression of p-p38 and p-JNK was significantly higher in effusions compared with both primary tumors (P < 0.001 for p-JNK, P = 0.011 for p-p38) and lymph node metastases (P = 0.003 for p-JNK, P = 0.025 for p-p38) but was not accompanied by apoptosis. IB showed pan-ERK and p-ERK in 18/19 effusions, pan-JNK and p-JNK in 18/19 and 17/19 effusions, respectively, and pan-p38 and p-p38 in 19/19 and 17/19 specimens, respectively. In univariate survival analysis of all cases, advanced disease stage (P = 0.041), previous chemotherapy (P = 0.004), and radiation (P = 0.001) and higher Ki-67 scores (P = 0.01) correlated with worse overall survival (OS). In Cox multivariate analysis, stage (P = 0.018), chemotherapy (P = 0.024), radiation (P = 0.017), and ER status (P = 0.002) were independent prognosticators of OS. Quantitative analysis of IB data showed that higher p38 activation ratio correlates with shorter OS (P = 0.01). CONCLUSIONS: This study presents first evidence of in vivo activation of MAPK in breast carcinoma effusions. The elevated JNK and p38 activation in effusions may be a stress-related mechanism providing breast carcinoma cells with survival advantages rather than a drive towards apoptosis. p38 and Ki-67 may be new prognostic markers for patients with breast cancer effusions.

Adult↗

Induction of hypoxia-inducible factor-1alpha overexpression by cobalt chloride enhances cellular resistance to photodynamic therapy.

Although photodynamic therapy (PDT) has been approved by regulatory agencies worldwide for the treatment of several oncologic and non-oncologic conditions, PDT-induced tissue hypoxia as a result of vascular damage and photochemical oxygen consumption limits the efficacy of this modality. This may largely be due to hypoxia-mediated angiogenesis via hypoxia-inducible factor-1alpha (HIF-1alpha), a major transcription factor involved in angiogenesis, hematopoiesis and anaerobic energy metabolism. We hypothesized that hypoxia-induced HIF-1alpha overexpression may also lead to tumor cells resistant to PDT by favouring tumor cell proliferation. Human esophageal normal Het-1A and tumor KYSE-70 and KYSE-450 cell lines were used in the present study. High-expression of HIF-1alpha induced in vitro by cobalt chloride (CoCl(2))-mediated chemical hypoxia mimic was clearly seen in the Het-1A cell line. In addition, cells treated with CoCl(2) were more resistant to 5-aminolevulinic acid (ALA)-mediated PDT than those without CoCl(2) treatment. The photosensitivity of the cells to ALA-PDT decreased with increasing HIF-1alpha expression by enhancing CoCl(2) concentrations. Moreover, transfection of the cells with anti-HIF-1alpha short interfering RNA (siRNA) knocked down the HIF-1alpha expression and restored the photosensitivity of the cells to ALA-PDT. However, the induction of HIF-1alpha expression by CoCl(2) was not indicated in both KYSE-70 and KYSE-450 cell lines, and no difference in cell survival was found after ALA-PDT in the presence and absence of CoCl(2). We thus conclude that high-expression of HIF-1alpha induced by CoCl(2) plays an important role in the resistance of the Het-1A cells to ALA-PDT. The present finding suggests that hypoxia-induced HIF-1alpha overexpression attenuates PDT efficacy through probably not only angiogenesis, but also cellular resistance to the modality. PDT in combination with anti-HIF-1alpha treatment may thus enhance the PDT efficacy.

Aminolevulinic Acid↗

Involvement of both caspase-dependent and -independent pathways in apoptotic induction by hexaminolevulinate-mediated photodynamic therapy in human lymphoma cells.

Photodynamic therapy (PDT) is a cancer treatment based on the interaction of a photosensitizer, light and oxygen. PDT with the endogenous photosensitizer, protoporphyrin IX (PpIX) induced by 5-aminolevulinic acid (ALA) or its derivatives is a modification of this treatment modality with successful application in dermatology. However, the mechanism of cell destruction by ALA-PDT has not been elucidated. In this study a human T-cell lymphoma Jurkat cell line was treated with PDT using hexaminolevulinate (HAL, hexylester of ALA). Four hours following treatment nearly 80% of the cells exhibited typical apoptotic features. Mitochondrial pro-apoptotic proteins were evaluated by Western blots in subcellular fractionated samples. PDT caused cytosolic translocation of cytochrome c and nuclear redistribution of apoptosis-inducing factor (AIF), but the release of mitochondrial Smac/DIABLO, Omi/HtrA2 and EndoG was not observed. The release of cytochrome c was followed by the cleavage of caspase-9 and caspase-3 as well as its downstream substrates, together with oligonucleosomal DNA fragmentation. The pan-caspases inhibitor, z-VAD.fmk, prevented oligonucleosomal DNA fragmentation, but failed to inhibit PDT-mediated apoptosis. The apoptotic induction by AIF-mediated caspase-independent pathway was also found after HAL-PDT with large-scale DNA fragmentation in the presence of z-VAD.fmk. These results demonstrate that cytochrome c-mediated caspase-dependent pathway and AIF-induced caspase-independent pathway are simultaneously involved in the apoptotic induction by PDT. When the cytochrome c-induced caspase-dependent pathway is blocked, the cells go into apoptosis via AIF-mediated pathway, clearly demonstrating that the cytochrome c-mediated caspase-dependent pathway is not required for such apoptotic induction. This finding may have an impact on improved PDT effectiveness.

Amino Acid Chloromethyl Ketones↗

Chromosome 2q24.2 is lost in sporadic but not in BRCA1-associated ovarian carcinomas.

AIMS: Comparison between BRCA1-associated and sporadic ovarian carcinomas is a potential method to identify candidate modifier gene/s involved in the carcinogenic pathway of either or both groups. A previous study identified a significant difference in the frequency of copy number gain at 2q24-q32 by comparing BRCA1-associated and sporadic ovarian tumour specimens using comparative genomic hybridisation (CGH). The present study aimed to investigate the reported allelic imbalance at 2q24-32 by amplification of several microsatellite markers at the region by quantitative microsatellite analysis (QuMA) using Taqman at the same region identified as a site of allelic imbalance. METHODS: The copy number of the genomic region in 2q24-32 was established in 21 BRCA1-associated ovarian carcinomas and 14 sporadic cases using quantitative microsatellite polymerase chain reaction (PCR). Statistical analysis was performed using permutation test analysis. RESULTS: A significant loss at D2S156 marker (2q24.2) (p = 0.026) compared with the other three markers at 2q24-32 was found in the sporadic cohort but not in the BRCA1-associated group (p = 0.385). CONCLUSIONS: Our data do not support the association between copy number gain at 2q24-32 and BRCA1 mutation status in ovarian cancers reported previously. The novel finding of the present study was significant loss at 2q24.2 in sporadic ovarian cancers.

Adenocarcinoma↗

Expression of adhesion proteins E-cadherin, alpha-catenin, beta-catenin and gamma-catenin is different in T1 and T2 breast tumours.

BACKGROUND: Breast cancer is the most common malignancy in women. Although an increasing number of patients with breast cancer are being cured by surgery, a considerable number of patients suffer relapse in the form of metastases after surgery. E-cadherin and catenins have documented roles in breast cancer progression. Mammography is supposed to decrease breast cancer mortality by detecting tumours while they are small and before they have reached a clinically detectable stage. AIM: In the present study, we wanted to evaluate whether there are differences in expression patterns of adhesion proteins, shown to be crucial in the metastatic process, between small tumours detected by mammography and clinically detected large tumours. METHODS: Expression of E-cadherin, alpha-catenin, beta-catenin and gamma-catenin was analysed using immunohistochemistry methods in 86 invasive breast carcinomas detected by mammography and compared with 90 clinically palpable invasive breast carcinomas. RESULTS: In the group of tumours detected by mammography (86 samples), reduced expression of E-cadherin was observed in 12 (14%) samples. Reduced expression of alpha-catenin was observed in four (4.6%) samples, and three (3.5%) samples showed reduced expression of beta-catenin. All samples showed strong expression of gamma-catenin. When expression patterns of these proteins were evaluated in 90 clinically detected tumours, we observed reduced expression of E-cadherin in 58 (64.4%) samples, 12 (13.3%) samples showed reduced expression of alpha-catenin, while nine (10%) samples showed reduced expression of beta-catenin. Strong expression of gamma-catenin was detected in all tumours also in this group.Statistical analyses revealed a highly significant difference in expression of E-cadherin (p<0.001). However, no statistically significant differences were observed in expression of alpha-catenin (p = 0.081) and beta-catenin (p = 0.092) between the two groups of tumours. CONCLUSION: Results indicate that T1 breast tumours harbour less alterations in E-cadherin-catenin complexes and therefore are probably less likely to disseminate, and patients probably have a better prognosis than if tumours are diagnosed as T2.

Aged↗

D2-40 is not a specific marker for cells of mesothelial origin in serous effusions.

The presence of effusion in a patient with a history of primary malignant tumor elsewhere in the body is generally accepted as a clinical manifestation of metastatic disease. Even in those cases, it is sometimes difficult to differentiate reactive mesothelial cells from carcinoma cells. Another challenging issue especially in the field of serous effusions is the differential diagnosis between malignant mesothelioma and metastatic adenocarcinoma. The aim of this study was to evaluate the potential use of the D2-40 antibody detecting the M2A oncofetal antigen in the diagnosis of malignant serous effusions. Two hundred and ninety effusion specimens (169 ovarian carcinomas, 44 breast carcinomas, 32 malignant mesotheliomas, 6 lung carcinomas, 8 reactive specimens, and 31 tumors of other origin) were assessed. Expression in reactive mesothelial cells was additionally assessed on 145 malignant effusions. Immunohistochemical analysis using the EnVision system was performed. M2A antigen was expressed in malignant mesotheliomas and reactive mesothelial cells in all specimens. Positive membranous staining was observed in 58% of ovarian carcinomas, 33% of lung carcinomas, and 30% of breast carcinomas. Pulmonary, breast, and nonovarian gynecologic tumors usually showed weak focal membranous staining, whereas the ovarian adenocarcinomas showed an expression pattern more similar to mesotheliomas. The results from the present study suggest low specificity for D2-40 as a mesothelial marker, especially in the context of differentiating mesothelial cells from ovarian carcinoma, and argue against its inclusion in the diagnostic panel of serous effusions.

Adenocarcinoma↗