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Biomedical subjects

Frauke Bataille

Publications and source records attributed to Frauke Bataille.

At least 19 recordsLinked to original sources

Mammalian target of rapamycin is activated in human gastric cancer and serves as a target for therapy in an experimental model.

The mammalian target of rapamycin (mTOR) has become an interesting target for cancer therapy through its influence on oncogenic signals, which involve phosphatidylinositol-3-kinase and hypoxia-inducible factor-1alpha (HIF-1alpha). Since mTOR is an upstream regulator of HIF-1alpha, a key mediator of gastric cancer growth and angiogenesis, we investigated mTOR activation in human gastric adenocarcinoma specimens and determined whether rapamycin could inhibit gastric cancer growth in mice. Expression of phospho-mTOR was assessed by immunohistochemical analyses of human tissues. For in vitro studies, human gastric cancer cell lines were used to determine S6K1, 4E-BP-1 and HIF-1alpha activation and cancer cell motility upon rapamycin treatment. Effects of rapamycin on tumor growth and angiogenesis in vivo were assessed in both a subcutaneous tumor model and in an experimental model with orthotopically grown tumors. Mice received either rapamycin (0.5 mg/kg/day or 1.5 mg/kg/day) or diluent per intra-peritoneal injections. In addition, antiangiogenic effects were monitored in vivo using a dorsal-skin-fold chamber model. Immunohistochemical analyses showed strong expression of phospho-mTOR in 60% of intestinal- and 64% of diffuse-type human gastric adenocarcinomas. In vitro, rapamycin-treatment effectively blocked S6K1, 4E-BP-1 and HIF-1alpha activation, and significantly impaired tumor cell migration. In vivo, rapamycin-treatment led to significant inhibition of subcutaneous tumor growth, decreased CD31-positive vessel area and reduced tumor cell proliferation. Similar significant results were obtained in an orthotopic model of gastric cancer. In the dorsal-skin-fold chamber model, rapamycin-treatment significantly inhibited tumor vascularization in vivo. In conclusion, mTOR is frequently activated in human gastric cancer and represents a promising new molecular target for therapy.

Adenocarcinoma↗

Reduced expression of CYLD in human colon and hepatocellular carcinomas.

CYLD was originally identified as a tumor suppressor that is mutated in familial cylindromatosis. Recent studies suggested a role for CYLD in nuclear factor-kappaB (NF-kappaB) regulation. NF-kappaB activation has been connected with multiple aspects of oncogenesis but the underlying molecular mechanisms of persistent NF-kappaB activation in tumors remain largely unknown. Thus, we evaluated CYLD transcription in different colon and hepatocellular carcinoma cell lines and tissue samples, respectively. CYLD was downregulated or lost in all tumor cell lines investigated as compared with primary human colonic epithelial cells and hepatocytes, respectively. Further, quantitative PCR analysis revealed reduced CYLD mRNA expression in most tumor samples compared with non-tumorous tissue. Analysis on protein level confirmed these findings. Functional assays with CYLD transfected cell lines revealed that CYLD expression decreased NF-kappaB activity. Thus, functional relevant loss of CYLD expression may contribute to tumor development and progression, and may provide a new target for therapeutic strategies.

Blotting, Western↗

Tissue microarray analysis of methylthioadenosine phosphorylase protein expression in melanocytic skin tumors.

BACKGROUND: Using tissue microarrays, we investigated whether methylthioadenosine phosphorylase (MTAP) protein expression is associated with clinicopathologic variables in benign and malignant melanocytic skin tumors. OBSERVATIONS: Cytoplasmic MTAP expression was detected in 227 (72.1%) of 315 informative cases. Expression was significantly reduced in primary malignant melanomas and in melanoma metastases compared with benign nevi (P<.001 for both). No difference was noted in MTAP expression between primary malignant melanomas and melanoma metastases. In primary malignant melanomas, a Ki67-labeling index less than 5% was associated with MTAP expression (P = .04), suggesting that loss of MTAP expression is associated with proliferation. No other variables had significant associations with MTAP expression. Lymph node metastases demonstrated significantly higher MTAP expression compared with skin metastases (P = .01). In the overall cohort, MTAP expression was not associated with prognosis. Among 26 patients with MTAP-positive melanomas and tumor recurrence, 18 patients who received interferon therapy had a significant benefit compared with 8 patients who did not receive interferon therapy (P = .009). This was not seen in the patients with MTAP-negative tumors. Conclusion Methylthioadenosine phosphorylase protein expression may be a predictive marker of interferon therapy resistance in patients with melanoma and disease progression.

Antineoplastic Agents↗

Multiparameter immunofluorescence on paraffin-embedded tissue sections.

Immunohistochemical techniques have gained increasing importance in diagnostics and research. While formalin-fixed, paraffin-embedded human tissue retains excellent morphology, the detection of antigens by immunofluorescence in its sections and especially the demonstration of multiple simultaneous antibodies have limitations. Double immunofluorescence labeling of routinely processed paraffin sections has been described previously. The signal intensity observed after triple labeling has been reported to be significantly inferior to that obtained by application of double fluorochromes. The authors show multicolor labeling of three and four primary antibodies in routinely processed paraffin-embedded tissue sections using a standardized immunofluorescence technique. In addition, procedures to reduce background staining and to avoid nonspecific double staining are described.

Antibodies↗

Raf kinase inhibitor protein is downregulated in hepatocellular carcinoma.

The Ras/Raf/MEK/ERK signalling cascade is frequently deregulated in tumourigenic diseases and known to be involved in proliferation and transformation of cells. Also in hepatocellular carcinoma (HCC) increased ERK levels are observed and known to correlate with tumour progression, but the underlying molecular mechanism are unknown. We analyzed expression of Raf-1 kinase inhibitory protein (RKIP) in HCC. Expression of RKIP mRNA and protein was downregulated in HCC cell lines and tissue as compared to primary human hepatocytes (PHH) or non-tumorous liver tissue, respectively. Transfection of an HCC cell line with an RKIP expression construct blocked the Raf kinase pathway resulting in decreased activity of ERK1/2 and AP-1. In contrast, downregulation of RKIP by transfection with an antisense RKIP construct led to increased ERK1/2 and AP-1 activity. Since HCC develop in the majority of cases in cirrhotic liver tissue and cirrhosis is the main risk factor for HCC development, we analyzed RKIP expression also in non-cancerous cirrhotic liver tissues by immunohistochemistry. In contrast to normal liver tissue, where the staining was equally distributed within the cytoplasm, hepatocytes in cirrhotic liver revealed an intense RKIP staining of the membrane. It can be speculated that this changed RKIP expression pattern parallels impaired protein function in PHH in cirrhotic livers that may predispose PHH to malignant transformation. In addition, our study demonstrates functional relevance of downregulation of RKIP in HCC that may play an important role in HCC development and progression.

Androgen-Binding Protein↗

Functional expression of the interleukin-11 receptor alpha-chain in normal colonic epithelium and colon cancer.

BACKGROUND: Interleukin-11 (IL-11) has been evaluated as an anti-inflammatory and mucosa-protective therapeutic agent in inflammatory bowel diseases (IBDs). Activity of IL-11 requires binding to the alpha receptor subunit (IL-11Ralpha) that provides ligand specificity. Recently, we showed that in the intestinal mucosa, IL-11Ralpha is mainly present on epithelial cells mediating antiapoptotic effects. The aim of this study was to investigate the expression profiling of IL-11Ralpha and its downstream signaling cascade in colonic adenoma and carcinoma. MATERIALS AND METHODS: The expression of IL-11Ralpha in normal colonic mucosa, 11 colonic adenomas, and 10 carcinomas was analyzed by immunohistochemistry. In addition, IL-11Ralpha-expression and IL-11Ralpha-induced phosphorylation of signal transducer and activator of transcription (STAT)3 were investigated by Western blot analysis. RESULTS: Immunohistochemistry revealed significant IL-11-Ralpha expression in epithelial cells of normal colonic mucosa. In contrast, the expression of IL-11-Ralpha in colon adenomas and carcinomas was either absent or only detectable in very few scattered epithelial cells. Densitometric analysis of Western blots confirmed these results, showing a decrease of IL-11Ralpha-protein in cells isolated from adenomas or carcinomas. Reduced STAT3-phosphorylation in carcinoma cells indicated functional consequences of decreased IL-11Ralpha-protein expression on signal transduction. CONCLUSION: This study demonstrates a decrease of IL-11-Ralpha-protein expression in epithelial cells isolated from colon carcinomas and adenomas compared to normal colonic mucosa and a reduced STAT3 signaling. Because of reduced binding and signal transduction, it is unlikely that therapeutically administered IL-11 would contribute to colorectal carcinoma induction and growth.

Adult↗

Promoter-hypermethylation is causing functional relevant downregulation of methylthioadenosine phosphorylase (MTAP) expression in hepatocellular carcinoma.

The methylthioadenosine phosphorylase (MTAP) gene is localized in the chromosomal region 9p21. Here, frequently homozygous deletions occur in several kinds of cancer associated with the loss of tumour suppressor genes as p16 and p15. The aim of this study was to analyse MTAP expression in hepatocellular carcinoma (HCC) and to get an insight into the regulation and functional role of MTAP in hepatocancerogenesis. Compared with primary human hepatocytes MTAP expression was markedly downregulated in three different HCC cell lines as determined by real-time PCR and western blotting. This was not due to genomic losses or mutations but to promoter-hypermethylation. Reduced MTAP-expression was confirmed in vivo in HCC compared with non-cancerous liver tissue on both mRNA and protein levels. To study the functional relevance of the downregulated MTAP expression in HCC, MTAP expression was re-induced in HCC cell lines by stable transfection. In these MTAP re-expressing cell clones the invasive potential was strongly reduced, whereas no effects on cell proliferation were observed in comparison with mock transfected cell clones. Furthermore, in MTAP re-expressing cells interferon (IFN)-alpha and IFN-gamma induced a significantly stronger inhibition of cell proliferation than in mock transfected cells. In conclusion, our results suggest a functional role of MTAP inactivation in HCC development and invasiveness. Furthermore, in the light of a recent report revealing an association between MTAP activity and IFN sensitivity, our findings may have clinical significance for therapeutic strategies.

Carcinoma, Hepatocellular↗

Physiological role of macrophage inflammatory protein-3 alpha induction during maturation of intestinal macrophages.

Intestinal macrophages (IMAC) are a central component in the defense of the intestinal mucosa against luminal microbes. In normal mucosa, monocytes differentiate to immunologically tolerant IMAC with a typical phenotype lacking activation markers such as CD14 and TLRs 2 and 4. CD33+ IMAC were isolated from normal intestinal mucosa by immunomagnetic beads. A subtractive hybridization subtracting mRNA from normal IMAC from those of in vitro differentiated macrophages was performed. IMAC differentiation was studied in multicellular spheroids (MCS). Functional assays on migration of CD45R0+ T cells were performed in MCS coculture models. Of 76 clones, 3 obtained by subtractive mRNA hybridization showed >99% homology to mRNA of MIP-3alpha, indicating that this chemokine is induced in IMAC compared with in vitro differentiated macrophages. MIP-3alpha protein expression was confirmed in cryostat sections of normal intestinal mucosa by immunohistochemistry. IMAC in the lamina propria stained positive for MIP-3alpha. FACS of purified IMAC clearly indicated expression of MIP-3alpha in these cells. In the MCS-in vitro differentiation model for IMAC, MIP-3alpha protein expression was absent on day 1 but detectable on day 7 of coculture, demonstrating the induction of MIP-3alpha during differentiation of IMAC. IMAC attracted CD45R0+ T cells to migrate into an MCS coculture model. In human mucosa, a close contact between IMAC and CD45R0+ T cells could be demonstrated. MIP-3alpha is induced during the differentiation of monocytes into IMAC. Our data suggest that MIP-3alpha expression could be involved in the recruitment of CD45R0+ cells into the lamina propria.

Adult↗

Ephrin-B2 is differentially expressed in the intestinal epithelium in Crohn's disease and contributes to accelerated epithelial wound healing in vitro.

AIM: Eph receptor tyrosine kinases and their membrane bound receptor-like ligands, the ephrins, represent a bi-directional cell-cell contact signaling system that directs epithelial movements in development. The meaning of this system in the adult human gut is unknown. We investigated the Eph/ephrin mRNA expression in the intestinal epithelium of healthy controls and patients with inflammatory bowel disease (IBD). METHODS: mRNA expression profiles of all Eph/ephrin family members in normal small intestine and colon were established by real-time RT-PCR. In addition, differential expression in IBD was investigated by cDNA array technology, and validated by both real-time RT-PCR and immunohistochemistry. Potential effects of enhanced EphB/ephrin-B signaling were analyzed in an in vitro IEC-6 cell scratch wound model. RESULTS: Human adult intestinal mucosa exhibits a complex pattern of Eph receptors and ephrins. Beside the known prominent co-expression of EphA2 and ephrinA1, we found abundantly co-expressed EphB2 and ephrin-B1/2. Interestingly, cDNA array data, validated by real-time PCR and immunohistochemistry, showed upregulation of ephrin-B2 in both perilesional and lesional intestinal epithelial cells of IBD patients, suggesting a role in epithelial homeostasis. Stimulation of ephrin-B signaling in ephrin-B1/2 expressing rat IEC-6-cells with recombinant EphB1-Fc resulted in a significant dose-dependent acceleration of wound closure. Furthermore, fluorescence microscopy showed that EphB1-Fc induced coordinated migration of wound edge cells is associated with enhanced formation of lamellipodial protrusions into the wound, increased actin stress fiber assembly and production of laminin at the wound edge. CONCLUSION: EphB/ephrin-B signaling might represent a novel protective mechanism that promotes intestinal epithelial wound healing, with potential impact on epithelial restitution in IBD.

Crohn Disease↗

Reduced expression of Hugl-1, the human homologue of Drosophila tumour suppressor gene lgl, contributes to progression of colorectal cancer.

The human gene, human giant larvae (Hugl-1/Llg1/Lgl1) has significant homology to the Drosophila tumour suppressor gene lethal(2)giant larvae (lgl). The lgl gene codes for a cortical cytoskeleton protein, Lgl, that binds Myosin II and is involved in maintaining cell polarity and epithelial integrity. The human protein, Hugl-1 contains several conserved functional domains found in Lgl, suggesting that these proteins may have closely related functions. Whether loss of Hugl expression plays a role in human tumorigenesis has so far not been extensively investigated. Thus, we evaluated tumour tissues from 94 patients undergoing surgery for colorectal cancer (CRC) for loss of Hugl-1 transcription and compared our findings with the clinical data from each of these patients. We found that Hugl-1 was lost in 75% of tumour samples and these losses were associated with advanced stage and particularly with lymph node metastases. Reduced Hugl-1 expression during the adenoma-carcinoma sequence occurring as early as in colorectal adenomas was detected by both immunohistochemical and reverse transcription-polymerase chain reaction analysis. Functional assays with ecdysone-inducible cell lines revealed that Hugl-1 expression increased cell adhesion and decreased cell migration. Our studies thus indicate that downregulation of Hugl-1 contributes to CRC progression.

Adenoma↗

Bone morphogenic proteins are overexpressed in malignant melanoma and promote cell invasion and migration.

Malignant melanoma cells are known to have altered expression of growth factors compared with normal human melanocytes. These changes probably favor tumor growth and progression and influence the tumor environment. The induction of transforming growth factor beta1 (TGF-beta1), TGF-beta2, and TGF-beta3 expression in malignant melanoma has been reported before, whereas the expression of related bone morphogenic protein (BMP) molecules has not been analyzed in melanomas until now. Here, we show that BMP4 and BMP7 are up-regulated in nine melanoma cell lines, whereas BMP2 is overexpressed in only two of the analyzed cell lines. Immunohistochemistry of primary and metastatic melanoma also shows increased BMP4 and BMP7 expression compared with nevi. Promoter studies reveal that expression is controlled at the transcriptional level. The transcription factor Ets-1 was identified as a positive regulator for BMP4 expression. In order to determine the functional relevance of BMP expression in malignant melanoma, chordin-expressing cell clones and antisense BMP4 cell clones were generated. The clones in which BMP4 activity and expression are reduced show no changes in proliferation or in attachment-independent growth when compared with controls. However, a strong reduction of migratory and invasive properties was observed in these cells, suggesting that BMP4 promotes melanoma cell invasion and migration and therefore has an important role in the progression of malignant melanoma.

Animals↗

Strong expression of methylthioadenosine phosphorylase (MTAP) in human colon carcinoma cells is regulated by TCF1/[beta]-catenin.

Methylthioadenosine phosphorylase (MTAP) is known as a ubiquitously expressed house keeping gene important in biochemical salvage processes. The MTAP gene is localized on the human chromosomal region 9p21, a region often deleted in cancer. Recently, several groups including our own have shown that MTAP serves as a tumour suppressor gene. The aim of this study was to analyse the role of MTAP in colon carcinoma and normal colon epithelium and the regulation of gene expression. To examine MTAP RNA and protein expression, we screened six colon carcinoma cell lines and human primary colon epithelial cells by RT-PCR and immunoblotting. MTAP expression was confirmed in vivo by immunohistochemical staining of normal colon tissue compared to adenoma and colon carcinoma. Interestingly, we found strong MTAP mRNA and protein expression by colon carcinoma cell lines but no expression by colonic epithelial cells. To analyse the regulation of MTAP expression, promoter studies were performed and revealed control of MTAP expression by LEF/TCF/beta-catenin. Furthermore, we demonstrated a significant correlation between MTAP protein expression and tumour progression as the intensity of MTAP protein staining increased from normal tissue to carcinoma. In addition, the recently postulated association between MTAP activity and interferon (IFN) sensitivity was confirmed in colon epithelial cells showing only little response to IFN-gamma, in contrast to the carcinoma cell lines. In summary, these data indicate for the first time that MTAP is not expressed in normal human colonic epithelium but is strongly upregulated in colon carcinoma. This finding may be of clinical significance concerning the homeostasis of normal colon epithelium and potential treatment of colon carcinoma.

Adenocarcinoma↗

Association of antibodies to exocrine pancreas with subtypes of Crohn's disease.

OBJECTIVES: The Vienna classification of Crohn's disease (CD) subdivides patients according to their age at diagnosis, disease location, and disease behaviour. This study tested whether antibodies against exocrine pancreatic tissue (PAbs) are associated with Vienna classification subtypes of CD. METHODS: PAbs were examined by indirect immunofluorescence in sera of patients with CD (n = 208), or ulcerative colitis (n = 47), and in normal controls (n = 50). Presence of PAbs was compared to the Vienna classification, disease activity, and drug therapy. RESULTS: PAbs were present in 60 CD patients (28.8%), but in no patient with ulcerative colitis or in controls (P < 0.001). There was no significant association between PAbs and disease activity, or drug therapy. Complete classification into Vienna subtypes was possible in 168 patients. There was significant heterogeneity in PAb prevalence in these CD subtypes (P < 0.01). Variation was found in the behaviour category (B1, non-stricturing, non-penetrating CD: 14.0% PAb-positive; B2, stricturing CD: 41.7%; B3, penetrating CD: 31.5%; P = 0.02), but not age or location categories. PAbs were associated with long disease duration (P = 0.04). CONCLUSION: This study confirms that PAbs are highly specific for CD. The small differences in their prevalence in CD subtypes do not suggest that PAb detection is useful in discrimination of CD phenotypes.

Adult↗

In situ expression patterns of melanoma inhibitory activity 2 in healthy and diseased livers.

UNLABELLED: Recently we identified a novel gene of the MIA gene family, melanoma inhibitory activity 2 (MIA2) and found that MIA2 mRNA is selectively expressed in hepatocytes. Here, we analyzed the in situ expression of MIA2 protein and mRNA in healthy and diseased livers to get first insights into the function of MIA2. METHODS: We analyzed liver tissue of patients with chronic hepatitis C (HepC) infection and hepatocellular carcinoma (HCC) as well as a human multi-tissue array, primary human hepatocytes and the hepatoma cell-lines HepG2, Hep3B and PLC by immunohistochemical staining and quantitative RT-PCR. In addition to MIA2, the expression of alpha-smooth muscle actin (alpha-sma), a marker for activated hepatic stellate cells (HSCs)/myofibroblast, was analyzed. RESULTS: Hepatocytes were confirmed as the exclusive cellular source of MIA2 expression, with a granular, cytoplasmatic staining pattern without enhancement at the cell membrane. In contrast, only low MIA2 expression levels were detected in most HCC and hepatoma cell lines. Only in HCC that contained fibrous stroma or thick hyalinized bundles, adjacent atypical hepatocytes revealed strong staining. In accordance, MIA2 expression was also upregulated in non-tumorous livers of patients with HepC and correlated with the staging of fibrosis. Interestingly, both in HCC and liver tissues of patients with HepC we found a correlation of MIA2 and alpha-sma expression. DISCUSSION: We define for the first time in situ expression patterns of MIA2 in healthy and diseased livers. Our data raise the hypothesis that activation of HSCs/myofibroblasts has influence on MIA2 expression in vivo, consistent with our previous in vitro findings. Since the staining pattern and the protein structure highly suggests that MIA2 is a secreted protein, it may possibly serve as a marker of hepatic fibrosis.

Adult↗

Pioglitazone and rofecoxib combined with angiostatically scheduled trofosfamide in the treatment of far-advanced melanoma and soft tissue sarcoma.

BACKGROUND: Combined treatment approaches targeting tumor cells as well as stromal cells may control chemorefractory malignancies. In the current study, the authors sought to test one such combined approach in the treatment of chemorefractory melanoma and soft tissue sarcoma. METHODS: A Phase II trial was initiated to analyze the activity of a continuously administered molecularly targeted treatment regimen (daily pioglitazone [45 mg administered orally] and rofecoxib [25 mg administered orally]) combined with sequentially added angiostatic chemotherapy for patients with previously treated metastatic melanoma (n = 19) or soft tissue sarcoma (n = 21). Angiostatic chemotherapy consisted of trofosfamide (50 mg) administered orally 3 times daily beginning on the 15th day after the start of molecularly targeted therapy. RESULTS: Forty patients were evaluable for response and toxicity. Major side effects (World Health Organization Grade 3 or 4) were not observed. Objective responses and disease stabilization lasting longer than 6 months were noted in 11% and 11%, respectively, of all patients with melanoma and in 19% and 14%, respectively, of all patients with soft tissue sarcoma. Complete remission was noted in one patient with melanoma and in three patients with sarcoma. Both normal C-reactive protein (CRP) levels and CRP levels that decreased by > 30% during the 14-day biomodulator pretreatment period were found to be predictive of prolonged progression-free survival. CONCLUSIONS: To our knowledge, the current study is the first to demonstrate that a novel, completely orally administered combined biomodulator/metronomic chemotherapy regimen may be active and well tolerated in patients with chemorefractory malignancies.

Administration, Oral↗

Reduction in Raf kinase inhibitor protein expression is associated with increased Ras-extracellular signal-regulated kinase signaling in melanoma cell lines.

Mutations in the Raf signaling pathway are known to play a pivotal role in the progression of malignant melanoma. In this study, we provide evidence that the Raf-1 kinase inhibitory protein (RKIP) and its effects on Raf-1-mediated activation of mitogen-activated protein/extracellular signal-regulated kinase kinase are important for the metastatic potential of malignant melanoma. Screening nine melanoma cell lines at mRNA and protein levels, we detected significant down-regulation of RKIP expression in comparison with normal melanocytes. Loss of RKIP expression in transformed cells in vivo was confirmed in immunohistochemical analyses demonstrating reduction of RKIP expression already in primary melanoma and even stronger down-regulation or complete loss in melanoma metastases. Stable transfection of the melanoma cell line Mel Im with an RKIP expression plasmid blocked the Raf kinase pathway, resulting in down-regulation of extracellular signal-regulated kinase 1/2 and activator protein 1 activity. In very good agreement with the in vivo finding that down-regulation of RKIP expression is most obvious in melanoma metastasis, overexpression of RKIP in the highly invasive Mel Im cell line leads to a significant inhibition of invasiveness in vitro. Taken together, our results suggest that loss of RKIP in malignant melanoma contributes to enhanced invasiveness of transformed cells and therefore to progression of the disease.

Androgen-Binding Protein↗

Optimising the diagnostic value of anti-Saccharomyces cerevisiae-antibodies (ASCA) in Crohn's disease.

BACKGROUND/AIMS: Anti-Saccharomyces cerevisiae-antibodies (ASCA) are used to discriminate Crohn's disease (CD) from ulcerative colitis (UC). ASCA tests are not standardised and different methods for ASCA detection exist. This study was undertaken to compare ASCA tests and to clarify their diagnostic value. PATIENTS/METHODS: One hundred and two sera from CD patients, 53 from UC patients, and 50 sera from normal controls were examined for ASCA IgA and ASCA IgG using four different ELISA (Aesku.lab, Inova, Euroimmun, and Medipan) and indirect immunofluorescence (Euroimmun). Sensitivity, specificity, and positive and negative predictive values (PPV and NPV) for CD in this population were determined. Agreement between tests was expressed by kappa statistics. RESULTS/FINDINGS: The presence of either ASCA IgA or ASCA IgG had a PPV between 77 and 88%. Only the combined presence of ASCA IgA and ASCA IgG had a specificity which was constantly above 90%. Sensitivity, specificity, PPV, and NPV were then: Inova: 53, 97, 95, and 68%; Euroimmun ELISA: 46, 97, 94, and 66%; Aesku.lab: 50, 97, 94, and 66%; Medipan: 30, 98, 94, and 59%; indirect immunofluorescence: 51, 97, 94, and 66%. Agreement between ELISA test results of the Aesku.lab, Euroimmun, Medipan IgA and Inova systems was good (kappa: 0.63-0.79); between the Medipan IgG ELISA or indirect immunofluorescence and the others, it was lower (kappa: 0.33-0.6). If both ASCA IgA and ASCA IgG were detected by indirect immunofluorescence as well as ELISA, specificity for CD increased to >99% at a sensitivity of 23-38%. INTERPRETATION/CONCLUSIONS: The combined detection of ASCA IgA and ASCA IgG by indirect immunofluorescence as well as ELISA may optimise the discrimination of CD from UC.

Adult↗

Differential gene expression of Eph receptors and ephrins in benign human tissues and cancers.

BACKGROUND: Eph receptors and their ligands, the ephrins, represent a large class of cell-cell communication molecules with well-defined developmental functions. Their role in healthy adult tissues and in human disease is still largely unknown, although diverse roles in carcinogenesis have been postulated. METHODS: We established a set of fluorescent PCR probes and primers for the definition of individual gene expression profiles of 12 different Eph receptors and 8 ephrins in 13 different healthy tissues. The mRNA expression profiles were studied in human lung, colorectal, kidney, liver, and brain cancers. RESULTS: The family of Eph receptors/ephrins was widely expressed in adult tissues with organ-site-specific patterns: EphB6 was highest in the thymus, compatible with an involvement in T-cell maturation. Brain and testis shared a unique pattern with EphA6, EphA8, and EphB1 being the most prominent. EphA7 had a high abundance in the kidney vasculature. Ephrin-A3 was up-regulated 26-fold in lung cancer, and EphB2 was up-regulated 9-fold in hepatocellular carcinoma. EphA8 was down-regulated in colon cancer, and EphA1/EphA8 was down-regulated in glioblastomas. CONCLUSION: Eph/Ephrin genes are widely expressed in all adult organs with certain organ-site-specific patterns. Because their function in adult tissues remains unknown, further analysis of their role in disease may disclose new insights beyond their well-defined meaning in development.

Adult↗