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KIT gene deletions at the intron 10-exon 11 boundary in GI stromal tumors.

Most gastrointestinal stromal tumors (GISTs) harbor oncogenic mutations in the KIT gene, and the majority of these mutations affect the juxtamembrane domain of the kinase encoded by exon 11. Screening GISTs for KIT gene mutations is important for translational research studies and for providing prognostic information on the likelihood of tumor response to treatment with the kinase inhibitor imatinib mesylate (Gleevec). In a series of GISTs analyzed in our laboratory by a combination of denaturing HPLC and direct DNA sequencing, we identified 19 cases with KIT exon 11 deletions that included from 1 to 14 bp of intron 10 sequence and resulted in loss of the normal splice acceptor site at the beginning of exon 11. Predicted use of the next potential splice-acceptor site was confirmed by cDNA sequencing in 4 cases. Thus, the resulting mutant isoform, deletion KPMYEVQWK 550-558, was the same in all 19 cases. Only two other examples of deletions across the intron 10-exon 11 boundary have been reported, yet among 722 GISTs analyzed in our laboratories these deletions were not uncommon, accounting for 3.9% of exon 11 mutations and 2.6% of all tumors. Loss of KIT intron 10 sequences may be under-recognized if the forward primer is too close to exon 11, or if cases are examined exclusively at the cDNA level. Laboratories that offer clinical screening for KIT mutations in GI stromal tumors should be aware of this class of mutations.

Amino Acid Sequence↗

Chronic inflammation, apoptosis and (pre-)malignant lesions in the gastro-intestinal tract.

Inflammatory conditions are characterized by activation of the transcription factor nuclear factor kappa B (NF-kappaB), resulting in the expression of NF-kappaB-regulated, inflammation-related genes, such as inducible nitric oxide synthase (iNOS) and cyclo-oxygenase-2 (COX-2). Expression of these genes contributes to the survival of cells. Indeed, exposure to pro-inflammatory cytokines in the absence of NF-kappaB activation leads to apoptosis.(1,2) Chronic inflammatory conditions are accompanied by constitutive activation of NF-kappaB and hence, to the continuous expression of pro-survival genes, as has been observed in chronic gastritis.(3) Although beneficial for the survival of cells during exposure to inflammatory stress, the continuous activation of NF-kappaB may also pose a risk: cells with a pro-survival phenotype may give rise to continuously proliferating cells and may thus be tumorigenic. Progression to a malignant phenotype of these cells will most likely involve additional changes in the expression of non-NF-kappaB regulated genes e.g. a shift in the balance of pro- and anti-apoptotic genes towards a more anti-apoptotic phenotype. Literature on inflammation-related genes and the apoptotic balance in pre-malignant and malignant conditions in the gastro-intestinal tract is still scarce and conflicting. In this review, we aim to give an overview of the existing literature and we will focus on inflammation- and apoptosis-related genes in the sequence of normal epithelium-inflamed epithelium-metaplasia-dysplasia-cancer in the gastrointestinal tract, in particular esophagus (Barrett's esophagus: BE), stomach (gastritis) and colon (inflammatory bowel disease: IBD).

Animals↗

The role of TGF-beta and Wnt signaling in gastrointestinal stem cells and cancer.

The past three decades have seen an unremitting quest to identify and understand gastrointestinal stem cells, their plasticity in differentiating across cell types, as well as their role in normal, regenerative, and cancer cells. A fascinating hallmark of stem cells is their ability to undergo assymetric cell division, which entails replication of the DNA followed by division of the nucleus and partitioning of the cytoplasm to yield two different daughter cells: a stem cell as well as a committed progenitor cell, the latter proliferating into differentiated progeny. We are only just beginning to understand how normally quiescent, tissue-specific stem cells interpret a vast array of signals to develop into the gastrointestinal system. These signaling pathways include the transforming growth factor-beta (TGF-beta) superfamily, Wnt, FGFs, Hedgehog, Hox proteins that originate from surrounding mesodermal/stromal tissue as well as endodermal/epithelial tissue. TGF-beta and wnt proteins are key morphogens that ultimately influence cell division and cell fate, so that gut endodermal stem cells enter the cell cycle, and undergo cell division that ultimately leads to differentiated cells such as functional hepatocytes, gastric parietal cells, or gut epithelial cells. Disruptions and errors in this process usually lead to tissue-specific gastrointestinal cancers such as hepatocellular cancers, gastric adenocarcinomas, and colonic adenocarcinomas. An increasingly complex and coherent view of stem/progenitor cell signaling networks, which coordinate cell growth, proliferation, stress management, and survival, is helping to define the fragile areas where malignancies are likely to develop and shows promise for the development of better cancer therapies.

Animals↗

A survey of red cell use in 45 hospitals in central Ontario, Canada.

BACKGROUND: The purpose of this survey was to establish baseline information on blood component use in relation to patient diagnoses, procedures, and demographics and to identify patterns of blood use that may be used for blood program planning and transfusion audits. STUDY DESIGN AND METHODS: A cross-sectional survey of the transfusion of blood components in teaching and nonteaching hospitals in central Ontario between September 1991 and August 1992 was carried out. Coders of hospital medical records routinely record demographics, procedures, diagnoses, and other relevant information. A protocol was created by which medical records coders could add the components transfused to the discharge abstract for this study. Red cell use is reported here. RESULTS: Of the 61 hospitals invited to participate, from which 547,279 patients were discharged during the 12-month period of the study, 45 (74%) agreed to participate. Information was collected on 439,373 discharged patients. Of these, 26,611 (6.1%) received at least 1 unit of red cells. Of a total of 101,116 red cell units transfused, more than 74 percent were used in patients discharged with neoplasms, gastrointestinal diseases, circulatory system diseases, and trauma. High-transfusion-use procedures included operations and procedures on the digestive and cardiovascular systems, diagnostic and therapeutic procedures, musculoskeletal system, and hemic or lymphatic system procedures. CONCLUSION: This survey provides baseline blood transfusion information for a specific period that can help determine the need for hospital audits and maximum surgical blood-order schedule guideline reviews. This information is relevant to current recommendations to reduce patient's exposure to blood components. These transfusion data will assist in blood program planning based on known disease trends, demographics, and population changes.

Cross-Sectional Studies↗

Treatment of extranodal lymphomas.

At least one-quarter of the non-Hodgkin's lymphomas arise primarily at extranodal sites. The rising incidence of non-Hodgkin's lymphomas, observed over recent decades, have mainly affected the primary extranodal entities. Survival rates vary among the specific sites of primary extranodal lymphomas. This is due partly to differences in natural history, related mainly to the histological type but also to differences in management strategy which are related to organ-specific problems. Few controlled studies facilitate therapeutic decisions in this setting. This chapter represents a general overview of the available data.

Central Nervous System Neoplasms↗

The role of prostaglandins and other eicosanoids in the gastrointestinal tract.

Nonsteroidal anti-inflammatory drugs (NSAIDs) are generally prescribed to ameliorate symptoms associated with acute pain and chronic inflammatory diseases such as arthritis. Recent epidemiologic studies and clinical trials indicate that use of NSAIDs and cyclooxygenase (COX)-2 selective inhibitors are associated with a reduced risk of certain malignancies, especially gastrointestinal cancer. The cyclooxygenase enzymes are the best known targets of NSAIDs; this diverse class of compounds blocks conversion of arachidonic acid to prostanoids. Prostaglandins and other eicosanoids derived from COX-1 and COX-2 are involved in a variety of physiologic and pathologic processes in the gastrointestinal tract. Recent efforts to identify the molecular mechanisms by which COX-2-derived prostanoids exert their proneoplastic effects have provided a rationale for the possible use of NSAIDs alone or in a combination with conventional or experimental anticancer agents for the treatment or prevention of gastrointestinal cancers.

Animals↗

Galactosyltransferase isoenzyme II in the detection of pancreatic cancer: comparison with radiologic, endoscopic, and serologic tests.

We assessed the value of several serologic markers in detecting pancreatic carcinoma in a prospective study of 270 patients. The sensitivity and specificity of galactosyltransferase isoenzyme II (GT-II), carcinoembryonic antigen (CEA), alpha-fetoprotein, ferritin, C1q binding, and ribonuclease were determined. GT-II was the most sensitive (67.2 per cent) and specific (98.2 per cent) for discriminating between benign and malignant disease and was more sensitive and specific than CEA, the next most useful marker. Sensitivity was 64 per cent for ultrasound, 79.4 per cent for computerized body tomography (CBT), and 92.8 per cent for endoscopic retrograde cholangiopancreatography (ERCP). As a single test, only ERCP was more sensitive than GT-II, but more sensitive diagnoses resulted when GT-II was combined with ultrasound (92 per cent), CBT (88 per cent), or ERCP (100 per cent). Serum GT-II may be useful both by itself and in combination with imaging techniques in distinguishing benign from malignant pancreatic disease; however, this test does not discriminate between pancreatic carcinoma and other gastrointestinal neoplasms.

Angiography↗

Polyamine biosynthesis in relation to K-ras and p-53 mutations in colorectal carcinoma.

BACKGROUND: Polyamines are important polycations found in high concentrations in gastrointestinal neoplasms, and ornithine decarboxylase is the key enzyme in their biosynthesis. Also genes with oncogenic potential (e.g. K-ras and p53) contribute to neoplastic transformation by modifying normal cellular proliferation and differentiation. Our aim was to evaluate the ornithine decarboxylase activity and polyamine levels in samples of colorectal carcinoma and uninvolved surrounding mucosa from 86 patients (52 men and 34 women) showing different patterns of K-ras/p53 mutations. METHODS: Polyamines were evaluated by high performance liquid chromatography. Ornithine decarboxylase activity was determined using the radiometric method. K-ras and p53 mutations were investigated by PCR followed by restriction fragment length polymorphism (PCR-RFLP) and single strand conformational polymorphism (PCR-SSCP), respectively. Multiple linear regression analysis was used to analyse relationships among polyamine biosynthesis, clinical-pathological variables and K-ras/p53 mutations. RESULTS: ODC activity and polyamine levels were significantly higher in neoplastic samples than in normal surrounding mucosa. K-ras codon 12 mutation was found in 25/86 patients (29.1%) and p53 gene mutation in 41/86 (47.7%). Polyamine biosynthesis was significantly higher in cancers showing K-ras mutation, either with or without p53 mutation [K-ras(+)/p53(-) and K-ras(+)/p53(+)], compared to samples with K-ras wild type [K-ras(-)/p53(-) and K-ras(-)/p53(+)]. Multiple linear regression analysis confirmed this finding. CONCLUSIONS: The present study provides evidence of a close relationship between K-ras mutation and polyamine biosynthesis in human colorectal carcinoma in a way that is largely p53 independent. In addition, our data support the hypothesis of different pathways in colorectal tumorigenesis reflecting different combinations of biochemical parameters and genetic alterations.

Adenocarcinoma↗

Inhibitory effect of 17beta-estradiol on growth and the polyamine metabolism of a human gastric carcinoma cell line (HGC-27).

BACKGROUND: Estrogens may, by means of their receptors, modulate the growth of several tumors including gastrointestinal neoplasms. This control may occur through interaction with other molecules such as polyamines. An inverse relation between polyamine levels and the estrogen receptorial content has previously been demonstrated in vivo in human gastric carcinoma. The aim of the present study was to evaluate the effects of 17beta-Estradiol administration on the in vitro cell proliferation rates and the polyamine metabolism of an estrogen receptor-positive human gastric cancer cell line (HGC-27). METHODS: Estrogen receptors were detected with enzyme immunoassay. Cell proliferation was assessed by means of [3H]-thymidine incorporation and the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. The polyamine content was evaluated with high-performance liquid chromatography and the ornithine decarboxylase activity with a radiometric technique. RESULTS: Exposure of HGC-27 cells to increasing concentrations of 17beta-Estradiol showed that an antiproliferative action became evident at concentrations of 8 microM or higher. At such concentrations, ornithine decarboxylase (ODC) activity was also significantly reduced, as were all polyamine levels, compared with the untreated control. These findings suggest that one of the mechanisms underlying 17beta-Estradiol inhibition of HGC-27 cell proliferation is a decrease in ODC activity and, hence, in polyamine production.

Cell Division↗

Regional nutritional pattern and cancer mortality in the Federal Republic of Germany.

Regional age-adjusted mortality rates of the Federal Republic of Germany from 1976 to 1980 were correlated with regional nutritional data from a national survey on income and consumption. This survey was conducted in 1973 and covered a sample of 50,000 households. The mortality rates due to carcinomas of the stomach, colon, rectum, liver, gallbladder, pancreas, breast, and prostate and the consumption data of 15 nutrients and other compounds are shown for the 11 Federal States. For alcohol, vitamin C and calcium variations range about 20%, whereas deviations in the consumption of protein, fat, and most carbohydrates appear of minor importance. Some of the 45 correlation coefficients significant at the 5% level (out of 210) may have etiologic importance. The associations that coincide in both sexes are alcohol and disaccharide consumption with stomach cancer and protein intake with pancreatic cancer. Because previous habits and consumption may have a stronger etiologic influence than do present ones in the induction of chronic diseases, the utilization of existing information from the 1930s (e.g., Atlas of Ethnic Studies) and the assessment of habits in previous decades by means of case-control studies are emphasized.

Alcohol Drinking↗