Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UMLS:C0149925 (small cell lung cancer)
6,491 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Overexpression of the Her-2/neu oncogene and receptor protein was reported in approximately 20% of breast cancers and was associated with a poor prognosis. Her-2/neu expression was a predictor for response to trastuzumab, a monoclonal antibody that recognizes the Her-2/neu cell surface receptor. Data regarding the expression of Her-2/neu in lung cancer are far more limited, and there is little information regarding the influence of Her-2/neu expression and response to trastuzumab alone or in combination with chemotherapeutic agents. In this report we evaluated Her-2/neu gene expression by fluorescence in situ hybridization (FISH) and the cell surface expression of the Her-2/neu receptor by immunohistochemistry using the HercepTest and by FACS analysis in 31 lung cancer cell lines with 5 breast cancer cell lines as controls. By FACS, we found Her-2/neu overexpression (mean fluorescence intensity >8) in 2 of the 22 non-small cell lung cancer (NSCLC) cell lines (9%), none of 11 small cell lung cancer (SCLC) cell lines, and 4 of 5 breast cancer cell lines. A positive HercepTest (2+ or 3+) was found in 6 of 19 NSCLC cell lines (26%, 2+; 5%, 3+), 1 of 3 SCLC cell lines (33%), and 4 of 5 breast cancer cell lines (80%). One of 6 NSCLC cell lines examined (17%) had gene amplification with >32 copies of Her-2/neu/cell and had homogeneous staining regions. One NSCLC cell line had a maximum of 14 copies of Her-2/neu/cell, and 3 had modest increases in Her-2/neu gene copy number without gene amplification (maximum 5-8 copies/cell). None of the SCLC cell lines had more than a maximum of 4 copies/cell, whereas the 2 breast cancer cell lines had maximum Her-2/neu copy numbers of 80 and 5, respectively. Aneusomy rather than true amplification was the major cause of increased Her-2/neu expression in most of the NSCLC cell lines. There was a strong correlation when the results of fluorescence-activated cell sorter, HercepTest results, and FISH were compared in pairs. Furthermore, Trastuzumab produced a G(1) cell cycle arrest and growth inhibition only in cell lines expressing Her-2/neu. The IC(50) for growth inhibition was correlated with cell surface Her-2/neu expression. The combination of trastuzumab and chemotherapeutic agents produced more than additive growth inhibition in cell lines expressing Her-2/neu, but the level of additivity was not related to the amount of Her-2/neu expression. These data indicate that trastuzumab alone and in combination with chemotherapeutic agents should be tested in NSCLC patients and that Her-2/neu should be assessed by both immunohistochemistry and FISH methods in these studies to determine which test is the best predictor of outcome.
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PMID:Expression of Her-2/neu in human lung cancer cell lines by immunohistochemistry and fluorescence in situ hybridization and its relationship to in vitro cytotoxicity by trastuzumab and chemotherapeutic agents. 1159 20

Despite intensive treatment efforts, the prognosis for lung cancer is very poor; less than 15% of patients survive 5 years. Trastuzumab, a monoclonal antibody targeting the HER2/neu protein receptor, is effective in the treatment of metastatic breast cancer and may be useful in the treatment of non-small cell lung cancer (NSCLC). Using the HercepTest (Dako; Carpenteria, CA), 25% of NSCLC show 2+ or greater HER2/neu expression, but only 6% to 8% of NSCLC tumors have 3+ overexpression. Positive HER2/neu expression is most often seen in adenocarcinomas compared with squamous cell carcinomas or large cell carcinomas, and is rarely seen in small cell lung cancer. As determined by fluorescence in situ hybridization analysis, the high degree of HER2/neu gene expression and gene amplification seen in breast cancer is lower in NSCLC. Polysomy is the cause of increased HER2/neu expression in most NSCLC. Prospective clinical studies with trastuzumab in lung cancer are ongoing. Future studies in NSCLC need to include immunohistochemistry and fluorescence in situ hybridization analysis to determine the method of choice for evaluating clinically relevant HER2/neu-positive tumors.
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PMID:HER2/neu expression in malignant lung tumors. 1189 14

Although recent advances in therapy have improved the quality of life in patients with extensive stage small cell lung cancer (ESSCLC), prolonged survival is still uncommon. To determine the role of HER-2/neu overexpression and other clinical predictors (symptoms at presentation) of adverse outcome in ESSCLC, we performed a retrospective study on subjects with a biopsy-proven diagnosis of ESSCLC. HER-2/neu overexpression was evaluated using immunohistochemistry (IHC) performed on paraffin-embedded specimens. An IHC score of > or = 2+ was considered positive for overexpression. Between 1991 and 2000, 223 patients with ESSCLC were identified, of whom 193 patients (84 females, 109 males) with a mean age of 68.5 years (range: 42-90 years) had adequate tissue specimens for HER-2/neu testing. The symptoms at initial presentation and proportionate number of patients were: weight loss 61 (31.6%), cough 53 (27.5%), dyspnea 33 (17.1%), mass on chest radiograph 18 (9.3%), chest pain 15 (7.7%), asymptomatic 14 (7.2%) and others (weakness, lymphadenopathy, hoarseness and paraneoplastic syndromes) 29 (15.0%). Of the 193 specimens, 57 (29.5%) revealed HER-2/neu overexpression. The median survival for patients with ESSCLC who were HER-2/neu positive was 8 months (range: 1-25.5 months) while that in the HER-2/neu negative group was 16 months (range: 2-34 months). Interestingly, after adjusting for age, performance status and type of therapy, subset analysis revealed that the survival was significantly lower in HER-2/neu positive individuals (P<0.001; Mann-Whitney U-test). In our study, weight loss and cough were the two most common (59%) presenting complaints in patients with ESSCLC. Also, since HER-2/neu positivity was a marker for poor prognosis in ESSCLC, testing for overexpression may play a role in identifying patients at risk for shortened survival. Further studies would delineate whether HER-2/neu overexpression renders SCLC chemoresistant and thus, adversely affects outcome. There exists a need for randomized controlled trials to assess the role of Herceptin (alone or in combination with standard chemotherapy) in patients with ESSCLC.
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PMID:Predictive role of HER-2/neu overexpression and clinical features at initial presentation in patients with extensive stage small cell lung carcinoma. 1200 35

The c-erbB family of receptors includes four distinct receptors, namely c-erb B1, 2, 3 and 4 (HER1, 2, 3 and 4, respectively). Trastuzumab (T) is a recombinant humanized anti-HER2 monoclonal antibody that binds the extracellular domain of the receptor and blocks intracellular signalling. In clinical studies of T, either alone or in combination with chemotherapy, in HER2 overexpressing metastatic breast cancer patients, a significant benefit was obtained--improved response rates and survival, when T was combined with chemotherapy. Several trials of adjuvant T, either singly or in combination with chemotherapy, are in progress in early breast cancer patients. Pertuzumab defines a new class of HER2 inhibitors, "dimerization inhibitors" that block both homo- and hetero-dimerization of HER2. In preclinical studies pertuzumab is inhibitory to breast, prostate and non small cell lung cancer cell lines, both over and non overexpressing HER2. In phase I clinical trials pertuzumab has shown activity in a number of human cancers. A phase II program is in progress.
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PMID:Targeting c-erbB2 and other receptors of the c-erbB family: rationale and clinical applications. 1568 10

New cancer-specific therapies are based on specific molecular alterations of malignant tumors which are targeted by small inhibitory molecules or specific antibodies. During the development of these agents potential molecular targets are characterized for their expression and importance for pathogenesis and clinical course of the disease. Frequently the assumption is made that the degree of expression of the target protein or the molecular alteration of the target gene allows a prediction if a certain patient will profit from the therapy against this specific protein or not. The first example was that breast cancer patients with overexpression and/or amplification of Her-2 respond to a Her-2-specific antibody (Herceptin) therapy. The expression or activation of the Epidermal Growth Factor Receptor (EGFR, Her-1) are altered in many epithelial tumours and clinical studies indicate that they have important roles in tumor aetiology and progression. Several EGFR-specific monoclonal antibodies and specific tyrosine kinase inhibitors were developed in the last years. Cetuximab is approved for the treatment of metastatic colorectal cancer and advanced squamous cell carcinoma of the head and neck and is investigated in numerous trials for other tumors. The expression of EGFR in the tumor was a prerequisite for the therapy in the first trials, giving the pathologist a central role in treatment decision. However, recent data clearly demonstrate that the degree of EGFR expression does not correlate with therapy response. Therefore a therapy should be not denied to a individual patient solely because of lack of EGFR expression in the tumor. Tyrosine kinase inhibitors (e. g. Gefitinib, Erlotinib) are effective in the treatment of non small cell lung cancer and also investigated in ongoing trials in many cancer types. The correlation of therapy response with both specific molecular alterations (EGFR tyrosine kinase domain mutations) and clinicopathological features (Asian ethnicity, women, non-smokers, bronchioloalveolar differentation) is a good example of the potential role of predictive molecular pathology in the future.
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PMID:[Role of predictive pathology in oncology--example of new therapies targeting EGFR]. 1786 89

ErbBs signalling is always associated with the development of the majority of solid cancers via both the MAPK pathway leading to cell cycle progression and the PI3K pathway causing cell survival. As a consequence, many ErbB antagonists have been developed and patented for cancer treatment purposes. These antagonists belong to two drug classes: monoclonal antibodies (mAbs) and small molecules competing with ATP and inhibiting the tyrosine kinase domain (TKIs). Three patented mAbs are currently approved in clinical cancer treatment: Trastuzumab (Herceptin) directed against HER2 and used to treat breast cancer, Cetuximab and Panitumumab which are anti-EGFR antibodies approved for colorectal cancer treatment. Unfortunately, these mAbs are facing cancer resistance mediated by paracrine activation of other ErbB members or compensatory ErbB signalling factors. In parallel, three TKIs have been approved to treat cancer: Gefitinib (Iressa), Erlotinib (Tarceva) inhibiting specifically EGFR and approved to treat non small cell lung cancer and Lapatinib (Tykerb) which has the dual specificity EGFR/HER2 and recently approved to treat metastatic breast cancer. These TKIs are also facing resistance mutations within the TK domain which increase its affinity to ATP. Resistance problems are leading to the adoption of a new strategy based on the combination of different therapies and this is likely to be the most promising future of cancer treatments.
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PMID:ErbB antagonists patenting: "playing chess with cancer". 1907 65