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Query: EC:2.7.10.1 (ERK)
95,504 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Molecular inhibition of epidermal growth factor receptor (EGFR/HER1) signaling is under active investigation as a promising cancer treatment strategy. We examined the potency of EGFR inhibition achieved by combining anti-EGFR monoclonal antibody and tyrosine kinase inhibitor, which target extracellular and intracellular domains of the receptor, respectively. We specifically studied the combination of cetuximab (Erbitux, C225; ImClone Systems, New York, NY) with either gefitinib (Iressa, ZD1839; AstraZeneca, Macclesfield, UK) or erlotinib (Tarceva, OSI-774; Genentech, South San Francisco, CA) across a variety of human cancer cells. The combination of cetuximab plus gefitinib or erlotinib enhanced growth inhibition over that observed with either agent alone. As measured by immunostaining, inhibition of EGFR phosphorylation with the combination of cetuximab plus gefitinib or erlotinib was augmented over that obtained with single-agent therapy in head and neck (H&N) cancer cell lines. Phosphorylation inhibition of downstream effector molecules [mitogen-activated protein kinase (MAPK) and AKT] also was enhanced in tumor cells treated with the combination of cetuximab plus gefitinib or erlotinib. Flow cytometry and immunoblot analysis demonstrated that treatment of H&N tumor cells with cetuximab in combination with either gefitinib or erlotinib amplified the induction of apoptosis. Following establishment of cetuximab-resistant cell lines, we observed that gefitinib or erlotinib retained the capacity to inhibit growth of lung and H&N tumor cells that were highly resistant to cetuximab. Treatment with gefitinib or erlotinib, but not cetuximab, also could further inhibit the activation of downstream effectors of EGFR signaling in cetuximab-resistant cells, including MAPK and AKT. These data suggest that tyrosine kinase inhibitors may further modulate intracellular signaling that is not fully blocked by extracellular anti-EGFR antibody treatment. Finally, animal studies confirmed that single EGFR inhibitor treatment resulted in partial and transient tumor regression in human lung cancer xenografts. In contrast, more profound tumor regression and regrowth delay were observed in mice treated with the combination of cetuximab and gefitinib or erlotinib. Immunohistochemical staining, which demonstrated significant reduction of the proliferative marker proliferating cell nuclear antigen in mice treated with dual EGFR inhibitors, further supported this in vivo observation. Together, these data suggest that combined treatment with distinct EGFR inhibitory agents can augment the potency of EGFR signaling inhibition. This approach suggests potential new strategies to maximize effective target inhibition, which may improve the therapeutic ratio for anti-EGFR-targeted therapies in developing clinical trials.
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PMID:Dual-agent molecular targeting of the epidermal growth factor receptor (EGFR): combining anti-EGFR antibody with tyrosine kinase inhibitor. 1528 42

Targeted molecular therapeutics are tailored toward the genetic abnormalities that cause tumor progression. Modulation of certain signaling pathways that are aberrant in cancer cells has the potential to provide an effective, nontoxic approach to therapy in a broad range of cancers. Agents targeting BCR-ABL (imatinib mesylate [formerly known as STI-571], Gleevec; Novartis Pharmaceuticals Corp, East Hanover, NJ), retinoid receptor fusion proteins (all-trans retinoic acid), ErbB-2 or HER2/neu (trastuzumab, Herceptin; Genentech, Inc, South San Francisco, CA), epidermal growth factor receptor (IMC-C225 and ZD1839), and the phosphatidylinositol 3-kinase pathway (CCI-779) have all induced remarkable, nontoxic responses in a subset of patients with cancer and abnormalities in the corresponding signal transduction cascades. To achieve successful individualized therapy, the specific components within the aberrant signaling pathways that are driving the pathophysiology of the tumors must be identified in each patient. Molecular diagnostics can identify patients in whom the target is aberrant; linking molecular diagnostics with effective molecular therapeutics will be necessary to translate these concepts into approaches that will alter the outcome for patients with cancer. In addition, intermediary markers and/or molecular imaging techniques must be used to identify the biologically relevant dose that is sufficient to inhibit the target of interest. This review focuses on the P13K pathway, and novel molecules targeting this pathway, to illustrate the questions and challenges underlying the implementation of molecular therapeutics in breast and ovarian cancer.
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PMID:Mammalian target of rapamycin. 1579 39

Fluorouracil (FU) has been the mainstay of treatment for metastatic colorectal cancer (mCRC) for many years. However, in recent years, newer chemotherapeutic agents, particularly irinotecan (Campostar; Pfizer Pharmaceuticals, New York, NY, http://www.pfizer.com) and more recently oxaliplatin (Eloxatin; Sanofi-Aventis Inc., New York, NY, http://www.sanofi-aventis.com), have been shown to improve survival in combination with FU-based therapies. These agents were therefore incorporated into first- and second-line treatment strategies. The development of targeted agents that are tumor specific with better toxicity profiles than chemotherapeutic agents has widened the spectrum of therapies for this disease. The U.S. Food and Drug Administration (FDA) recently approved two targeted agents for treating mCRC: an antivascular endothelial growth factor monoclonal antibody (mAb), bevacizumab (Avastin; Genentech, Inc., South San Francisco, CA, http://www.gene.com), in combination with first-line 5-FU-based chemotherapy regimens and the human epidermal growth factor receptor (HER-1/EGFR)-targeted mAb cetuximab (Erbitux; ImClone Systems, Inc., New York, NY, http://www.imclone.com) as monotherapy or in combination with irinotecan as second-line therapy in refractory cancer. These newer, more effective agents are improving clinical outcome for patients with mCRC. However, as the number of agents has increased, choosing the most effective treatment strategy has become increasingly complex. This review discusses the role of the individual agents in the treatment of mCRC and identifies the most effective regimens.
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PMID:Critical evaluation of current treatments in metastatic colorectal cancer. 1582 Dec 45

We sought to provide a brief overview of the available results of trastuzumab in the neoadjuvant treatment of women with locally advanced, HER2-overexpressing breast cancer. A review of published reports was conducted by the use of Medline computer searching and manual searching of abstracts presented at the Annual Meeting of the American Society of Clinical Oncology and the San Antonio Breast Cancer Symposium between 2002 and 2004. Several phase II trials and one phase III trial show that trastuzumab-containing regimens are feasible and yield high rates of clinical and pathologic complete response in women with locally advanced HER2-overexpressing breast cancer. Moreover, the neoadjuvant approach allows serial monitoring of biologic phenomena that occur during the administration of therapy, which acquires particular importance in the case of targeted therapies like trastuzumab. The incorporation of trastuzumab into neoadjuvant therapy for breast cancer appears promising. However, no data on long-term survival and safety are available at present. Well-designed clinical trials are needed to establish the optimal trastuzumab-based neoadjuvant strategy.
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PMID:Incorporating trastuzumab into the neoadjuvant treatment of HER2-overexpressing breast cancer. 1589 75

Recent advances in the treatment and management of haematological malignancies are due in large part to an improved understanding of the basic biology that drives tumour cell growth and survival. This improved understanding has led to the clinical study and approval of a number of different targeted agents across a number of different haematological tumours. This review of clinical data covers some of the exciting clinical advances that were reported at the recent American Society of Hematology meeting in San Diego, USA. This paper focuses on three important areas of biological research that has yielded clinical trials that have affected clinical outcomes. The areas covered include proteasome inhibition and myeloma, tyrosine kinase inhibitors that are directed at the BCR-ABL fusion protein and chronic myeloid leukaemia/acute lymphoblastic leukaemia, and FLT3 inhibitors and acute myeloid leukaemia acute lymphoblastic leukaemia therapy.
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PMID:Targeted therapy for haematological malignancies: clinical update from the American Society of Hematology, 2004. 1614

Cisplatin (Platinol; Bristol-Myers Squibb, Princeton, NJ, http://www.bms.com) and carboplatin (Paraplatin; Bristol-Myers Squibb), together with newer chemotherapies, such as docetaxel (Taxotere; Aventis Pharmaceuticals Inc., Bridgewater, NJ, http://www.aventispharma-us.com), paclitaxel (Taxol; Bristol-Myers Squibb), vinorelbine (Navelbine; GlaxoSmith-Kline, Philadelphia, http://www.gsk.com), pemetrexed (Alimta; Eli Lilly and Company, Indianapolis, http://www.lilly.com), and gemcitabine (Gemzar; Eli Lilly and Company), have improved treatment outcomes in both advanced non-small cell lung cancer (NSCLC) and in the adjuvant/neoadjuvant setting. Newer systemic treatments for NSCLC, used in advanced stage IV management, are beginning to be studied in earlier stages of the disease, when treatment is better tolerated and potentially curative. Hopefully, newer agents with proven efficacies in advanced disease will enhance curability. Following the successful addition of bevacizumab (Avastin; Genentech, Inc., South San Francisco, CA, http://www.gene.com) to carboplatin/paclitaxel in advanced disease, bevacizumab is now being incorporated into adjuvant and neoadjuvant trials. Trials in stage IB-IIIA patients will study neoadjuvant docetaxel/cisplatin/bevacizumab. The discovery that patients with exon 19 and 21 mutations in the epidermal growth factor receptor gene EGFR have around an 80% response rate to gefitinib (Iressa; AstraZeneca Pharmaceuticals, Wilmington, DE, http:// www.astrazeneca-us.com) and that this response confers survival benefit indicates its potential utility for mutation-positive patients with advanced- and earlier-stage disease. Clinical characteristics, such as never smoking status and adenocarcinoma, and especially bronchioloalveolar carcinoma histological features, can also identify individuals likely to respond to EGFR tyrosine kinase inhibitors. Studies of neoadjuvant erlotinib (Tarceva; OSI Pharmaceuticals, Inc., Melville, NY, http://www.osip.com) in operable NSCLC are planned. One such study includes cisplatin and docetaxel. Effective development of active agents and disease management based on molecular profiling of lung tumors will change tomorrow's standard of care.
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PMID:How today's developments in the treatment of non-small cell lung cancer will change tomorrow's standards of care. 1627 56

A task force of the Japanese Breast Cancer Society has proposed a recommendation for adequate evaluation of hormone receptors in routine practice, in order to standardize handling of tissues, staining techniques and scoring systems. As a part of the study, several examinations were conducted to detect the effect of technical problems, including the influence of fixation time and other fixation and processing conditions, on the immunoreactivity for ERalpha. There is little influence of prolonged fixation on the immunoreactivity for ERalpha, except for cases in which particularly over-fixed blocks are used. A delay in the onset of fixation could decrease the immunohistochemical findings of steroid receptors, compared with shorter or longer fixation, and the situation is similar to the fixation of a whole large surgical specimen in formalin in a big bucket. Incomplete fixation might be an important cause of heterogeneiety of immunoreactivity for ERalpha. Manual and automated immunohistochemical (IHC) staining by DAKO (Glostrup, Denmark) and Biogenex (San Ramon, CA) and automated IHC staining by Ventana Medical Systems (Tucson, AZ) each employ different methods. Using a scoring system, in which the proportion of cells stained in each specimen was recorded as 0, less than 1%, 1% or more and less than 10%, and 10% or more, the intermethod variability of those IHC staining methods exhibited substantial multi-rater kappa values concerning the ER and PgR (kappa for ER according to the percentage of positive cells=0.67; PgR=0.72). Concerning intermethod consistency, the scoring system based on the percentage of positive cells was advantageous over other scoring systems, based on the intensity of nuclear staining. Using double staining, patients with ER-positive and HER2-positive tumors can be classified as those with co-expressed tumors and those with differently expressed tumors. As such, the co-expressed tumor might be resistant to antiestrogen therapy in ERalpha-positive and HER2-positive breast cancer and double staining might lead to the development of new therapeutic strategies for hormone and HER2-positive breast cancer.
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PMID:The effects of fixation, processing and evaluation criteria on immunohistochemical detection of hormone receptors in breast cancer. 1748 4

We describe a modification to the prescribed procedure for the Zymed Spot-Light HER2 chromogenic in situ hybridization kit (84-0146, Zymed Laboratories, San Francisco, CA) by substituting the heat pretreatment step with MW irradiation in citrate buffer 10 mmol/L at pH 6.0 at 98 degrees C for 10 minutes and repeating the procedure afterenzyme digestion with time and temperature controlled in the Mega T/ T oven (Milestone s.r.l., Sorisole, Italy). The subsequent procedure leading up to hybridized was as per manufacturer's instructions. Invasive breast carcinoma previously scored by immunohistochemistry for HER2, comprising 18 cases of 3+, 18 cases of 2+, and 12 cases of 1+, were examined by chromogenic in situ hybridization using this modified procedure, with a parallel set of cases examined by the prescribed Zymed method. The introduction of the "MW retrieval" steps resulted in consistently a greater number of hybridization signals in amplified tumor cells with benign epithelial cells and lymphocytes displaying 2 clear dots compared with the weaker and less consistent signals obtained with the standard procedure. MW exposed sections showed larger numbers of large and small clusters that often allowed identification of amplified tumors without having to count single dots with crisp staining and absence of background precipitation.
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PMID:Microwave enhancement of CISH for HER2 oncogene. 1753 14

The human EGF receptor (HER) 2 receptor tyrosine kinase is a survival factor for human cardiomyocytes, and its inhibition may explain the increased incidence of cardiomyopathy associated with the anti-HER2 monoclonal antibody trastuzumab (Genentech, South San Francisco, CA), particularly in patients with prior exposure to cardiotoxic chemotherapies e.g., anthracyclines. Here, we show that GW2974 (HER2/EGF receptor tyrosine kinase inhibitor), but not trastuzumab, activates AMP-activated protein kinase (AMPK), initiating a metabolic stress response in human cardiomyocytes that protects against TNFalpha-induced cell death. GW2974 stimulates calcium dependent fatty acid oxidation in vitro and in the myocardium of GW2974-treated rodents. Calcium chelation or siRNA-targeted AMPK knockdown blocks GW2974 induced fatty acid oxidation. In addition, inhibition of AMPK by a specific inhibitor resulted in increased killing of cardiomyocytes. Elucidating the effects of HER2-targeted therapies on AMPK may predict for risk of cardiomyopathy and provide a novel HER2-targeted strategy designed to protect myocardium from the pro-apoptotic effects of pro-inflammatory cytokines released in response to cardiac injury by chemotherapy or acute ischemia.
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PMID:Activation of AMP-activated protein kinase by human EGF receptor 2/EGF receptor tyrosine kinase inhibitor protects cardiac cells. 1755 44

Kallmann syndrome (KS), the association of hypogonadotropic hypogonadism and anosmia, was described by Maestre de San Juan in 1856 and characterized as a hereditary condition by Franz Josef Kallmann in 1944. Many aspects such as pathogeny, phenotype and genotype in KS were described in the last fifteen years. The knowledge of this condition has grown fast, making it difficult to update. Here we review historical aspects of this condition and its discoverers and describe new findings regarding the embryogenesis of the olfactory bulb and GnRH secreting neuronal tracts that are important for understanding the association of hypogonadism and anosmia. Additionally, we describe the phenotypic and genotypic heterogeneity of KS, including five related genes (KAL-1, FGFR1, PROKR2, PROK2 e NELF), and discuss the function of each codified protein in migration and maturation of the olfactory and GnRH neurons, with data from in vitro and in vivo studies. Finally we describe the clinical phenotype of patients carrying these mutations.
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PMID:[Kallmann syndrome: a historical [corrected] clinical and molecular review]. 1834 92


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