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A new therapeutic approach to the fetus with congenital complete heart block: preemptive, targeted therapy with dexamethasone.

BACKGROUND: Therapy of established congenital complete heart block in the fetus has resulted in improved survival but persistence of heart block. This exposes the infant to the morbidity of heart block, including the risk of sudden death and pacemaker implantation. CASE: A 35-year-old gravida 2, para 1, with Sjogren syndrome and a previous pregnancy complicated by congenital complete heart block presented during her second pregnancy. Intensive fetal monitoring with echocardiography was employed. Early evidence of myocardial dysfunction and dysrhythmia was found, dexamethasone therapy was initiated, and the dysfunction and dysrhythmia resolved. The pregnancy went to term without further complication. CONCLUSION: This represents a new and successful strategy to identify very early signs of myocardial disease in a fetus at high risk of congenital complete heart block, enabling targeted, preemptive therapy.

Adult↗

Targeted therapies in Ewing's sarcoma.

Ewing's sarcoma, the second most common malignant bone tumor, is an extremely aggressive neoplasm, mainly occurring in children and adolescents. Ewing's sarcoma shows a low survival rate despite the adoption of multimodal treatments, including local control of the disease by surgery and/or radiotherapy and multidrug adjuvant chemotherapy. No new effective drugs have been recently described and proposed for sarcomas and, therefore, innovative treatment modalities are very welcome and needed. In this respect, two new entry sites for therapeutic intervention may derive from tailored therapies against the insulin-like growth factor receptor I (IGF-IR) or CD99, a cell surface transmembrane protein highly expressed in Ewing's sarcoma. Neutralizing IGF-IR functions was shown to significantly affect Ewing's sarcoma malignancy. However, it is only recently that new clinically applicable drugs targeting IGF-IR are available and represent a concrete opportunity. Engagement of CD99 induces massive apoptosis of Ewing's sarcoma cells through caspase-independent mechanisms and reduces their malignant potential. Since the apoptotic functions of this molecule are of potential clinical interest, the effects of a tailored therapy triggering CD99 were analyzed against Ewing's sarcoma local tumors and distal (lung and bone) metastases in athymic mice. The effects of targeted therapies against CD99 or IGF-IR were evaluated in combination with conventional chemotherapeutic agents to assess best drug-drug interactions and treatment schedule. Toxic effects of these tailored therapies were also considered to offer the necessary rationale for the application of possible forthcoming clinical trials.

12E7 Antigen↗

Targeted therapy for short QT syndrome.

Identified in 2000, short QT syndrome is an electrical disease of the heart characterised as a channelopathy. At first considered extremely rare, families with this disease have been found in Brazil, Finland, Germany, Spain, the Netherlands, France, Turkey, Italy and the US. The focus of the paper is to present a current review of short QT syndrome, as well as providing an overview upon the potential molecular target-based strategies for management of this very deadly disease. Abnormalities in three different potassium channels have been recognised as the cause of the disease and targets for therapy will be discussed for each potassium channel individually. In addition to pharmacological strategies, gene therapy with transfer of genes coding for specific ion channel subunits or regulatory proteins are discussed.

Arrhythmias, Cardiac↗

Identification of Down's syndrome critical locus gene SIM2-s as a drug therapy target for solid tumors.

We report here a cancer drug therapy use of a gene involved in Down's syndrome. Using bioinformatics approaches, we recently predicted Single Minded 2 gene (SIM2) from Down's syndrome critical region to be specific to certain solid tumors. Involvement of SIM2 in solid tumors has not previously been reported. Intrigued by a possible association between a Down's syndrome gene and solid tumors, we monitored SIM2 expression in solid tumors. Isoform-specific expression of SIM2 short-form (SIM2-s) was seen selectively in colon, prostate, and pancreatic carcinomas but not in breast, lung, or ovarian carcinomas nor in most normal tissues. In colon tumors, SIM2-s expression was seen in early stages. Antisense inhibition of SIM2-s expression in a colon cancer cell line caused inhibition of gene expression, growth inhibition, and apoptosis. The administration of the antisense, but not the control, oligonucleotides caused a pronounced inhibition of tumor growth in nude mice with no major toxicity. Our findings provide a strong rationale for the genes-to-drugs paradigm, establish SIM2-s as a molecular target for cancer therapeutics, and may further understanding of the cancer risk of Down's syndrome patients.

Animals↗

Novel protein targeted therapy of metastatic melanoma.

Metastatic melanoma patients have a dismal prognosis with poor responsiveness to chemotherapy, radiation therapy and current immunotherapy regimens and a median survival of less than six months. Novel therapies directed at melanoma-selective molecular targets are urgently needed. Based on the frequent constitutive activation of the mitogen-activated protein kinase (MAPK) signaling pathway in malignant melanomas and the selective inhibition of MAPK signaling by anthrax lethal factor which proteolytically cleaves MAPK kinases, anthrax lethal toxin may be a useful agent for patients with metastatic melanoma. Anthrax lethal toxin consists of two proteins--protective antigen and lethal factor. These two proteins have been separately produced in good yields and in high purity. The three-dimensional structures of these proteins have been solved, and their molecular mechanisms of cell binding and action determined. Preclinical studies with anthrax lethal toxin show sensitivity of malignant melanoma cell lines in tissue culture and anti-tumor efficacy in melanoma xenograft models. Additional studies to define the maximal tolerated doses and dose-limiting toxicity of anthrax lethal toxin in rodent and primate models should pave the way for phase I studies testing the efficacy of the anthrax lethal toxin in patients with metastatic melanoma.

Animals↗

Imatinib and gastrointestinal stromal tumor (GIST): a selective targeted therapy.

Gastrointestinal stromal tumors are the most frequent mesenchymal tumors in the gastrointestinal tract. They originate from the interstitial cells of Cajal and are characterized by an anomalous receptor for a growth factor with tyrosine-kinase activity (c-kit). This anomaly causes a permanent activation of the receptor and uncontrolled cell growth. These tumors show a poor response to traditional chemotherapy drugs, and are thus associated with low survival in cases of advanced disease. Imatinib, a tyrosine kinase inhibitor, is an example of selective targeted oncologic therapy that induces improved survival in these patients. We discuss two cases of metastatic gastrointestinal stromal tumors with a good response to imatinib, and also review the pathophysiology and treatment-related outcome of this type of tumors. We include results from clinical phase-III studies.

Adult↗

Human Epidermal Growth Factor Receptor-2 positive metastatic salivary duct carcinoma with remarkable response to targeted therapy: a case report and therapeutic implications.

Salivary duct carcinoma (SDC) is a rare and highly aggressive malignancy that frequently overexpresses Human Epidermal Growth Factor Receptor 2 (HER2). Despite the increasing recognition of HER2-targeted strategies, evidence remains limited and largely derived from small trials and case series. We report the case of a middle-aged man with HER2-positive metastatic SDC who achieved near-complete pathologic and radiological response to trastuzumab and docetaxel, enabling surgical resection for locoregional control. This case highlights the role of anti-HER2 therapy as a first-line strategy in SDC and underscores the importance of individualized management plans integrating systemic treatment and locoregional measures.

Humans↗

The promise of targeted therapy: cancer drugs become more specific.

Toxic chemotherapeutic agents are slowly being supplemented by a new generation of drugs that recognize specific targets in or on cancer cells. Although these molecular and genetic approaches are in their infancy, they hold the promise of more effective therapies with markedly fewer side effects. Several targeted agents are already approved by the US Food and Drug Administration (FDA) for use in malignancies, and numerous others are in clinical trials.

Antibodies, Monoclonal↗

Uncertainties in radiation therapy: target definition in carcinoma of the uterine cervix.

In treatment of patients with carcinoma of the cervix, as in any other malignant tumor, accurate identification of target volumes is critical to enhance precision of radiation therapy planning and delivery. These results in improved locoregional tumor control lead to lower incidence of distant metastases and improved survival. Also, radiation therapy morbidity is decreased, enhancing quality of life. Various imaging techniques are available to achieve better target delineation and this can be enhanced with image fusion. Available innovative treatment techniques to optimize the use of radiation therapy for these patients are illustrated.

Female↗

A potential approach for gene therapy targeting hepatoma using a liver-specific promoter on a retroviral vector.

Recent technological advances made in molecular biology and in vitro culture of human and other mammalian cells have led to broad medical and scientific acceptance of the feasibility of gene therapy for genetic diseases. Cancer might practically be one of the attractive targets for such therapy. For the treatment of cancer, it is important to manipulate the gene of interest such that it is expressed solely in cancer cells. We have developed a tissue-specific gene expression system, based on a tissue-specific promoter on a retroviral vector. A murine ecotropic retroviral vector was constructed in which the Escherichia coli beta-galactosidase gene served as a reporter; it was expressed under control of the albumin enhancer element and promoter. The tissue specificity of this vector was first assessed in vitro, and beta-galactosidase activity was detected exclusively in hepatoma cell lines. This recombinant retrovirus was injected directly into a subcutaneous tumor composed of transplantable murine MH-134 hepatoma cells, and expression of the gene was observed in vivo. Then this recombinant retrovirus was injected via the spleen or directly into the liver, resulting in the gene expression in dividing hepatocytes in partially hepatectomized mice, but not in nondividing hepatocytes in normal mice. Gene transfer specific to dividing hepatocytes and expression by means of retroviral vectors should possess high potential for selective elimination of hepatoma cells surrounded by nondividing normal hepatocytes.

Animals↗

[Molecular diagnostic and targeted therapy--"Barking dogs are going to bite": presentations from the 42nd Annual Meeting of the American Society of Clinical Oncology, Atlanta 2006].

This years ASCO-meeting reinforced the trend of the recent years to get off from empirical treatment concepts to tailored and individualized diagnostics and therapy. However, the basis for an individual therapy is a specific molecular diagnostic which can be reflected in the analysis of hormonal receptor, HER-1, HER-2 and topoisomerase IIalpha in breast cancer. All these markers are not only able to prognosticate the course of disease but they also can predict the success of specific treatment approaches. Trastuzumab is standard therapy in HER-2 positive breast cancer both in the adjuvant and palliative setting. But new therapeutic agents, as e. g. lapatinib, are promising in the treatment of HER-2 positive breast cancer even if trastuzumab is failing. Otherwise it might possibly be an alternative option but adequate clinical results have to be awaited. The targeted inactivation of EGFR-related signal transduction pathways by e. g. gefitinib did not show a substantial improvement neither as a single agent nor in combination with endocrine treatment. However, the appropriate subgroup which might benefit from this therapy has to be defined even if molecular data suggest that patients with ER positive and PR negative breast cancer might be such a group. The increasing knowledge in terms of the biology of bone metastasis led to the development of new treatment options as e. g. denosumab, a humanized monoclonal antibody for RANK ligand. Two adjuvant cytotoxic treatment trials revealed that taxanes improve the prognosis of node positive breast cancer and should be administered sequentially. The advantage of switching to an aromatase inhibitor after two to three years of tamoxifen in endocrine treatment of postmenopausal patients is proved by two clinical trials (IES, ARNO) which could demonstrate a survival benefit. In conclusion it seems to be evident that new targeted therapy options are effective and will set new standards for the treatment of breast cancer patients in the near future. The presentation for the ovarian cancer focused on the addition of a third cytotoxic agent to carboplatin and paclitaxel as the standard therapy for the primary treatment of ovarian cancer. New data of Bevacizumab in the treatment of primary and recurrent ovarian cancer were presented. However, this is not yet a standard treatment for all patients and needs further investigations within large, multicentre, randomised trials. The lymphonodectomy as part of the primary therapy of the endometrial cancer seems to be a benefit at least in patients with advanced disease or high risk stage I tumours. The adjuvant therapy of uterine sarcomas is still not yet very well investigated and clear. A trial which recruited 12 years demonstrated a benefit in overall survival which has to be interpreted with caution. In this year again there have been registered an increasing number of interesting contributions from Germany, which also received international attention.

Biomarkers, Tumor↗

Radiation doses to the cell nucleus in single cells and cells in micrometastases in targeted therapy with (131)I labeled ligands or antibodies.

PURPOSE: The aim of this study was to theoretically investigate how the radiation dose to cell nuclei depends on the subcellular position of (131)I. The influence of the size of the cells and crossfire irradiation in clusters of cells was also studied. METHODS AND MATERIAL: Using data describing the dose rate around a point source of (131)I, we calculated the dose distributions inside and around cell models of different sizes. The assumed positions of (131)I were on the cellular or nuclear membrane, in the cytoplasm, in the nucleus, or spread in the whole cell. The mean doses to the nucleus of the targeted cell and to the nuclei of its neighbors were calculated using the dose distributions. RESULTS: The dose distributions inside a single targeted cell showed very different distribution profiles depending on the subcellular position of the (131)I. Targeting the nucleus instead of the cellular membrane could increase the dose to the nucleus 10-fold. Crossfire irradiation can be the major contributor to the nuclear dose in clusters of more than six cells. CONCLUSIONS: Dosimetry without microscopic considerations is inadequate for targeted radionuclide therapy of disseminated or clustering tumor cells exposed to (131)I. Therapeutic doses could be achieved, even in single cells, when (131)I was positioned near, or inside the cell nucleus, or when the clusters were large enough.

Cell Count↗

Perspectives for TNF-alpha-targeting therapies.

Rheumatoid arthritis (RA) is the most common chronic autoimmunopathy, clinically leading to joint destruction as a consequence of the chronic inflammatory processes. The pathogenesis of this disabling disease is not well understood, but molecular events leading to tissue inflammation with cartilage and bone destruction are now better defined. Therapy with slow-acting, disease-modifying antirheumatic drugs (DMARDs), such as low-dose methotrexate, which is generally accepted as a standard, leads to a significant amelioration of symptoms but does not stop joint destruction. Due to these disappointing treatment options and the identification of certain inflammatory mediators as therapeutic targets, novel therapeutic agents such as monoclonal antibodies, cytokine-receptor/human-immunoglobulin constructs or recombinant human proteins have been tested in RA with some success. Clinical trials testing anti-TNF-alpha agents, alone or in combination with methotrexate, have convincingly shown the feasibility and efficacy of these novel approaches to the therapy of RA. A clinical trial testing combination therapy with chimeric (mouse/human) anti-TNF-alpha monoclonal antibody infliximab and methotrexate showed, for the first time in any RA trial, that there was no median radiological progression in the groups given infliximab plus methotrexate over a 12-month observation period. Similar encouraging results might arise from trials employing other TNF-alpha-directed agents, such as the fully human monoclonal antibody D2E7, the p75 TNF-alpha-receptor/Ig construct, etanercept, or others, as discussed in this review. Combination partners other than methotrexate will be established as suitable cotreatment along with anti-TNF-alpha biologicals. Forthcoming new indications for TNF-alpha-targeted therapies are discussed.

Animals↗

Interleukin-2 fusion toxin: targeted therapy for cutaneous T cell lymphoma.

The interleukin (IL)-2 receptor has proved an attractive target for T cell-directed therapies. Agents including monoclonal antibodies, single-chain antibody immunoconjugates, radioimmunoconjugates, and, most recently, ligand fusion toxins have demonstrated activity in vitro and in clinical trials in both hematologic malignancies and diseases characterized by proliferation of activated T cells, such as graft-versus-host disease. DAB389IL-2 (ONTAK) is a ligand fusion toxin consisting of the full-length sequence of the IL-2 gene genetically fused to the enzymatically active and translocating domains of diphtheria toxin. DAB389IL-2 and its predecessor, DAB486IL-2, have demonstrated activity in a variety of diseases, including cutaneous T cell lymphoma (CTCL), psoriasis, rheumatoid arthritis, and HIV infection. Further clinical development of IL-2 fusion toxins in CTCL and other hematopoietic malignancies is predicated on identification of the high-affinity IL-2 receptor complex on the malignant cells and on a better understanding of the biological determinants of cytotoxicity of these molecules in vivo.

Antineoplastic Agents↗

Recent progress in target therapy in colorectal cancer.

Monoclonal antibodies are a new class of agents targeting at specific receptors on cancer cells. In addition to having direct cellular effects, antibodies can cany substances, such as radioactive isotopes, toxins and antineoplastic agents, to the targeted cells. Two of them, cetuximab (Erbitux) and bevacizumab (Avastin), seem to have acquired a significant role in the management of patients with radically resected and advanced colorectal carcinoma. Cetuximab plus irinotecan has been approved as second-line therapy in irinotecan-resistant colorectal cancer patients; bevacizumab plus 5FU/LV has resulted in higher response and longer survival than 5FU/LV alone in first line metastatic colorectal cancer; its combination with oxaliplatin has recently doubled results. The superior therapeutic efficacy of these molecular targeting agents over traditional chemotherapy has been shown by the survival benefit achieved by patients with advanced or recurrent cancers. Although the precise molecular mechanism by which these agents produce or enhance an antitumour effect, alone or in combination with anticancer drugs, is unknown, the specific inhibition of target genes critically involved in tumour progression and metastasis is clear. Further studies to determine which patient groups and anticancer drugs are more appropriate for combination therapy with these agents are needed. All the most important data obtained through recent studies are discussed, emphasizing their mechanisms of action, safety profiles and clinical applications.

Antibodies, Monoclonal↗

Antisense oligodeoxynucleotide therapy targeting clusterin gene for prostate cancer: Vancouver experience from discovery to clinic.

BACKGROUND: The objective of this study was to review our experience in the development of antisense (AS) oligodeoxynucleotide (ODN) therapy for prostate cancer targeting antiapoptotic gene, clusterin. METHODS: We initially summarized our data demonstrating that clusterin could be an optimal therapeutic target for prostate cancer, then presented the process of developing AS ODN therapy using several preclinical animal models. Finally, the preliminary data of the recently completed phase I clinical trial using AS clusterin ODN as well as the future prospects of this therapy are discussed. RESULTS: Expression of clusterin was highly up-regulated after androgen withdrawal and during progression to androgen-independence, but low or absent in untreated tissues in both prostate cancer animal model systems and human clinical specimens. Introduction of the clusterin gene into human prostate cancer cells confers resistance to several therapeutic stimuli, including androgen ablation, chemotherapy and radiation. AS ODN targeting the translation initiation site of the clusterin gene markedly inhibited clusterin expression in prostate cancer cells in a dose-dependent and sequence-specific manner. Systemic treatment with AS clusterin ODN enhanced the effects of several conventional therapies through the effective induction of apoptosis in prostate cancer xenograft models. Based on these findings, a phase I clinical trial was completed using AS clusterin ODN incorporating 2'-O-(2-methoxy)ethyl-gapmer backbone (OGX-011), showing up to 90% suppression of clusterin in prostate cancer. CONCLUSIONS: The data described above identified clusterin as an antiapoptotic gene up-regulated in an adaptive cell survival manner following various cell death triggers that helps confer a phenotype resistant to therapeutic stimuli. Inhibition of clusterin expression using AS ODN technology enhances apoptosis induced by several conventional treatments, resulting in the delay of AI progression and improved survival. Clinical trials using AS ODN confirm potent suppression of clusterin expression and phase II studies will begin in early 2005.

Clinical Trials as Topic↗

The epidermal growth factor receptor pathway: a model for targeted therapy.

The epidermal growth factor receptor (EGFR) is a receptor tyrosine kinase receptor that is frequently expressed in epithelial tumors. The EGFR was the first receptor to be proposed as a target for cancer therapy, and after 2 decades of intensive research, there are several anti-EGFR agents available in the clinic. Recent advances in our understanding in the mechanisms of receptor activation and function, discovery of primary and secondary EGFR somatic mutations, as well as a new generation of anti-EGFR agents provide new leads on the clinical targeting of this receptor and may serve as a model for strategies aimed at targeting other receptors.

ErbB Receptors↗

Recent advances in targeted therapy for non-small cell lung cancer.

Non-small-cell lung cancer (NSCLC) is characterized by wide molecular heterogeneity. In recent years, novel agents that target specific, aberrant molecular pathways in NSCLC have been under rigorous evaluation. Erlotinib, an inhibitor of the epidermal growth factor receptor (EGFR) tyrosine kinase, improves survival for advanced NSCLC patients who progressed following one or two prior chemotherapy regimens. Novel molecular predictive markers, such as EGFR mutations and gene amplification, are at present under evaluation to select patients for therapy with erlotinib. Another area of progress is the recent demonstration that bevacizumab, a monoclonal antibody against the vascular endothelial growth factor (VEGF), extended survival when administered in combination with chemotherapy for patients with non-squamous NSCLC. Promising anticancer activity has also been noted with agents that inhibit the VEGF receptor tyrosine kinase in patients with advanced NSCLC. Inhibitors of the proteosomal complex, histone deacetylase, mammalian target of rapamycin pathway, and other growth factor receptor-mediated signaling are under investigation for treatment of NSCLC. These developments have paved the way for a new era of tailor-made therapies based on clinical or molecular/genetic profiles in the treatment of NSCLC. This article reviews the recent advances in targeted therapy of advanced NSCLC.

Animals↗