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Mechanisms of disease: understanding resistance to HER2-targeted therapy in human breast cancer.

Trastuzumab is a monoclonal antibody targeted against the human epidermal growth factor receptor (HER) 2 tyrosine kinase receptor, which is overexpressed in approximately 25% of invasive breast cancers. The majority of patients with metastatic breast cancer who initially respond to trastuzumab, however, demonstrate disease progression within 1 year of treatment initiation. Preclinical studies have indicated several molecular mechanisms that could contribute to the development of trastuzumab resistance. Increased signaling via the phosphatidylinositol 3-kinase/Akt pathway could contribute to trastuzumab resistance because of activation of multiple receptor pathways that include HER2-related receptors or non-HER receptors such as the insulin-like growth factor 1 receptor, which appears to be involved in a cross-talk with HER2 in resistant cells. Additionally, loss of function of the tumor suppressor PTEN gene, the negative regulator of Akt, results in heightened Akt signaling that leads to decreased sensitivity to trastuzumab. Decreased interaction between trastuzumab and its target receptor HER2, which is due to steric hindrance of HER2 by cell surface proteins such as mucin-4 (MUC4), may block the inhibitory actions of trastuzumab. Novel therapies targeted against these aberrant molecular pathways offer hope that the effectiveness and duration of response to trastuzumab can be greatly improved.

Antibodies, Monoclonal↗

Targeted therapy for cytokine-refractory metastatic renal cell carcinoma, and treatment in the community.

This report of a case of cytokine-refractory metastatic, clear-cell renal cell carcinoma (RCC) presents some current issues related to use of targeted therapy in the community. Due to the different mechanisms of cytostatic vs. cytotoxic agents, traditional response assessments may not always apply in deciding when to either continue or stop treatment. While community physicians may increasingly focus more on duration of response, symptom relief, and how well patients tolerate treatment, there is a clear need for validated surrogate markers of biologic activity and response, as well as randomized trials that directly compare some of the targeted therapies being applied in advanced RCC.

Antineoplastic Agents↗

Combined vascular endothelial growth factor-targeted therapy and radiotherapy for rectal cancer: theory and clinical practice.

Despite the routine use of adjuvant and neoadjuvant chemoradiotherapy, patients with advanced rectal tumors experience significant rates of treatment failure and disease recurrence. Resistance to radiation is a particular problem. Adding a vascular endothelial growth factor (VEGF)-targeted therapy may improve outcomes in these patients. Epidemiologic studies have shown that tumor expression of VEGF predicts disease recurrence and lower overall survival in patients treated with radiation. In tumor xenograft models in mice, VEGF-targeted agents increase the response to radiation, with a greater probability of tumor control and a greater delay in tumor growth. In addition to killing cancer cells indirectly by damaging tumor blood vessels (antivascular effect), VEGF-targeted therapy may sensitize tumors to radiation through two mechanisms: by normalizing the tumor vasculature, leading to greater tumor oxygenation, and thereby increasing the cytotoxicity of radiation to cancer cells, and by increasing the radiosensitivity of tumor-associated endothelial cells. In addition, anti-VEGF agents may inhibit the regrowth of tumors after radiation by decreasing the number of circulating endothelial cells and endothelial progenitor cells. A phase I dose-escalation study has shown the safety of bevacizumab at a dose of 5 mg/kg in combination with 5-fluorouracil and radiation in patients with rectal carcinoma, and has provided evidence of both vascular normalization and antivascular mechanisms. Phase II evaluation of bevacizumab in this setting is under way.

Animals↗

Gene therapy targeting hematopoietic cells: better not leave it to chance.

Gene therapy targeting hematopoietic cells has arrived at a new stage of potency. While the potential for curing inherited disorders of the immune system has been demonstrated in clinical trials, we were also confronted with the first serious adverse events related to random insertion of foreign DNA into cellular chromosomes. As it is likely that the manifestation of severe side effects results from a multifactorial process, it will be of crucial importance to define the significance of the individual risk factors involved. The future of the field will depend on our ability to define risk classifications of clinical approaches, to continuously improve transgene technologies, and to introduce new concepts for targeted selection of transgenic cells. Interestingly, correction of genetic disorders by homologous gene repair in defined stem cell clones is on the horizon, but far from being available for clinical use.

Animals↗

Pharmacy practice issues with targeted therapy for lung cancer.

Drug costs and reimbursement issues for targeted therapies for lung cancer and how they affect pharmacy practice are discussed. Lung cancer is the most frequent cause of cancer death in the western world. Despite improvements in treatment results, less than 15% of patients survive five years after their primary diagnosis. Major advances in the understanding of cancer biology have led to the identification of several potential targets for cancer treatment. In non-small cell lung cancer (NSCLC) one of the most promising new targets has been the epidermal growth factor receptor (EGFR), which is overexpressed in most squamous cell subtypes and > or = 65% of adenocarcinomas and large cell subtypes. Gefitinib is an orally available small-molecule tyrosine kinase inhibitor that targets the intracellular domain of the EGFR. It has demonstrated activity and tolerable toxicity in patients with NSCLC. Because of its daily oral route of administration, patient compliance and education are of paramount importance, and the pharmacist plays an increasingly important role in patient management.

Antineoplastic Agents↗

Target therapy of ovarian carcinoma by monoclonal antibodies bearing chemical drugs entrapped in liposomes.

Monoclonal antibody COC166-9 against ovarian carcinoma was conjugated with adriamycin or cisplatinum entraped in liposomes as immunochemical liposomes MLA and MLP respectively. MLA was shown to have the highest effect than adriamycin or other groups on SKOV3 (ovarian cancer cell line) growth inhibition. MLA was also used in target therapy on nude mice bearing human ovarian carcinoma by xenograft of SKOV3 cells. The observations of tumor volumes revealed that this target therapy other than the controls presents a significantly better result which gives a hopeful clue to ovarian carcinoma treatment.

Animals↗

Emerging antibody-targeted therapy in leukemia and lymphoma: current concepts and clinical implications.

The success of immune-mediated therapies has encouraged studies on passive and active immunotherapy in leukemia and lymphoma. This review outlines the impact of increasing insights from basic immunology studies on the potentiation of effective immune responses and the identification of new antigens as targets for antibody (Ab)-targeted therapies. The principles of treatment in leukemia and lymphoma based on current knowledge on the classification of hematologic malignancies are reviewed, and discussed in the context of a rationale to implement new Ab-targeted immunotherapeutic approaches. An update is provided on the use of Ab-targeted therapies in clinical trials with emphasis on new emerging strategies to further expand the successful field of immunotherapy in leukemia and lymphoma.

Animals↗

Relationships between tumor size and curability for uniformly targeted therapy with beta-emitting radionuclides.

UNLABELLED: Targeted radionuclide therapy is a new form of radiotherapy that differs in some important respects from external beam irradiation. One of the most important differences is due to the finite range of ionizing beta particles emitted as a result of radionuclide disintegration. The effects of particle range have important implications for the curability of tumors. METHODS: We used a mathematical model to examine tumor curability and its relationship to tumor size for 22 beta-emitting radionuclides that may have therapeutic potential. The model assumed a uniform distribution of radionuclide throughout. RESULTS: For targeted radionuclide therapy, the relationship between tumor curability and tumor size is different from that for conventional external beam radiotherapy. With targeted radionuclides, there is an optimal tumor size for cure. Tumors smaller than the optimal size are less vulnerable to irradiation from radionuclides because a substantial proportion of the disintegration energy escapes and is deposited outside the tumor volume. CONCLUSION: We found an optimal tumor size for radiocurability by each of the 22 radionuclides considered. Optimal cure diameters range from less than 1 mm for short-range emitters such as 199Au and 33P to several centimeters for long-range emitters such as 90Y and 188Re. The energy emitted per disintegration may be used to predict optimal cure size for uniform distributions of radionuclide.

Beta Particles↗

Antibody targeted therapy in cancer: comparison of murine and clinical studies.

Antibody targeted therapy can be effective in animal models of cancer. Treatment has been less successful in man, though some responses are reported. Understanding the distribution of antibody in man and animals shows how toxicity may be minimized and patients selected for therapy on the basis of efficient antibody localization in the tumour.

Animals↗

Management of nonsevere pneumonia in military trainees with the urinary antigen test for Streptococcus pneumoniae: an innovative approach to targeted therapy.

BACKGROUND: The drug of choice for treatment of Streptococcus pneumoniae infection is generally a penicillin (including amoxicillin). Targeted therapy is, however, rarely used, because results of definitive diagnostic tests for pneumonia are not available for several days. Thus, broad-spectrum antibiotics are used for empirical treatment of pneumonia to cover both typical and atypical pathogens. Our purpose was to assess the usefulness of a strategy of targeted antimicrobial therapy based on the results of a rapid urinary antigen test for S. pneumoniae. METHODS: Military trainees with pneumonia were prospectively assigned to 2 groups: patients with positive urinary antigen test results who were treated with amoxicillin (1000 mg 3 times per day), and patients with negative urinary antigen test results who were treated with clarithromycin (500 mg 2 times per day). The duration of therapy was 5-10 days for both groups. RESULTS: A total of 219 evaluable patients were enrolled in the study. The most common causes of pneumonia were S. pneumoniae, Chlamydia pneumoniae, and Mycoplasma pneumoniae. Patients with positive urinary antigen test results had illness of greater severity at the time of study entry. Twenty-two percent of patients had positive urinary antigen test results (i.e., the amoxicillin group), and 78% had negative urinary antigen test results (i.e., the clarithromycin group). The clinical success rates were 94% for the clarithromycin group and 90% for the amoxicillin group (P = not significant). None of the patients who were classified as having treatment failure died. Resolution of clinical manifestations was slower for patients with pneumococcal pneumonia defined by a positive urinary antigen test result. CONCLUSIONS: The urine antigen test allowed targeted use of a penicillin (amoxicillin) for young immunocompetent individuals with nonsevere, community-acquired pneumonia. Clarithromycin was highly effective against both S. pneumoniae pneumonia and pneumonia due to atypical pathogens.

Adolescent↗

Analysis of cell-specific promoters for viral gene therapy targeted at the vascular endothelium.

The use of viral vectors for vascular gene therapy targeted at the endothelium is limited by the promiscuous tropism of vectors and nonspecificity of viral promoters, resulting in high-level transgene expression in multiple tissues. To evaluate suitable endothelial cell (EC)-specific promoters for vascular gene therapy, we directly compared the ability of the fms-like tyrosine kinase-1 (FLT-1), intercellular adhesion molecule-2 (ICAM-2), and von Willebrand factor (vWF) promoters to drive EC-restricted transcription after cloning into adenoviral vectors upstream of lacZ. Vastly different expression profiles were observed. Whereas both FLT-1 and ICAM-2 promoters generated transgene expression levels similar to cytomegalovirus in ECs in vitro, vWF expression levels were extremely low. Analysis of non-EC types revealed that ICAM-2 but not FLT-1 evoked leaky transgene expression, thus identifying FLT-1 as the most selective promoter. With an ex vivo human gene therapy model, the FLT-1 promoter demonstrated EC-specific transgene expression in intact human vein but no detectable expression from infected exposed smooth muscle cells in EC-denuded vein. Furthermore, when adenoviruses were systemically administered to mice, the FLT-1 promoter demonstrated extremely low-level gene expression in the liver, the major target organ for adenoviral transduction in vivo. This study highlights the potential of using the FLT-1 promoter for local and systemic human gene therapy in hypertension and its complications.

Adenoviridae↗

B cell targeted therapies.

Although the precise pathogenesis of rheumatoid arthritis (RA) remains unclear, many cell populations, including monocytes, macrophages, endothelial cells, fibroblasts and B cells, participate in the inflammatory process. Ongoing research continues to evaluate the critical roles played by B cells in sustaining the chronic inflammatory process of RA. These findings have contributed to the development of targeted therapies that deplete B cells, such as rituximab, as well as inhibitors of B lymphocyte stimulation, such as belimumab. In a phase I trial, belimumab treatment significantly reduced CD20+ levels in patients with systemic lupus erythematosus. Phase I and phase II trials of rituximab found that rituximab plus methotrexate achieved significantly better American College of Rheumatology 50% responses for patients with RA than those patients receiving monotherapy with methotrexate. These clinical trial data present promising evidence for B cell targeted therapies as future therapeutic options for RA.

Antibodies, Monoclonal↗

Targeted therapy against Bcl-2-related proteins in breast cancer cells.

INTRODUCTION: Bcl-2 and Bcl-xL confer resistance to apoptosis, thereby reducing the effectiveness of chemotherapy. We examined the relationship between the expression of Bcl-2 and Bcl-xL and chemosensitivity of breast cancer cells, with the aim of developing specific targeted therapy. METHODS: Four human breast cancer cell lines were examined, and the effects of antisense (AS) Bcl-2 and AS Bcl-xL phosphorothioate oligodeoxynucleotides (ODNs) on chemosensitivity were tested in vitro and in vivo. Chemosensitivity was evaluated by the MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-2H-tetrazolium bromide) assay, and the antitumor effect was assessed in vivo by the success of xenograft transplantation into athymic mice. RESULTS: Treatment with AS Bcl-2 and Bcl-xL ODNs resulted in a sequence-specific decrease in protein expression, compared with controls. Treatment of BT-474, ZR-75-1, and MDA-MB-231 cells with AS Bcl-2 increased chemosensitivity to doxorubicin (DOX), mitomycin C (MMC), paclitaxel (TXL), and docetaxel (TXT). Transfection of the Bcl-2 gene into MDA-MB-453 cells decreased sensitivity to DOX and MMC. Treatment of MDA-MB-231, BT-474, and ZR-75-1 cells with AS Bcl-xL increased chemosensitivity to DOX, MMC and taxanes to a smaller extent than AS Bcl-2. This occurred in the setting of increased Bax and cleaved poly(ADP-ribose) polymerase, as well as decreased Bcl-2 and pAkt. AS Bcl-2 ODNs induced splenomegaly in association with increased serum IL-12, which was attenuated by methylation of the CpG motifs of AS Bcl-2; however, methylated CpG failed to negate the increased antitumor effect of AS Bcl-2. Bcl-2 and Bcl-xL, to a smaller extent, are major determinants of chemosensitivity in breast cancer cells. CONCLUSION: Targeted therapy against Bcl-2 protein with the use of AS ODNs might enhance the effects of chemotherapy in patients with breast cancer.

Animals↗

Imipenem versus targeted therapy in cancer patients.

In many instances, broad-spectrum antibiotics are initiated empirically in febrile cancer patients and continued for the whole duration of therapy. An alternative is to narrow the spectrum whenever the offending pathogen is identified. This study is aimed at comparing these two options. Non-neutropenic cancer patients with severe infections received empiric imipenem. After 72 h, those with microbiologically documented infection were randomized either to continue imipenem or to receive a targeted therapy. After 72 h of imipenem 76.1% were improved. After randomization, a higher efficacy was observed with imipenem (88.5 vs. 72.1%: P = 0.025). Bacterial and fungal superinfections were comparable. Costs were lower for targeted therapy in gram-positive infection and higher in gram-negative infection.

Anti-Bacterial Agents↗

Perspectives for targeted therapies in cancer of unknown primary site.

Cancer of unknown primary site (CUP) ranks as the fourth most common cause of cancer deaths. Regression of the primary, early development of systemic metastases and resistance to therapy are hallmarks of this heterogeneous clinical entity. Targeted therapy offers promise for improvement of outcome of such patients, but it is currently hindered by lack of known molecular targets on which tumours are dependent for growth. In this review, we present the gene and protein profiling studies done on expression of oncogenes, tumour-suppressor genes and angiogenesis effectors and discuss the therapeutic potential of developed targeted agents. Existing data show occasional overexpression of Ras, BCL2 oncoproteins, absence of active EGFR/c-KIT/PDGFR signalling, uncommon presence of tumour-suppressor gene mutations and highly active angiogenesis in CUP. High-throughput multi-gene, multi-protein platforms offer promise for unravelling the complex molecular pathophysiology of CUP, for identification of targets suitable for modulation and ultimately hope for abrogation of its aggressive natural history.

Antineoplastic Agents↗

Basic science going clinical: molecularly targeted therapy of chronic myelogenous leukemia.

Imatinib (STI571), a 2-phenylaminopyrimidine, specifically inhibits the tyrosine kinase activity of Abl, Kit, and platelet-derived growth factor receptor. Clinical trials in chronic myelogenous leukemia (CML), characterized by the constitutively active Bcr-Abl tyrosine kinase, and gastrointestinal stromal tumors, characterized by activating mutations of Kit, have shown excellent results. This success is proof of principle for the concept of molecularly targeted therapy: rational treatment based on the recognition of the causal lesion responsible for malignant growth. In this manuscript, the preclinical and clinical development of imatinib for the treatment of CML will be reviewed. Room will be given to problems and challenges that may be typical of molecularly targeted therapy in general, such as the emergence of resistance as a result of point mutations. Last, the question will be addressed, why imatinib is so successful, and whether its success might be reproducible in other malignant conditions.

Animals↗

On the way to targeted therapy of mast cell neoplasms: identification of molecular targets in neoplastic mast cells and evaluation of arising treatment concepts.

Several emerging treatment concepts for myeloid neoplasms are based on novel drugs targeting cell surface antigens, signalling pathways, or critical effector molecules. Systemic mastocytosis is a haematopoietic neoplasm that behaves as an indolent myeloproliferative disease in most patients, but can also present as aggressive disease or even as an acute leukaemia. In patients with aggressive disease or mast cell leukaemia, the response to conventional therapy is poor in most cases, and the prognosis is grave. Therefore, a number of attempts have been made to define novel treatment strategies for these patients. One promising approach may be to identify novel targets and to develop targeted drug therapies. In this article, we support the notion that neoplastic mast cells indeed express a number of potential molecular targets including immunoreactive CD antigens, the microphthalmia transcription factor (MITF), and members of the Bcl-2 family. In addition, the tyrosine kinase receptor KIT and downstream signalling pathways have been proposed as targets of a specific pharmacological intervention. A particular challenge is the disease-related D816V-mutated variant of KIT, which is resistant against diverse tyrosine kinase inhibitors including STI571, but may be sensitive to more recently developed targeted compounds. The therapeutic potential of target-specific approaches in malignant mast cell disorders should be evaluated in forthcoming clinical trials in the near future.

Antigens, CD↗