Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Panitumumab”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Panitumumab: in the treatment of metastatic colorectal cancer.

Panitumumab is a fully human immunoglobulin G2 monoclonal antibody highly selective for the epidermal growth factor receptor (EGFR), which is overexpressed in 25-77% of colorectal cancers. This overexpression is frequently associated with a poor prognosis. In a large, randomised, nonblind, multicentre phase III study in pretreated adult patients with metastatic colorectal cancer and EGFR staining in >or=1% tumour cells, panitumumab 6 mg/kg every 2 weeks plus best supportive care (BSC) was significantly (p < 0.0001) more effective in improving progression-free survival than BSC alone; recipients of panitumumab plus BSC had a 46% lower disease progression rate than those receiving BSC alone after a median follow-up of 19 weeks. Panitumumab 6 mg/kg every 2 weeks or 2.5 mg/kg/week, administered as monotherapy, produced partial response rates of 8-13% and stable disease rates of 21-30% in pretreated patients with metastatic colorectal cancer in three noncomparative, multicentre phase II studies. Preliminary phase II results also suggest a potential role for panitumumab as first-line therapy in combination with fluorouracil, folinic acid and irinotecan in patients with metastatic colorectal cancer. Panitumumab was generally well tolerated. Grade 3/4 skin-related toxicities were reported in 14% of patients receiving panitumumab plus BSC in the phase III study (versus 0% of patients receiving BSC alone). An analysis of pooled data found that high-affinity binding antibodies to panitumumab were detected in <1% of patients.

Animals↗

Panitumumab the first fully human monoclonal antibody: from the bench to the clinic.

Panitumumab (formerly known as ABX-EGF) is the first fully human monoclonal antibody to epidermal growth factor receptor to enter clinical trials for the treatment of solid tumors. Like cetuximab (Erbitux; BMS), it is directed against the extracellular ligand-binding domain of the receptor and results in blockade of the essential downstream signaling pathways that are known to govern apoptosis, proliferation and differentiation of both normal and neoplastic cell types in a wide array of tissues. It has a very high affinity for epidermal growth factor receptor and has been generally well tolerated and associated with very few infusion reactions. As a fully human agent, panitumumab has not been associated with the formation of any antibodies directed against it that has been evidenced by a very reliable pharmacokinetic profile with possible dosing schedules ranging from 1 to 3 weeks. Similar to other agents targeting the epidermal growth factor receptor pathway, a rash has been the primary toxicity and is dose dependent up to 2.5 mg/kg at which dose 100% of all patients have been affected. The anti-tumor activity of panitumumab has been tested in vitro and in vivo, and inhibition of tumor growth has been observed in numerous cancer models, particularly lung, kidney and colorectal. It has been efficacious and well tolerated both as monotherapy and in combination with other chemotherapeutic agents. Several phase I trials, two phase II trials and most recently a phase III trial in pretreated colorectal cancer have been carried out to date. Currently, there is also a randomized phase III trial (Panitumumab Advanced Colorectal Cancer Evaluation Study) investigating the role of panitumumab in the first-line treatment of colorectal cancer. No unfavorable drug-drug interactions have been observed nor has there been any effect on the pharmacokinetics of drugs with which it is being used. Recent progress in preclinical and clinical studies of panitumumab is reviewed.

Animals↗

Panitumumab.

Panitumumab, previously known as ABX-EGF, is the first fully human monoclonal antibody to be shown to be effective as a treatment for solid-tumor cancers. Its target is the epidermal growth factor receptor (EGFR), which when overactive may contribute to the development and progression of cancer and is expressed in several solid tumors, including colorectal cancer. In a recently reported phase III trial, patients with metastatic colorectal cancer who had failed previous treatment with oxaliplatin- and irinotecan-based therapy were randomized to receive single-agent panitumumab and best-supportive care, or best-supportive care alone. This trial demonstrated a significant improvement in progression-free survival with panitumumab treatment in these patients. A rash similar to that which occurs with the other anti-EGFR antibody, cetuximab, has been observed in up to 100% of patients treated with panitumumab in the various clinical trials. As with other EGFR antagonists, EGFR staining by immunohistochemistry has not been shown to be an effective method of selecting patients for treatment, whereas the severity of the rash appears to be predictive of outcome. Ongoing randomized trials are evaluating the use of panitumumab with combination treatment for the first-line treatment of metastatic colorectal cancer. This review summarizes the rationale for targeting the EGFR and the development of panitumumab in preclinical and early phase trials in several tumor types. Clinical trial results in colorectal cancer, in which the development of this agent is most advanced, will also be discussed, as will the rash associated with treatment.

Animals↗

Role of panitumumab in the management of metastatic colorectal cancer.

Panitumumab (formerly known as ABX-EGF) is the first fully human monoclonal antibody directed against the epidermal growth factor receptor in clinical use. It has proven to be very well tolerated alone and in combination with other cytotoxic chemotherapeutic agents. Panitumumab has demonstrated efficacy as monotherapy and with standard chemotherapeutic agents in a wide variety of cancer types, including non-small-cell lung cancer, renal, and colorectal cancer (CRC). To date, no human antihuman antibodies have been detected, and unlike cetuximab, infusion reactions are infrequent, and no premedications are required when administering panitumumab. The only significant toxicity has been a rash similar to that seen with other agents targeting the epidermal growth factor receptor, and such reactions have been predominantly mild to moderate. In metastatic CRC, panitumumab has been safe and efficacious when given with other commonly used agents in this disease, including irinotecan and fluorouracil. Current studies under way are looking at panitumumab in combination with FOLFOX (fluorouracil/leucovorin/oxaliplatin) plus bevacizumab as well as with novel agents that have yet to come into common clinical practice. Recent progress in development of panitumumab in the management of CRC is reviewed, and management of associated rash is discussed herein.

Antibodies, Monoclonal↗

Panitumumab in colon cancer: a review and summary of ongoing trials.

Panitumumab is a fully human antibody developed against the human epidermal growth factor receptor receptor (EGFR/HER-1), which is overexpressed in > or = 75% of patients with colorectal cancer. As a fully human antibody, panitumumab can be administered without any premedication and has the promise of decreased infusion reactions. Clinical studies have demonstrated that panitumumab has significant activity as a single agent and improves progression-free survival when compared with best supportive care. It can also be safely combined with standard cytotoxic chemotherapy. Ongoing studies are being performed to determine if the addition of panitumumab to first-line standard treatment for metastatic colorectal cancer will improve the progression-free and overall survival of these patients.

Animals↗

Randomized phase III trial results of panitumumab, a fully human anti-epidermal growth factor receptor monoclonal antibody, in metastatic colorectal cancer.

Monoclonal antibodies against the epidermal growth factor receptor have proven efficacy as monotherapy and in combination with chemotherapy in patients with metastatic colorectal cancer (CRC: mCRC). Initial clinical trials in CRC used the human-murine chimeric monoclonal antibody cetuximab. Ongoing studies are being conducted to evaluate the efficacy and safety of the fully human anti-epiderman growth factor receptor monoclonal antibody panitumumab. The results of a phase III trial which compared panitumumab as a single agent to best supportive care in patients with previously treated metastatic CRC have recently been reported Pantitumumab therapy resulted in a 46% reduction in the risk of tumor progression and a partial response rate of 8%. Rash was reported in 90% of patients with increased severity significantly correlated with improved medium overall survival (OS). Further clinical studies re ongoing and planned to test panitumumab in combination with chemotherapy in first-line therapy of advanced-stage CRC and adjuvant treatment of colon cancer.

Adenocarcinoma↗

Panitumumab.

Explore the source record for details and available documents.

Antibodies, Monoclonal↗

Gene copy number for epidermal growth factor receptor (EGFR) and clinical response to antiEGFR treatment in colorectal cancer: a cohort study.

BACKGROUND: The antiepidermal growth factor receptor (antiEGFR) monoclonal antibodies cetuximab and panitumumab have good clinical activity in about 10% of patients with metastatic colorectal cancer that is resistant to chemotherapy. The molecular mechanisms underlying clinical response or resistance to these agents are unknown. METHODS: Tumours from 31 patients with metastatic colorectal cancer who had either an objective response (n=10) or stable disease or progressive disease (n=21) after treatment with cetuximab or panitumumab were screened for genetic changes in EGFR or its immediate intracellular effectors. Specifically, we assessed the EGFR copy number and the mutation profile of the EGFR catalytic domain and of selected exons in KRAS, BRAF, and PIK3CA. RESULTS: Eight of nine of patients with objective responses who were assessable by fluorescence in-situ hybridisation (FISH) had an increased EGFR copy number. By contrast, one of 21 non-responders assessable by FISH had an increased EGFR copy number (p<0.0001 for responders vs non-responders, Fisher's exact test). The mutation status of the EGFR catalytic domain and its immediate downstream effectors PIK3CA, KRAS, and BRAF did not correlate with disease response. In colorectal-cancer cell lines, the concentration of cetuximab that completely inhibited proliferation of cells with amplified EGFR copy number did not affect proliferation of cells with unamplified EGFR. INTERPRETATION: We propose that the response to antiEGFR treatment has a genetic basis and suggest that patients might be selected for treatment on the basis of EGFR copy number.

Aged↗

Clinical experience with monoclonal antibodies to epidermal growth factor receptor.

Recent knowledge about the intermediate steps and final consequences of ligand-dependent epidermal growth factor receptor (EGFR) activation has clearly supported the notion that EGFR plays a fundamental role in regulating the proliferation and survival of malignant neoplasms. Among the rationally designed target-based therapeutics that are being assessed, those targeting EGFR appear to be some of the most clinically relevant. The strategy of using monoclonal antibodies (mAbs) to block ligand binding to the extracellular domain of the EGFR has led to the development of therapeutics that robustly arrest malignant cell proliferation and, in some cases, induce profound tumor regression. The chimeric mAb against EGFR, cetuximab, has already been approved by regulatory agencies worldwide to treat patients with advanced colorectal cancer. Other mAbs against EGFR, particularly panitumumab (ABX-EGF), h-R3, and EMD72000, are in advanced stages of clinical development.

Antibodies, Monoclonal↗

Overview of monoclonal antibodies and small molecules targeting the epidermal growth factor receptor pathway in colorectal cancer.

The epidermal growth factor receptor (EGFR) provides survival signals and is overexpressed in the majority of colorectal cancers. As more is learned about the molecular details of EGFR signaling, antibodies can be designed to interfere with specific domains of the EGFR molecule. In this review, we analyze preclinical and current clinical data on EGFR-targeting molecules and their potential role in the treatment of colorectal cancer. Cetuximab binds to domain III of EGFR and hinders ligand binding. It is now approved by the US Food and Drug Administration for metastatic colorectal cancer treatment. Panitumumab is another widely studied anti-EGFR antibody with similar properties. Bispecific antibodies are modified immunoglobulin molecules containing 2 different binding specificities. These antibodies can redirect the immune response against tumor cells by tethering effector cells such as CD3e-expressing T cells or CD16-expressing natural killer cells and granulocytes to the surface of cancer cells. Tyrosine kinase inhibitors are quinazoline-derived, low molecular weight synthetic molecules that can block the intracellular tyrosine kinase domain of several receptors, including EGFR, Erb2, and vascular endothelial growth factor receptor, and thereby inhibit ligand-induced receptor phosphorylation and abrogate the biologic effect of EGFR signaling. The presence of skin rash and EGFR gene amplification have been advanced as possible predictors of clinical effectiveness of targeted anti-EGFR therapies.

Antibodies, Monoclonal↗

Recent data with anti-epidermal growth factor receptor antibodies and irinotecan in colon cancer.

The epidermal growth factor receptor (EGFR) is overexpressed in the majority of colorectal cancers. It is the target for a class of agents at the forefront of development for the treatment of colorectal cancer, ie, the anti-EGFR monoclonal antibodies, which include cetuximab, panitumumab, and matuzumab. At present, cetuximab is the furthest along in terms of established efficacy in the treatment of metastatic or inoperable disease and is licensed for the treatment of patients with irinotecan-refractory colorectal cancer. This article reviews the recent evidence supporting the combination of these anti-EGFR agents with the cytotoxic chemotherapeutic agent irinotecan.

Antibodies, Monoclonal↗

Epidermal growth factor receptor as a target for chemotherapy.

The epidermal growth factor receptor (EGFR) is overexpressed in as many as 77% of colorectal cancer (CRC) cases. The EGFR is known to be involved in carcinogenetic processes such as cell proliferation, apoptosis, angiogenesis, cell motility, and metastasis. Preclinical and clinical studies have shown that targeting EGFR is a valid strategy for anticancer therapy. Currently, 2 classes of anti-EGFR agents are in phase II/III clinical development: monoclonal antibodies and tyrosine kinase (TK) inhibitors. The most established monoclonal antibody is cetuximab, the only EGFR inhibitor that is currently approved for use in patients with metastatic CRC. Several clinical studies of cetuximab, as a single agent or in combination with irinotecan, have shown promising efficacy in patients with metastatic CRC. Two other monoclonal antibodies, matuzumab (EMD 72000) and panitumumab (ABG-EGF), also have shown activity against EGFR-expressing CRC but are still in the early stage of clinical development. The activity of the EGFR TK inhibitors erlotinib and gefitinib have already been investigated in clinical phase III trials in patients with non-small-lung cancer, suggesting that sequential rather than concurrent erlotinib/gefitinib-based treatment provides a benefit in clinical outcome. The EGFR-targeting agents are reasonably well tolerated and have limited overlapping toxicities in combination with other cytotoxic drugs. The most common side effect of anti-EGFR treatment is an acneiform skin rash, which is associated with the clinical outcome of treatment with monoclonal antibodies and TK inhibitors. Future clinical studies are needed to establish these EGFR-targeting agents in anticancer treatment to investigate efficacy of therapies combining EGFR-targeted agents with other targeting agents and to describe additional markers determining the clinical outcome of anti-EGFR therapy.

Antibodies, Monoclonal↗

Monoclonal and bispecific antibodies as novel therapeutics.

Gene amplification, over-expression, and mutation of growth factors, or the receptors themselves, causes increased signaling through receptor kinases, which has been implicated in many human cancers and is associated with poor prognosis. Tumor growth has been shown to be decreased by interrupting this process of extensive growth factor-mediated signaling by directly targeting either the surface receptor or the ligand and thereby preventing cell survival and promoting apoptosis. Monoclonal antibodies have long been eyed as a potential new class of therapeutics targeting cancer and other diseases. Antibody-based therapy initially entered clinical practice when trastuzumab/Herceptin became the first clinically approved drug against an oncogene product as a well-established blocking reagent for tumors with hyperactivity of epidermal growth factor signaling pathways. In the first part of this review we explain basic terms related to the development of antibody-based drugs, give a brief historic perspective of the field, and also touch on topics such as the "humanization of antibodie" or creation of hybrid antibodies. The second part of the review gives an overview of the clinical usage of bispecific antibodies and antibodies "armed" with cytotoxic agents or enzymes. Further within this section, cancer-specific, site-specific, or signaling pathway-specific therapies are discussed in detail. Among other antibody-based therapeutic products, we discuss: Avastin (bevacizumab), CG76030, Theragyn (pemtumomab), daclizumab (Zenapax), TriAb, MDX-210, Herceptin (trastuzumab), panitumumab (ABX-EGF), mastuzimab (EMD-72000), Erbitux (certuximab, IMC225), Panorex (edrecolomab), STI571, CeaVac, Campath (alemtuizumab), Mylotarg (gemtuzumab, ozogamicin), and many others. The end of the review deliberates upon potential problems associated with cancer immunotherapy.

Antibodies, Bispecific↗

Clinical signs, pathophysiology and management of skin toxicity during therapy with epidermal growth factor receptor inhibitors.

The last few years, new therapies targeting the epidermal growth factor receptor (EGFR) have shown their efficacy in the treatment of several types of cancer. Monoclonal antibodies against the EGFR (e.g. cetuximab, panitumumab) or EGFR tyrosine kinase inhibitors (e.g. gefitinib, erlotinib) are generally well tolerated and do not have the severe systemic side-effects usually seen with cytotoxic drugs. A considerable number of patients treated with these EGFR inhibitors, however, develop dermatological side-effects, most frequently an acneiform eruption but also xerosis, eczema, fissures, telangiectasia, hyperpigmentation, hair changes and paronychia with pyogenic granuloma. These skin effects appear to be mechanism-based linked to the inhibition of EGFR action but the exact pathophysiology remains elusive. Left untreated these dermatological side-effects could represent a threat to patient compliance. Therefore effective management is mandatory. Mild cases of acneiform eruption respond well to topical anti-inflammatory acne therapy, whereas tetracyclines are needed to treat moderate to severe cases. This review outlines the broad spectrum of cutaneous side-effects of EGFR inhibitors, discusses possible underlying mechanisms and provides practical guidelines for the management based on literature data and on personal experience.

Antibodies, Monoclonal↗

Epidermal growth factor receptor and signal transduction: potential targets for anti-cancer therapy.

Agents targeting the epidermal growth factor receptor (EGFR) pathway hold particular promise for the treatment of patients with advanced disease, for whom standard chemotherapy is generally palliative. Expression of EGFR on numerous types of solid tumors, and the association of EGFR activation with tumorigenic processes including proliferation, anti-apoptosis and metastatic spread, make this pathway a particularly compelling target for rational drug design. The two classes of anti-EGFR agents in late-stage clinical testing include antibodies directed toward the extracellular EGFR domain (cetuximab, panitumumab) and small molecule tyrosine kinase inhibitors (gefitinib, erlotinib), which inactivate the receptor enzyme activity. However, important issues remain to be addressed. These include the development of appropriate predictive markers for response, such as improved tests for EGFR activity, correlation of rash with response and potential pharmacogenomic approaches; the sequencing and combination of these agents with chemotherapy and irradiation; and the possible role of these agents in the treatment of patients with earlier stage disease.

Animals↗