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Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
Antiepidermal growth factor receptor radiosensitizers in rectal cancer
Robert Glynne-Jones1, Suzy Mawdsley, Mark Harrison
1Mount Vernon Cancer Centre, Northwood, Middlesex, UK. Rob.glynnejones@nhs.net
Abstract:
The activation of the epidermal growth factor receptor (EGFR) pathway correlates with a worse prognosis in many solid tumours. Hence, EGFR inhibitors have been developed as a treatment for cancer. The EGFR inhibitor cetuximab has been successfully combined with radical radiotherapy in head and neck cancer. In metastatic colorectal cancer, cetuximab and panitumumab have activity as single agents, and increased response rates are achieved when added to standard chemotherapy schedules. This approach of using EGFR inhibitors has also been extrapolated to the preoperative treatment of locally advanced rectal cancer. Counterintuitively, the combination of chemotherapy, EGFR inhibitors and anti-VEGF antibodies seem to show lower response rates, suggesting antagonism. In rectal cancer, disappointingly low pathological complete response (pCR) rates have often been observed in chemoradiation regimens using EGFR inhibitors. In this study, we aimed to examine the rationale for the integration of EGFR inhibitors into chemoradiation schedules for rectal cancer. We have reviewed the clinical evidence and potential mechanisms for an interaction when EGFR inhibitors are added to fluoropyrimidine-based preoperative chemoradiation, the majority of which have used cetuximab. The primary outcome measure used was pCR. The overall pooled pCR for cetuximab-based chemoradiation was 10.71% (38/356). The rate of G3/G4 gastrointestinal toxicity, in terms of diarrhoea, varied from 5 to 30%, with an overall pooled rate of 13.8% (49/353). A better understanding of the mechanisms involved in combining chemotherapy and radiotherapy might allow more effective future scheduling of biological and chemical agents in combination with radiation.
Insights
Epidermal Growth Factor Receptor (EGFR) inhibitors combined with chemoradiation for rectal cancer show low pathological complete response rates. Further research into combining chemotherapy and radiotherapy is needed for more effective scheduling of agents.
Area of Science:
- Oncology
- Gastroenterology
- Pharmacology
Background:
- Epidermal Growth Factor Receptor (EGFR) pathway activation is linked to poor prognosis in solid tumors.
- EGFR inhibitors are established cancer treatments, with cetuximab showing efficacy in head and neck and colorectal cancers.
- Preoperative chemoradiation with EGFR inhibitors is being explored for locally advanced rectal cancer.
Purpose of the Study:
- To investigate the rationale for integrating EGFR inhibitors into chemoradiation for rectal cancer.
- To review clinical evidence and potential mechanisms of interaction between EGFR inhibitors and fluoropyrimidine-based chemoradiation.
- To assess the impact on pathological complete response (pCR) rates.
Main Methods:
- Systematic review of clinical evidence and mechanistic studies.
- Pooled analysis of pathological complete response (pCR) rates from studies using cetuximab-based chemoradiation.
- Evaluation of G3/G4 gastrointestinal toxicity, specifically diarrhea.
Main Results:
- The pooled pathological complete response (pCR) rate for cetuximab-based chemoradiation was 10.71% (38/356).
- The pooled rate of G3/G4 gastrointestinal toxicity (diarrhea) was 13.8% (49/353), ranging from 5% to 30% across studies.
- Observed pCR rates in rectal cancer chemoradiation regimens using EGFR inhibitors were disappointingly low.
Conclusions:
- The integration of EGFR inhibitors into preoperative chemoradiation for rectal cancer yielded low pathological complete response rates.
- Potential antagonism exists when combining chemotherapy, EGFR inhibitors, and anti-VEGF antibodies.
- A deeper understanding of the mechanisms underlying combined chemotherapy and radiotherapy is crucial for optimizing future treatment strategies.
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