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KRAS gene amplification in colorectal cancer and impact on response to EGFR-targeted therapy
Emanuele Valtorta1, Sandra Misale, Andrea Sartore-Bianchi
1Division of Pathology, Ospedale Niguarda Ca' Granda, Piazza Ospedale Maggiore 3, Milano, Italy.
Abstract:
KRAS mutations are the most common oncogenic event in colorectal cancer (CRC) progression and their occurrence is associated with lack of response to anti epidermal growth factor receptor (EGFR) targeted therapies. Using preclinical models and patients' samples we recently reported that the emergence of KRAS mutations but also KRAS amplification is associated with acquired resistance to the EGFR inhibitors cetuximab or panitumumab. We reasoned that KRAS amplification may also be responsible for primary resistance to these agents. Furthermore, while the prevalence of KRAS mutations has been well established in CRC, little is known about the frequency of KRAS amplification in large CRC series. We performed a screening of 1,039 CRC samples to assess the prevalence of KRAS amplification in this tumor type and further evaluated the role of this genetic alteration on the sensitivity to anti EGFR therapies. We detected KRAS amplification in 7/1,039 (0.67%) and 1/102 evaluable CRC specimens and cell lines, respectively. KRAS amplification was mutually exclusive with KRAS mutations. Tumors or cell lines harboring this genetic lesion are not responsive to anti-EGFR inhibitors. Although KRAS amplification is an infrequent event in CRC, it might be responsible for precluding response to anti-EGFR treatment in a small proportion of patients.
Insights
KRAS amplification, a rare event in colorectal cancer (CRC), confers primary resistance to anti-EGFR therapies. This genetic alteration, distinct from KRAS mutations, impacts treatment outcomes in a subset of CRC patients.
Area of Science:
- Oncology
- Genetics
- Cancer Research
Background:
- KRAS mutations are common in colorectal cancer (CRC) and linked to resistance to anti-EGFR therapies.
- KRAS amplification has been associated with acquired resistance to EGFR inhibitors.
Purpose of the Study:
- To determine the prevalence of KRAS amplification in a large CRC cohort.
- To investigate the role of KRAS amplification in primary resistance to anti-EGFR therapies.
Main Methods:
- Screening of 1,039 CRC samples for KRAS amplification.
- Evaluation of KRAS amplification in CRC cell lines and patient-derived specimens.
- Assessment of sensitivity to anti-EGFR inhibitors in tumors with KRAS amplification.
Main Results:
- KRAS amplification was detected in 0.67% of CRC samples (7/1,039).
- KRAS amplification was mutually exclusive with KRAS mutations.
- Tumors with KRAS amplification showed primary resistance to anti-EGFR inhibitors.
Conclusions:
- KRAS amplification is an infrequent but clinically relevant event in CRC.
- KRAS amplification can cause primary resistance to anti-EGFR therapies in a small patient group.
- Identifying KRAS amplification may refine patient selection for anti-EGFR treatments.
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