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Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Clinical impact of extensive molecular profiling in advanced cancer patients
Sophie Cousin1,2, Thomas Grellety2, Maud Toulmonde1,2
1Early Phase Trials Unit, Institut Bergonié, 229 Cours de l'Argonne, 33000, Bordeaux, France.
Abstract:
Previous precision medicine studies have investigated conventional molecular techniques and/or limited sets of gene alterations. The aim of this study was to describe the impact of the next-generation sequencing of the largest panel of genes used to date in tumour tissue and blood in the context of institutional molecular screening programmes. DNA analysis was performed by next-generation sequencing using a panel of 426 cancer-related genes and by comparative genomic hybridization from formalin-fixed and paraffin-embedded archived tumour samples when available or from fresh tumour samples. Five hundred sixty-eight patients were enrolled. The median number of prior lines of treatment was 2 (range 0-9). The most common primary tumour types were lung (16.9%), colorectal (14.4%), breast (10.6%), ovarian (10.2%) and sarcoma (10.2%). The median patient age was 63 years (range 19-88). A total of 292 patients (51.4%) presented with at least one actionable genetic alteration. The 20 genes most frequently altered were TP53, CDKN2A, KRAS, PTEN, PI3KCA, RB1, APC, ERBB2, MYC, EGFR, CDKN2B, ARID1A, SMAD4, FGFR1, MDM2, BRAF, ATM, CCNE1, FGFR3 and FRS2. One hundred fifty-nine patients (28%) were included in early phase trials. The treatment was matched with a tumour profile in 86 cases (15%). The two main reasons for non-inclusion were non-progressive disease (31.5%) and general status deterioration (25%). Twenty-eight percent of patients presented with a growth modulation index (time to progression under the early phase trial treatment/time to progression of the previous line of treatment) >1.3.Extensive molecular profiling using high-throughput techniques allows for the identification of actionable mutations in the majority of cases and is associated with substantial clinical benefit in up to one in four patients.
Insights
Extensive molecular profiling using next-generation sequencing identified actionable mutations in over half of cancer patients. This approach offers substantial clinical benefit for nearly one in four patients, advancing precision medicine.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Precision medicine studies often use limited gene sets; this study employed a comprehensive 426-gene panel via next-generation sequencing (NGS) in tumor tissue and blood.
- 568 patients with diverse cancer types (lung, colorectal, breast, ovarian, sarcoma) were analyzed, with a median of 2 prior treatment lines.
Discussion:
- Actionable genetic alterations were identified in 51.4% of patients, with TP53, CDKN2A, and KRAS being the most frequently altered genes.
- 159 patients (28%) were enrolled in early-phase trials, with treatment matched to tumor profiles in 15% of cases.
- Non-inclusion in trials was primarily due to non-progressive disease or general status deterioration.
Key Insights:
- NGS-based molecular profiling identified actionable mutations in a majority of patients.
- Nearly 28% of patients receiving trial treatment showed a growth modulation index >1.3, indicating clinical benefit.
- This extensive profiling approach is crucial for identifying therapeutic targets in cancer.
Outlook:
- High-throughput molecular profiling facilitates the identification of actionable mutations, enhancing personalized cancer treatment strategies.
- The study highlights the potential of broad gene panel sequencing in clinical settings to improve patient outcomes.
- Further research can optimize patient selection for targeted therapies based on comprehensive genomic data.
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