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Molecular Profiling of Exceptional Responders to Cancer Therapy
Marijo Bilusic1,2, Daniel Girardi2, Yan Zhou1
1Fox Chase Cancer Center, Philadelphia, Pennsylvania, USA.
Background:
The vast majority of metastatic cancers cannot be cured. Palliative treatment may relieve disease symptoms by stopping or slowing cancer growth and may prolong patients' lives, but almost all patients will inevitably develop disease progression after initial response. However, for reasons that are not fully understood, a very few patients will have extraordinary durable responses to standard anticancer treatments.
Materials And Methods:
We analyzed exceptional responders treated at Fox Chase Cancer Center between September 2009 and November 2017. An exceptional response was defined as a complete response lasting more than 1 year or a partial response or stable disease for more than 2 years. Tumor samples were analyzed using an Ambry Genetics test kit with a 142-gene panel. Messenger RNA expression was evaluated using NanoString's nCounter PanCancer Pathways Panel and Immune Profiling Panel and compared with matched controls for gender, age, and cancer type.
Results:
Twenty-six exceptional responders with metastatic bladder, kidney, breast, lung, ovarian, uterine, and colon cancers were enrolled. Mutations were identified in 45 genes. The most common mutation was an EPHA5 nonsynonymous mutation detected in 87.5% of patients. Mutations in DNA damage repair pathway genes were also frequent, suggesting increased genome instability. We also found varying expression of 73 genes in the Pathways panel and 85 genes in the Immune Profiling panel, many of them responsible for improvement in tumor recognition and antitumor immune response.
Conclusions:
The genomic instability detected in our exceptional responders, plus treatment with DNA damage compounds combined with favorable anticancer immunity, may have contributed to exceptional responses to standard anticancer therapies in the patients studied.
Implications For Practice:
With recent advances in the treatment of cancer, there is increased emphasis on the importance of identifying molecular markers to predict treatment outcomes, thereby allowing precision oncology. In this study, it was hypothesized that there is a "specific biologic signature" in the biology of the cancer in long-term survivors that allows sensitivity to systemic therapy and durability of response. Results showed that DNA damage repair pathway alterations, combined with favorable anticancer immunity, may have contributed to exceptional responses. It is very likely that an in-depth examination of outlier responses will become a standard component of drug development in the future.
Insights
A small number of cancer patients achieve exceptional responses to standard treatments. Genomic instability and enhanced anti-tumor immunity may explain these durable outcomes, paving the way for precision oncology advancements.
Area of Science:
- Oncology
- Genetics
- Immunology
Background:
- Most metastatic cancers are incurable, with patients often experiencing disease progression despite initial palliative treatment.
- A rare subset of patients exhibits extraordinary durable responses to standard cancer therapies.
- Understanding the biological basis of these exceptional responses is crucial for advancing cancer treatment.
Purpose of the Study:
- To investigate the molecular and genetic characteristics of exceptional responders to standard anticancer treatments.
- To identify potential biomarkers predictive of durable treatment responses.
- To explore the role of genomic alterations and immune profiles in exceptional cancer patient outcomes.
Main Methods:
- Analysis of tumor samples from 26 exceptional responders using a 142-gene panel (Ambry Genetics).
- Evaluation of messenger RNA (mRNA) expression using NanoString's nCounter PanCancer Pathways and Immune Profiling Panels.
- Comparison of gene expression profiles with matched controls to identify significant variations.
Main Results:
- Identified mutations in 45 genes, with EPHA5 nonsynonymous mutations being the most common (87.5%).
- Observed frequent mutations in DNA damage repair pathway genes, indicating increased genomic instability.
- Detected significant variations in the expression of 73 genes in the Pathways panel and 85 genes in the Immune Profiling panel, linked to tumor recognition and immune response.
Conclusions:
- Genomic instability, coupled with DNA damage repair alterations and favorable anti-cancer immunity, likely contributes to exceptional responses in some patients.
- These findings support the hypothesis of a specific "biologic signature" enabling sensitivity and durability of response to systemic therapy.
- Further investigation of outlier responses is essential for future drug development and precision oncology strategies.
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