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Genetic Characterization of Brain Metastases in the Era of Targeted Therapy
Catherine H Han1,2, Priscilla K Brastianos1
1Departments of Neurology and Radiation Oncology, Division of Hematology/Oncology, Massachusetts General Hospital Cancer Center, Harvard Medical School, Boston, MA, United States.
Abstract:
In the current era of molecularly targeted therapies and precision medicine, choice of cancer treatment has been increasingly tailored according to the molecular or genomic characterization of the cancer the individual has. Previously, the clinical observation of inadequate control of brain metastases was widely attributed to a lack of central nervous system (CNS) penetration of the anticancer drugs. However, more recent data have suggested that there are genetic explanations for such observations. Genomic analyses of brain metastases and matching primary tumor and other extracranial metastases have revealed that brain metastases can harbor potentially actionable driver mutations that are unique to them. Identification of genomic alterations specific to brain metastases and targeted therapies against these mutations represent an important research area to potentially improve survival outcomes for patients who develop brain metastases. Novel approaches in genomic testing such as that using cell-free circulating tumor DNA (ctDNA) in the cerebrospinal fluid (CSF) facilitate advancing our understanding of the genomics of brain metastases, which is critical for precision medicine. CSF-derived ctDNA sequencing may be particularly useful in patients who are unfit for surgical resection or have multiple brain metastases, which can harbor mutations that are distinct from their primary tumors. Compared to the traditional chemotherapeutics, novel targeted agents appear to be more effective in controlling the CNS disease with better safety profiles. Several brain metastases-dedicated trials of various targeted therapies are currently underway to address the role of these agents in the treatment of CNS disease. This review focuses on recent advances in genomic profiling of brain metastases and current knowledge of targeted therapies in the management of brain metastases from cancers of the breast, lung, colorectum, kidneys, and ovaries as well as melanoma.
Insights
Genomic analysis reveals unique mutations in brain metastases, driving the development of targeted therapies. These novel treatments show promise for improved outcomes in patients with brain metastases.
Area of Science:
- Oncology
- Genomics
- Pharmacology
Background:
- Brain metastases are challenging to treat, often attributed to poor drug penetration.
- Recent research suggests unique genetic alterations in brain metastases, not just drug delivery issues.
Purpose of the Study:
- To review advances in genomic profiling of brain metastases.
- To discuss targeted therapies for brain metastases based on genomic alterations.
- To highlight the potential of novel genomic testing methods.
Main Methods:
- Genomic analysis of primary tumors, extracranial metastases, and brain metastases.
- Utilizing cell-free circulating tumor DNA (ctDNA) from cerebrospinal fluid (CSF) for genomic testing.
- Reviewing current clinical trials of targeted therapies for brain metastases.
Main Results:
- Brain metastases can possess unique, actionable driver mutations distinct from primary tumors.
- CSF-derived ctDNA sequencing aids in identifying these mutations, especially in non-surgical candidates.
- Targeted agents demonstrate improved efficacy and safety for central nervous system (CNS) disease compared to traditional chemotherapy.
Conclusions:
- Genomic profiling is crucial for understanding and treating brain metastases.
- Targeted therapies offer a promising avenue for improving survival in patients with brain metastases.
- Novel approaches like ctDNA sequencing are advancing precision medicine for CNS metastases.
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