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A Practical Guide to Phylogenetics for Nonexperts
Published on: February 5, 2014
New therapeutic targets for pulmonary sarcomatoid carcinomas based on their genomic and phylogenetic profiles
Takahiro Nakagomi1,2, Taichiro Goto1,2, Yosuke Hirotsu3
1Lung Cancer and Respiratory Disease Center, Yamanashi Central Hospital, Yamanashi, Japan.
Objectives:
Pulmonary sarcomatoid carcinomas are rare and generally aggressive tumors composed of carcinomatous and sarcomatous components; however, the evolution of sarcomatoid cancer has not been elucidated. Here, we aimed to evaluate the mutational profiles and phylogeny of sarcomatoid carcinomas using next generation sequencing and in-silico analysis to facilitate the development of novel therapies.
Methods:
Four patients who underwent surgery for sarcomatoid cancer were enrolled. Cancer cells were collected from carcinomatous and sarcomatous components in each tumor by laser capture microdissection. Next-generation sequencing was performed in each component, and the mutation profiles were compared. For further inference of phylogenies, phylogenetic and PyClone analyses were performed. Mismatch repair disturbance and programmed death ligand-1 (PD-L1) expression were also evaluated.
Results:
Comparative genetic analysis of different histological areas revealed that the separate components shared several common mutations, which showed relatively high cellular prevalence in the PyClone statistical inference. Phylogenetic analysis showed that the sarcomatous component had ramified from the carcinomatous component in the early phase of the evolution process and accumulated a number of mutations that were different from those of the carcinomatous component. Moreover, microsatellite instability was detected in a case of sarcomatoid cancer and PD-L1 was strongly positive (≥ 50%) in all sarcomatoid cancers.
Conclusions:
Our data suggest that sarcomatoid carcinoma evolves from a common ancestral clone, and its phylogenetic features may reflect high-grade malignancy in pulmonary sarcomatoid carcinoma. High tumor mutation burden and strong PD-L1 staining may provide a rationale for the use of targeted immunotherapies in pulmonary sarcomatoid carcinomas.
Insights
Pulmonary sarcomatoid carcinoma evolves from a common ancestral clone, with the sarcomatous component branching early. These aggressive tumors show high mutation burden and PD-L1 expression, suggesting targeted immunotherapy potential.
Area of Science:
- Oncology
- Genetics
- Cancer Evolution
Background:
- Pulmonary sarcomatoid carcinoma (PSC) is a rare, aggressive lung cancer with both carcinomatous and sarcomatous elements.
- The evolutionary trajectory and mutational landscape of PSC remain poorly understood.
- Elucidating PSC evolution is crucial for developing effective targeted therapies.
Purpose of the Study:
- To investigate the mutational profiles and phylogenetic relationships within pulmonary sarcomatoid carcinomas.
- To understand the clonal evolution from carcinomatous to sarcomatous components in PSC.
- To identify potential therapeutic targets for PSC based on its genetic landscape.
Main Methods:
- Employed next-generation sequencing (NGS) on laser capture microdissected carcinomatous and sarcomatous components from four PSC patients.
- Utilized phylogenetic and PyClone analyses to infer tumor evolution and clonal architecture.
- Assessed mismatch repair (MMR) status and programmed death-ligand 1 (PD-L1) expression.
Main Results:
- Identified shared mutations between carcinomatous and sarcomatous components, with high cellular prevalence indicated by PyClone analysis.
- Phylogenetic analysis revealed early branching of the sarcomatous component from a common ancestral clone, followed by distinct mutational accumulation.
- Detected microsatellite instability in one case and strong PD-L1 positivity (≥50%) in all evaluated PSCs.
Conclusions:
- PSC originates from a common ancestral clone, with its phylogenetic profile correlating with high-grade malignancy.
- The observed high tumor mutation burden and strong PD-L1 expression support the potential efficacy of targeted immunotherapies for PSC.
- Understanding PSC evolution provides a basis for novel therapeutic strategies, including immunotherapy.
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