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Unstable Genome and Transcriptome Dynamics during Tumor Metastasis Contribute to Therapeutic Heterogeneity in
Sung-Yup Cho1,2, Jeesoo Chae2, Deukchae Na3
1Department of Biochemistry and Molecular Biology, Seoul National University College of Medicine, Seoul, Korea.
Purpose:
Genomic and transcriptomic alterations during metastasis are considered to affect clinical outcome of colorectal cancers, but detailed clinical implications of metastatic alterations are not fully uncovered. We aimed to investigate the effect of metastatic evolution on in vivo treatment outcome, and identify genomic and transcriptomic alterations associated with drug responsiveness.
Experimental Design:
We developed and analyzed patient-derived xenograft (PDX) models from 35 patients with colorectal cancer including 5 patients with multiple organ metastases (MOMs). We performed whole-exome, DNA methylation, and RNA sequencing for patient and PDX tumors. With samples from patients with MOMs, we conducted phylogenetic and subclonal analysis and in vivo drug efficacy test on the corresponding PDX models.
Results:
Phylogenetic analysis using mutation, expression, and DNA methylation data in patients with MOMs showed that mutational alterations were closely connected with transcriptomic and epigenomic changes during the tumor evolution. Subclonal analysis revealed that initial primary tumors with larger number of subclones exhibited more dynamic changes in subclonal architecture according to metastasis, and loco-regional and distant metastases occurred in a parallel or independent fashion. The PDX models from MOMs demonstrated therapeutic heterogeneity for targeted treatment, due to subclonal acquisition of additional mutations or transcriptomic activation of bypass signaling pathway during tumor evolution.
Conclusions:
This study demonstrated in vivo therapeutic heterogeneity of colorectal cancers using PDX models, and suggests that acquired subclonal alterations in mutations or gene expression profiles during tumor metastatic processes can be associated with the development of drug resistance and therapeutic heterogeneity of colorectal cancers.
Insights
Metastatic colorectal cancer (CRC) evolution drives therapeutic heterogeneity. Acquired subclonal genomic and transcriptomic alterations in metastatic CRC impact drug response and treatment outcomes.
Area of Science:
- Oncology
- Genomics
- Cancer Metastasis
Background:
- Metastatic alterations in colorectal cancer (CRC) influence clinical outcomes, but their precise implications remain unclear.
- Understanding these changes is crucial for improving treatment strategies.
Purpose of the Study:
- Investigate the impact of metastatic evolution on in vivo treatment outcomes in CRC.
- Identify genomic and transcriptomic alterations linked to drug responsiveness in metastatic CRC.
Main Methods:
- Developed patient-derived xenograft (PDX) models from 35 CRC patients, including those with multiple organ metastases (MOMs).
- Conducted whole-exome, DNA methylation, and RNA sequencing on patient and PDX tumors.
- Performed phylogenetic, subclonal, and in vivo drug efficacy analyses on MOMs and their PDX models.
Main Results:
- Phylogenetic analysis revealed close links between mutational, transcriptomic, and epigenomic changes during CRC tumor evolution.
- Subclonal analysis indicated dynamic architectural changes in primary tumors with more subclones during metastasis.
- PDX models from MOMs displayed therapeutic heterogeneity due to acquired subclonal mutations or bypass signaling activation.
Conclusions:
- Demonstrated in vivo therapeutic heterogeneity in colorectal cancer using PDX models.
- Suggests that acquired subclonal alterations during metastasis contribute to drug resistance and heterogeneous treatment responses in CRC.
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