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Updated: Oct 21, 2025

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
Clonal dynamics of circulating tumor DNA during immune checkpoint blockade therapy for melanoma
Erina Takai1,2, Wataru Omata2,3, Yasushi Totoki2
1Department of Cancer Genome Informatics, Graduate School of Medicine, Osaka University, Osaka, Japan.
Abstract:
Assessment of treatment efficacy of immune checkpoint inhibitors in melanoma patients is difficult as the response to these therapies varies among patients or lesions. The clonal evolution of cancer during immune checkpoint blockade therapy could cause treatment resistance. We investigated the potential of liquid biopsy in monitoring the mutational profiles of metastatic melanoma during immunotherapy. Plasma samples collected from 21 Japanese metastatic melanoma patients before immune checkpoint blockade therapy were subjected to whole-exome sequencing (WES). Furthermore, 14 Japanese patients with melanoma were enrolled for longitudinal analysis of circulating tumor DNA (ctDNA). Plasma samples were collected prospectively before and during therapy and sequenced. WES of the pretreatment plasma from Japanese melanoma patients showed detectable ctDNA levels with wide ranges of variant allele frequencies within a sample, suggesting clonal and subclonal mutations in ctDNA. In targeted sequencing using longitudinal samples, ctDNA levels correlated with increased tumor size, while ctDNA content immediately decreased after a surge in a patient exhibiting pseudo-progression, suggesting the potential of ctDNA analysis in discriminating between pseudo- and true progression. Mutant ctDNA levels showed different patterns within the clinical course of specific patients, suggesting that these mutations were derived from different tumor clones with distinct therapeutic responses. During further investigation, WES of plasma samples from 1 patient showed marked differences in the mutational profiles of ctDNA, including expansive tumor evolution during an acute exacerbation. Immunotherapy may induce characteristic clonal evolutions of tumors; longitudinal analysis of ctDNA has the potential of determining these tumor evolution patterns and therapeutic responses.
Insights
Liquid biopsy using circulating tumor DNA (ctDNA) can monitor melanoma
Area of Science:
- Oncology
- Genetics
- Immunotherapy
Background:
- Assessing immune checkpoint inhibitor (ICI) efficacy in melanoma is challenging due to variable patient and lesion responses.
- Cancer's clonal evolution during ICI therapy can lead to treatment resistance.
Purpose of the Study:
- To investigate the utility of liquid biopsy for monitoring mutational profiles of metastatic melanoma during immunotherapy.
- To assess the potential of circulating tumor DNA (ctDNA) analysis in distinguishing pseudo-progression from true progression.
Main Methods:
- Whole-exome sequencing (WES) of plasma samples from 21 Japanese metastatic melanoma patients before ICI therapy.
- Longitudinal analysis of ctDNA in 14 Japanese melanoma patients via prospective plasma sampling before and during therapy.
- Targeted sequencing of ctDNA to correlate levels with tumor size and clinical course.
Main Results:
- Pretreatment plasma revealed detectable ctDNA with clonal and subclonal mutations.
- ctDNA levels correlated with tumor size; a surge followed by a decrease suggested pseudo-progression.
- Mutant ctDNA patterns indicated distinct tumor clones with varying therapeutic responses.
- WES of plasma showed significant ctDNA mutational profile differences, reflecting tumor evolution during exacerbation.
Conclusions:
- Liquid biopsy via ctDNA analysis shows promise in monitoring melanoma's clonal evolution during immunotherapy.
- ctDNA analysis can potentially differentiate pseudo-progression from true progression.
- Longitudinal ctDNA analysis may reveal characteristic tumor evolution patterns induced by immunotherapy and guide therapeutic responses.
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