Normal view
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TechCrunch
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Embattled startup Delve has ‘parted ways’ with Y Combinator
The controversy around Delve appears to have cost the compliance startup its relationship with accelerator Y Combinator.
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TechCrunch
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Anthropic says Claude Code subscribers will need to pay extra for OpenClaw usage
It’s about to become more expensive for Claude Code subscribers to use Anthropic’s coding assistant with OpenClaw and other third-party tools.
Anthropic says Claude Code subscribers will need to pay extra for OpenClaw usage
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(Multiomics OR Omics) AND (Pancreatic)
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Unmasking FCGR2B as a high-grade serous ovarian cancer specific marker of immune suppression and tumor progression through multi-omics mining
Transl Oncol. 2026 Apr 3;67:102748. doi: 10.1016/j.tranon.2026.102748. Online ahead of print.ABSTRACTBACKGROUND: Epithelial ovarian cancer (EOC) encompasses five major histological subtypes with marked genetic, immunological, and clinical heterogeneity. While genome-wide association studies (GWAS) have identified subtype-specific risk loci, a critical gap remains in understanding how plasma proteins influence immune-cell traits and contribute to EOC pathogenesis.METHODS: We integrated subtype-st
Unmasking FCGR2B as a high-grade serous ovarian cancer specific marker of immune suppression and tumor progression through multi-omics mining
Transl Oncol. 2026 Apr 3;67:102748. doi: 10.1016/j.tranon.2026.102748. Online ahead of print.
ABSTRACT
BACKGROUND: Epithelial ovarian cancer (EOC) encompasses five major histological subtypes with marked genetic, immunological, and clinical heterogeneity. While genome-wide association studies (GWAS) have identified subtype-specific risk loci, a critical gap remains in understanding how plasma proteins influence immune-cell traits and contribute to EOC pathogenesis.
METHODS: We integrated subtype-stratified GWAS data from two EOC cohorts with plasma proteomics and immune-cell traits to construct protein-immune-EOC regulatory landscapes using a three-stage Mendelian randomization framework. Single-cell RNA-seq and multiplex immunofluorescence were employed to delineate the cellular distribution and spatial context of causal proteins. Subsequent analyses characterized immune infiltration, macrophage polarization, and clinicopathological associations. Drug-gene correlations were used to identify potential therapeutic targets, and transcriptomic analyses were applied to delineate the underlying transcriptional landscape.
RESULTS: We identified 20 subtype-specific protein-immune-EOC regulatory axes, with FCGR2B emerging as a causal plasma protein in immune regulation and high-grade serous ovarian cancer (HGSOC) progression. FCGR2B was highly expressed in tumor-associated macrophages and was associated with an M2-like polarization phenotype. Functional characterization revealed that FCGR2B was associated with shorter progression-free survival and an immunosuppressive tumor microenvironment. Transcriptomic analyses revealed altered NF-κB signaling upon FCGR2B knockdown, and drug-response data suggested a potential association between high FCGR2B expression and sensitivity to NF-κB inhibitors.
CONCLUSIONS: These findings delineate subtype-specific genetically informed protein-immune regulatory landscapes in EOC and identify FCGR2B as a key immunoregulatory and prognostic biomarker in HGSOC, suggesting FCGR2B as a potential therapeutic vulnerability that warrants further investigation.
PMID:41934917 | DOI:10.1016/j.tranon.2026.102748
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MRD
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Circulating biomarkers in bladder cancer: emerging evidence and future directions for personalized therapy
Clin Chim Acta. 2026 Mar 31;588:120992. doi: 10.1016/j.cca.2026.120992. Online ahead of print.ABSTRACTBladder cancer diagnosis and surveillance remain anchored in cystoscopy and urine cytology, despite their invasiveness, operator dependence, and limited sensitivity for low-grade or flat lesions. These constraints have accelerated interest in liquid biopsy approaches that provide noninvasive, real-time molecular insights into tumor biology. This narrative review examines emerging evidence on thr
Circulating biomarkers in bladder cancer: emerging evidence and future directions for personalized therapy
Clin Chim Acta. 2026 Mar 31;588:120992. doi: 10.1016/j.cca.2026.120992. Online ahead of print.
ABSTRACT
Bladder cancer diagnosis and surveillance remain anchored in cystoscopy and urine cytology, despite their invasiveness, operator dependence, and limited sensitivity for low-grade or flat lesions. These constraints have accelerated interest in liquid biopsy approaches that provide noninvasive, real-time molecular insights into tumor biology. This narrative review examines emerging evidence on three key classes of circulating biomarkers, namely, circulating tumor DNA (ctDNA), exosomes, and circulating tumor cells (CTCs), and their expanding roles in diagnosis, prognosis, and treatment guidance. ctDNA reflects tumor-specific genomic alterations and shows particular strength in detecting minimal residual disease, identifying early molecular relapse, and monitoring therapeutic response, although its diagnostic sensitivity remains moderate. Urinary exosomes demonstrate some of the highest diagnostic accuracies among liquid biopsy platforms, with multimarker RNA panels achieving sensitivities and specificities above 90%, while their diverse cargo of miRNAs, mRNAs, and lncRNAs provides robust prognostic information linked to recurrence and survival. CTCs, although technically challenging to isolate owing to their phenotypic heterogeneity, offer valuable insights into tumor aggressiveness, metastatic potential, and treatment responsiveness, especially in muscle-invasive disease. Advances in ultrasensitive sequencing, microfluidic CTC capture, and multi-omics integration are accelerating clinical translation. Collectively, circulating biomarkers are poised to complement and, in selected contexts, transform bladder cancer management by enabling earlier detection, individualized risk stratification, and more precise therapeutic decision-making.
PMID:41933678 | DOI:10.1016/j.cca.2026.120992
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Oncogene - Issue - nature.com science feeds
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Trisomy 8 alters chromatin conformations and activates Y chromosome genes in stem cells to drive a pre-leukemic state
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03763-3Trisomy 8 alters chromatin conformations and activates Y chromosome genes in stem cells to drive a pre-leukemic state
Trisomy 8 alters chromatin conformations and activates Y chromosome genes in stem cells to drive a pre-leukemic state
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03763-3
Trisomy 8 alters chromatin conformations and activates Y chromosome genes in stem cells to drive a pre-leukemic state-
Oncogene - Issue - nature.com science feeds
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Pre-operative circulating tumor cells predict worse treatment outcome in patients with high-grade serous ovarian cancer
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03747-3Pre-operative circulating tumor cells predict worse treatment outcome in patients with high-grade serous ovarian cancer
Pre-operative circulating tumor cells predict worse treatment outcome in patients with high-grade serous ovarian cancer
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03747-3
Pre-operative circulating tumor cells predict worse treatment outcome in patients with high-grade serous ovarian cancer-
Oncogene - Issue - nature.com science feeds
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S100A6 promotes liver metastasis by activating FGFR3 signaling in <i>BAP1</i>-deficient uveal melanoma
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03766-0S100A6 promotes liver metastasis by activating FGFR3 signaling in BAP1-deficient uveal melanoma
S100A6 promotes liver metastasis by activating FGFR3 signaling in <i>BAP1</i>-deficient uveal melanoma
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03766-0
S100A6 promotes liver metastasis by activating FGFR3 signaling in BAP1-deficient uveal melanoma-
Oncogene - Issue - nature.com science feeds
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Deciphering functional intra-tumoral heterogeneity in BRAF<sup>V600E</sup>-driven mouse thyroid cancer reveals EMT trajectory and metabolic remodeling
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03742-8Deciphering functional intra-tumoral heterogeneity in BRAFV600E-driven mouse thyroid cancer reveals EMT trajectory and metabolic remodeling
Deciphering functional intra-tumoral heterogeneity in BRAF<sup>V600E</sup>-driven mouse thyroid cancer reveals EMT trajectory and metabolic remodeling
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03742-8
Deciphering functional intra-tumoral heterogeneity in BRAFV600E-driven mouse thyroid cancer reveals EMT trajectory and metabolic remodeling-
Oncogene - Issue - nature.com science feeds
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Spliceosomal component SNRPE drives cell proliferation by regulating CTP synthase 1 mRNA splicing in ovarian cancer
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03764-2Spliceosomal component SNRPE drives cell proliferation by regulating CTP synthase 1 mRNA splicing in ovarian cancer
Spliceosomal component SNRPE drives cell proliferation by regulating CTP synthase 1 mRNA splicing in ovarian cancer
Oncogene, Published online: 04 April 2026; doi:10.1038/s41388-026-03764-2
Spliceosomal component SNRPE drives cell proliferation by regulating CTP synthase 1 mRNA splicing in ovarian cancer-
npj Digital Medicine
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Comparison of AI-generated radiology impressions: a multi-stakeholder evaluation
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02586-6Comparison of AI-generated radiology impressions: a multi-stakeholder evaluation
Comparison of AI-generated radiology impressions: a multi-stakeholder evaluation
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02586-6
Comparison of AI-generated radiology impressions: a multi-stakeholder evaluation-
npj Digital Medicine
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Decipher-MR: a vision-language foundation model for 3D MRI representations
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02596-4Decipher-MR: a vision-language foundation model for 3D MRI representations
Decipher-MR: a vision-language foundation model for 3D MRI representations
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02596-4
Decipher-MR: a vision-language foundation model for 3D MRI representations-
npj Digital Medicine
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A neural-symbolic AI agent system for biomedical concept mapping
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02594-6A neural-symbolic AI agent system for biomedical concept mapping
A neural-symbolic AI agent system for biomedical concept mapping
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02594-6
A neural-symbolic AI agent system for biomedical concept mapping-
npj Digital Medicine
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HoloTrauma 3X Triadic AI Co reasoning for robot assisted emergency maxillofacial reconstruction
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02573-xHoloTrauma 3X Triadic AI Co reasoning for robot assisted emergency maxillofacial reconstruction
HoloTrauma 3X Triadic AI Co reasoning for robot assisted emergency maxillofacial reconstruction
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02573-x
HoloTrauma 3X Triadic AI Co reasoning for robot assisted emergency maxillofacial reconstruction-
npj Digital Medicine
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Developing psychosocial phenotypes to understand engagement with digital health technologies for heart failure
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02571-zDeveloping psychosocial phenotypes to understand engagement with digital health technologies for heart failure
Developing psychosocial phenotypes to understand engagement with digital health technologies for heart failure
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02571-z
Developing psychosocial phenotypes to understand engagement with digital health technologies for heart failure-
npj Digital Medicine
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New model, old risks: sociodemographic bias and adversarial hallucinations vulnerability in GPT-5
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02584-8We re-evaluated GPT-5 using our published pipelines: 500 emergency vignettes across 32 sociodemographic labels for bias, and adversarial prompts with fabricated details. GPT-5 showed no measurable improvement over GPT-4o in sociodemographic-linked decision variation, with several LGBTQIA+ groups flagged for mental-health screening in 100% of cases. Adversarial hallucination rates were higher (65% vs 53% for GPT-
New model, old risks: sociodemographic bias and adversarial hallucinations vulnerability in GPT-5
npj Digital Medicine, Published online: 04 April 2026; doi:10.1038/s41746-026-02584-8
We re-evaluated GPT-5 using our published pipelines: 500 emergency vignettes across 32 sociodemographic labels for bias, and adversarial prompts with fabricated details. GPT-5 showed no measurable improvement over GPT-4o in sociodemographic-linked decision variation, with several LGBTQIA+ groups flagged for mental-health screening in 100% of cases. Adversarial hallucination rates were higher (65% vs 53% for GPT-4o); a mitigation prompt reduced this to 7.67%.-
Omics in Gastric
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Isobavachalcone exerts anti-gastric cancer effects by targeting dihydroorotate dehydrogenase to induce ROS release and activating the STING pathway
Phytomedicine. 2026 Mar 27;155:158126. doi: 10.1016/j.phymed.2026.158126. Online ahead of print.ABSTRACTBACKGROUND: Mitochondrial damage can induce the release of mitochondrial DNA (mtDNA), leading to oxidative stress and activation of immune responses. Targeting mitochondrial dysfunction may thus represent a therapeutic strategy for gastric cancer. Isobavachalcone (IBC), a prenylated chalcone derived from Psoralea corylifolia L., has demonstrated antitumor activity, but its mechanism of action
Isobavachalcone exerts anti-gastric cancer effects by targeting dihydroorotate dehydrogenase to induce ROS release and activating the STING pathway
Phytomedicine. 2026 Mar 27;155:158126. doi: 10.1016/j.phymed.2026.158126. Online ahead of print.
ABSTRACT
BACKGROUND: Mitochondrial damage can induce the release of mitochondrial DNA (mtDNA), leading to oxidative stress and activation of immune responses. Targeting mitochondrial dysfunction may thus represent a therapeutic strategy for gastric cancer. Isobavachalcone (IBC), a prenylated chalcone derived from Psoralea corylifolia L., has demonstrated antitumor activity, but its mechanism of action remains unclear, limiting its clinical application.
PURPOSE: This study aimed to investigate the antitumor effects of IBC in gastric cancer and to elucidate the underlying molecular mechanisms, with a focus on mitochondrial damage and immune activation.
STUDY DESIGN: The study combined in vitro and in vivo assays with multi-omics sequencing and network pharmacology to identify IBC's therapeutic target and downstream signaling pathways.
METHODS: Gastric cancer cells and mouse models were treated with IBC to assess its inhibitory effects. Multi-omics approaches and network pharmacology were used to identify potential targets. ROS production, mitochondrial membrane integrity, and immune pathway activation were evaluated via biochemical and molecular assays.
RESULTS: IBC significantly suppresses gastric cancer growth both in vitro and in vivo. Integrated analysis identifies dihydroorotate dehydrogenase (DHODH) as a direct target of IBC. DHODH deficiency can induce mitochondrial membrane remodeling and STING pathway activation. Inhibition of DHODH by IBC induces ROS accumulation, mitochondrial membrane remodeling, and activation of the STING pathway, promoting antitumor immune responses. This study demonstrates that IBC enhances antitumor immunity in gastric cancer through mitochondrial damage-mediated mechanisms.
CONCLUSION: IBC exerts dual antitumor and immunostimulatory effects in gastric cancer by targeting DHODH, inducing mitochondrial damage, and activating the STING pathway, highlighting its promising therapeutic potential in gastric cancer.
PMID:41931998 | DOI:10.1016/j.phymed.2026.158126
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(Multiomics OR Omics) AND (Lung OR gastric OR Hepatocellular)
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Multi-ancestry transcriptome prediction with functionally informed variants in TOPMed MESA improves performance of transcriptome-wide association studies
Am J Hum Genet. 2026 Apr 2;113(4):828-841. doi: 10.1016/j.ajhg.2026.03.008.ABSTRACTReliable reference transcriptome prediction models are key to accurate multi-ancestry transcriptome-wide association studies (TWASs). We propose three methods leveraging functionally informed variants (FIVs) for transcriptome prediction models to improve multi-ancestry TWASs. We trained models on 1,287 multi-ancestry participants from the Trans-Omics for Precision Medicine (TOPMed) program Multi-Ethnic Study of At
Multi-ancestry transcriptome prediction with functionally informed variants in TOPMed MESA improves performance of transcriptome-wide association studies
Am J Hum Genet. 2026 Apr 2;113(4):828-841. doi: 10.1016/j.ajhg.2026.03.008.
ABSTRACT
Reliable reference transcriptome prediction models are key to accurate multi-ancestry transcriptome-wide association studies (TWASs). We propose three methods leveraging functionally informed variants (FIVs) for transcriptome prediction models to improve multi-ancestry TWASs. We trained models on 1,287 multi-ancestry participants from the Trans-Omics for Precision Medicine (TOPMed) program Multi-Ethnic Study of Atherosclerosis (MESA) with RNA sequencing (RNA-seq) data from peripheral blood mononuclear cells (PBMCs). We validated models' prediction accuracy on two external independent datasets, Geuvadis and Jackson Heart Study. To test robustness of our methods for TWASs, we integrated models with three multi-ancestry GWASs from blood cell, lipid, and pulmonary function traits, respectively. Our methods presented similar prediction accuracy while using a smaller and functionally informed set of variants compared to the benchmark method, elastic net (EN). Overall, our methods achieved higher power and accuracy (with average improved accuracy of 24% over EN) for TWASs. However, no single proposed method outperformed all GWAS traits. To further improve TWAS performance, we propose an omnibus approach that aggregates TWAS summary statistics from our methods. The omnibus approach yielded the highest number of Bonferroni-significant TWAS genes for all GWAS traits, and it further improved TWAS power and accuracy for blood cell traits. Additionally, the omnibus approach detected some trait-relevant important genes that the EN missed. Our study demonstrates the value of including FIVs in multi-ancestry transcriptome prediction models for improving TWAS performance. Further, the observed TWAS improvement depends on the GWAS trait's relevance to the PBMCs used to build our transcriptome prediction models.
PMID:41932314 | DOI:10.1016/j.ajhg.2026.03.008
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(Multiomics OR Omics) AND (Lung OR gastric OR Hepatocellular)
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Isobavachalcone exerts anti-gastric cancer effects by targeting dihydroorotate dehydrogenase to induce ROS release and activating the STING pathway
Phytomedicine. 2026 Mar 27;155:158126. doi: 10.1016/j.phymed.2026.158126. Online ahead of print.ABSTRACTBACKGROUND: Mitochondrial damage can induce the release of mitochondrial DNA (mtDNA), leading to oxidative stress and activation of immune responses. Targeting mitochondrial dysfunction may thus represent a therapeutic strategy for gastric cancer. Isobavachalcone (IBC), a prenylated chalcone derived from Psoralea corylifolia L., has demonstrated antitumor activity, but its mechanism of action
Isobavachalcone exerts anti-gastric cancer effects by targeting dihydroorotate dehydrogenase to induce ROS release and activating the STING pathway
Phytomedicine. 2026 Mar 27;155:158126. doi: 10.1016/j.phymed.2026.158126. Online ahead of print.
ABSTRACT
BACKGROUND: Mitochondrial damage can induce the release of mitochondrial DNA (mtDNA), leading to oxidative stress and activation of immune responses. Targeting mitochondrial dysfunction may thus represent a therapeutic strategy for gastric cancer. Isobavachalcone (IBC), a prenylated chalcone derived from Psoralea corylifolia L., has demonstrated antitumor activity, but its mechanism of action remains unclear, limiting its clinical application.
PURPOSE: This study aimed to investigate the antitumor effects of IBC in gastric cancer and to elucidate the underlying molecular mechanisms, with a focus on mitochondrial damage and immune activation.
STUDY DESIGN: The study combined in vitro and in vivo assays with multi-omics sequencing and network pharmacology to identify IBC's therapeutic target and downstream signaling pathways.
METHODS: Gastric cancer cells and mouse models were treated with IBC to assess its inhibitory effects. Multi-omics approaches and network pharmacology were used to identify potential targets. ROS production, mitochondrial membrane integrity, and immune pathway activation were evaluated via biochemical and molecular assays.
RESULTS: IBC significantly suppresses gastric cancer growth both in vitro and in vivo. Integrated analysis identifies dihydroorotate dehydrogenase (DHODH) as a direct target of IBC. DHODH deficiency can induce mitochondrial membrane remodeling and STING pathway activation. Inhibition of DHODH by IBC induces ROS accumulation, mitochondrial membrane remodeling, and activation of the STING pathway, promoting antitumor immune responses. This study demonstrates that IBC enhances antitumor immunity in gastric cancer through mitochondrial damage-mediated mechanisms.
CONCLUSION: IBC exerts dual antitumor and immunostimulatory effects in gastric cancer by targeting DHODH, inducing mitochondrial damage, and activating the STING pathway, highlighting its promising therapeutic potential in gastric cancer.
PMID:41931998 | DOI:10.1016/j.phymed.2026.158126
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MRD
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Translating ctDNA into cutaneous melanoma care: An international expert survey
Eur J Cancer. 2026 Mar 19;239:116676. doi: 10.1016/j.ejca.2026.116676. Online ahead of print.ABSTRACTBACKGROUND: Circulating tumor DNA (ctDNA) is a promising biomarker in melanoma, with higher sensitivity for tumor burden detection than conventional diagnostics. While well established in research, clinical routine implementation remains pending. Key global questions concern optimal clinical applications and barriers to adoption.METHODS: A web-based survey of 116 members of the Melanoma World Soc
Translating ctDNA into cutaneous melanoma care: An international expert survey
Eur J Cancer. 2026 Mar 19;239:116676. doi: 10.1016/j.ejca.2026.116676. Online ahead of print.
ABSTRACT
BACKGROUND: Circulating tumor DNA (ctDNA) is a promising biomarker in melanoma, with higher sensitivity for tumor burden detection than conventional diagnostics. While well established in research, clinical routine implementation remains pending. Key global questions concern optimal clinical applications and barriers to adoption.
METHODS: A web-based survey of 116 members of the Melanoma World Society Study Group assessed international expert opinions on ctDNA utility across predefined clinical scenarios. The questionnaire included 18 general questions on ctDNA use and 5 clinical vignettes with de-identified patient data and retrospectively obtained ctDNA results.
RESULTS: ctDNA was rated most valuable for detecting minimal residual disease (mean score 3.63), surveillance of recurrent disease (3.85), and stage IV melanoma (3.82), with limited utility in early stages. Experts considered ctDNA superior to S100 and LDH for early relapse detection and identifying progressive disease. Most participants (80%) agreed that ctDNA correlates with radiographic response, and 82% favored its integration into routine follow-ups. In urgent high-tumor-burden settings, 82.8% would initiate BRAFi/MEKi therapy based on ctDNA if tissue analysis was pending, and 93.9% if unavailable. For central nervous system lesions, 62% did not support blood ctDNA, while 66% considered cerebrospinal fluid valuable. Pragmatic approaches with small to mid-size targeted panels and short turnaround times were preferred. Major barriers included the need for prospective trials (85%), standardized guidelines (83%), and reimbursement policies (82%).
CONCLUSION: Key opinion leaders regarded ctDNA as a valuable adjunct selected melanoma scenarios. Validation through prospective studies, guideline development, and reimbursement frameworks are essential for broader clinical implementation.
PMID:41932032 | DOI:10.1016/j.ejca.2026.116676