Live Webinar featuring NCI’s Adam Sowalsky, PhD; Integrative liquid biopsy reveals resistance mechanisms in prostate cancer 

9:00 am
 to 10:00 am
 PDT, 
17 June 2026

Live Webinar featuring NCI’s Adam Sowalsky, PhD; Integrative liquid biopsy reveals resistance mechanisms in prostate cancer 

Originally presented on 17 June 2026.

About the webinar

Wednesday, June 17th, 2026
12:00PM ET | 5:00PM BST | 9:00AM PT

Join Dr. Adam Sowalsky to learn how he used biomodal’s duet evoC technology (6-base sequencing) to redefine what liquid biopsy can reveal. Using serial plasma samples, biomodal’s duet evoC approach goes beyond revealing just mutation or even methylation detection to uncover gene expression unlocking an understanding of tumour phenotypes, and emerging resistance patterns over time, all from low-input cfDNA samples.

Register to see how biomodal’s duet evoC soluton can reveal a more dynamic, non-invasive view of treatment response and disease progression.

What you will learn:

  • How a single assay integrates genetic, 5mC, 5hmC, and inferred gene expression to reconstruct tumour biology from cfDNA
  • Insights from distinct epigenetic patterns (5mC and 5hmC) that reveal tumour states and early response signals missed by conventional epigenetic methods
  • Direct inference of tumour transcriptional programs from plasma to track treatment response and emerging resistance over time

REGISTER HERE for the webinar!

Presenting at the event

Dual ctDNA 5mC/5hmC methylomics and clonal reconstruction reveal tumor transcription and resistance in metastatic prostate cancer

Adam Sowalsky, Ph.D

Senior Investigator

National Cancer Institute

Liquid biopsies can detect actionable mutations and infer broad tumor states from genome-wide cfDNA measurements, but quantitative transcriptome-like phenotyping at single gene resolution still largely requires tissue. Here, we asked whether 6-base whole-genome sequencing that jointly quantifies 5-methylcytosine (5mC) and 5-hydroxymethylcytosine (5hmC) could infer gene expression directly from plasma. We applied this framework to plasma from patients enrolled in a phase 2 clinical trial of the PARP inhibitor olaparib plus the PD-L1 inhibitor durvalumab for metastatic castration-resistant prostate cancer. Inferred plasma transcriptomes distinguished adenocarcinoma vs. neuroendocrine phenotypes and identified a noncanonical WNT5A-associated signature linked to poor clinical response. Integrating longitudinal cfDNA methylomic profiles with phylogenetic reconstruction further revealed two resistance trajectories: one featuring high tumor heterogeneity with persistent AR signaling, and another marked by an AR-independent, stem-like program with metabolic reprogramming. These findings demonstrate that ctDNA can inform phenotype-driven tumor biology at gene-level resolution, integrating epigenetic modifications, inferred transcriptional programs, and clonal dynamics as a function of treatment response.

I’ll describe how we used biomodal’s 6-base sequencing on serial liquid biopsies to infer tumor gene activity directly from plasma and capture clinically relevant tumor states. I’ll then show how combining this with deep ctDNA sequencing and longitudinal sampling reveals baseline signatures and evolving resistance patterns that track with treatment response.

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