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DNA sequencing and molecular biology research in a genomics laboratory
The Technology

The Science Behind HelioLiver

HelioLiver LDT combines cfDNA methylation, protein biomarkers, and clinical data to support early HCC detection in high-risk patients.

How HelioLiver Works

Three Signals, One Clear Result

HelioLiver LDT brings together three different types of information from a single blood draw, then interprets them together to assess the likelihood of hepatocellular carcinoma in high-risk patients.

cfDNA methylation

Reads cancer-related DNA methylation changes circulating in the blood — the molecular signals that can appear before symptoms.

Protein biomarkers

Adds a second, independent layer of signal that strengthens the overall assessment alongside the methylation data.

Clinical data

Brings both biological signals together with clinical context for a clear, actionable result in high-risk patients.

Molecular diagnostics and DNA analysis in a laboratory
Why It Matters

Why Methylation Matters for Early Detection

Cancer cells can create detectable methylation changes in the blood — often before a tumour is large enough to be seen on imaging. By reading these changes, HelioLiver LDT is designed to identify hepatocellular carcinoma at an earlier, more treatable stage, particularly the small, early-stage lesions that are hardest to catch with ultrasound.

Detect before it's visible. Methylation signals can appear before a tumour is large enough to be seen on imaging — opening a window for earlier, more treatable intervention.

Clinical Validation

Validated in the CLiMB Trial

HelioLiver LDT was validated in the CLiMB trial — a prospective, blinded, multicenter US study in patients at high risk of HCC due to cirrhosis. Published in the Journal of Hepatology, May 2026.

Published Peer-Reviewed Multicenter Study Journal of Hepatology

High-risk population

Studied in high-risk cirrhotic patients — the population that most needs reliable HCC surveillance.

Head-to-head with ultrasound

Compared directly against ultrasound, the current standard of care, detecting Stage I HCC at 44% vs 11%.

MRI-confirmed

HCC status was confirmed by MRI in clinical evaluation, anchoring the trial's results to a clinical reference standard.

Published clinical evidence

Published in the Journal of Hepatology, May 2026 — peer-reviewed, prospective, blinded, and multicenter.

CLiMB trial — prospective, blinded, multicenter US study in patients with cirrhosis. Published in the Journal of Hepatology, May 2026.
The Process

From Blood Draw to Clinical Result

A single blood draw moves through extraction, molecular analysis, and AI-based interpretation to deliver one clear result.

1

Blood Sample Collection

2

cfDNA Extraction

3

Methylation Analysis

4

Protein Biomarker Assessment

5

Clinical Data Integration

6

AI-Based Interpretation

7

Clinical Result

Learn More

Go Deeper

Explore the platform technology behind HelioLiver, or review the full body of clinical research and trials supporting Helio's work in early cancer detection.

Explore the Technology

See the proprietary ECLIPSE™ platform and the multi-omics science that powers HelioLiver.

Explore the Technology

Read the Research

Review the full body of clinical research and trials supporting Helio's work in early cancer detection.

Read the Research
What Sets It Apart

Why HelioLiver Is Different

Multi-Analyte Testing

Combines cfDNA methylation, protein biomarkers, and clinical data into one assessment.

Early Detection

Designed to identify HCC at an earlier, more treatable stage — including small lesions.

Precision Oncology

Built on proprietary, patented methylation science developed over nearly a decade.

Blood-Based Testing

A single blood draw — no imaging required to generate the result.

Clinically Validated

Validated in the CLiMB trial and published in the Journal of Hepatology.

Designed for High-Risk Patients

Built for cirrhotic and other high-risk patients who most need HCC surveillance.

Bring Earlier Detection to Your Patients

HelioLiver LDT gives physicians a simple, validated way to detect liver cancer earlier — from a single blood draw.