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April 5, 2026Cancer Research0 citations

Abstract 936: Temporal dependency of STAT3 signaling dictates hepatocarcinogenesis in metabolic dysfunction-associated steatohepatitis.

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JEJie Qing EuNSNur Afiqah Binte Mohamed SallehMSMing Yee Sim

Key Result

Early STAT3 silencing using GalNAc-STAT3 substantially reduced HCC initiation and tumor burden in MASH models, whereas late intervention failed to reduce tumor nodule formation.

Key Points

  • The study aims to explore the role and timing of STAT3 signaling during the progression of metabolic dysfunction-associated steatohepatitis to hepatocellular carcinoma.
  • Longitudinal profiling of mouse and human liver tissues
  • Use of a hepatocyte-targeting siRNA to silence STAT3 at different disease stages
  • Histopathology and serum proteomics to evaluate disease outcomes
  • Spatial transcriptomics and immune phenotyping for microenvironment characterization
  • Early STAT3 inhibition significantly reduced tumor initiation and burden before malignancy despite ongoing lipid accumulation.
  • Multi-omics analyses pinpointed a TGF-β1-associated inflammatory program activated by STAT3 in peritumoral areas.
  • Late STAT3 suppression did not prevent tumor formation, indicating a shift in dependence after malignancy onset.

Structured PICO

Does early or late administration of GalNAc-STAT3 reduce HCC initiation and tumor burden in models of MASH-associated hepatocarcinogenesis?

P
Population
Diseased mouse (STAM model) and human liver tissues representing metabolic dysfunction-associated steatohepatitis (MASH) to hepatocellular carcinoma (HCC) progression.
I
Intervention
Hepatocyte-targeting, GalNAc-conjugated Dicer-substrate siRNA (GalNAc-STAT3) to selectively silence STAT3 at distinct disease phases (early MASH and post-tumor initiation).
O
Outcome
Disease outcomes including HCC initiation and tumor burden evaluated using histopathology and serum proteomics.surrogate

STAT3 inhibition serves as an effective early-stage interception strategy to prevent MASH-associated hepatocarcinogenesis, but is ineffective once malignant transformation has occurred.

Abstract

Abstract Background: Metabolic dysfunction-associated steatohepatitis (MASH) is rapidly surpassing viral and alcoholic etiologies as the leading cause of hepatocellular carcinoma (HCC). Despite so, the molecular checkpoints governing the transition from metabolic injury to malignancy remain poorly understood. Hyperactivated STAT3 has been implicated in lipid dysregulation, inflammation, fibrosis, and oncogenic signaling. However, its dynamic regulation during MASH-to-HCC progression remains undefined. Methods: We performed longitudinal profiling of diseased mouse and human liver tissues to map STAT3 signaling dynamics across disease stages. Using the STAM model, we administered a hepatocyte-targeting, GalNAc-conjugated Dicer-substrate siRNA (GalNAc-STAT3) to selectively silence STAT3 at distinct disease phases: (i) early MASH and (ii) post-tumor initiation. Disease outcomes were evaluated using histopathology and serum proteomics. Spatial transcriptomics and immune phenotyping were used to resolve microenvironment- and subtype-specific responses. Results: STAT3 suppression exhibited striking stage-specific effects. Early intervention prior to malignant transformation substantially reduced HCC initiation and tumor burden despite persistent steatosis, demonstrating that lipid accumulation alone is insufficient to drive carcinogenesis. Multi-omics analyses identified a STAT3-dependent, TGF-β1-associated fibrogenic and inflammatory program in peritumoral regions that acted as a key molecular driver for malignant progression. In contrast, late intervention failed to reduce tumor nodule formation despite effect STAT3 inhibition, indicating loss of STAT3 dependency following malignant transformation. Spatial interrogation further revealed subtype-specific adaptive remodeling through metabolic re-differentiation in glutamine synthetase (GS)-positive nodule, and activated stress tolerance transcriptional programs in GS-negative tumors. Conclusions: This work uncovers a previously unrecognized temporal dependency of STAT3 during MASH-associated hepatocarcinogenesis. STAT3 is essential as an early driver in establishing pro-tumorigenic niche, but is dispensable once malignant cell states emerge. These discoveries redefine the therapeutic window for STAT3 inhibition, positioning it as an early stage interception strategy rather that treatment for advanced tumors. Citation Format: Jie Qing Eu, Nur Afiqah Binte Mohamed Salleh, Ming Yee Sim, Zi Swan Tan, Daniel Q. Huang, Tuan Zea Tan, Boon Cher Goh, Li Ren Kong. Temporal dependency of STAT3 signaling dictates hepatocarcinogenesis in metabolic dysfunction-associated steatohepatitis abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 936.

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Cite This Study

Eu et al. (2026) studied Metabolic dysfunction-associated steatohepatitis (MASH) and hepatocellular carcinoma. GalNAc-conjugated Dicer-substrate siRNA (GalNAc-STAT3) was evaluated on HCC initiation and tumor burden. Early STAT3 silencing using GalNAc-STAT3 substantially reduced HCC initiation and tumor burden in MASH models, whereas late intervention failed to reduce tumor nodule formation.

synapsesocial.com/papers/69d1fe07a79560c99a0a476chttps://doi.org/10.1158/1538-7445.am2026-936
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 4563: Small molecules inhibited dysregulated STAT3-proinflammatory axis and induced antitumor responses in pancreatic and breast cancer2026
  2. 2Targeting STE20-type kinase MST3 improves metabolic dysfunction-associated steatohepatitis without affecting hepatocellular carcinoma development in mice2026
  3. 3Abstract A031: Multi-omics profiling reveals cancer-relevant gut–liver axis alterations during MASL to MASH transition2025
  4. 4ACSL3 Promotes Hepatocellular Carcinoma Tumorigenesis and Correlates With JAK – STAT3 Signaling2026
  5. 5Abstract 949: Prevention of insulin receptor isoform A formation inhibits MASH-driven hepatocellular carcinoma2026