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April 5, 2026Cancer Research0 citations

Abstract 949: Prevention of insulin receptor isoform A formation inhibits MASH-driven hepatocellular carcinoma

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YWYanting WangEast China University of Science and TechnologyMDManasi DasUniversity of California, San DiegoPWPanyisha Wu

Key Points

  • The aim is to determine if blocking insulin receptor isoform A formation can inhibit hepatocellular carcinoma driven by metabolic dysfunction.
  • Developed an 'Exon 11+' mouse model to enforce inclusion of insulin receptor exon 11.
  • Induced hepatocellular carcinoma using a chemical-dietary carcinogenesis protocol.
  • Assessed tumor burden and liver health using histology and immunohistochemistry.
  • Exon 11+ mice showed over 80% reduction in tumor number compared to wild-type mice.
  • Histological analysis revealed less liver fibrosis and inflammation in Exon 11+ mice.
  • Enforcing IR-B expression suppressed hepatocyte proliferation and downregulated proinflammatory and profibrogenic genes.

Abstract

Abstract Introduction: Metabolic dysfunction-associated steatohepatitis (MASH) has emerged as a leading driver of hepatocellular carcinoma (HCC). Our previous work identified that the loss of the RNA splicing factor SRSF3 is an early event in chronic liver disease. This loss leads to the aberrant skipping of exon 11 in the insulin receptor (INSR) gene, shifting the isoform expression from the normal hepatic IR-B to the fetal IR-A isoform. Unlike IR-B, IR-A binds insulin-like growth factor 2 (IGF2) with high affinity, potentially establishing a mitogenic autocrine loop. We hypothesized that this specific splicing switch is a critical driver of hepatocarcinogenesis and that preventing it could inhibit tumor formation. Methods: To test this hypothesis, we generated a novel "Exon 11+" mouse model in which Insr exon 11 inclusion is genetically enforced, thereby preventing the production of the IR-A isoform. We subjected Exon 11+ mice and wild-type (WT) littermates to a chemical-dietary carcinogenesis protocol. Mice received a single injection of diethylnitrosamine (DEN) at 2 weeks of age, followed by chronic administration of thioacetamide (TAA) and a Western diet (MASH conditions) for 24 weeks to induce HCC. Tumor burden was assessed by surface counting and measuring. Liver tissues were analyzed via histology (H80%, p0.001) and size (p0.05) of surface tumors. Histological analysis confirmed that Exon 11+ mice had significantly reduced liver fibrosis (Sirius Red, p0.001) and immune cell infiltration (CD45, p0.01) compared to WT controls. Notably, Reticulin staining revealed that Exon 11+ livers maintained normal hepatic plate architecture (1-2 cell thickness), whereas WT livers displayed disorganization and thickening characteristic of HCC. Furthermore, enforcing IR-B expression significantly suppressed hepatocyte proliferation (Ki67, p0.0001) and downregulated the expression of key proinflammatory (Tnf, Il6, Ccl2) and profibrogenic (Col1a1, Col3a1) genes (all p0.05). Conclusions: Our data provide the first in vivo genetic evidence that the alternative splicing switch of the insulin receptor from IR-B to IR-A is a necessary event for MASH-driven HCC progression. Blocking this specific splicing error is sufficient to suppress inflammation, fibrosis, and tumor development in a harsh carcinogenic environment. These findings suggest that targeting the IGF2/IR-A signaling axis or correcting INSR splicing represents a potent therapeutic strategy for preventing MASH-associated liver cancer. Citation Format: Yanting Wang, Manasi Das, Panyisha Wu, Yunpeng Yang, Isabella Maranan, Liping Zeng, Yichun Ji, Deepak Kumar, Nicholas Webster. Prevention of insulin receptor isoform A formation inhibits MASH-driven hepatocellular carcinoma 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 949.

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Wang et al. (2026) studied this question.

synapsesocial.com/papers/69d1fdd4a79560c99a0a419ahttps://doi.org/10.1158/1538-7445.am2026-949
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