Loss of EMILIN-1/integrin axis drives microenvironmental reprogramming in gastric tumorigenesis

Alessandra Capuano1, Maddalena Vescovo1, Samanta Muzzin1,2

  • 1Molecular Oncology Unit, Centro Di Riferimento Oncologico Aviano, (CRO) IRCCS, Aviano, Italy.

Abstract

Insights

Extracellular matrix glycoprotein EMILIN-1 loss promotes gastric cancer by disrupting tissue integrity and reprogramming fibroblasts. Reduced EMILIN-1 in early dysplasia suggests its potential as a biomarker for gastric cancer risk stratification.

Area of Science:

  • Oncology
  • Extracellular Matrix Biology
  • Cancer Microenvironment

Background:

  • EMILIN-1 is an extracellular matrix glycoprotein with known tumor-suppressive functions.
  • Loss of EMILIN-1 is implicated in cancer progression, but its role in the gastric tumor microenvironment is unclear.

Purpose of the Study:

  • To investigate the consequences of impaired EMILIN-1 function in the gastric tumor microenvironment.
  • To determine the clinical relevance of EMILIN-1 in gastric cancer progression.

Main Methods:

  • Utilized in vitro cellular systems and genetically modified mouse models.
  • Employed histopathological analysis, gene expression profiling, and functional assays.
  • Assessed phenotypic changes in epithelial, fibroblastic, and endothelial compartments.

Main Results:

  • Gastric cancer cells downregulate EMILIN-1 in stromal fibroblasts and lymphatic endothelial cells, disrupting lymphatic organization.
  • Loss of the EMILIN-1/α4β1 integrin axis allows tumor cells to escape ECM-mediated growth control.
  • EMILIN-1 downregulation reprograms fibroblasts into a pro-tumorigenic phenotype, enhancing gastric cancer cell migration and clonogenic potential. EMILIN-1 loss-of-function mice showed increased susceptibility to pre-neoplastic lesions, mirroring findings in human dysplastic tissues.

Conclusions:

  • EMILIN-1 is a critical regulator of gastric tissue integrity, and its loss creates a tumor-permissive microenvironment.
  • Reduced EMILIN-1 in early human dysplasia indicates its potential as a biomarker for early gastric cancer risk stratification.
  • Restoring the EMILIN-1/integrin axis offers a therapeutic strategy to control tumor growth and progression.

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