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February 12, 2026Cell Death and Disease2 citationsOpen Access

Loss of MLKL impairs abdominal aortic aneurysm development by attenuating smooth muscle cell necroptosis

HNHarshal NemadeTH Köln - University of Applied SciencesDMDennis MehrkensInterventional / Structural CardiologyHLHannah Sophia LottermoserUniversity of Cologne

Key Points

  • This research aims to clarify the role of MLKL-driven necroptosis in the development of abdominal aortic aneurysms (AAA).
  • Used aortic elastase-perfusion model on necroptosis-deficient transgenic mice.
  • Conducted ultrasound analysis to assess aneurysm formation and aortic structure.
  • Performed bulk mRNA sequencing to analyze gene expression related to inflammation and immune response.
  • Conducted bone marrow transplantation experiments to determine the role of MLKL in smooth muscle cells versus myeloid cells.
  • Necroptosis-deficient mice showed protection against aneurysm formation compared to wild-type animals.
  • Preserved aortic structure and decreased immune cell infiltration were observed in necroptosis-deficient mice.
  • Downregulation of genes tied to inflammation and immune activation was noted in necroptosis-deficient animals.
  • MLKL deficiency in smooth muscle cells was identified as the primary factor for the observed protective phenotype.

Abstract

Abstract Abdominal aortic aneurysm (AAA) is a life-threatening condition characterized by chronic vascular inflammation and progressive aortic wall deterioration. MLKL-driven necroptosis, a highly inflammatory form of cell death, has been implicated in several cardiovascular pathologies; however, its role in AAA remains incompletely understood. Using the aortic elastase-perfusion model, we investigated the impact of necroptosis deficiency on AAA progression in necroptosis-deficient transgenic mice, including RIPK1 kinase-inactive ( Ripk1 D138N/D138N ), MLKL knockout ( Mlkl −/− ), and MLKL phospho-deficient ( Mlkl AA ) animals. Ultrasound analysis revealed that, compared to WT animals, the necroptosis-deficient animals were protected from aneurysm formation, exhibiting preserved aortic structure, reduced immune cell infiltration, and attenuated extracellular matrix remodeling. Bulk mRNAseq revealed significant downregulation of genes associated with fibrinolysis, immune cell activation/migration, inflammation, complement and coagulation cascades in necroptosis-deficient animals. Bone marrow transplantation experiments demonstrated that MLKL deficiency in smooth muscle cells (SMCs), rather than in myeloid cells, was primarily responsible for the protective phenotype. Furthermore, consistent with previous reports, necroptosis induction in MLKL-expressing human and primary mouse SMCs led to increased secretion of proinflammatory cytokines. Live-cell imaging revealed that necroptotic SMCs promote activation and migration of HL60-differentiated polymorphonuclear neutrophils. Collectively, these findings demonstrate that necroptotic SMC death and resulting leukocyte activation play a causative role in AAA development and suggest that pharmacological inhibition of MLKL may represent a promising treatment strategy for AAA disease.

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Cite This Study

Nemade et al. (2026) studied this question.

synapsesocial.com/papers/698d6edc5be6419ac0d54c7chttps://doi.org/10.1038/s41419-026-08427-4
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