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June 21, 2026International Journal of Molecular Sciences0 citationsOpen Access

Tenascin-C Drives Inflammatory VSMC Phenotypic Switching Through NF-κB Signaling in Saphenous Vein Graft Restenosis

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LJLipeng JiangHGHongyu GaoTGTianxiang Gu

Key Points

  • This research aims to elucidate the role of tenascin-C in vascular smooth muscle cell responses during vein graft restenosis.
  • Integrated multi-omics analyses of human and canine vein graft specimens
  • In vitro functional assays to determine VSMC responses to pro-inflammatory stimuli
  • siRNA-mediated knockdown of tenascin-C to assess its role in NF-κB signaling.
  • TNC expression was significantly induced by pro-inflammatory stimuli in VSMCs.
  • TNC knockdown led to reduced nuclear p65 levels, indicating decreased NF-κB activation.
  • TNC, NF-κB, and TNF-α were identified as key components in a pro-inflammatory signaling cascade promoting neointimal hyperplasia.

Abstract

Vein graft restenosis is a leading cause of long-term failure after coronary artery bypass grafting (CABG), driven by maladaptive vascular smooth muscle cell (VSMC) responses to arterialization-induced inflammation. The key molecular mediators of this pathological remodeling, however, remain incompletely defined. Here, we integrated multi-omics analyses of human and canine vein graft specimens with in vitro functional assays to identify tenascin-C (TNC)—a matricellular extracellular matrix protein—as a critical regulator of VSMC dysfunction. TNC was specifically enriched in a synthetic, pro-inflammatory VSMC subpopulation. Pro-inflammatory stimuli potently induced TNC expression, which was functionally linked to VSMC phenotypic modulation, hyperproliferation, and enhanced migration. Mechanistically, TNC acts upstream of NF-κB signaling; siRNA-mediated TNC knockdown significantly reduced nuclear p65 protein levels and attenuated inflammatory responses. Our integrated computational and experimental data suggest that TNC, NF-κB, and TNF-α function within a sequential pro-inflammatory signaling cascade that sustains vascular inflammation and promotes neointimal hyperplasia. These findings reposition TNC from a passive structural component to an active driver of vascular pathology and highlight the TNC–NF-κB axis as a candidate target for therapeutic intervention to improve vein graft patency.

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Cite This Study

Jiang et al. (2026) studied this question.

synapsesocial.com/papers/6a377fdd24f042ddf4c5a2a1https://doi.org/10.3390/ijms27125516
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