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May 13, 2026Tropical Medicine and Infectious Disease1 citationsOpen Access

Dengue NS1 as a Driver of Immune-Mediated Pathogenesis

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UWUpeksha S. WanigarathnaSRSenaka RajapakseSPSisira L. Pathirana

Key Points

  • This review aims to explore how the dengue NS1 protein drives immune-mediated vascular pathology, contributing to severe dengue outcomes.
  • Synthesis of experimental and clinical data on NS1's role in dengue immunopathogenesis.
  • Focus on mechanisms affecting endothelial dysfunction and vascular permeability.
  • Assessment of NS1's interactions with immune systems and vascular components.
  • NS1 disrupts endothelial integrity and modulates the complement system, impacting immune responses.
  • Evidence suggests NS1 may activate innate immunity and alter platelet function, contributing to disease severity.
  • NS1-linked pathways are proposed as targets for therapies and vaccines to prevent severe dengue.

Abstract

Dengue infection remains a major global health concern, with a subset of patients progressing from self-limited dengue fever to severe disease characterised by plasma leakage, shock, and organ dysfunction. The dengue non-structural protein 1 (NS1), a multifunctional glycoprotein expressed on infected cells and secreted into circulation, has emerged as a key mediator linking viral infection to immune-driven vascular pathology. This review synthesises experimental, animal, and human clinical evidence on NS1-driven immunopathogenesis, focusing on mechanisms leading to endothelial dysfunction and increased vascular permeability. NS1 modulates the complement system in a context-dependent manner, contributing to immune evasion by inhibiting terminal complement complex formation, while also promoting antibody-dependent complement activation associated with severe disease. Additionally, NS1 directly disrupts endothelial barrier integrity through disruption of adherens and tight junction architecture, Ang-2/Tie2 imbalance, activation of RhoA/ROCK (RhoA/Rho-associated coiled-coil-containing protein kinase) signalling, and enzymatic degradation of the endothelial glycocalyx, with further amplification through inflammatory mediators. In addition, evidence shows that NS1 activates innate immune signalling, perturbs platelet biology and haemostasis, and forms pro-inflammatory complexes with lipoproteins. Moreover, anti-NS1 antibodies may be both protective and pathogenic. Collectively, these data position NS1-linked pathways as rational targets for adjunctive therapies and next-generation vaccines aimed at preventing vascular leakage and severe dengue infection.

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Cite This Study

Wanigarathna et al. (2026) studied this question.

synapsesocial.com/papers/6a04147679e20c90b44446aehttps://doi.org/10.3390/tropicalmed11050128
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