Endothelial Collapse as a Convergent Immunovascular Phenotype in Sepsis and Severe Arboviral Disease: The SIMVAC Model

Background/Objectives: Severe bacterial sepsis and arboviral diseases may present with overlapping manifestations of vascular leakage, hemodynamic instability, thrombocytopenia, and organ dysfunction. We examined whether etiologically distinct severe infections may converge on selected components of immunovascular dysfunction and propose the Severe Infection-Mediated Vascular Activation and Collapse (SIMVAC) model as a hypothesis-generating framework. Methods: This narrative mechanistic review integrates human clinical and physiological studies, translational biomarker evidence, experimental models, and pathogen-specific mechanistic studies, with particular attention to the relative strength of evidence across arboviruses. Results: Dengue provides the strongest arboviral mechanistic support, linking plasma leakage with NS1-mediated endothelial barrier disruption, glycocalyx degradation, tissue-specific vascular effects, and inflammatory amplification. Evidence for yellow fever, West Nile virus, and Zika supports distinct organ-specific or systemic pathways but is less complete, whereas evidence for Mayaro, Oropouche, Venezuelan equine encephalitis, and Rocio viruses remains limited or hypothesis-generating. Candidate points of convergence include glycocalyx injury, Ang-2/Tie2 and S1P dysregulation, complement activation, NETosis, and vWF/ADAMTS13 imbalance. Conclusions: SIMVAC should be regarded as a testable conceptual model rather than a validated syndrome or diagnostic tool. Prospective, pathogen-confirmed studies are required to determine whether reproducible immunovascular signatures exist across severe infections and whether they provide clinically meaningful information beyond conventional etiological and severity assessment.

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Journal
Pathogens
Published
2026-09-08
DOI
https://doi.org/10.3390/pathogens15090952
Primary Topic
Sepsis Diagnosis and Treatment
Type
article
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article

Endothelial Collapse as a Convergent Immunovascular Phenotype in Sepsis and Severe Arboviral Disease: The SIMVAC Model

Juan S. Izquierdo‐Condoy, Marlon Rojas-Cadena, Jefferson Alexander Nuñez Medina, Humberto Alejandro Nati-Castillo et al.
Pathogens
Sepsis Diagnosis and Treatment
article

Endothelial Collapse as a Convergent Immunovascular Phenotype in Sepsis and Severe Arboviral Disease: The SIMVAC Model

Juan S. Izquierdo‐Condoy, Marlon Rojas-Cadena, Jefferson Alexander Nuñez Medina, Humberto Alejandro Nati-Castillo, Kenny Ruiz Sosa, Saavedra Torres, MD, MSc (Inmunología Clínica, Cuidados Paliativos), Esp. Medicina Familiar, Jhan Sebastian, Leonardo Sánchez Salazar, Alice Gaibor-Pazmino, Valeria Estefania Galecio Tito
article en

Abstract

Background/Objectives: Severe bacterial sepsis and arboviral diseases may present with overlapping manifestations of vascular leakage, hemodynamic instability, thrombocytopenia, and organ dysfunction. We examined whether etiologically distinct severe infections may converge on selected components of immunovascular dysfunction and propose the Severe Infection-Mediated Vascular Activation and Collapse (SIMVAC) model as a hypothesis-generating framework. Methods: This narrative mechanistic review integrates human clinical and physiological studies, translational biomarker evidence, experimental models, and pathogen-specific mechanistic studies, with particular attention to the relative strength of evidence across arboviruses. Results: Dengue provides the strongest arboviral mechanistic support, linking plasma leakage with NS1-mediated endothelial barrier disruption, glycocalyx degradation, tissue-specific vascular effects, and inflammatory amplification. Evidence for yellow fever, West Nile virus, and Zika supports distinct organ-specific or systemic pathways but is less complete, whereas evidence for Mayaro, Oropouche, Venezuelan equine encephalitis, and Rocio viruses remains limited or hypothesis-generating. Candidate points of convergence include glycocalyx injury, Ang-2/Tie2 and S1P dysregulation, complement activation, NETosis, and vWF/ADAMTS13 imbalance. Conclusions: SIMVAC should be regarded as a testable conceptual model rather than a validated syndrome or diagnostic tool. Prospective, pathogen-confirmed studies are required to determine whether reproducible immunovascular signatures exist across severe infections and whether they provide clinically meaningful information beyond conventional etiological and severity assessment.

PathogensVol. 15(9)
Universidad de Las Américas (EC), Hospital de Especialidades (MX), Clínica CES (CO), Institución Universitaria Visión de las Américas (CO)
Good health and well-being
Openalex Percentile: Top 10%
Sepsis Diagnosis and Treatment
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