Beyond polio: advanced human in vitro models for studying non-polio enterovirus pathogenesis

ABSTRACT While efforts to eradicate poliovirus are ongoing, non-polio enteroviruses (NPEV) continue to pose a substantial public health threat. NPEVs cause a wide range of diseases, from mild self-limiting infections to severe respiratory, neurological, and cardiac complications, with the highest burden occurring in children and immunocompromised populations. Recent advances in human stem cell-derived cultures, organoids, air-liquid interface systems, and assembloids have transformed the study of NPEV pathogenesis by providing physiologically relevant models that recapitulate human tissue architecture, cellular complexity, and host responses. In this review, we discuss how these advanced in vitro systems have enhanced our understanding of the determinants of viral tropism, including receptor usage, epithelial polarity, tissue-specific susceptibility, and viral genetic variation. We further highlight insights into serotype-dependent differences in innate immune responses, tissue injury, and dissemination mechanisms. Finally, we explore the potential of these models for antiviral discovery and personalized therapeutic development, emphasizing their value for advancing both fundamental and translational NPEV research.

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Publication Details

Journal
Journal of Virology
Published
2026-09-30
DOI
https://doi.org/10.1128/jvi.01699-25
Primary Topic
Viral Infections and Immunology Research
Type
article
Field-Weighted Citation Impact
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article

Beyond polio: advanced human in vitro models for studying non-polio enterovirus pathogenesis

Lisa M. Bauer, Bjoern Meyer, Ashley Kelly Pereirinha da Silva
Journal of Virology
Viral Infections and Immunology Research
article

Beyond polio: advanced human in vitro models for studying non-polio enterovirus pathogenesis

Lisa M. Bauer, Bjoern Meyer, Ashley Kelly Pereirinha da Silva
article en

Abstract

ABSTRACT While efforts to eradicate poliovirus are ongoing, non-polio enteroviruses (NPEV) continue to pose a substantial public health threat. NPEVs cause a wide range of diseases, from mild self-limiting infections to severe respiratory, neurological, and cardiac complications, with the highest burden occurring in children and immunocompromised populations. Recent advances in human stem cell-derived cultures, organoids, air-liquid interface systems, and assembloids have transformed the study of NPEV pathogenesis by providing physiologically relevant models that recapitulate human tissue architecture, cellular complexity, and host responses. In this review, we discuss how these advanced in vitro systems have enhanced our understanding of the determinants of viral tropism, including receptor usage, epithelial polarity, tissue-specific susceptibility, and viral genetic variation. We further highlight insights into serotype-dependent differences in innate immune responses, tissue injury, and dissemination mechanisms. Finally, we explore the potential of these models for antiviral discovery and personalized therapeutic development, emphasizing their value for advancing both fundamental and translational NPEV research.

Journal of Virology
Erasmus MC (NL), Otto-von-Guericke-Universität Magdeburg (DE)
Good health and well-being
Openalex Percentile: Top 11%
Viral Infections and Immunology Research
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