From viral infection to emission: host barriers shaping airborne transmission

Coughing, speaking, and even quiet breathing can release virus-laden particles into the air, triggering transmission events that spread through households and communities. Understanding why some respiratory viruses transmit so efficiently, and under which biological or environmental conditions this occurs, is central to anticipating future outbreaks. In this review, we outline the biological and physical factors that shape respiratory virus transmission, highlighting how the site of replication, mechanisms of droplet generation, and environmental conditions influence airborne spread. We examine how viral traits such as receptor usage, tissue tropism, and innate immune evasion intersect with airway physiology to determine the size, composition, and infectiousness of exhaled particles. We lastly draw attention to key gaps in current knowledge, particularly regarding the host and environmental factors that govern both the release and uptake of virions. Filling these gaps will allow us to more accurately assess transmission risk and implement targeted approaches to reduce spread.

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Publication Details

Journal
Journal of Virology
Published
2026-09-28
DOI
https://doi.org/10.1128/jvi.00753-26
Primary Topic
Infection Control and Ventilation
Type
article
Field-Weighted Citation Impact
0.00
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article

From viral infection to emission: host barriers shaping airborne transmission

Julia Rebecca Port, Christian Sieben, PATRICIA MARTINEZ, Saikat Basu et al.
Journal of Virology
Infection Control and Ventilation
article

From viral infection to emission: host barriers shaping airborne transmission

Julia Rebecca Port, Christian Sieben, PATRICIA MARTINEZ, Saikat Basu, Maximilian Rohde, Mohammad Yeasin
article en

Abstract

Coughing, speaking, and even quiet breathing can release virus-laden particles into the air, triggering transmission events that spread through households and communities. Understanding why some respiratory viruses transmit so efficiently, and under which biological or environmental conditions this occurs, is central to anticipating future outbreaks. In this review, we outline the biological and physical factors that shape respiratory virus transmission, highlighting how the site of replication, mechanisms of droplet generation, and environmental conditions influence airborne spread. We examine how viral traits such as receptor usage, tissue tropism, and innate immune evasion intersect with airway physiology to determine the size, composition, and infectiousness of exhaled particles. We lastly draw attention to key gaps in current knowledge, particularly regarding the host and environmental factors that govern both the release and uptake of virions. Filling these gaps will allow us to more accurately assess transmission risk and implement targeted approaches to reduce spread.

Journal of Virology
South Dakota State University (US), Medizinische Hochschule Hannover (DE), Biology of Infection (FR), Helmholtz Centre for Infection Research (DE), Technische Universität Braunschweig (DE)
Openalex Percentile: Top 12%
Infection Control and Ventilation
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From viral infection to emission: host barriers shaping airborne transmission — Julia Rebecca Port, Christian Sieben, et al. · Journal of Virology (2026) | TGRS Research Map | TGRS