AI Article Synopsis

  • Toll-like receptors (TLRs) play a crucial role in the immune response against respiratory syncytial virus (RSV) infections, but research has been complicated by varying methodologies and animal models.
  • Different studies have shown that multiple TLRs activate immunity during RSV infections, with TLR4 influencing the expression of TLR2 and suggesting the need for balanced immune responses.
  • Understanding how TLR signaling interacts with RSV could lead to better vaccines and treatments by potentially utilizing TLR adjuvants for enhanced immune activation.

Article Abstract

Toll-like receptors (TLRs) play a distinct role in battling respiratory syncytial virus (RSV) infections. However, due to a lack of representative animal models and several early controversies, the field is unclear. In this systematic review, we have elucidated conflicting results and outlined important factors that might affect study outcomes. We reviewed studies that used different doses/viral strains, performed virus propagation in different cell lines, or used different mice strains. The following firm conclusions can be drawn: multiple TLRs activate innate immunity upon RSV infection; TLR4 can influence TLR2 expression, suggesting that optimal induction of multiple signaling pathways is required to elicit protective, rather than deleterious innate immune responses following infection; in mice, TLR4, TLR2/-6, and TLR7 have immune-stimulating properties, while TLR3 activation occurs later and appears to downregulate immune responses; in humans, polymorphism studies have demonstrated an important role for TLR4-signaling; and activation of TLR-signaling leads to antiviral cytokine production, such as TNF-a and IFNs. Viral factors may block these pathways, thereby contributing to immune evasion and RSV survival. A better understanding of the complex interplay between TLRs and severe RSV infections might lead to efficient prophylactic and therapeutic treatments, as well as the development of adequate vaccines combined with TLR adjuvants.

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Source
http://dx.doi.org/10.1615/critrevimmunol.v29.i6.40DOI Listing

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