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June 1, 2026Nature Communications0 citationsOpen Access

A dual-pronged host-directed therapeutic targeting cyclophilin A and pathogenic interferon response abrogates virus-triggered pregnancy pathologies

WYWenzhe YuHCHongmin CaoZDZhifang Deng

Key Points

  • The study aims to identify therapeutic targets to reduce Zika virus-induced pregnancy complications through the regulation of cyclophilin A and interferon response.
  • Investigated the role of cyclophilin A in Zika virus replication in human placental trophoblasts.
  • Used genetic ablation and pharmacological inhibition with ciclosporin A to evaluate effects on Zika virus transmission.
  • Analyzed the influence of ciclosporin A on interferon signaling pathways in trophoblasts.
  • Ciclopsorin A significantly restricted Zika virus transplacental transmission in trophoblasts.
  • Ciclopsorin A improved placental health by inhibiting the JAK1-STAT1/2 pathway associated with type I interferon signaling.
  • Pharmacological inhibition of cyclophilin A demonstrated protection against pregnancy-linked interferonopathies.

Abstract

Pathogenic viruses threaten fetal development by achieving vertical transmission and instigating placental immunopathology, while the pathobiological mechanisms and effective therapeutics remain critical gaps. Here, we reveal cyclophilin A (CypA) as a crucial host factor necessary for Zika virus (ZIKV) replication in human placental trophoblasts, acting independently of its canonical functions. ZIKV infection recruits CypA into the viral replication organelle and reconfigures its interactome, thereby subverting host RNA decay machinery and stress granule-mediated antiviral surveillance. Both genetic ablation of CypA and its pharmacological inhibition with clinically approved drug ciclosporin A (CsA) restrict ZIKV transplacental transmission and corresponding placental and fetal pathologies. Beyond its anti-ZIKV potency, CsA concurrently counteracts pathological type I interferon signaling by targeting the JAK1-STAT1/2 pathway, broadly ameliorating pregnancy-specific interferonopathies driven by viral infection or endogenous double-stranded RNA stress. Our findings elucidate CypA-governed ZIKV pathogenesis and license CsA as a promising dual-action therapeutic to counteract congenital viral infections. Vertical transmission of Zika virus (ZIKV) poses significant risks to fetal development. Here the authors show that cyclophilin A (CypA) is essential for ZIKV replication in placental cells, and demonstrate that ciclosporin A is protective by inhibiting CypA-driven ZIKV infection and the pathogenic interferon response in trophoblasts.

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Cite This Study

Yu et al. (2026) studied this question.

synapsesocial.com/papers/6a1d216202fbce913063774bhttps://doi.org/10.1038/s41467-026-73497-z
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