Skip to content
Open access

Elevated ISG15 reinforces RIG-I/MDA5-linked macrophage-microglia crosstalk during blood-brain barrier disruption in neuromyelitis optica spectrum disorder.

Sep 2026 · International Immunopharmacology · pp. 117433 · 0 citations · 36 references
Medicine

Abstract

Background

Neuromyelitis optica spectrum disorder (NMOSD) is an AQP4-IgG-mediated astrocytopathy characterized by blood-brain barrier (BBB) injury and myeloid inflammation. We investigated whether interferon-stimulated gene 15 (ISG15) contributes to myeloid activation through RIG-I-like receptor (RLR) signaling.

Methods

Single-cell RNA sequencing of peripheral blood mononuclear cells (PBMCs) from patients with NMOSD was combined with validation in monocytes, serum, and cerebrospinal fluid. THP-1-derived macrophages and HMC3/BV2 microglia underwent LPS and/or IFN-β stimulation and ISG15 knockdown or overexpression. To assess macrophage-derived ISG15 effects on microglial polarization, ISG15-manipulated macrophages were non-contact cocultured with microglia in Transwell inserts, and microglial M1/M2 markers were measured. Western blotting quantified free and conjugated ISG15. ISG15-RIG-I association were examined by co-IP. An AQP4-IgG/human complement passive-transfer mouse model provided in vivo validation.

Results

NMOSD PBMCs showed monocyte expansion and an ISG15-high interferon/RLR signature, with increased ISG15 in CD14+ monocytes, serum, and cerebrospinal fluid. In macrophages, LPS plus IFN-β increased inflammatory cytokines, migration, and both free/conjugated ISG15. ISG15 overexpression or knockdown bidirectionally altered macrophage and microglial phenotypes; the Transwell coculture confirmed that macrophage ISG15 status directly modulated microglial M1/M2 polarization. ISG15 modulated RIG-I/MDA5/LGP2 expression, with RIG-I overexpression partially rescuing the RLR program after knockdown. Co-IP confirmed physical association between ISG15 and RIG-I. In vivo, BBB disruption coincided with ISG15-high infiltrating and resident myeloid cells and RLR upregulation.

Conclusion

Elevated ISG15 following BBB injury reinforces RIG-I/MDA5/LGP2 signaling and drives macrophage-microglia inflammatory crosstalk in NMOSD, establishing the ISG15-RLR axis as a key amplification pathway that bridges peripheral and central myeloid responses.

Read PDF

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.