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February 28, 2026SHILAP Revista de lepidopterología4 citationsOpen Access

Single-cell analysis reveals immune remodeling of monocytes, NK cells, T cell exhaustion, and Galectin-9–associated depletion of gamma delta and mucosal-associated invariant T cells in Long COVID with ME/CFS

SSShima ShahbazNBNajmeh BozorgmehrARAmirhossein Rahmati

Key Points

  • This research aims to identify cellular immune mechanisms in Long COVID associated with ME/CFS.
  • Conducted single-cell RNA sequencing on peripheral blood mononuclear cells.
  • Analyzed samples collected one year post-COVID-19 infection from women with LC-ME/CFS.
  • Compared findings with publicly available datasets from idiopathic ME/CFS patients.
  • LC-ME/CFS patients showed reduced naïve CD4+ and CD8+ T cells and expanded effector T cells.
  • NK cells had altered activation and reduced cytotoxic potential.
  • Elevated B cell activation and distinct transcriptional profiles in plasma cells were noted.
  • Galectin-9–TIM-3 interaction was identified as a mechanism for cell depletion.

Abstract

Introduction The cellular mechanisms underlying Long COVID (LC) associated with myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) remain poorly understood. Methods We performed single-cell RNA sequencing (scRNA-seq) on peripheral blood mononuclear cells collected 12 months after acute COVID-19 infection from female individuals with LC-ME/CFS and recovered (R) individuals. Comparative analysis was also performed using publicly available scRNA-seq datasets from idiopathic ME/CFS patients. Results Based on transcriptional signatures, LC-ME/CFS patients exhibited a marked reduction in naïve CD4 + and CD8 + T cells, regulatory T cells, MAIT cells, and γδ T cells, accompanied by an expansion of effector T cells. NK cells displayed reduced frequency and altered activation-associated transcriptional factors, consistent with impaired cytotoxic potentials. B cells in LC patients exhibited gene expression profiles indicative of heightened activation, while plasma cells revealed a distinct transcriptional subset expressing NK-associated genes. Platelets and low-density neutrophils were expanded and exhibited enrichment of activated-related transcripts. Monocyte subsets demonstrated transcriptional skewing characterized by reduced expression of phagocytosis-associated genes and increased expression of pro-inflammatory cytokine-related genes/pathways. In contrast, idiopathic ME/CFS patients exhibited less pronounced immune alterations at the transcriptional level: while T cell activation was evident, there was no reduction in MAIT or NK cells, nor signs of T cell exhaustion. Notably, FOXP3 expression was upregulated, and B cells and platelets demonstrated dysregulated signatures in idiopathic ME/CFS. Mechanistically, we identify Galectin-9–TIM-3 interaction as a potential pathway driving γδ and MAIT cell depletion in LC. Conclusion Our results reveal extensive peripheral immune remodeling in LC-ME/CFS, distinct from idiopathic ME/CFS, and support a model of chronic immune activation and dysregulation. Our findings offer a cellular framework for understanding LC pathogenesis and point to potential biomarkers and therapeutic targets for intervention.

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Cite This Study

Shahbaz et al. (2026) studied this question.

synapsesocial.com/papers/69a285aa0a974eb0d3c00b0chttps://doi.org/10.3389/fimmu.2026.1745933
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