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April 15, 2026Journal of Clinical Medicine2 citationsOpen Access

Infection-Triggered Immune Dysregulation and Immunopathology in Lyme Disease: Mechanisms and Clinical Implications

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KPKlavio PineUniversity of OradeaVPVivian PineClinical Emergency Hospital BucharestNNNicoleta NegruţUniversity of Oradea

Key Points

  • This review aims to explore how Lyme disease leads to immune dysregulation and its implications for patients.
  • Integration of experimental, translational, and clinical data
  • Review of immune-mediated processes related to Lyme disease
  • Analysis of key immunopathogenic mechanisms
  • Discussion of clinical manifestations and therapeutic strategies
  • Identified sustained immune dysregulation linked to Bbsl infection
  • Highlighted polarization of T helper cells and insufficiency of regulatory T-cells
  • Described mechanisms like molecular mimicry that may lead to autoimmunity
  • Discussed implications for diagnosis and emerging therapeutic strategies beyond antibiotics

Abstract

Lyme disease (LD) is classically defined as a tick-borne infection caused by Borrelia burgdorferi sensu lato (Bbsl). However, accumulating evidence indicates that, beyond microbial persistence, Bbsl infection can initiate sustained immune dysregulation and post-infectious inflammatory phenotypes in a subset of patients. This narrative review integrates open-access experimental, translational, and clinical data and discusses LD within the spectrum of infection-triggered, immune-mediated processes. We review key immunopathogenic mechanisms, including dysregulated innate immune activation, type I interferon (IFN-I) signaling, T helper 1 and T helper 17 (Th1/Th17) polarization with regulatory T-cell (Treg) insufficiency, antigen persistence (notably borrelial peptidoglycan), and pathways linking infection to autoimmunity such as molecular mimicry, epitope spreading, and human leukocyte antigen (HLA)-restricted susceptibility. These mechanisms are integrated with immune-mediated clinical manifestations affecting the central nervous system (CNS), peripheral nervous system (PNS), musculoskeletal system, heart, skin, and hematologic compartment. Finally, we discuss translational implications for diagnosis, biomarker-guided stratification, and emerging therapeutic strategies that extend beyond antimicrobial therapy, while addressing current controversies and limitations. This framework supports a mechanistic model in which Lyme disease-associated morbidity in selected patients reflects persistent immune activation and dysregulated host responses triggered by infection.

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Cite This Study

Pine et al. (2026) studied this question.

synapsesocial.com/papers/69df2b49e4eeef8a2a6b043chttps://doi.org/10.3390/jcm15082922
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