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Published on: October 11, 2022
Neuroinflammation associated with scrub typhus and spotted fever group rickettsioses
James Fisher1, Galen Card2, Lynn Soong1,2,3
1Department of Microbiology and Immunology, University of Texas Medical Branch, Galveston, Texas, United States of America.
Abstract:
Scrub typhus and spotted fever rickettsioses (SFR) are understudied, vector-borne diseases of global significance. Over 1 billion individuals are at risk for scrub typhus alone in an endemic region, spanning across eastern and southern Asia to Northern Australia. While highly treatable, diagnostic challenges make timely antibiotic intervention difficult for these diseases. Delayed therapy may lead to severe outcomes affecting multiple organs, including the central nervous system (CNS), where infection and associated neuroinflammation may be lethal or lead to lasting sequelae. Meningitis and encephalitis are prevalent in both scrub typhus and SFR. Additionally, case reports detailing focal neurological deficits have come to light, with attention to both acute and chronic sequelae of infection. Despite the increasing number of clinical reports outlining neurologic consequences of these diseases, relatively little research has examined underlying mechanisms of neuroinflammation. Animal models of scrub typhus have identified cerebral T-cell infiltration and vascular damage associated with endothelial infection and neuropathogenesis. Differential gene expression analysis of brain tissues during murine scrub typhus have revealed selective increases in CXCR3 ligands, proinflammatory and type-1 cytokines and chemokines, and cytotoxicity molecules, as well as alterations in the complement pathway. In SFR, microglial expansion and macrophage infiltration contribute to neurological disease progression. This narrative Review highlights clinical neurologic features of scrub typhus and SFR and evaluates our current understanding of basic research into neuroinflammation for both diseases in animal models. Further investigation into key mediators of neuropathogenesis may yield prognostic markers and treatment regimens for severe patients.
Insights
Scrub typhus and spotted fever rickettsioses (SFR) are significant vector-borne diseases. Research into their neuroinflammation mechanisms, using animal models, is crucial for developing better treatments and understanding long-term effects.
Area of Science:
- Infectious Diseases
- Neuroscience
- Immunology
Background:
- Scrub typhus and spotted fever rickettsioses (SFR) are globally significant, understudied vector-borne diseases.
- Over a billion people are at risk for scrub typhus, particularly in Asia and Australia.
- Diagnostic challenges hinder timely treatment, increasing the risk of severe outcomes, including central nervous system (CNS) involvement.
Purpose of the Study:
- To review the clinical neurological features of scrub typhus and SFR.
- To evaluate current basic research on the mechanisms of neuroinflammation in animal models for both diseases.
- To identify potential therapeutic targets and prognostic markers for severe neurological complications.
Main Methods:
- Literature review of clinical reports on neurological manifestations.
- Analysis of findings from animal models of scrub typhus and SFR, focusing on neuropathogenesis.
- Examination of molecular and cellular changes in brain tissues during infection.
Main Results:
- Meningitis and encephalitis are common neurological complications in both scrub typhus and SFR.
- Animal models show T-cell infiltration, vascular damage, and endothelial infection in scrub typhus.
- Gene expression studies reveal increased inflammatory mediators and complement pathway alterations in murine scrub typhus; microglial and macrophage activity is noted in SFR.
Conclusions:
- Understanding the mechanisms of neuroinflammation is critical for managing severe cases of scrub typhus and SFR.
- Further research into neuropathogenesis mediators may lead to improved diagnostics and treatments.
- Targeting key inflammatory pathways and cellular responses could mitigate severe neurological sequelae.
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