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Altered Cellular Pathways in the Blood of Patients With Guillain‐Barre Syndrome

免疫学 格林-巴利综合征 发病机制 炎症体 医学 生物 目标2 血清学 病毒学 抗体 炎症
作者
Marília Fabiana de Oliveira Lima,Viviane Brito Nogueira,Wendy Maury,Mary E. Wilson,Mário Emílio Teixeira Dourado Júnior,Diego Gomes Teixeira,Selma M. B. Jerônimo
出处
期刊:Journal of The Peripheral Nervous System [Wiley]
卷期号:30 (1): e70012-e70012 被引量:1
标识
DOI:10.1111/jns.70012
摘要

ABSTRACT Background and Aims Guillain‐Barré syndrome (GBS) is a rare disorder, with a global incidence ranging from 1 to 2 individuals per 100,000 people/year. Infections and vaccines have been implicated as causes triggering GBS. The aim of the study was to identify host genes involved in the pathogenesis of GBS when Zika (ZIKV) and Chikungunya viruses (CHIKV) were introduced in Brazil. Methods A case–control study of GBS was performed when ZIKV and CHIKV were introduced into a naïve population. GBS was studied during both acute and postacute phases. RNA sequencing was conducted using whole blood. Results GBS typically manifested a week after rash and fever; acute inflammatory demyelinating polyradiculoneuropathy was more frequent. None of the GBS cases had a poor outcome. Serological assays for ZIKV and CHIKV revealed high titers of immunoglobulin G for both viruses in 9 out of 11 subjects. Metatranscriptomic analyses unveiled an increased abundance of reads attributed to Pseudomonas tolaasii and Toxoplasma gondii in the acute phase. Analysis of differentially expressed host genes during the acute phase revealed altered expression of genes associated with axogenesis, synapse assembly, and presynapse organization. Moreover, genes upregulated during acute GBS were primarily related to inflammation and the inflammasome pathways, including AIM2, NLR family genes and LRR‐protein genes, and IL‐10. Interpretation These findings suggest that inflammasome activation via AIM2 could play a role in tissue damage during GBS. Further investigation into the general activation of innate inflammatory responses is warranted to elucidate their potential contribution to the pathology of GBS.
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