Brain-Thymus connections in Chagas Disease.


Journal

Neuroimmunomodulation
ISSN: 1423-0216
Titre abrégé: Neuroimmunomodulation
Pays: Switzerland
ID NLM: 9422763

Informations de publication

Date de publication:
25 Mar 2024
Historique:
received: 20 09 2023
accepted: 01 03 2024
medline: 26 3 2024
pubmed: 26 3 2024
entrez: 25 3 2024
Statut: aheadofprint

Résumé

The brain and the immune systems represent the two primary adaptive systems within the body. Both are involved in a dynamic process of communication, vital for the preservation of mammalian homeostasis. This interplay involves two major pathways: the hypothalamic-pituitary-adrenal (HPA) axis and the sympathetic nervous system (SNS). The establishment of infection can affect immunoneuroendocrine interactions, with functional consequences for immune organs, particularly the thymus. Interestingly, the physiology of this primary organ is not only under the control of the central nervous system (CNS), but also exhibits autocrine/paracrine regulatory circuitries mediated by hormones and neuropeptides that can be altered in situations of infectious stress or chronic inflammation. In particular, Chagas disease, caused by the protozoan parasite Trypanosoma cruzi, impacts upon immunoneuroendocrine circuits disrupting thymus physiology. Here, we discuss the most relevant findings reported in relation to brain-thymic connections during T. cruzi infection, as well as their possible implications for the immunopathology of human Chagas disease. During Trypanosoma cruzi infection, the CNS influences thymus physiology through an intricate network involving hormones, neuropeptides, and pro-inflammatory cytokines. Despite some uncertainties in the mechanisms and the fact that the link between these abnormalities and CCC is still unknown, it is evident that the precise control exerted by the brain over the thymus is markedly disrupted throughout the course of Trypanosoma cruzi infection.

Sections du résumé

BACKGROUND BACKGROUND
The brain and the immune systems represent the two primary adaptive systems within the body. Both are involved in a dynamic process of communication, vital for the preservation of mammalian homeostasis. This interplay involves two major pathways: the hypothalamic-pituitary-adrenal (HPA) axis and the sympathetic nervous system (SNS).
SUMMARY CONCLUSIONS
The establishment of infection can affect immunoneuroendocrine interactions, with functional consequences for immune organs, particularly the thymus. Interestingly, the physiology of this primary organ is not only under the control of the central nervous system (CNS), but also exhibits autocrine/paracrine regulatory circuitries mediated by hormones and neuropeptides that can be altered in situations of infectious stress or chronic inflammation. In particular, Chagas disease, caused by the protozoan parasite Trypanosoma cruzi, impacts upon immunoneuroendocrine circuits disrupting thymus physiology. Here, we discuss the most relevant findings reported in relation to brain-thymic connections during T. cruzi infection, as well as their possible implications for the immunopathology of human Chagas disease.
KEY MESSAGES CONCLUSIONS
During Trypanosoma cruzi infection, the CNS influences thymus physiology through an intricate network involving hormones, neuropeptides, and pro-inflammatory cytokines. Despite some uncertainties in the mechanisms and the fact that the link between these abnormalities and CCC is still unknown, it is evident that the precise control exerted by the brain over the thymus is markedly disrupted throughout the course of Trypanosoma cruzi infection.

Identifiants

pubmed: 38527434
pii: 000538220
doi: 10.1159/000538220
doi:

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Informations de copyright

The Author(s). Published by S. Karger AG, Basel.

Auteurs

Classifications MeSH