Artículo
Integrative analysis of systemic lupus erythematosus biomarkers: Role of fecal hsa-mir-223–3p and gut microbiota in transkingdom dynamics
Quesada, Sofía
; Rosso, Ayelen Daiana
; Mascardi, María Florencia
; Soler Rivero, Valeria; Aguilera, Pablo Nicolas
; Mascuka, Sebastian Nicolas; Boiro, Andrea Laura; Arenielo, Evangelina; Vijoditz, Gustavo; Ferreyra Mufarregue, Leila Romina; Caputo, Marina Flavia; Cimolai, María Cecilia
; Coluccio Leskow, Federico
; Penas Steinhardt, Alberto
; Belforte, Fiorella Sabrina
Fecha de publicación:
07/2024
Editorial:
Pergamon-Elsevier Science Ltd
Revista:
Molecular Immunology
ISSN:
0161-5890
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Systemic lupus erythematosus (SLE) involves a florid set of clinical manifestations whose autoreactive origin is characterized by an overactivation of the immune system and the production of a large number of autoantibodies. Because it is a complex pathology with an inflammatory component, its pathogenesis is not yet fully understood, assuming both genetic and environmental predisposing factors. Currently, it is known that the role of the human microbiome is crucial in maintaining the transkingdom balance between commensal microorganisms and the immune system. In the present work we study the intestinal microbiota of Argentine patients with different stages of SLE receiving or not different treatments. Microbiota composition and fecal miRNAs were assessed by 16 S sequencing and qPCR. hsa-miR-223–3p, a miRNA involved in several inflammation regulation pathways, was found underexpressed in SLE patients without immunosuppressive treatment. In terms of microbiota there were clear differences in population structure (Weighted and Unweighted Unifrac distances, p-value <0.05) and core microbiome between cases and controls. In addition, Collinsella, Bifidobacterium, Streptococcus genera and aromatics degradation metabolisms were overrepresented in the SLE group. Medical treatment was also determinant as several microbial metabolic pathways were influenced by immunosuppressive therapy. Particularly, allantoin degradation metabolism was differentially expressed in the group of patients receiving immunosuppressants. Finally, we performed a logistic regression model (LASSO: least absolute shrinkage and selection operator) considering the expression levels of the fecal hsa-miR223–3p; the core microbiota; the differentially abundant bacterial taxa and the differentially abundant metabolic pathways (p<0.05). The model predicted that SLE patients could be associated with greater relative abundance of the formaldehyde oxidation pathway (RUMP_PWY). On the contrary, the preponderance of the ketodeoxyoctonate (Kdo) biosynthesis and activation route (PWY_1269) and the genera Lachnospiraceae_UCG_004, Lachnospira, Victivallis and UCG_003 (genus belonging to the family Oscillospiraceae of the class Clostridia) were associated with a control phenotype. Overall, the present work could contribute to the development of integral diagnostic tools for the comprehensive phenotyping of patients with SLE. In this sense, studying the commensal microbial profile and possible pathobionts associated with SLE in our population proposes more effective and precise strategies to explore possible treatments based on the microbiota of SLE patients.
Palabras clave:
lupus
,
microbiota
,
inflamation
,
methabolism
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Articulos(INEDES)
Articulos de INSTITUTO DE ECOLOGIA Y DESARROLLO SUSTENTABLE
Articulos de INSTITUTO DE ECOLOGIA Y DESARROLLO SUSTENTABLE
Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Articulos de SEDE CENTRAL
Citación
Quesada, Sofía; Rosso, Ayelen Daiana; Mascardi, María Florencia; Soler Rivero, Valeria; Aguilera, Pablo Nicolas; et al.; Integrative analysis of systemic lupus erythematosus biomarkers: Role of fecal hsa-mir-223–3p and gut microbiota in transkingdom dynamics; Pergamon-Elsevier Science Ltd; Molecular Immunology; 171; 7-2024; 77-92
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