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Sci Rep . The role of intestinal microbiota in the humoral response to SARS-CoV-2 after mRNA-1273 vaccination

tetano

Editor, Senior Moderator
Sci Rep


. 2025 Jul 9;15(1):24731.
doi: 10.1038/s41598-025-11103-w. The role of intestinal microbiota in the humoral response to SARS-CoV-2 after mRNA-1273 vaccination

María Tarriño[SUP] 1 2 [/SUP], Juan Francisco Gutiérrez-Bautista[SUP] 3 4 5 [/SUP], María José Olivares Durán[SUP] 6 [/SUP], Abel Garcia-Diaz[SUP] 7 8 [/SUP], Antonio José Cabrera-Serrano[SUP] 7 8 [/SUP], Juan Sainz[SUP] 7 8 9 [/SUP], Fernando Cobo[SUP] 1 7 [/SUP], Teresa Rodriguez[SUP] 6 7 [/SUP], Juan Antonio Reguera[SUP] 1 [/SUP], Mónica Bernal[SUP] 6 7 [/SUP], Miguel Ángel López-Nevot[SUP] 6 10 7 [/SUP], Antonio Sampedro[SUP] 1 7 [/SUP]



Affiliations
Abstract

The gut microbiota plays a key role in shaping immune responses, including those induced by vaccination. Its impact on the humoral response to mRNA-based SARS-CoV-2 vaccines, however, remains underexplored. We analyzed gut microbiota composition and anti-Spike (S) IgG levels in 50 healthcare workers vaccinated with the mRNA-1273 SARS-CoV-2 vaccine. Participants were stratified into low, medium, and high responders based on IgG titers 30 days post-vaccination. Stool samples were collected at baseline, and 16 S rRNA sequencing was used to assess microbiota diversity and taxonomic profiles. Alpha diversity indices showed no significant differences across response groups. However, specific microbial signatures were associated with vaccine response. Higher relative abundance of Clostridia, Clostridiales, Ruminococcaceae, and Odoribacter splanchnicus correlated with stronger IgG responses. Functional microbiome analysis revealed enrichment of acetate-producing pathways in high responders (p = 0.012), suggesting a role for short-chain fatty acids in enhancing vaccine-induced immunity. Logistic regression and Random Forest models identified these taxa as predictors of strong antibody responses. The area under the ROC curve (AUC) for individual taxa ranged from 0.70 to 0.76, indicating moderate predictive performance. Conversely, taxa such as Hallella and Sutterella wadsworthensis were linked to lower responses. These findings support a modulatory role of the gut microbiota in mRNA vaccine immunogenicity and highlight microbial metabolic functions as potential targets to boost vaccine efficacy in personalized immunization strategies.

Keywords: 16S rRNA sequencing; Bacterial taxa and immunogenicity; Gut microbiota; MRNA-1273; Microbiome and immunity; SARS-CoV-2 vaccination.

 
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