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May 29, 2026International Journal of Molecular Sciences0 citationsOpen Access

The Gut Microbiome in HIV Pathogenesis: Interconnections Between Dysbiosis, Immune Dysfunction, and Viral Persistence

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HMHossein MardnaybinMDMehmet DemırciHUHayriye Kırkoyun Uysal

Key Points

  • This review aims to summarize interactions between gut microbiome dysbiosis and HIV pathogenesis, focusing on immune dysfunction and viral persistence.
  • Discussed microbiome-HIV interactions utilizing multi-omics technologies and experimental systems including gnotobiotic models and humanized mice.
  • Evaluated emerging microbiome-targeted interventions such as probiotics and fecal microbiota transplantation.
  • Summarized evidence linking gut microbial alterations to systemic inflammation and immune reconstitution in HIV.
  • HIV infection leads to gut dysbiosis characterized by reduced beneficial bacteria and increased pro-inflammatory taxa.
  • Alterations in key microbial metabolites like SCFAs and tryptophan catabolites are associated with persistent inflammation under ART.
  • Microbiome-targeted therapies could serve as adjunctive strategies in HIV treatment, potentially aiding in immune reconstitution.

Abstract

The human gut microbiome is essential for immune regulation and mucosal homeostasis, functions that are profoundly disrupted during HIV infection. Early viral replication in the gut-associated lymphoid tissue (GALT) triggers a self-reinforcing cycle of CD4+ T-cell depletion, epithelial barrier breakdown, and increased microbial translocation. This persistent immune activation continues even under effective antiretroviral therapy (ART). A growing body of evidence indicates that HIV infection is consistently associated with alterations in gut microbial communities. This dysbiosis is typically characterized by fewer beneficial butyrate-producing commensal bacteria and an enrichment of pro-inflammatory microbial taxa. It also involves disturbances in key microbial metabolites, including short-chain fatty acids (SCFAs) and tryptophan catabolites. Such changes not only exacerbate systemic inflammation but may also contribute to incomplete immune reconstitution and the persistence of latent viral reservoirs despite long-term ART. In this review, we summarize current knowledge of microbiome–HIV interactions, with particular emphasis on the mechanisms through which gut dysbiosis contributes to immune dysfunction and viral persistence. We discuss recent advances in multi-omics technologies, as well as experimental systems such as gnotobiotic and humanized mouse models and intestinal organoid platforms that are helping to elucidate these complex interactions. Furthermore, we evaluate emerging microbiome-targeted interventions—including probiotics, prebiotics, fecal microbiota transplantation, and engineered bacterial therapeutics—and consider their potential role as adjunctive strategies in HIV treatment and cure research. By integrating microbiological, immunological, and clinical perspectives, this review highlights key knowledge gaps and outlines future research directions aimed at harnessing the gut microbiome as a novel therapeutic avenue in HIV management and eradication.

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Cite This Study

Mardnaybin et al. (2026) studied this question.

synapsesocial.com/papers/6a192f07fab5b468c441860fhttps://doi.org/10.3390/ijms27114830
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