Microbiome-Based Modeling of CAR-T Therapy Response in Lymphoma: Insights From Shotgun Metagenomics Sequencing

Rafael Hernani1, Eliseo Albert2, Carlos Hernani-Morales3,4

  • 1Haematology Department, Hospital Clínico Universitario, INCLIVA Research Institute, Valencia, Spain.

PubMed

Insights

The gut microbiome influences cancer immunotherapy outcomes. Specific gut bacteria like Alistipes senegalensis and Bifidobacterium longum correlate with reduced toxicity and improved survival in patients undergoing CAR-T cell therapy.

Area of Science:

  • Immunology
  • Microbiome research
  • Oncology

Background:

  • The gut microbiota plays a role in the immune system and cancer immunotherapy.
  • Clinical data on microbiome interventions in CAR-T therapy are limited.

Purpose of the Study:

  • To investigate the association between gut microbiota composition and clinical outcomes in patients receiving CAR-T therapy.
  • To identify specific microbial species predictive of treatment response and toxicity.

Main Methods:

  • Shotgun metagenomics sequencing (SMS) of fecal samples from 30 B-cell lymphoma patients before and after CAR-T therapy (axi-cel or 4-1BB product).
  • Development and evaluation of 25 microbiome-based machine-learning (ML) models for predicting treatment response.
  • Analysis of correlations between microbial species, toxicity, response, and survival.

Main Results:

  • No significant impact of prior antibiotic exposure or alpha diversity on outcomes.
  • Observed dysbiosis in patients compared to healthy controls, particularly with axi-cel treatment.
  • Alistipes senegalensis and Alistipes onderdonkii linked to reduced neurotoxicity and improved survival, respectively.
  • Bifidobacterium longum associated with decreased cytokine release syndrome; B. adolescentis, B. bifidum, B. breve linked to poorer survival.
  • ML models showed strong predictive power, identifying non-responders using a panel of six bacterial species.

Conclusions:

  • Gut microbiota composition is associated with clinical outcomes in CAR-T therapy.
  • Specific bacterial species can serve as biomarkers for predicting toxicity and survival.
  • Microbiome-based strategies hold promise for enhancing CAR-T therapy efficacy.

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