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Artificial Intelligence-Guided Personalized Gut Microbiome Modulation for Persistent Secondary Gastrointestinal
Radu Dumitru Dragomir1, Sorin Saftescu1, Daniela Lidia Sandu1
1Department of Oncology, Faculty of Medicine, "Victor Babes" University of Medicine and Pharmacy, Eftimie Murgu Square 2, 300041 Timisoara, Romania.
Abstract:
Background/Objectives: Persistent gastrointestinal (GI) symptoms following oncologic treatment represent a major unmet need in survivorship care, often managed symptomatically without addressing underlying biological mechanisms. This study aimed to evaluate the clinical efficacy and biological correlates of an artificial intelligence (AI)-guided, personalized microbiome modulation strategy in oncology patients with chronic secondary GI dysfunction. Methods: We conducted a prospective, single-arm, open-label validation study including 29 adult female oncology patients with persistent GI symptoms lasting ≥3 months. Participants underwent baseline multidimensional assessment integrating shotgun metagenomic sequencing, inflammatory and nutritional biomarkers, and clinical symptom profiling. An AI-guided platform generated individualized dietary, supplement, and lifestyle recommendations. Outcomes were assessed at baseline and after a 3-month intervention, focusing on intra-individual changes in stool frequency (primary endpoint), self-reported energy, microbiome composition, and metabolic biomarkers. Paired statistical analyses, correlation testing, and multivariable regression were performed. Results: After three months, stool frequency significantly decreased (4.69 ± 2.41 to 2.07 ± 1.19 episodes/day; p < 0.0001), accompanied by a marked increase in energy levels (4.00 ± 1.04 to 7.24 ± 1.12; p < 0.0001). Microbiome analysis revealed consistent enrichment of butyrate-producing and barrier-supportive taxa, including Faecalibacterium prausnitzii, Eubacterium rectale, Roseburia intestinalis, Akkermansia muciniphila, and Bifidobacterium longum. Butyrate-related biomarkers and vitamin-associated parameters (B-complex, vitamin D) showed significant improvement, while lactate levels normalized. Changes in Bifidobacterium longum were independently associated with stool frequency reduction (β = -0.783, p = 0.0082). Conclusions: AI-guided personalized microbiome modulation was associated with significant clinical improvement and biologically coherent microbial and metabolic shifts in oncology patients with persistent GI symptoms. These findings support a precision supportive-care approach targeting microbiome restoration, warranting further validation in randomized controlled trials.
Insights
Artificial intelligence (AI) personalized microbiome modulation significantly improved gastrointestinal (GI) symptoms and energy levels in oncology patients. This precision approach restored beneficial gut bacteria and normalized metabolic markers, offering a new supportive care strategy.
Area of Science:
- Oncology
- Microbiome Research
- Artificial Intelligence in Medicine
Background:
- Persistent gastrointestinal (GI) symptoms are a significant challenge in cancer survivorship care.
- Current management often focuses on symptom relief without addressing underlying biological mechanisms.
- There is a need for novel strategies to improve GI dysfunction post-oncologic treatment.
Purpose of the Study:
- To evaluate the clinical efficacy of an artificial intelligence (AI)-guided personalized microbiome modulation strategy.
- To identify biological correlates associated with microbiome modulation in oncology patients.
- To assess the impact on chronic secondary GI dysfunction in cancer survivors.
Main Methods:
- Prospective, single-arm, open-label study with 29 adult female oncology patients.
- Baseline assessment included shotgun metagenomic sequencing, biomarkers, and clinical symptom profiling.
- AI-generated personalized dietary, supplement, and lifestyle recommendations were provided for 3 months.
Main Results:
- Significant reduction in stool frequency (p < 0.0001) and marked increase in energy levels (p < 0.0001) after 3 months.
- Enrichment of beneficial gut bacteria (e.g., Faecalibacterium prausnitzii, Akkermansia muciniphila) and improved butyrate biomarkers.
- Normalization of lactate levels and significant improvements in vitamin-associated parameters (B-complex, vitamin D).
Conclusions:
- AI-guided personalized microbiome modulation demonstrated significant clinical improvements in oncology patients with persistent GI symptoms.
- Biologically coherent microbial and metabolic shifts support the efficacy of this precision supportive-care approach.
- Further validation through randomized controlled trials is warranted to confirm these findings.
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