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Updated: Jan 10, 2026

Isolation of Proximal Fluids to Investigate the Tumor Microenvironment of Pancreatic Adenocarcinoma
Published on: November 5, 2020
Microbiota and Pancreatic Cancer: New Therapeutic Frontiers Between Engineered Microbes, Metabolites and
Sara Sofia De Lucia1, Enrico Celestino Nista1,2, Marcello Candelli1,2
1Department of Medical and Surgery Sciences, Università Cattolica del Sacro Cuore di Roma, 00168 Roma, Italy.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) remains one of the most aggressive and lethal human malignancies, with five-year survival rates showing only marginal improvement despite decades of intensive research. Its dismal prognosis reflects a combination of intrinsic biological aggressiveness, late clinical presentation, and marked resistance to standard therapies, underscoring the urgent need for innovative diagnostic and therapeutic approaches. Growing evidence indicates that the microbiome is a modifiable factor influencing the onset, progression, and treatment response of PDAC. Microbial communities originating from the gut, oral cavity, and even the tumor microenvironment can shape carcinogenic pathways, modulate immune activity, and alter the efficacy of chemotherapy and immunotherapy. In addition to bacteria, fungal and viral populations are emerging as relevant contributors within this complex ecosystem. This review provides a comprehensive overview of the current mechanistic and translational evidence linking the microbiome to PDAC biology and therapy. It further explores microbiota-targeted interventions-such as probiotics, postbiotics, engineered bacterial strains, bacteriophages, oncolytic viruses, and fecal microbiota transplantation-as promising adjuncts to conventional treatments. A deeper understanding of host-microbiome interactions could yield novel biomarkers and open innovative avenues for precision medicine in PDAC, ultimately improving patient outcomes and reshaping therapeutic paradigms. Integrating microbiome-based strategies into PDAC management may thus represent a crucial step toward more effective and personalized oncologic care.
Insights
The human microbiome influences pancreatic cancer (PDAC) development and treatment. Targeting these microbes offers new strategies to improve PDAC patient outcomes and personalized care.
Area of Science:
- Oncology
- Microbiology
- Immunology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is a highly lethal cancer with poor survival rates.
- Current treatments have limited efficacy due to tumor aggressiveness, late detection, and therapy resistance.
- The microbiome is increasingly recognized as a key factor in PDAC initiation, progression, and treatment response.
Purpose of the Study:
- To review the mechanistic and translational evidence linking the microbiome to PDAC.
- To explore microbiota-targeted interventions as potential adjuncts to conventional PDAC therapies.
- To highlight the potential of host-microbiome interactions for novel biomarkers and precision medicine in PDAC.
Main Methods:
- Comprehensive literature review of mechanistic and translational studies.
- Analysis of research on bacterial, fungal, and viral roles in PDAC.
- Evaluation of emerging microbiota-targeted therapies for PDAC.
Main Results:
- Microbial communities from various sites (gut, oral, tumor) impact PDAC through carcinogenic pathways, immune modulation, and therapy efficacy.
- Fungal and viral roles in PDAC are gaining recognition alongside bacterial contributions.
- Microbiota-targeted interventions show promise as complementary treatments for PDAC.
Conclusions:
- Understanding host-microbiome interactions is crucial for developing novel PDAC biomarkers and personalized treatment strategies.
- Microbiome-based interventions, including probiotics, bacteriophages, and FMT, represent promising avenues for improving PDAC management.
- Integrating microbiome insights into PDAC care could lead to more effective and tailored therapeutic approaches, ultimately enhancing patient outcomes.
Related Concept Videos
Microorganisms in Medicine and Therapeutics
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The Tumor Microenvironment

