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Updated: May 9, 2026

Culture and Imaging of Ex Vivo Organotypic Pseudomyxoma Peritonei Tumor Slices from Resected Human Tumor Specimens
Published on: December 9, 2022
A core microbiome associated with the peritoneal tumors of pseudomyxoma peritonei
Jeremy J Gilbreath1, Cristina Semino-Mora, Christopher J Friedline
1Department of Microbiology and Immunology, Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA.
Background:
Pseudomyxoma peritonei (PMP) is a malignancy characterized by dissemination of mucus-secreting cells throughout the peritoneum. This disease is associated with significant morbidity and mortality and despite effective treatment options for early-stage disease, patients with PMP often relapse. Thus, there is a need for additional treatment options to reduce relapse rate and increase long-term survival. A previous study identified the presence of both typed and non-culturable bacteria associated with PMP tissue and determined that increased bacterial density was associated with more severe disease. These findings highlighted the possible role for bacteria in PMP disease.
Methods:
To more clearly define the bacterial communities associated with PMP disease, we employed a sequenced-based analysis to profile the bacterial populations found in PMP tumor and mucin tissue in 11 patients. Sequencing data were confirmed by in situ hybridization at multiple taxonomic depths and by culturing. A pilot clinical study was initiated to determine whether the addition of antibiotic therapy affected PMP patient outcome.
Main Results:
We determined that the types of bacteria present are highly conserved in all PMP patients; the dominant phyla are the Proteobacteria, Actinobacteria, Firmicutes and Bacteroidetes. A core set of taxon-specific sequences were found in all 11 patients; many of these sequences were classified into taxonomic groups that also contain known human pathogens. In situ hybridization directly confirmed the presence of bacteria in PMP at multiple taxonomic depths and supported our sequence-based analysis. Furthermore, culturing of PMP tissue samples allowed us to isolate 11 different bacterial strains from eight independent patients, and in vitro analysis of subset of these isolates suggests that at least some of these strains may interact with the PMP-associated mucin MUC2. Finally, we provide evidence suggesting that targeting these bacteria with antibiotic treatment may increase the survival of PMP patients.
Conclusions:
Using 16S amplicon-based sequencing, direct in situ hybridization analysis and culturing methods, we have identified numerous bacterial taxa that are consistently present in all PMP patients tested. Combined with data from a pilot clinical study, these data support the hypothesis that adding antimicrobials to the standard PMP treatment could improve PMP patient survival.
Insights
Pseudomyxoma peritonei (PMP) is linked to specific bacteria. Targeting these bacteria with antibiotics may improve PMP patient survival and reduce disease recurrence.
Area of Science:
- Microbiology
- Oncology
- Gastroenterology
Background:
- Pseudomyxoma peritonei (PMP) is a rare malignancy with high recurrence rates.
- Previous studies suggest a link between bacterial presence and PMP severity.
- There is a need for novel therapeutic strategies to improve PMP patient outcomes.
Purpose of the Study:
- To characterize the bacterial communities associated with PMP.
- To investigate the potential role of bacteria in PMP pathogenesis.
- To evaluate the efficacy of antibiotic therapy in PMP patients.
Main Methods:
- 16S amplicon-based sequencing of PMP tumor and mucin tissue from 11 patients.
- In situ hybridization for bacterial confirmation.
- Bacterial culturing and in vitro analysis of isolates.
- Pilot clinical study on antibiotic therapy addition.
Main Results:
- A conserved set of bacterial taxa, including Proteobacteria, Actinobacteria, Firmicutes, and Bacteroidetes, were identified in all PMP patients.
- Sequences classified into known human pathogen groups were detected.
- Bacteria were confirmed in situ within PMP tissue.
- Eleven bacterial strains were isolated, with some showing interaction with MUC2 mucin.
- Antibiotic treatment showed potential to increase PMP patient survival.
Conclusions:
- Consistent bacterial presence across PMP patients suggests a role in disease.
- The findings support the hypothesis that antimicrobials could enhance standard PMP treatment.
- Targeting bacteria may improve PMP patient survival and reduce relapse rates.
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