4.6 Article

The Landscape of Microbial Composition and Associated Factors in Pancreatic Ductal Adenocarcinoma Using RNA-Seq Data

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FRONTIERS IN ONCOLOGY
卷 11, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fonc.2021.651350

关键词

PDAC (pancreatic ductal adenocarcinoma); tumor tissue; microbial composition; biological factors; PERMANOVA (permutational multivariate analysis of variance) test; Wilcox test

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资金

  1. Shanghai Science and Technology Commission Sailing Program [20YF1458100]
  2. School-level Project in the Second Military Medical University [2018QN02]
  3. Shanghai Key Laboratory of Cell Engineering Program [14DZ2272300]

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Recent research on the interrogation of the tumor microbiome in PDAC has provided important insights into the role of microbes in carcinogenesis, therapeutic responses, and resistance. By analyzing over 580 PDAC tissue samples across four datasets, this study identified dozens of core microbiota and potentially over 2,500 genera present in PDAC tissue. Sampling sites and tissue sources were found to significantly impact the microbial composition, while traditional risk factors did not show an effect. The specific taxa identified in this study may serve as potential biomarkers for future research.
Recent research studies on interrogation of the tumor microbiome (including bacteria, viruses, and fungi) have yielded important insights into the role of microbes in carcinogenesis, therapeutic responses, and resistance. Once thought to be a sterile organ, a number of studies have showed the presence of microbes within this organ in PDAC status. A microbiome-pancreas axis for PDAC (pancreatic ductal adenocarcinoma) carcinogenesis is proposed. However, the microbial composition of localized PDAC tissue is still unclear. The associations between microbiome and PDAC reported in previous studies were detected in an indirect way, which mostly used samples from stool, oral saliva, and intestinal samples. This study integrated 582 samples derived from PDAC tissues across four datasets and presented a landscape of tumor microbiome at the genus level in PDAC based on remining of RNA-Seq data. On average, there are hundreds of genera distributed in the PDAC tissue, and dozens of core microbiota were identified by PDAC tissue. The pan-microbiome of PDAC tissue was also estimated, which might surpass 2,500 genera. In addition, sampling sites (stroma vs. epithelium) and tissue source (human tissue vs. PDX) were found to have great effects on the microbial composition of PDAC tissue, but not the traditional risk factors (sex and age). It is the first study to systematically focus on exploring the microbial composition of PDAC tissue and is helpful to have a deep understanding of tumor microbiome. The identified specific taxa might be potential biomarkers for follow-up research studies.

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