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Effect of in vitro cultivation on human gut microbiota composition using 16S rDNA amplicon sequencing and metabolomics approach.
Srednicka, Paulina; Roszko, Marek Lukasz; Popowski, Dominik; Kowalczyk, Monika; Wójcicki, Michal; Emanowicz, Paulina; Szczepanska, Magdalena; Kotyrba, Danuta; Juszczuk-Kubiak, Edyta.
Affiliation
  • Srednicka P; Laboratory of Biotechnology and Molecular Engineering, Department of Microbiology, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
  • Roszko ML; Department of Food Safety and Chemical Analysis, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland. marek.roszko@ibprs.pl.
  • Popowski D; Department of Food Safety and Chemical Analysis, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
  • Kowalczyk M; Microbiota Lab, Department of Pharmacognosy and Molecular Basis of Phytotherapy, Medical University of Warsaw, Banacha 1 Street, 02-097, Warsaw, Poland.
  • Wójcicki M; Laboratory of Biotechnology and Molecular Engineering, Department of Microbiology, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
  • Emanowicz P; Laboratory of Biotechnology and Molecular Engineering, Department of Microbiology, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
  • Szczepanska M; Laboratory of Biotechnology and Molecular Engineering, Department of Microbiology, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
  • Kotyrba D; Department of Food Safety and Chemical Analysis, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
  • Juszczuk-Kubiak E; Department of Research, Scientific Information and Marketing Coordination, Prof. Waclaw Dabrowski Institute of Agricultural and Food Biotechnology - State Research Institute, Rakowiecka 36 Street, 02-532, Warsaw, Poland.
Sci Rep ; 13(1): 3026, 2023 02 21.
Article in En | MEDLINE | ID: mdl-36810418
ABSTRACT
Gut microbiota (GM) plays many key functions and helps maintain the host's health. Consequently, the development of GM cultivation under in vitro stimulating physiological conditions has gained extreme interest in different fields. In this study, we evaluated the impact of four culture media Gut Microbiota Medium (GMM), Schaedler Broth (SM), Fermentation Medium (FM), and Carbohydrate Free Basal Medium (CFBM) on preserving the biodiversity and metabolic activity of human GM in batch in vitro cultures using PMA treatment coupled with 16S rDNA sequencing (PMA-seq) and LC-HR-MS/MS untargeted metabolomics supplemented with GC-MS SCFA profiling. Before the experiments, we determined the possibility of using the pooled faecal samples (MIX) from healthy donors (n = 15) as inoculum to reduce the number of variables and ensure the reproducibility of in vitro cultivation tests. Results showed the suitability of pooling faecal samples for in vitro cultivation study. Non-cultured MIX inoculum was characterized by higher α-diversity (Shannon effective count, and Effective microbial richness) compared to inocula from individual donors. After 24 h of cultivation, a significant effect of culture media composition on GM taxonomic and metabolomic profiles was observed. The SM and GMM had the highest α-diversity (Shannon effective count). The highest number of core ASVs (125) shared with non-cultured MIX inoculum and total SCFAs production was observed in the SM. These results might contribute to the development of standardized protocols for human GM in vitro cultivation by preventing methodological bias in the data.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Gastrointestinal Microbiome Type of study: Guideline Limits: Humans Language: En Journal: Sci Rep Year: 2023 Document type: Article Affiliation country: Polonia

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Gastrointestinal Microbiome Type of study: Guideline Limits: Humans Language: En Journal: Sci Rep Year: 2023 Document type: Article Affiliation country: Polonia
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