AI Article Synopsis

  • Fecal microbiota transplantation (FMT) is a safe and effective treatment for recurrent infections, with frozen stool samples simplifying the process for multiple recipients.
  • The study focused on the impact of long-term frozen storage at -80°C on the bacterial profiles of stool suspensions prepared for FMT, utilizing two different DNA extraction protocols.
  • Results showed that while overall microbiota profiles remained stable during freezing, specific pre-treatments led to a decrease in similarity between fresh and frozen samples over time, particularly reducing Bacteroidetes levels, while Firmicutes levels remained stable for up to a year.

Article Abstract

Fecal microbiota transplantation (FMT) is recommended as safe and effective treatment for recurrent infections. Freezing the FMT preparation simplifies the process, allowing a single stool sample to be used for multiple receivers and over an extended period of time. We aimed to assess the effect of long-term frozen storage on bacterial taxonomic profiles of a stool suspension prepared for FMT. DNA was extracted from a stool suspension before freezing and sequentially during the 18-month storage period at -80°C. Two different protocols were used for DNA extraction. The first relied on a classical mechanical and chemical cell disruption to extract both intra- and extracellular DNA; the second included specific pre-treatments aimed at removing free DNA and DNA from human and damaged bacterial cells. Taxonomic profiling of bacterial communities was performed by sequencing of V3-V4 16S rRNA gene amplicons. Microbiota profiles obtained by whole DNA extraction procedure remained relatively stable during frozen storage. When DNA extraction procedure included specific pre-treatments, microbiota similarity between fresh and frozen samples progressively decreased with longer frozen storage times; notably, the abundance of Bacteroidetes decreased in a storage duration-dependent manner. The abundance of Firmicutes, the main butyrate producers in the colon, were not much affected by frozen storage for up to 1 year. Our data show that metataxonomic analysis of frozen stool suspensions subjected to specific pre-treatments prior to DNA extractions might provide an interesting indication of bacterial resistance to stress conditions and thus of chances of survival in FMT recipients.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058979PMC
http://dx.doi.org/10.3389/fcimb.2020.00077DOI Listing

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