Evaluation of the Suitability of Selecting a Faecal Microbiota Transplant: Bacterial Composition and Subsequent Long-Term Monitoring of the Viability of Its Frozen and Lyophilised Forms

Author:

Pacuta Ivan1,Gancarcikova Sona1ORCID,Lauko Stanislav1,Hajduckova Vanda1,Janicko Martin2ORCID,Demeckova Vlasta3ORCID,Rynikova Maria3,Adamkova Petra3,Mudronova Dagmar1ORCID,Ambro Lubos4ORCID,Fialkovicova Maria5,Nemetova Daniela1,Bertkova Izabela6

Affiliation:

1. Department of Microbiology and Immunology, University of Veterinary Medicine and Pharmacy in Kosice, 041 81 Kosice, Slovakia

2. 2nd Department of Internal Medicine, Faculty of Medicine, Pavol Jozef Safarik University and Louis Pasteur University Hospital in Kosice, 040 11 Kosice, Slovakia

3. Department of Animal Physiology, Institute of Biology and Ecology, Faculty of Science, Pavol Jozef Safarik University in Kosice, 040 01 Kosice, Slovakia

4. Center for Interdisciplinary Biosciences, Technology and Innovation Park, Pavol Jozef Safarik University in Kosice, 040 01 Kosice, Slovakia

5. Small Animal Clinic, University Veterinary Hospital, University of Veterinary Medicine and Pharmacy in Kosice, 041 81 Kosice, Slovakia

6. Center of Clinical and Preclinical Research—MEDIPARK, Faculty of Medicine, Pavol Jozef Safarik University in Kosice, 040 11 Kosice, Slovakia

Abstract

Objectives: The aim of this study was to confirm the effectiveness of FMT on the basis of optimum composition of the faecal microbiota of the donor for support therapy in patients with ulcerative colitis, and to observe the viability of the microbiota in frozen and lyophilised administration forms of FMT under various storage conditions. Methods: The bacterial microbiota composition of the FMT samples was assessed using amplicon sequencing via next-generation sequencing (NGS) technology, conducted on the Illumina MiSeq platform. The BD FACS Canto flow cytometer was used to analyse the metabolic activity of FMT samples. Results: FMT analysis confirmed the presence of key butyrate-producing organisms, specifically highlighting species such as Bifidobacterium adolescentis, Faecalibacterium prausnitzi, Coprococcus catus, Eubacterium rectale, alongside contributions from genera Roseburia and Blautia. These organisms play a crucial role in maintaining intestinal health in humans. The viable microorganism counts were significantly higher (p < 0.001) in the frozen form of FMT (−70 °C) in comparison to lyophilised forms (−70 °C, 4 °C and 20 °C) throughout the storage period. Conclusion: The conducted NGS analyses allowed us to confirm the suitability of our FMT donor as a potential candidate for the target group of patients diagnosed with ulcerative colitis. From the point of view of optimum utilisation of FMT at its highest metabolic activity for the purpose of transplantation, its storage for a maximum of 2 months under specified conditions was confirmed as the most suitable for the frozen and all lyophilised FMT forms.

Funder

Slovak Research and Development Agency

VEGA

Publisher

MDPI AG

Reference68 articles.

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3. Fecal microbiota transplantation in disease therapy;Antushevich;Clin. Chim. Acta,2020

4. Fecal microbiota transplantation in ulcerative colitis;Blanchaert;Acta Gastro-Enterol. Belg.,2019

5. Findings from a randomized controlled trial of fecal transplantation for patients with ulcerative colitis;Rossen;Gastroenterology,2015

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