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Analysis of the gut microbiome in dogs and cats

Journal

VETERINARY CLINICAL PATHOLOGY
Volume 50, Issue -, Pages 6-17

Publisher

WILEY
DOI: 10.1111/vcp.13031

Keywords

cats; Clostridium hiranonis; dogs; Dysbiosis Index; fecal microbiota transplantation; metagenomics; microbiome

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The gut microbiome plays a crucial role in maintaining immune and metabolic functions, with impact on intestinal and overall organ health. Dysbiosis concept continues to evolve, with molecular tools becoming the standard for microbiome analysis, though challenges in standardization and result consistency persist. The Dysbiosis Index is a useful tool for assessing microbiome status in clinical patients.
The gut microbiome is an important immune and metabolic organ. Intestinal bacteria produce various metabolites that influence the health of the intestine and other organ systems, including kidney, brain, and heart. Changes in the microbiome in diseased states are termed dysbiosis. The concept of dysbiosis is constantly evolving and includes changes in microbiome diversity and/or structure and functional changes (eg, altered production of bacterial metabolites). Molecular tools are now the standard for microbiome analysis. Sequencing of microbial genes provides information about the bacteria present and their functional potential but lacks standardization and analytical validation of methods and consistency in the reporting of results. This makes it difficult to compare results across studies or for individual clinical patients. The Dysbiosis Index (DI) is a validated quantitative PCR assay for canine fecal samples that measures the abundance of seven important bacterial taxa and summarizes the results as one single number. Reference intervals are established for dogs, and the DI can be used to assess the microbiome in clinical patients over time and in response to therapy (eg, fecal microbiota transplantation). In situ hybridization or immunohistochemistry allows the identification of mucosa-adherent and intracellular bacteria in animals with intestinal disease, especially granulomatous colitis. Future directions include the measurement of bacterial metabolites in feces or serum as markers for the appropriate function of the microbiome. This article summarizes different approaches to the analysis of gut microbiota and how they might be applicable to research studies and clinical practice in dogs and cats.

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