Metabolic profiling of a chronic kidney disease cohort reveals metabolic phenotype more likely to benefit from a probiotic
S. Saggi, Kelly A Mercier, J. Gooding, E. Friedman, U. Vyas, N. Ranganathan, P. Ranganathan, S. McRitchie, S. Sumner
tlooto Summary
Metabolomics revealed metabolites at baseline that may predict individuals with CKD that would most benefit from a probiotic and possible mechanisms that provide a mechanistic link between probiotic and outcomes.
Abstract
Scope Persistent reduction in Glomerular Filtration Rate (GFR) is a hallmark of Chronic Kidney Disease (CKD) and is associated with an elevation of Blood Urea Nitrogen (BUN). This metabolomics pilot study sought to identify metabolites that differentiated patients with CKD whose BUN decreased on a probiotic and possible mechanisms.
Methods and Results Metabolomics was used to analyze baseline plasma samples previously diagnosed with CKD Stage III-IV. Patients had participated in a dose escalation study of the probiotic Renadyl™. A total of 24 samples were categorized depending on whether BUN increased or decreased from baseline after 4 months of probiotic use. Multivariate analysis was used to analyze the data and determine the metabolites that best differentiated the phenotypic groups. The sixteen patients who had a decrease in BUN were not significantly different based on demographic and clinical measures from those whose BUN increased or did not change with the exception of age. Eleven of the fourteen metabolites that differentiated the groups were known to be modulated by gut microflora, which may eventually provide a mechanistic link between probiotic and outcomes.
Conclusions Metabolomics revealed metabolites at baseline that may predict individuals with CKD that would most benefit from a probiotics.
Citation format
SAGGI, S., et al. Metabolic profiling of a chronic kidney disease cohort reveals metabolic phenotype more likely to benefit from a probiotic. International Journal of Probiotics and Prebiotics, 2017, 12: 43–54.