Metabolomic phenotyping validates the infant rhesus monkey as a model of human infant metabolism

J Pediatr Gastroenterol Nutr. 2013 Apr;56(4):355-63. doi: 10.1097/MPG.0b013e31827e1f07.

Abstract

Objectives: Rhesus macaque monkeys are widely used as models for human physiology and behavior. They are particularly suited for studies on infant nutrition and metabolism; however, few studies have directly compared their metabolic or microbiological phenotypes. The aim of the present study was to compare the metabolomic profiles and microbiome of milk from human and rhesus mothers, and the metabolomic profiles of urine and serum from human and rhesus infants to establish the value of this model for human nutrition research.

Methods: Milk samples were collected from rhesus and human mothers at similar stages of lactation. Urine and serum samples were collected from breast-fed rhesus and human infants. H nuclear magnetic resonance spectra were acquired for all samples and metabolites were identified and quantified using targeted profiling techniques. The microbial community structure of milk was examined using 16S rRNA gene sequencing.

Results: An identical set of metabolites was identified in the urine and serum profiles from human and rhesus infants. In urine, 65% of the metabolites were present at similar concentrations, whereas ~40% were similar in serum. The gross composition of human and rhesus milk was comparable, including the overall microbial community at both the phylum and order level; however, some oligosaccharides found in human milk were not present in monkey milk.

Conclusions: Comparison of the milk microbiome and urine, serum, and milk metabolome of rhesus macaques and humans has revealed substantial similarities that provide unique biological information highlighting the significance of rhesus macaques as a model for infant nutrition and developmental research.

Publication types

  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.
  • Validation Study

MeSH terms

  • Animals
  • Blood / metabolism
  • Child Development*
  • Female
  • Gram-Negative Bacteria / classification
  • Gram-Negative Bacteria / growth & development
  • Gram-Negative Bacteria / isolation & purification
  • Gram-Positive Bacteria / classification
  • Gram-Positive Bacteria / growth & development
  • Gram-Positive Bacteria / isolation & purification
  • Humans
  • Infant
  • Infant Nutritional Physiological Phenomena*
  • Macaca mulatta / growth & development
  • Macaca mulatta / metabolism*
  • Macaca mulatta / microbiology
  • Male
  • Metabolomics / methods
  • Milk / metabolism
  • Milk / microbiology
  • Milk, Human / metabolism
  • Milk, Human / microbiology
  • Models, Animal*
  • Molecular Typing
  • Species Specificity
  • Urine / chemistry