Robert Kraaij
Assistant Professor
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About
Robert Kraaij is an Assistant Professor at Erasmus MC in the Netherlands. His research focuses on the relationships between the gut microbiome and metabolic health, inflammation, and neurological conditions. Recent studies include investigations into gut microbial profiles in various health contexts, such as their impact on midgut neuroendocrine tumors, pediatric multiple sclerosis, and the effects of early-life stress. Kraaij's work contributes significantly to understanding the complex interactions between gut health and systemic diseases.
Articles (10)
Unraveling interindividual variation of trimethylamine <i>N</i>‐oxide and its precursors at the population level
Trimethylamine N ‐oxide (TMAO) is a circulating microbiome‐derived metabolite implicated in the development of atherosclerosis and cardiovascular disease (CVD). We investigated whether plasma levels of TMAO, its precursors (betaine, carnitine, deoxycarnitine, choline), and TMAO‐to‐precursor ratios are associated with clinical outcomes, including CVD and mortality. This was followed by an in‐depth analysis of their genetic, gut microbial, and dietary determinants. The analyses were conducted in five Dutch prospective cohort studies including 7834 individuals. To further investigate association results, Mendelian Randomization (MR) was also explored. We found only plasma choline levels (hazard ratio [HR] 1.17, [95% CI 1.07; 1.28]) and not TMAO to be associated with CVD risk. Our association analyses uncovered 10 genome‐wide significant loci, including novel genomic regions for betaine (6p21.1, 6q25.3), choline (2q34, 5q31.1), and deoxycarnitine (10q21.2, 11p14.2) comprising several metabolic gene associations, for example, CPS1 or PEMT . Furthermore, our analyses uncovered 68 gut microbiota associations, mainly related to TMAO‐to‐precursors ratios and the Ruminococcaceae family, and 16 associations of food groups and metabolites including fish‐TMAO, meat‐carnitine, and plant‐based food‐betaine associations. No significant association was identified by the MR approach. Our analyses provide novel insights into the TMAO pathway, its determinants, and pathophysiological impact on the general population.
Year:
2024
Collaborators (12)
Wouter de Herder
Professor of Endocrine Oncology
Erasmus University Rotterdam
Jingyuan Fu
Full professor
University Medical Center Groningen
Mohsen Ghanbari
Associate Professor and Principal Investigator
Erasmus MC
Dina Vojinovic
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Kelsey R. van Straalen
Erasmus University Medical Center
Leo Hofland
Erasmus University Rotterdam
Najaf Amin
Associate Professor
University of Oxford
Shahzad Ahmad
University of Oxford
Rinze F Neuteboom
Erasmus University Medical Center
Arlette L. Bruijstens
Erasmus University Rotterdam
Marian Beekman
Assistant Professor
Leiden University Medical Center
Errol Prens
dermatologist / professor
Erasmus MC

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