What lies behind the causal impact of body mass index (BMI) level and change on human health? Added value from complementary study design and deep metabolomic phenotyping.
In plain English
AI plain-English summaryA person’s body mass index is a crude measure of body fat, but the biological chain of events that turns a high BMI into heart disease or diabetes remains largely unknown. This project aims to fill that gap. The researcher will measure hundreds of small molecules in the blood—metabolites—from people in clinical trials, meal tests, and gut microbiome studies. By comparing how BMI affects these metabolites across different study designs, the work will identify which molecules are most likely to be the causal links between obesity and disease. Current lists of BMI-driven metabolites are incomplete, and existing studies often fail to separate correlation from causation. If successful, the research will produce a shortlist of target metabolites. Drug developers could then focus on these molecules as potential intervention points. The work is fundamental science—it will not produce a treatment tomorrow—but it will provide the mechanistic map needed to design therapies that address the *why* of obesity-related disease, rather than just the *what*. Similar metabolite-mapping efforts have previously uncovered drug targets for conditions like type 2 diabetes and cardiovascular disease.
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