Industry Research Areas

Nutrition's Effects on Health

See how metabolomics can enhance our understanding of the dynamic relationship between diet, metabolism, and health.

Nutrition and Health

Nutrition plays a crucial role in shaping our overall health and well-being, as the foods we consume provide the essential nutrients that fuel and repair our bodies. A balanced diet rich in vitamins, minerals, proteins, fats, and carbohydrates supports the proper functioning of organs, immune systems, and metabolic processes. Poor nutrition, on the other hand, can lead to various health issues, such as obesity, heart disease, diabetes, and weakened immunity. Additionally, the right nutrition can help prevent chronic illnesses, improve mental health, and promote longevity by reducing inflammation, improving cognitive function, and supporting energy levels.

person cooks vegetable meal at a stove
nutritionist works at a computer next to bowl of fruit

Reveal How Nutrients Impact Metabolism and Health with Metabolomics

Nutrimetabolomics is a growing field of research at the intersection of nutrition and metabolomics that focuses on the comprehensive analysis of small molecules in biological samples to understand how dietary components influence metabolism and health outcomes. By mapping the metabolic pathways affected by dietary intake, nutrimetabolomics can reveal and quantify the metabolic response of an individual to dietary interventions and gain insights into the underlying mechanisms of how nutrients affect health and disease.

Nutrimetabolomics holds promise for advancing our understanding of how diet impacts health at a molecular level, potentially revolutionizing our approaches to nutrition and wellness. Here, we showcase several examples of how metabolomics has helped advance our understanding of nutrition in human health and disease.

Case Studies

Predicting Long-Term Disease Risk

Fetal exposure to excess maternal glucose, amino acids, and lipids puts the offspring at an increased risk of metabolic diseases. Offspring of mothers who experience obesity and/or gestational diabetes mellitus (GDM) demonstrate sustained alterations in their metabolome, which tend to show variations between these two types of exposure.

To date, few studies have thoroughly examined these differences longitudinally. To address this gap in knowledge, Francis and colleagues analyzed the plasma metabolome at birth and at 6 years of age of offspring that experienced 1) maternal obesity, 2) gestational diabetes mellitus, or 3) both1. Linear mixed modeling and principal component analysis were used to identify metabolites associated with overnutrition and identify metabolic profile differences between groups. 52 metabolites were associated with fetal overnutrition, with sphingomyelin-mannose being more strongly associated with obesity compared to the other two groups.

Exposure to obesity + gestational diabetes was associated with higher skeletal muscle metabolism and CMPF, which has been linked to beta-cell dysfunction and subsequent diabetes. Overall, this hypothesis-generating study identified subtle differences in the metabolic footprint of offspring exposed to different types of overnutrition. This subtility suggests that obesity and gestational diabetes are not separate entities, but rather, different degrees of severity on a metabolic spectrum, which could be further investigated in future studies.

Applications

"Metabolomics can discover and link biomarkers of food intacke from both whole diets and individual foods, to health outcomes."

Reisdorph, N. A., Hendricks, A. E., Tang, M., Doenges, K. A., Reisdorph, R. M., Tooker, B. C., Quinn, K., Borengasser, S. J., Frank, D. N., Campbell, W. W., & Krebs, N. F. An insight into farm animal skeletal muscle metabolism based on a metabolomics approach Nutrimetabolomics reveals food-specific compounds in urine of adults consuming a DASH-style diet 2020. Scientific Reports, 10(1), 1-10.. https://doi.org/10.1038/s41598-020-57979-8

Scientist operates a mass spectrometer

Why Metabolon?

Once you see the full value of metabolomics, the only remaining question is: who does it best? While many laboratories have metabolite profiling or analytical chemistry capabilities, comprehensive metabolomics technologies are extremely rare.

Accurate, unbiased metabolite identification across the entire metabolome introduces signal-to-noise challenges that very few labs are equipped to handle. Also, translating massive quantities of data into actionable information is slow, if not impossible, for most because proper interpretation takes two things that are in short supply: experience and a comprehensive database.

Partner with Metabolon to access:

  • A library of 5,400+ known metabolites, 2,000 in human plasma, all referenced in the context of biochemical pathways. That’s 5x the metabolites of the closest competitor.
  • Unparalleled depth and breadth of experience analyzing and interpreting metabolomics data to find meaningful results
    • 10,000+ projects with hundreds of clients
    • 3,500+ publications covering 500 diseases, including numerous peer-reviewed journals such as Cell, Nature and Science
    • Nearly 40 PhDs in data science, molecular biology, and biochemistry

Using our robust platform and visualization tools, our experts are uniquely able to tell you more about your molecule and develop assay panels to help you zero in on the results you need.

Only Metabolon has all four core metabolomics capabilities:

Talk with an expert

For over 20 years Metabolon has been helping scientists use, understand, and integrate metabolomics into their studies to drive discovery and innovation. To see how Metabolon’s industry-leading metabolomics platform and software, and scientific experts can help you take advantage of metabolomics in your studies, speak with one of our experts here.

Contact Metabolon

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Morrisville, NC 27560

Mailing Address
P.O. Box 110407
Research Triangle Park, NC 27709

Phone
+1 (919) 572-1711

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+1 (919) 572-1721

International Headquarters
Metabolon GmbH
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85399 Hallbergmoos
Germany

References

1. Francis, E.C., et al., Metabolomic Profiles in Childhood and Adolescence Are Associated with Fetal Overnutrition. Metabolites, 2022. 12(3).

2. Guardado, M., et al., The Urinary Metabolomic Fingerprint in Extremely Preterm Infants on Total Parenteral Nutrition vs. Enteral Feeds. Metabolites, 2023. 13(9).

3. Brachem, C., Oluwagbemigun, K., Langenau, J., Weinhold, L., Alexy, U., Schmid, M., & Nöthlings, U. (2022). Exploring the Association between Habitual Food Intake and the Urine and Blood Metabolome in Adolescents and Young Adults: A Cohort Study. Molecular Nutrition & Food Research, 66(18), 2200023. https://doi.org/10.1002/mnfr.202200023

4. Dilmore, A.H., et al., Effects of a ketogenic and low-fat diet on the human metabolome, microbiome, and foodome in adults at risk for Alzheimer’s disease. Alzheimers Dement, 2023. 19(11): p. 4805-4816.