4.5 Article

Four features of temporal patterns characterize similarity among individuals and molecules by glucose ingestion in humans

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NATURE PORTFOLIO
DOI: 10.1038/s41540-022-00213-0

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  1. Creation of Fundamental Technologies for Understanding and Control of Biosystem Dynamics (CREST) of the Japan Science and Technology Agency (JST) [JPMJCR12W3]
  2. Japan Society for the Promotion of Science (JSPS) KAKENHI [17H06299, 17H6300, 18H03979, JP19K22860]
  3. JSPS KAKENHI [JP18K16578, JP18H03125, JP16K12508, JP19K20382, JP16H06577, JP18KT0020, JP20H04102, JP20H04943, JP18H04804]
  4. CREST [JP20H04847, JPMJCR1912, JP21zf0127001, JP18gm0710003]
  5. Japan Agency for Medical Research and Development (AMED)
  6. Grants-in-Aid for Scientific Research [18H03979] Funding Source: KAKEN

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Oral glucose ingestion induces systemic changes in blood metabolites and hormones related to glucose, amino acids, and lipids. This study measured the temporal patterns of 83 metabolites and 7 hormones in response to glucose ingestion in 20 healthy human subjects. The findings highlight the differences between individuals and among molecules in the temporal patterns of blood molecules induced by oral glucose ingestion.
Oral glucose ingestion induces systemic changes of many blood metabolites related not only to glucose, but also other metabolites such as amino acids and lipids through many blood hormones. However, the detailed temporal changes in the concentrations of comprehensive metabolites and hormones over a long time by oral glucose ingestion are uncharacterized. We measured 83 metabolites and 7 hormones in 20 healthy human subjects in response to glucose ingestion. We characterized temporal patterns of blood molecules by four features: (i) the decomposability into amplitude and rate components, (ii) the similarity of temporal patterns among individuals, (iii) the relation of molecules over time among individuals, and (iv) the similarity of temporal patterns among molecules. Glucose and glucose metabolism-related hormones indicated a rapid increase, and citrulline and lipids, which indicated a rapid decrease, returned to fasting levels faster than amino acids. Compared to glucose metabolism-related molecules and lipids, amino acids showed similar temporal patterns among individuals. The four features of temporal patterns of blood molecules by oral glucose ingestion characterize the differences among individuals and among molecules.

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