Impact of Glucose Fluctuations on the Human Epicardial Adipocyte-Derived Paracrine Secretome.
Takano M., Kondo H., Harada T., Takahashi M., Ishii Y., Yamasaki H.
Prospective Study on Systemic / IV, published in Circ J (2026) — summary generated from the PubMed abstract.
Early human evidence such as case series or small samples is exploring possible benefits.
- Level A · Stronger Clinical Evidence
- Level B · Emerging clinical evidence with positive signals
- Level C · Early human research exploring benefits
- Level D · Scientific groundwork from lab and animal studies
- Emerging · Emerging topic under active research
This page is generated from the PubMed record. The Thai description is an automated summary of bibliographic fields and the abstract, not a full translation, and is not medical advice.
- Study type
- Prospective Study
- Journal
- Circ J (2026)
- Country
- Japan
- Reported sample size
- —
- Source database
- PubMed
- PMID
- 42543600
- DOI
- 10.1253/circj.CJ-26-0082
Abstract (original English)
Because glucose fluctuations (GFs) are significantly associated with poor cardiovascular outcomes in patients with diabetes mellitus, we investigated their potential impact on the paracrine effects of human epicardial adipocytes on cardiomyocytes. Human epicardial adipose tissue (EAT) biopsies and isolated EAT-derived adipocytes were used to evaluate the direct impact of GFs. Mature adipocytes were exposed to media containing normal glucose (NG), high glucose (HG), or GFs. GFs altered the expression of 595 differentially expressed genes with an effect size greater than ±50% and a statistically significant difference (P<0.05) in human epicardial adipocytes, whereas continuous HG altered the expression of only 182 genes. Among the genes affected exclusively by GFs, the top 3 most affected were IL1β, IL33, and IL8. Coculture of human induced pluripotent stem cell-derived atrial cardiomyocytes and adipocytes treated with NG, HG, or GFs revealed that adipocytes exposed to GFs markedly increased oxidative stress in cardiomyocytes through paracrine effects. In a real-world clinical association study, IL1β mRNA expression in human EAT showed a significant positive correlation with the severity of GFs during hospitalization and with oxidative stress in the left atrial myocardium. GFs adversely affect the paracrine secretome profile of human epicardial adipocytes. IL1β may be a critical
What this study does not prove
- • This study does not prove SVF is an approved treatment or a replacement for standard care.
Evidence level
Early human evidence such as case series or small samples is exploring possible benefits.
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