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Development of a Zebrafish Larvae Model for Diabetic Heart Failure With Reduced Ejection Fraction

Inho Kim, Seung Hyeok Seok, Hae‐Young Lee

2022Korean Circulation Journal17 citationsDOIOpen Access PDF

Abstract

BACKGROUND AND OBJECTIVES: research on diabetic HF. METHODS: DM-like phenotypes were induced by treating zebrafish larvae with a combination of D-glucose (GLU) and streptozotocin (STZ). HF was induced by treatment with terfenadine (TER), a potassium channel blocker. Additionally, myocardial contractility, motility, and viability were evaluated. RESULTS: The zebrafish larvae treated with a combination of GLU and STZ showed significantly higher whole-body glucose concentrations, lower insulin levels, and higher phosphoenolpyruvate carboxykinase levels, which are markers of abnormal glucose homeostasis, than the group treated with only GLU, with no effect on viability. When treated with TER, DM zebrafish showed significantly less myocardial fractional shortening and more irregular contractions than the non-DM zebrafish. Furthermore, in DM-HF with reduced ejection fraction (rEF) zebrafish, a significant increase in the levels of natriuretic peptide B, a HF biomarker, markedly reduced motility, and reduced survival rates were observed. CONCLUSIONS: We established a DM-HFrEF zebrafish model by sequentially treating zebrafish larvae with GLU, STZ, and TER. Our findings indicate the potential utility of the developed zebrafish larvae model not only in screening studies of new drug candidates for DM-HFrEF but also in mechanistic studies to understand the pathophysiology of DM-HFrEF.

Topics & Concepts

ZebrafishInternal medicineMedicineEjection fractionHeart failureDiabetes mellitusEndocrinologyStreptozotocinIn vivoMotilityPharmacologyBiologyBiochemistryCell biologyBiotechnologyGeneCongenital heart defects researchHeart Failure Treatment and ManagementZebrafish Biomedical Research Applications
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