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Inhibition of Dyrk1a attenuates type 1 diabetic cardiomyopathy via anti‑ferroptosis
Junjian Chen1, Wanyi Zhang1, Tao Hong2
1Department of Cardiovascular Medicine, Chongqing Emergency Medical Center, Chongqing University Central Hospital, Chongqing 400014, P.R. China.
Insights
Diabetic cardiomyopathy (DCM) in type 1 diabetes mellitus (T1DM) is improved by inhibiting Dyrk1a. The compound harmine reduced ferroptosis, a cell death pathway, protecting heart function in a T1DM mouse model.
Area of Science:
- Cardiology
- Endocrinology
- Molecular Biology
Background:
- Diabetic cardiomyopathy (DCM) is a serious complication of type 1 diabetes mellitus (T1DM).
- Dyrk1a is implicated in various diseases and is a potential therapeutic target, but its role in T1DM-related DCM is unclear.
- Limited therapeutic options exist for T1DM-induced DCM.
Purpose of the Study:
- To investigate the function and mechanisms of Dyrk1a in DCM.
- To evaluate the therapeutic potential of Dyrk1a inhibition in T1DM-related DCM.
Main Methods:
- Experimental T1DM was induced in a murine model using streptozotocin.
- Cardiac Dyrk1a protein expression was assessed.
- The Dyrk1a inhibitor harmine was administered orally.
- Cardiac function and ferroptosis markers (malondialdehyde, glutathione, SLC7A11, GPX4) were evaluated.
- The effect of a ferroptosis activator (erastin) was examined.
Main Results:
- Cardiac Dyrk1a expression was significantly upregulated in the T1DM mouse model.
- Harmine treatment ameliorated cardiac dysfunction in T1DM mice.
- Harmine inhibited ferroptosis by reducing malondialdehyde, increasing glutathione, and upregulating SLC7A11 and GPX4.
- Co-administration of erastin abolished the cardioprotective effects of harmine.
Conclusions:
- Dyrk1a inhibition, via harmine, protects against hyperglycemia-induced cardiomyocyte injury.
- Harmine effectively modulates ferroptosis pathways, offering a potential therapeutic strategy for T1DM-related DCM.
- Dyrk1a plays a critical role in the pathogenesis of DCM in T1DM.
Abstract:
Diabetic cardiomyopathy (DCM) is a major complication of type 1 diabetes mellitus (T1DM) with limited treatment options. Dyrk1a is involved in multiple diseases, comprising neurodegenerative disorders, cancer and diabetes. In addition, Dyrk1a is an emerging therapeutic target. Nonetheless, it remains ambiguous with regard to its role in T1DM‑related DCM. The present study investigated the function and mechanisms of Dyrk1a in DCM. Experimental T1DM was induced through sequential low‑dose streptozotocin administrations via intraperitoneal delivery. The investigation showed conspicuous cardiac upregulation of Dyrk1a protein expression in this T1DM murine model. Pharmacological intervention was performed by employing the Dyrk1a‑targeting compound harmine, administered through oral gavage, which ameliorated cardiac dysfunction characteristic of DCM. This therapeutic efficacy was mechanistically linked to ferroptosis inhibition, which was established through harmine‑mediated attenuation of pathological signatures, namely reduced malondialdehyde accumulation, enhanced glutathione bioavailability, as well as elevated expression of ferroptosis regulators SLC7A11 and GPX4. It is noteworthy that co‑administration of the ferroptosis activator erastin nullified the cardioprotective properties of harmine. Together, these findings establish harmine as an effective modulator of ferroptosis pathways, conferring protection against hyperglycemia‑induced cardiomyocyte injury. Dyrk1a inhibition enhances cardiac function in T1DM by reducing ferroptosis.
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