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Data Availability_The Role of Captopril in Leukotriene Deficient Type 1 Diabetic Mice_Guimaraes et al 2023

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modified on 2023-10-10, 15:49

T1D can be associated with metabolic disorders and several impaired pathways, including insulin signaling, and development of insulin resistance through the renin-angiotensin system (RAS). The main precursor of RAS is angiotensinogen (Agt) and this system is often linked to autophagy dysregulation. Dysregulated autophagy has been described in T1D and linked to impairments in bothglucose metabolism, and leukotrienes (LTs) production. Here, we have investigated the role of RAS and LTs in both muscle and liver from T1D mice, and its effects on insulin and autophagy pathways. We have chemically induced T1D in 129sve and 129sve 5LO-/- mice (lacking LTs) with streptozotocin (STZ). To further inhibit RAS, mice were treated with captopril (Cap). In muscle of T1D mice, treatment with Cap increased the expression of RAS, insulin signaling, and autophagy markers, regardless of the genotype. In the liver of T1D mice, the treatment with Cap increased the expression of RAS and insulin signaling markers, mostly when LTs were absent. 5LO-/- T1D mice showed increased insulin sensitivity, and decreased NEFA, after the Cap treatment. Cap treatment impacted both insulin signaling and autophagy pathways at the mRNA levels in muscle and liver, indicating the potential role of ACE inhibition on insulin sensitivity and autophagy in T1D.

Funding

AHA award #13GRNT15690000

SPRINT award (co-funded by Texas Tech University and the São Paulo Research Foundation, FAPESP); 2017/11540-7, 2018/50004-6, 2018/23266-0, 2019/09983-3, 2020/03175-0, and 2022/00482-4 grants from FAPESP, São Paulo, Brazil, National Council for Scientific and Technological Development (CNPq: 301617/2016-3, 310993/2020-2) and Coordination for the Improvement of Higher Education Personnel (CAPES)