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Cardioprotection of Canagliflozin, Dapagliflozin, and Empagliflozin: lessons from preclinical studies

卡格列净 医学 心肌保护 达帕格列嗪 重症监护医学 恩帕吉菲 临床试验 心理干预 药理学 糖尿病 生物信息学 2型糖尿病 内科学 缺血 生物 精神科 内分泌学
作者
Rayla Rodrigues Soares,Larissa Freitas Viggiani,Juliano Moreira Reis Filho,Julliane V. Joviano‐Santos
出处
期刊:Chemico-Biological Interactions [Elsevier]
卷期号:403: 111229-111229
标识
DOI:10.1016/j.cbi.2024.111229
摘要

Clinical and preclinical studies have elucidated the favorable effects of Inhibitors of Sodium-Glucose Cotransporter-2 (iSGLT2) in patients and animal models with type 2 diabetes. Notably, these inhibitors have shown significant benefits in reducing hospitalizations and mortality among patients with heart failure. However, despite their incorporation into clinical practice for indications beyond diabetes, the decision-making process regarding their use often lacks a systematic approach. The selection of iSGLT2 remains arbitrary, with only a limited number of studies simultaneously exploring the different classes of them. Currently, no unique guideline establishes their application in both clinical and basic research. This review delves into the prevalent use of iSGLT2 in animal models previously subjected to induced cardiac stress. We have compiled key findings related to cardioprotection across various animal models, encompassing diverse dosages and routes of administration. Beyond their established role in diabetes management, iSGLT2 has demonstrated utility as agents for safeguarding heart health and cardioprotection can be class-dependent among the iSGLT2. These findings may serve as valuable references for other researchers. Preclinical studies play a pivotal role in ensuring the safety of novel compounds or treatments for potential human use. By assessing side effects, toxicity, and optimal dosages, these studies offer a robust foundation for informed decisions, identifying interventions with the highest likelihood of success and minimal risk to patients. The insights gleaned from preclinical studies, which play a crucial role in highlighting areas of knowledge deficiency, can guide the exploration of novel mechanisms and strategies involving iSGLT2.
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