Liraglutide Protects Against Diastolic Dysfunction and Improves Ventricular Protein Translation.

IF 3.1 3区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS Cardiovascular Drugs and Therapy Pub Date : 2024-12-01 Epub Date: 2023-06-29 DOI:10.1007/s10557-023-07482-9
Cody Rutledge, Angela Enriquez, Kevin Redding, Mabel Lopez, Steven Mullett, Stacy L Gelhaus, Michael Jurczak, Eric Goetzman, Brett A Kaufman
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Abstract

Purpose: Diastolic dysfunction is an increasingly common cardiac pathology linked to heart failure with preserved ejection fraction. Previous studies have implicated glucagon-like peptide 1 (GLP-1) receptor agonists as potential therapies for improving diastolic dysfunction. In this study, we investigate the physiologic and metabolic changes in a mouse model of angiotensin II (AngII)-mediated diastolic dysfunction with and without the GLP-1 receptor agonist liraglutide (Lira).

Methods: Mice were divided into sham, AngII, or AngII+Lira therapy for 4 weeks. Mice were monitored for cardiac function, weight change, and blood pressure at baseline and after 4 weeks of treatment. After 4 weeks of treatment, tissue was collected for histology, protein analysis, targeted metabolomics, and protein synthesis assays.

Results: AngII treatment causes diastolic dysfunction when compared to sham mice. Lira partially prevents this dysfunction. The improvement in function in Lira mice is associated with dramatic changes in amino acid accumulation in the heart. Lira mice also have improved markers of protein translation by Western blot and increased protein synthesis by puromycin assay, suggesting that increased protein turnover protects against fibrotic remodeling and diastolic dysfunction seen in the AngII cohort. Lira mice also lost lean muscle mass compared to the AngII cohort, raising concerns about peripheral muscle scavenging as a source of the increased amino acids in the heart.

Conclusions: Lira therapy protects against AngII-mediated diastolic dysfunction, at least in part by promoting amino acid uptake and protein turnover in the heart. Liraglutide therapy is associated with loss of mean muscle mass, and long-term studies are warranted to investigate sarcopenia and frailty with liraglutide therapy in the setting of diastolic disease.

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利拉鲁肽可防止舒张功能障碍并改善心室蛋白翻译。
目的:舒张功能障碍是与射血分数保留型心力衰竭相关的一种日益常见的心脏病理现象。先前的研究表明,胰高血糖素样肽 1(GLP-1)受体激动剂是改善舒张功能障碍的潜在疗法。在本研究中,我们研究了血管紧张素 II(AngII)介导的舒张功能障碍小鼠模型在使用和不使用 GLP-1 受体激动剂利拉鲁肽(Lira)时的生理和代谢变化:将小鼠分为假治疗、AngII治疗或AngII+Lira治疗4周。在基线和治疗 4 周后,对小鼠的心脏功能、体重变化和血压进行监测。治疗 4 周后,收集组织进行组织学、蛋白质分析、靶向代谢组学和蛋白质合成测定:结果:与假小鼠相比,AngII 治疗会导致舒张功能障碍。Lira可部分防止这种功能障碍。Lira 小鼠功能的改善与心脏中氨基酸积累的巨大变化有关。通过 Western 印迹法,Lira 小鼠的蛋白质翻译指标也有所改善,通过嘌呤霉素检测,蛋白质合成也有所增加,这表明蛋白质周转的增加可防止 AngII 小鼠群中出现的纤维重塑和舒张功能障碍。与 AngII 小鼠群相比,Lira 小鼠的瘦肌肉质量也有所下降,这引起了人们对外周肌肉清除作为心脏中氨基酸增加来源的担忧:结论:利拉治疗可防止 AngII 介导的舒张功能障碍,至少部分原因是促进了心脏的氨基酸摄取和蛋白质周转。利拉鲁肽疗法与平均肌肉质量的损失有关,因此有必要进行长期研究,以调查舒张性疾病患者在利拉鲁肽疗法下的肌肉疏松症和虚弱症。
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来源期刊
Cardiovascular Drugs and Therapy
Cardiovascular Drugs and Therapy 医学-心血管系统
CiteScore
8.30
自引率
0.00%
发文量
110
审稿时长
4.5 months
期刊介绍: Designed to objectively cover the process of bench to bedside development of cardiovascular drug, device and cell therapy, and to bring you the information you need most in a timely and useful format, Cardiovascular Drugs and Therapy takes a fresh and energetic look at advances in this dynamic field. Homing in on the most exciting work being done on new therapeutic agents, Cardiovascular Drugs and Therapy focusses on developments in atherosclerosis, hyperlipidemia, diabetes, ischemic syndromes and arrhythmias. The Journal is an authoritative source of current and relevant information that is indispensable for basic and clinical investigators aiming for novel, breakthrough research as well as for cardiologists seeking to best serve their patients. Providing you with a single, concise reference tool acknowledged to be among the finest in the world, Cardiovascular Drugs and Therapy is listed in Web of Science and PubMed/Medline among other abstracting and indexing services. The regular articles and frequent special topical issues equip you with an up-to-date source defined by the need for accurate information on an ever-evolving field. Cardiovascular Drugs and Therapy is a careful and accurate guide through the maze of new products and therapies which furnishes you with the details on cardiovascular pharmacology that you will refer to time and time again.
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