Statins affect human iPSC-derived cardiomyocytes by interfering with mitochondrial function and intracellular acidification

被引:0
作者
Tim Somers
Sailay Siddiqi
Renee G. C. Maas
Joost P. G. Sluijter
Jan W. Buikema
Petra H. H. van den Broek
Tanne J. Meuwissen
Wim J. Morshuis
Frans G. M. Russel
Tom J. J. Schirris
机构
[1] Radboud University Medical Center,Department of Cardiothoracic Surgery
[2] Radboud University Medical Center,Division of Pharmacology and Toxicology, Department of Pharmacy
[3] Radboud University Medical Center,Radboud Center for Mitochondrial Medicine
[4] University Utrecht,Department of Cardiology, Experimental Cardiology Laboratory, Utrecht Regenerative Medicine Center, Circulatory Health Laboratory
[5] University Medical Center Utrecht,Department of Physiology
[6] Amsterdam Cardiovascular Sciences,Department of Cardiology
[7] VU University,undefined
[8] Amsterdam Heart Center,undefined
[9] Amsterdam University Medical Center,undefined
来源
Basic Research in Cardiology | 2024年 / 119卷
关键词
Statins; hiPSC; Cardiomyocytes; Mitochondrial toxicity;
D O I
暂无
中图分类号
学科分类号
摘要
Statins are effective drugs in reducing cardiovascular morbidity and mortality by inhibiting cholesterol synthesis. These effects are primarily beneficial for the patient’s vascular system. A significant number of statin users suffer from muscle complaints probably due to mitochondrial dysfunction, a mechanism that has recently been elucidated. This has raised our interest in exploring the effects of statins on cardiac muscle cells in an era where the elderly and patients with poorer functioning hearts and less metabolic spare capacity start dominating our patient population. Here, we investigated the effects of statins on human-induced pluripotent stem cell-derived cardiomyocytes (hiPSC-derived CMs). hiPSC-derived CMs were exposed to simvastatin, atorvastatin, rosuvastatin, and cerivastatin at increasing concentrations. Metabolic assays and fluorescent microscopy were employed to evaluate cellular viability, metabolic capacity, respiration, intracellular acidity, and mitochondrial membrane potential and morphology. Over a concentration range of 0.3–100 µM, simvastatin lactone and atorvastatin acid showed a significant reduction in cellular viability by 42–64%. Simvastatin lactone was the most potent inhibitor of basal and maximal respiration by 56% and 73%, respectively, whereas simvastatin acid and cerivastatin acid only reduced maximal respiration by 50% and 42%, respectively. Simvastatin acid and lactone and atorvastatin acid significantly decreased mitochondrial membrane potential by 20%, 6% and 3%, respectively. The more hydrophilic atorvastatin acid did not seem to affect cardiomyocyte metabolism. This calls for further research on the translatability to the clinical setting, in which a more conscientious approach to statin prescribing might be considered, especially regarding the current shift in population toward older patients with poor cardiac function.
引用
收藏
页码:309 / 327
页数:18
相关论文
共 50 条
  • [31] The Histone Demethylase JMJD2A Modulates the Induction of Hypertrophy Markers in iPSC-Derived Cardiomyocytes
    Rosales, Wendy
    Lizcano, Fernando
    FRONTIERS IN GENETICS, 2018, 9
  • [32] Laminin Alpha 2 Enhances the Protective Effect of Exosomes on Human iPSC-Derived Cardiomyocytes in an In Vitro Ischemia-Reoxygenation Model
    Mesquita, Fernanda C. P.
    King, Madelyn
    Lopez, Patricia Luciana da Costa
    Thevasagayampillai, Shiyanth
    Gunaratne, Preethi H.
    Hochman-Mendez, Camila
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (07)
  • [33] An impedance-based approach using human iPSC-derived cardiomyocytes significantly improves in vitro prediction of in vivo cardiotox liabilities
    Koci, Bryan
    Luerman, Gregory
    Duenbostell, Anika
    Kettenhofen, Ralf
    Bohlen, Heribert
    Coyle, Luke
    Knight, Brian
    Ku, Warren
    Volberg, Walter
    Woska, Joseph R., Jr.
    Brown, Martha P.
    TOXICOLOGY AND APPLIED PHARMACOLOGY, 2017, 329 : 121 - 127
  • [34] High-throughput drug profiling with voltage-and calcium-sensitive fluorescent probes in human iPSC-derived cardiomyocytes
    Bedut, Stephane
    Seminatore-Nole, Christine
    Lamamy, Veronique
    Caignard, Sarah
    Boutin, Jean A.
    Nosjean, Olivier
    Stephan, Jean-Philippe
    Coge, Francis
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2016, 311 (01): : H44 - H53
  • [35] EVALUATION OF ESTABLISHED HUMAN IPSC-DERIVED NEURONS TO MODEL NEURODEGENERATIVE DISEASES
    Meneghello, G.
    Verheyen, A.
    Van Ingen, M.
    Kuijlaars, J.
    Tuefferd, M.
    Van den Wyngaert, I.
    Nuydens, R.
    NEUROSCIENCE, 2015, 301 : 204 - 212
  • [36] Excision of the expanded GAA repeats corrects cardiomyopathy phenotypes of iPSC-derived Friedreich's ataxia cardiomyocytes
    Li, Jixue
    Rozwadowska, Natalia
    Clark, Amanda
    Fil, Daniel
    Napierala, Jill S.
    Napierala, Marek
    STEM CELL RESEARCH, 2019, 40
  • [37] Maturation of Human iPSC-Derived Cardiac Microfiber with Electrical Stimulation Device
    Masuda, Akari
    Kurashina, Yuta
    Tani, Hidenori
    Soma, Yusuke
    Muramatsu, Jumpei
    Itai, Shun
    Tohyama, Shugo
    Onoe, Hiroaki
    ADVANCED HEALTHCARE MATERIALS, 2024, 13 (27)
  • [38] Comparison of gene expression between human and mouse iPSC-derived cardiomyocytes for stem cell therapies of cardiovascular defects via bioinformatic analysis
    Ryan Bellman
    Jishizhan Chen
    Lidan Chen
    Nikolitsa Nomikou
    Janice Tsui
    George Hamilton
    Wenhui Song
    Translational Medicine Communications, 8 (1)
  • [39] Macrophages enhance contractile force in iPSC-derived human engineered cardiac tissue
    Lock, Roberta I.
    Graney, Pamela L.
    Tavakol, Daniel Naveed
    Nash, Trevor R.
    Kim, Youngbin
    Sanchez Jr, Eloy
    Morsink, Margaretha
    Ning, Derek
    Chen, Connie
    Fleischer, Sharon
    Baldassarri, Ilaria
    Vunjak-Novakovic, Gordana
    CELL REPORTS, 2024, 43 (06):
  • [40] HLA-Ehigh/HLA-Ghigh/HLA-IIlow Human iPSC-Derived Cardiomyocytes Exhibit Low Immunogenicity for Heart Regeneration
    Fang, Yi-Hsien
    Wang, Saprina P. H.
    Liao, I-Chuang
    Tsai, Kuen-Jer
    Huang, Po-Hsien
    Yang, Pei-Jung
    Yen, Chia-Jui
    Liu, Ping-Yen
    Shan, Yan-Shen
    Liu, Yen-Wen
    ADVANCED HEALTHCARE MATERIALS, 2023, 12 (29)