The antineoplastic drug, trastuzumab, dysregulates metabolism in iPSC-derived cardiomyocytes

被引:43
|
作者
Necela, Brian M. [1 ]
Axenfeld, Bianca C. [1 ]
Serie, Daniel J. [2 ]
Kachergus, Jennifer M. [1 ]
Perez, Edith A. [3 ]
Thompson, E. Aubrey [1 ]
Norton, Nadine [1 ]
机构
[1] Mayo Clin, Dept Canc Biol, Jacksonville, FL 32224 USA
[2] Mayo Clin, Dept Hlth Sci Res, Jacksonville, FL 32224 USA
[3] Mayo Clin, Dept Hematol Oncol, Jacksonville, FL 32224 USA
来源
关键词
MOLECULAR SIGNATURE ANALYSIS; GENE-EXPRESSION ANALYSIS; ADJUVANT CHEMOTHERAPY; BREAST-CANCER; HEART-FAILURE; EUROPEAN ASSOCIATION; TAURINE DEPLETION; AMERICAN SOCIETY; EXPERT CONSENSUS; ADULT PATIENTS;
D O I
10.1186/s40169-016-0133-2
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: The targeted ERBB2 therapy, trastuzumab, has had a tremendous impact on management of patients with HER2+ breast cancer, leading to development and increased use of further HER2 targeted therapies. The major clinical side effect is cardiotoxicity but the mechanism is largely unknown. On the basis that gene expression is known to be altered in multiple models of heart failure, we examined differential gene expression of iPSC-derived cardiomyocytes treated at day 11 with the ERBB2 targeted monoclonal antibody, trastuzumab for 48 h and the small molecule tyrosine kinase inhibitor of EGFR and ERBB2. Results: Transcriptome sequencing was performed on four replicates from each group (48 h untreated, 48 h trastuzumab and 48 h lapatinib) and differential gene expression analyses were performed on each treatment group relative to untreated cardiomyocytes. 517 and 1358 genes were differentially expressed, p < 0.05, respectively in cardiomyocytes treated with trastuzumab and lapatinib. Gene ontology analyses revealed in cardiomyocytes treated with trastuzumab, significant down-regulation of genes involved in small molecule metabolism (p = 3.22 x 10(-9)) and cholesterol (p = 0.01) and sterol (p = 0.03) processing. We next measured glucose uptake and lactate production in iPSC-derived cardiomyocytes 13 days post-plating, treated with trastuzumab up to 96 h. We observed significantly decreased glucose uptake from the media of iPSC-derived cardiomyocytes treated with trastuzumab as early as 24 h (p = 0.001) and consistently up to 96 h (p = 0.03). Conclusions: Our study suggests dysregulation of cardiac gene expression and metabolism as key elements of ERBB2 signaling that could potentially be early biomarkers of cardiotoxicity.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] iPSC-Derived Human Cardiomyocytes
    Anson, Blake
    GENETIC ENGINEERING & BIOTECHNOLOGY NEWS, 2010, 30 (10): : 18 - 19
  • [2] Human iPSC-Derived Cardiomyocytes
    Salvagiotto, Giorgio
    Sirenko, Oksana
    Hesley, Jayne
    Kattman, Steven
    GENETIC ENGINEERING & BIOTECHNOLOGY NEWS, 2012, 32 (08): : 28 - 29
  • [3] Maturing iPSC-Derived Cardiomyocytes
    Tang, Bor Luen
    CELLS, 2020, 9 (01)
  • [4] High throughput physiological screening of iPSC-derived cardiomyocytes for drug development
    del Alamo, Juan C.
    Lemons, Derek
    Serrano, Ricardo
    Savchenko, Alex
    Cerignoli, Fabio
    Bodmer, Rolf
    Mercola, Mark
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2016, 1863 (07): : 1717 - 1727
  • [5] The Evolving Roles of Human iPSC-Derived Cardiomyocytes in Drug Safety and Discovery
    Gintant, Gary
    Fermini, Bernard
    Stockbridge, Norman
    Strauss, David
    CELL STEM CELL, 2017, 21 (01) : 14 - 17
  • [6] TRANSCRIPTOMIC CHARACTERIZATION OF HUMAN IPSC-DERIVED CARDIOMYOCYTES
    Gomes-Silva, Beatriz
    Ribeiro, Marta
    Furtado, Marta
    Martins, Sandra
    Carvalho, Teresa
    Barbosa, Pedro
    Savisaar, Rosina
    Carmo-Fonseca, Maria
    MEDICINE, 2022, 101 (30)
  • [7] Assessment of mitophagy in human iPSC-derived cardiomyocytes
    Yang, Mingchong
    Fu, Ji-Dong
    Zou, Jizhong
    Sridharan, Divya
    Zhao, Ming-Tao
    Singh, Harpreet
    Krigman, Judith
    Khan, Mahmood
    Xin, Gang
    Sun, Nuo
    AUTOPHAGY, 2022, 18 (10) : 2481 - 2494
  • [8] iPSC-Derived Cardiomyocytes in Inherited Cardiac Arrhythmias: Pathomechanistic Discovery and Drug Development
    Simons, Eline
    Loeys, Bart
    Alaerts, Maaike
    BIOMEDICINES, 2023, 11 (02)
  • [9] Characterization of cardiac metabolism in iPSC-derived cardiomyocytes: lessons from maturation and disease modeling
    Vuckovic, Sofija
    Dinani, Rafeeh
    Nollet, Edgar E.
    Kuster, Diederik W. D.
    Buikema, Jan Willem
    Houtkooper, Riekelt H.
    Nabben, Miranda
    van der Velden, Jolanda
    Goversen, Birgit
    STEM CELL RESEARCH & THERAPY, 2022, 13 (01)
  • [10] Optimising culture of iPSC-derived cardiomyocytes for delivery into the heart
    Bettini, A.
    Stuckey, D. J.
    Day, R. M.
    HUMAN GENE THERAPY, 2021, 32 (19-20) : A149 - A149