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Citations to this article

Cardiac macrophages regulate isoproterenol-induced Takotsubo-like cardiomyopathy
Xudong Liao, … , Ralf H. Adams, Mukesh K. Jain
Xudong Liao, … , Ralf H. Adams, Mukesh K. Jain
Published February 8, 2022
Citation Information: JCI Insight. 2022;7(3):e156236. https://doi.org/10.1172/jci.insight.156236.
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Research Article Cardiology

Cardiac macrophages regulate isoproterenol-induced Takotsubo-like cardiomyopathy

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Abstract

Takotsubo syndrome (TTS) is an acute, stress-induced cardiomyopathy that occurs predominantly in women after extreme physical and/or emotional stress. To date, our understanding of the molecular basis for TTS remains unknown and, consequently, specific therapies are lacking. Myocardial infiltration of monocytes and macrophages in TTS has been documented in clinical studies. However, the functional importance of these findings remains poorly understood. Here, we show that a single high dose of isoproterenol (ISO) in mice induced a TTS-like cardiomyopathy phenotype characterized by female predominance, severe cardiac dysfunction, and robust myocardial infiltration of macrophages. Single-cell RNA-Seq studies of myocardial immune cells revealed that TTS-like cardiomyopathy is associated with complex activation of innate and adaptive immune cells in the heart, and macrophages were identified as the dominant immune cells. Global macrophage depletion (via clodronate liposome administration) or blockade of macrophage infiltration (via a CCR2 antagonist or in CCR2-KO mice) resulted in recovery of cardiac dysfunction in ISO-challenged mice. In addition, damping myeloid cell activation by HIF1α deficiency or exposure to the immunomodulatory agent bortezomib ameliorated ISO-induced cardiac dysfunction. Collectively, our findings identify macrophages as a critical regulator of TTS pathogenesis that can be targeted for therapeutic gain.

Authors

Xudong Liao, Eugene Chang, Xinmiao Tang, Ippei Watanabe, Rongli Zhang, Hyun-Woo Jeong, Ralf H. Adams, Mukesh K. Jain

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Total citations by year

Year: 2025 2024 2023 2022 Total
Citations: 4 10 10 5 29
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Citations to this article (29)

Title and authors Publication Year
Proteomics of stress-induced cardiomyopathy: insights from differential expression, protein interaction networks, and functional pathway enrichment in an isoproterenol-induced TTC mouse model
Tian L, Liu B, Ren Y, Cui J, Pang Z
PeerJ 2025
The cellular and molecular cardiac tissue responses in human inflammatory cardiomyopathies after SARS-CoV-2 infection and COVID-19 vaccination
Maatz H, Lindberg EL, Adami E, López-Anguita N, Perdomo-Sabogal A, Cocera Ortega L, Patone G, Reichart D, Myronova A, Schmidt S, Elsanhoury A, Klein O, Kühl U, Wyler E, Landthaler M, Yousefian S, Haas S, Kurth F, Teichmann SA, Oudit GY, Milting H, Noseda M, Seidman JG, Seidman CE, Heidecker B, Sander LE, Sawitzki B, Klingel K, Doeblin P, Kelle S, Van Linthout S, Hubner N, Tschöpe C
Nature Cardiovascular Research 2025
Mortality risk stratification for Takotsubo syndrome: Evaluating CRP measurement alongside the InterTAK prognostic score
Faucher L, Matsushita K, Kikuchi S, Tatarcheh T, Marchandot B, Granier A, Amissi S, Trimaille A, Jesel L, Ohlmann P, Hibi K, Schini\u2010Kerth V, Morel O
ESC Heart Failure 2025
The Genetic Puzzle of the Stress-Induced Cardiomyopathy (Takotsubo Syndrome): State of Art and Future Perspectives
Lio D, Scola L, Forte GI, Vaccarino L, Bova M, Di Gangi P, Santini G, di Lisi D, Madaudo C, Novo G
Biomolecules 2025
Sympathetic nerve-induced monocyte-derived macrophages aggravate cardiac dysfunction after ischemic stroke in mice
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Journal of the American Heart Association 2024
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International Journal of Clinical Practice 2024
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Journal of Cellular and Molecular Medicine 2024
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Biomedicines 2024
Animal models of Takotsubo syndrome: bridging the gap to the human condition
Zulfaj E, Nejat A, Haamid A, Elmahdy A, Espinosa A, Redfors B, Omerovic E
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Isoproterenol induced cardiac hypertrophy: A comparison of three doses and two delivery methods in C57BL/6J mice
Perez-Bonilla P, LaViolette B, Bhandary B, Ullas S, Chen X, Hirenallur-Shanthappa D
PloS one 2024
The Macrophage–Fibroblast Dipole in the Context of Cardiac Repair and Fibrosis
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Biomolecules 2024
In a Canine Model of Septic Shock, Cardiomyopathy Occurs Independent of Catecholamine Surges and Cardiac Microvascular Ischemia
Ford VJ, Applefeld WN, Wang J, Sun J, Solomon SB, Klein HG, Feng J, Lertora J, Parizi-Torabi P, Danner RL, Solomon MA, Chen MY, Natanson C
bioRxiv 2024
In a Canine Model of Septic Shock, Cardiomyopathy Occurs Independent of Catecholamine Surges and Cardiac Microvascular Ischemia
Ford VJ, Applefeld WN, Wang J, Sun J, Solomon SB, Klein HG, Feng J, Lertora J, Parizi\u2010Torabi P, Danner RL, Solomon MA, Chen MY, Natanson C
Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease 2024
Multi-omics analysis reveals the role of Sigma-1 receptor in a Takotsubo-like cardiomyopathy model
Yi Liu, Qing Chen, Jian-Zheng Yang, Xiu-Wen Li, Li-Jian Chen, Kai-Kai Zhang, Jia-Li Liu, Jia-Hao Li, Clare Hsu, Long Chen, Jia-Hao Zeng, Dong Zhao, Jing-Tao Xu, Qi Wang
Biomedicines 2023
Establishment and effect evaluation of a stress cardiomyopathy mouse model induced by different doses of isoprenaline
Wu H, Su H, Zhu C, Wu S, Cui S, Zhou M
Experimental and therapeutic medicine 2023
Cardiomyocyte NOX4 regulates resident macrophage-mediated inflammation and diastolic dysfunction in stress cardiomyopathy
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Redox Biology 2023
Acute stress induces long-term metabolic, functional, and structural remodeling of the heart.
Yoganathan T, Perez-Liva M, Balvay D, Le Gall M, Lallemand A, Certain A, Autret G, Mokrani Y, Guillonneau F, Bruce J, Nguyen V, Gencer U, Schmitt A, Lager F, Guilbert T, Bruneval P, Vilar J, Maissa N, Mousseaux E, Viel T, Renault G, Kachenoura N, Tavitian B
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Salerno N, Scalise M, Marino F, Filardo A, Chiefalo A, Panuccio G, Torella M, De Angelis A, De Rosa S, Ellison-Hughes GM, Urbanek K, Viglietto G, Torella D, Cianflone E
Journal of Cardiovascular Development and Disease 2023
Pomegranate Peel Extract Attenuates Isoprenaline-Induced Takotsubo-like Myocardial Injury in Rats
Marinković ST, Đukanović Đ, Duran M, Bajic Z, Sobot T, Uletilović S, Mandić-Kovacević N, Cvjetković T, Maksimović ŽM, Maličević U, Vesić N, Jovičić S, Katana M, Šavikin K, Djuric DM, Stojiljković MP, Škrbić R
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Wu Y, Ni T, Zhang M, Fu S, Ren D, Feng Y, Liang H, Zhang Z, Zhao Y, He Y, Yang Y, Tian Z, Yan T, Liu J
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