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Citations to this article

Connexin hemichannels as candidate targets for cardioprotective and anti-arrhythmic treatments
Luc Leybaert, … , Karin R. Sipido, Katja Witschas
Luc Leybaert, … , Karin R. Sipido, Katja Witschas
Published March 15, 2023
Citation Information: J Clin Invest. 2023;133(6):e168117. https://doi.org/10.1172/JCI168117.
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Connexin hemichannels as candidate targets for cardioprotective and anti-arrhythmic treatments

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Abstract

Connexins are crucial cardiac proteins that form hemichannels and gap junctions. Gap junctions are responsible for the propagation of electrical and chemical signals between myocardial cells and cells of the specialized conduction system in order to synchronize the cardiac cycle and steer cardiac pump function. Gap junctions are normally open, while hemichannels are closed, but pathological circumstances may close gap junctions and open hemichannels, thereby perturbing cardiac function and homeostasis. Current evidence demonstrates an emerging role of hemichannels in myocardial ischemia and arrhythmia, and tools are now available to selectively inhibit hemichannels without inhibiting gap junctions as well as to stimulate hemichannel incorporation into gap junctions. We review available experimental evidence for hemichannel contributions to cellular pro-arrhythmic events in ventricular and atrial cardiomyocytes, and link these to insights at the level of molecular control of connexin-43–based hemichannel opening. We conclude that a double-edged approach of both preventing hemichannel opening and preserving gap junctional function will be key for further research and development of new connexin-based experimental approaches for treating heart disease.

Authors

Luc Leybaert, Maarten A.J. De Smet, Alessio Lissoni, Rosalie Allewaert, H. Llewelyn Roderick, Geert Bultynck, Mario Delmar, Karin R. Sipido, Katja Witschas

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Total citations by year

Year: 2025 2024 2023 Total
Citations: 6 11 4 21
Citation information
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Citations to this article (21)

Title and authors Publication Year
The Unexplored Role of Connexin Hemichannels in Promoting Facioscapulohumeral Muscular Dystrophy Progression
Díaz-Ubilla M, Retamal MA
International Journal of Molecular Sciences 2025
β2‐Adrenergic Receptor Agonist Clenbuterol Protects Against Acute Ischemia/Reperfusion‐Induced Arrhythmia by Regulation of Akt/eNOS/NO/Cx43 Signaling Pathway
Fu J, Liu L, Fu Q, Zeng X, Yang X
Pharmacology Research & Perspectives 2025
Molecular Mechanisms Underlying Heart Failure and Their Therapeutic Potential
Fonseka O, Gare SR, Chen X, Zhang J, Alatawi NH, Ross C, Liu W
Cells 2025
Overexpression of Cx43: Is It an Effective Approach for the Treatment of Cardiovascular Diseases?
Boengler K, Mantuano B, Toledano S, Binah O, Schulz R
Biomolecules 2025
The Role of Infarct Border Zone Remodelling in Ventricular Arrhythmias: Bridging Basic Research and Clinical Applications
Ma J, Chen Q, Lin D, Ma S
Journal of Cellular and Molecular Medicine 2025
Translationally controlled tumor protein interacts with connexin 43 and facilitates intercellular coupling between cardiomyocytes
Hu Y, Cai W, Hidaka Y, Hiraishi K, Cang J, Umemura M, Yokoyama U, Knollmann BC, Ishikawa Y, Fujita T
Frontiers in Cell and Developmental Biology 2025
Hygrothermal stress increases malignant arrhythmias susceptibility by inhibiting the LKB1-AMPK-Cx43 pathway.
Chi J, Wu N, Li P, Hu J, Cai H, Lin C, Lai Y, Yang H, Huang J, Li M, Xu L
Scientific Reports 2024
Connexin43, A Promising Target to Reduce Cardiac Arrhythmia Burden in Pulmonary Arterial Hypertension.
Sykora M, Szeiffova Bacova B, Andelova K, Egan Benova T, Martiskova A, Kurahara LH, Hirano K, Tribulova N
International journal of molecular sciences 2024
Inhibition of IL-1 Ameliorates Cardiac Dysfunction and Arrhythmias in a Murine Model of Kawasaki Disease.
Mesquita T, Lin YN, Chen S, Lee Y, Miguel-Dos-Santos R, Atici AE, Fishbein MC, Noval Rivas M, Arditi M, Cingolani E
Arteriosclerosis, thrombosis, and vascular biology 2024
Correlative light and X-ray tomography jointly unveil the critical role of connexin43 channels on inflammation-induced cellular ultrastructural alterations
Okolo CA, Maran JJ, Watts A, Maripillan J, Harkiolaki M, Martínez AD, Green CR, Mugisho OO
Heliyon 2024
Arrhythmogenic Manifestations of Chagas Disease: Perspectives From the Bench to Bedside
Roman-Campos D, Marin-Neto JA, Santos-Miranda A, Kong N, D\u2019Avila A, Rassi A Jr
Circulation research 2024
Perspective and Therapeutic Potential of the Noncoding RNA–Connexin Axis
Li X, Wang Z, Chen N
International journal of molecular sciences 2024
Clinical Impact of Connexin 43 Deregulation on Myocardial Infraction
TSANTOULAS A, TSIAMBAS E, SPYROPOULOU D, ADAMOPOULOU M, MASTRONIKOLI S, ROUKAS D, VYLLIOTIS A, KAFKAS N, FOTIADES P, AGROGIANNIS G, LAZARIS A, KAVANTZAS N
Mædica 2024
Study on the mechanisms and Pharmacodynamic substances of Lian-Gui-Ning-Xin-Tang on Arrhythmia Therapy based on Pharmacodynamic–Pharmacokinetic associations
Jiayu L, Xiaofeng L, Jinhong C, Fangjun D, Boya F, Xin Z, Zidong C, Rui T, Lu Y, Shule Q, Runying W, Wuxun D
Heliyon 2024
Cardiac macrophages in maintaining heart homeostasis and regulating ventricular remodeling of heart diseases.
Kang M, Jia H, Feng M, Ren H, Gao J, Liu Y, Zhang L, Zhou MS
Frontiers in immunology 2024
Connexin 43 hemichannels and related diseases
Zhang Y, Acosta FM, Jiang JX
Antibody Therapeutics 2024
Mechanism of connexin channel inhibition by mefloquine and 2-aminoethoxydiphenyl borate
Lavriha P, Han Y, Ding X, Schuster D, Qi C, Vaithia A, Picotti P, Korkhov VM
PLOS ONE 2024
Mitochondrial Connexins and Mitochondrial Contact Sites with Gap Junction Structure.
Cetin-Ferra S, Francis SC, Cooper AT, Neikirk K, Marshall AG, Hinton A Jr, Murray SA
International journal of molecular sciences 2023
Cx43 Hemichannel and Panx1 Channel Modulation by Gap19 and 10Panx1 Peptides
Lissoni A, Tao S, Allewaert R, Witschas K, Leybaert L
International journal of molecular sciences 2023
Diversity in connexin biology
Lucaciu SA, Leighton SE, Hauser A, Yee R, Laird DW
The Journal of biological chemistry 2023
Connexins in Cancer, the Possible Role of Connexin46 as a Cancer Stem Cell-Determining Protein.
León-Fuentes IM, Salgado-Gil MG, Novoa MS, Retamal MA
Biomolecules 2023

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