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Main Authors: Jarabicova, Izabela, Horvath, Csaba, Hrdlicka, Jaroslav, Boros, Almos, Olejnickova, Veronika, Zabrodska, Eva, Stemberkova Hubackova, Sona, Sutovska, Hana Mauer, Molcan, Lubos, Kopkan, Libor, Chudy, Martin, Kura, Branislav, Kalocayova, Barbora, Goncalvesova, Eva, Neckar, Jan, Zeman, Michal, Kolar, Frantisek, Adameova, Adriana
Format: Recurso digital
Language:English
Published: Zenodo 2025
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Online Access:https://doi.org/10.5281/zenodo.15260742
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author Jarabicova, Izabela
Horvath, Csaba
Hrdlicka, Jaroslav
Boros, Almos
Olejnickova, Veronika
Zabrodska, Eva
Stemberkova Hubackova, Sona
Sutovska, Hana Mauer
Molcan, Lubos
Kopkan, Libor
Chudy, Martin
Kura, Branislav
Kalocayova, Barbora
Goncalvesova, Eva
Neckar, Jan
Zeman, Michal
Kolar, Frantisek
Adameova, Adriana
author_facet Jarabicova, Izabela
Horvath, Csaba
Hrdlicka, Jaroslav
Boros, Almos
Olejnickova, Veronika
Zabrodska, Eva
Stemberkova Hubackova, Sona
Sutovska, Hana Mauer
Molcan, Lubos
Kopkan, Libor
Chudy, Martin
Kura, Branislav
Kalocayova, Barbora
Goncalvesova, Eva
Neckar, Jan
Zeman, Michal
Kolar, Frantisek
Adameova, Adriana
contents Since cell dying in heart failure (HF) may vary based on the aetiology, we examined the main forms of regulated necrosis, such as necroptosis and pyroptosis, in the hearts damaged due to myocardial infarction (MI) or pressure overload. We also investigated the effects of a drug inhibiting RIP3, a proposed convergent point for both these necrosis-like cell death modes. In rat hearts, left ventricular function, remodelling, pro-cell death, and pro-inflammatory events were investigated, and the pharmacodynamic action of RIP3 inhibitor (GSK'872) was assessed. Regardless of the HF aetiology, the heart cells were dying due to necroptosis, albeit the upstream signals may be different. Pyroptosis was observed only in post-MI HF. The dysregulated miRNAs in post-MI hearts were accompanied by higher levels of a predicted target, HMGB1, its receptors (TLRs), as well as the exacerbation of inflammation likely originating from macrophages. The RIP3 inhibitor suppressed necroptosis, unlike pyroptosis, normalised the dysregulated miRNAs and tended to decrease collagen content and affect macrophage infiltration without affecting cardiac function or structure. The drug also mitigated the local heart inflammation and normalised the higher circulating HMGB1 in rats with post-MI HF. Elevated serum levels of HMGB1 were also detected in HF patients and positively correlated with C-reactive protein, highlighting pro-inflammatory axis. In conclusion, in MI-, but not pressure overload-induced HF, both necroptosis and pyroptosis operate and might underlie HF pathogenesis. The RIP3-targeting pharmacological intervention might protect the heart by preventing pro-death and pro-inflammatory mechanisms, however, additional strategies targeting multiple pro-death pathways may exhibit greater cardioprotection.
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spellingShingle Necrosis-like cell death modes in heart failure: the influence of aetiology and the effects of RIP3 inhibition
Jarabicova, Izabela
Horvath, Csaba
Hrdlicka, Jaroslav
Boros, Almos
Olejnickova, Veronika
Zabrodska, Eva
Stemberkova Hubackova, Sona
Sutovska, Hana Mauer
Molcan, Lubos
Kopkan, Libor
Chudy, Martin
Kura, Branislav
Kalocayova, Barbora
Goncalvesova, Eva
Neckar, Jan
Zeman, Michal
Kolar, Frantisek
Adameova, Adriana
Heart failure
Receptor-interacting protein kinase 3
Inflammation
High mobility group box 1
Necroptosis
Pyroptosis
Since cell dying in heart failure (HF) may vary based on the aetiology, we examined the main forms of regulated necrosis, such as necroptosis and pyroptosis, in the hearts damaged due to myocardial infarction (MI) or pressure overload. We also investigated the effects of a drug inhibiting RIP3, a proposed convergent point for both these necrosis-like cell death modes. In rat hearts, left ventricular function, remodelling, pro-cell death, and pro-inflammatory events were investigated, and the pharmacodynamic action of RIP3 inhibitor (GSK'872) was assessed. Regardless of the HF aetiology, the heart cells were dying due to necroptosis, albeit the upstream signals may be different. Pyroptosis was observed only in post-MI HF. The dysregulated miRNAs in post-MI hearts were accompanied by higher levels of a predicted target, HMGB1, its receptors (TLRs), as well as the exacerbation of inflammation likely originating from macrophages. The RIP3 inhibitor suppressed necroptosis, unlike pyroptosis, normalised the dysregulated miRNAs and tended to decrease collagen content and affect macrophage infiltration without affecting cardiac function or structure. The drug also mitigated the local heart inflammation and normalised the higher circulating HMGB1 in rats with post-MI HF. Elevated serum levels of HMGB1 were also detected in HF patients and positively correlated with C-reactive protein, highlighting pro-inflammatory axis. In conclusion, in MI-, but not pressure overload-induced HF, both necroptosis and pyroptosis operate and might underlie HF pathogenesis. The RIP3-targeting pharmacological intervention might protect the heart by preventing pro-death and pro-inflammatory mechanisms, however, additional strategies targeting multiple pro-death pathways may exhibit greater cardioprotection.
title Necrosis-like cell death modes in heart failure: the influence of aetiology and the effects of RIP3 inhibition
topic Heart failure
Receptor-interacting protein kinase 3
Inflammation
High mobility group box 1
Necroptosis
Pyroptosis
url https://doi.org/10.5281/zenodo.15260742