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Hemoglobin Oxidation and Heme in Atherosclerosis-Link Between Intraplaque Hemorrhage and Progression of Complicated Atherosclerotic Lesion

Gáll, Tamás and Balla, György Jázon and Pethő, Dávid and Balla, György and Balla, József (2026) Hemoglobin Oxidation and Heme in Atherosclerosis-Link Between Intraplaque Hemorrhage and Progression of Complicated Atherosclerotic Lesion. ANTIOXIDANTS & REDOX SIGNALING. ISSN 1523-0864 (In Press)

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Abstract

Significance: Solid evidence has demonstrated the pathophysiologic role of hemoglobin (Hb) oxidation and heme in the remodeling of arterial tissue in complicated atherosclerotic lesions with hemorrhage. Oxidation of Hb to ferric and ferryl states and subsequent accumulation of ferryl hemoglobin, heme released from globin, peptides derived from fragmentation of globin result in cellular activation and dysfunction, as well as polarization of resident cells and macrophages-all of which drive plaque formation and instability.Recent Advances: Oxidized Hb and heme are endogenous pro-atherogenic agonists that target vascular endothelial cells, smooth muscle cells, neutrophils, and macrophages. Rearrangement of the actin cytoskeleton, disruption of intercellular integrity, activation of proinflammatory genes involving nuclear factor kappa B, the c-Jun N-terminal kinase, and the p38 mitogen-activated protein kinase signal transduction pathways are key events leading to endothelial dysfunction. Polarization of macrophages involves cellular responses toward inflammation, calcification, and angiogenesis. Pathways affected include gene changes associated with phosphoinositide 3-kinase signaling, lipid transport, tissue remodeling, and vascularization. This review focuses on the maladaptive cellular responses to Hb oxidation and its products, together with oxidation of low-density lipoprotein and plaque lipid material implicated in the progression of the complicated atherosclerotic lesion, and provides insights into the potential adaptive molecular mechanisms.Critical Issues: Identification of molecular targets and novel therapeutic applications are needed to prevent remodeling of vascular tissue in the hemorrhaged complicated atherosclerotic lesion.Future Directions: Future research should focus on the red blood cell infiltration of early lesions as a source of extracellular Hb-bearing danger signals. Antioxid. Redox Signal. 00, 000-000.

Item Type: Article
Additional Information: Funding Agency and Grant Number: Ministry of Innovation and Technology of Hungary from the National Research, Development and Innovation Fund, [2020-4.1.1-TKP2020]; Ministry of Culture and Innovation of Hungary from the National Research, Development and Innovation Fund [025-1.2.1-HU-RIZONT-2025-00080]; National Research, Development and Innovation Office under the National Research Excellence Programme [ADVANCED 149734]; Ministry of Innovation and Technology of Hungary from the National Research, Development and Innovation Fund [TKP2021-EGA]; HUN-REN Hungarian Research Network [11003]; Magyar Tudomnyos Akadmia [Jnos Bolyai Research Scholarship] Funding text: The research group is supported by (11003). Project no. TKP2020-NKA-04 has been implemented with the support provided by the financed under the 2020-4.1.1-TKP2020 funding scheme. Project no. TKP2021-EGA-18 has been implemented with the support provided by the , financed under the TKP2021-EGA funding scheme. This work was supported by the National Research, Development and Innovation Office under the National Research Excellence Programme (grant no. ADVANCED 149734). The project was supported by KKM/33659-2/2024/Adm. Project no. 025-1.2.1-HU-RIZONT-2025-00080 has been implemented with the support provided by the , financed under the 2025-1.2.1-HU-RIZONT funding scheme. T.G. was supported by the Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences.
Uncontrolled Keywords: NITRIC-OXIDE SYNTHASE; LOW-DENSITY-LIPOPROTEIN; HEMOGLOBIN; SMOOTH-MUSCLE-CELLS; HYDROGEN-SULFIDE; ENDOPLASMIC-RETICULUM STRESS; ENDOTHELIAL-CELL INJURY; CARBON-MONOXIDE; N-acetylcysteine; heme; Biochemistry & Molecular Biology; ADHESION MOLECULES ICAM-1;
Subjects: R Medicine / orvostudomány > R1 Medicine (General) / orvostudomány általában
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 03 Sep 2026 14:21
Last Modified: 03 Sep 2026 14:21
URI: https://real.mtak.hu/id/eprint/245336

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