Quercetin inhibits platelet activation and ER-stress mediated autophagy in response to extracellular histone

IF 8.3 1区 医学 Q1 CHEMISTRY, MEDICINAL Phytomedicine Pub Date : 2025-03-01 Epub Date: 2025-01-11 DOI:10.1016/j.phymed.2025.156386
Kurnegala Manikanta , Somanathapura K. NaveenKumar , Mahadevappa Hemshekhar , Ram M. Thushara , Govindasamy Mugesh , Kempaiah Kemparaju , Kesturu S. Girish
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Abstract

Background

Cellular histones are DNA-binding nuclear proteins involved in chromatin remodelling and regulation of gene expression. However, extracellular histones act as damage-associated molecular patterns (DAMPs) and contribute to multiorgan damage in conditions with sepsis and diseases with acute critical illnesses. Alongside, histones are associated with thrombocytopenia due to dysfunctional platelets that regulate hemostasis and thrombosis. There is no drug available to prevent histone-induced platelet toxicity. Therefore, we for the first time examined quercetin (QUE) as a novel therapeutic to protect histone-induced platelet toxicity.

Purpose

To delineate how histones induce platelet toxicity and investigate the protective efficacy of quercetin (QUE), a natural dietary phytochemical.

Study design/method

Histone-treated platelets were evaluated for platelet aggregation/activation markers, various autophagy-related signaling proteins, and cytotoxicity in vitro. For the inhibition study, QUE and other standard inhibitors were pre-treated before stimulation with histones. Further, we injected histones into mice in the presence or absence of QUE and evaluated the tail bleeding, lung toxicity, and circulatory platelet stress markers. Additionally, QUE-treated mice were challenged for histone-primed Collagen-epinephrine-induced pulmonary thromboembolism.

Result

Extracellular histones induce platelet activation and aggregation by interacting with sialic acid in TLR1/2 or TLR4. Also, we have demonstrated for the first time that histones induce ER stress-mediated autophagy in platelets. QUE inhibited histone-induced platelet activation, aggregation, and ER-stress-mediated autophagy in response to histone treatment. Ex vivo experiments indicate that oral administration of QUE can safeguard platelets while concurrently mitigating their response to histone stimulation. In addition, quercetin increased the survival rates of histone-primed, collagen-epinephrine-induced acute pulmonary thromboembolism in mice.

Conclusion

In summary, this study demonstrated the beneficial effect of QUE in protecting platelets with possible implications for addressing histone-accelerated pathologies.
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槲皮素抑制血小板活化和内质网应激介导的细胞外组蛋白自噬。
背景:细胞组蛋白是dna结合核蛋白,参与染色质重塑和基因表达调控。然而,细胞外组蛋白作为损伤相关分子模式(DAMPs),在脓毒症和急性危重症疾病中导致多器官损伤。此外,组蛋白与血小板减少症有关,这是由于调节止血和血栓形成的血小板功能失调所致。目前还没有药物可以预防组蛋白引起的血小板毒性。因此,我们首次研究了槲皮素(QUE)作为一种新的治疗方法来保护组蛋白诱导的血小板毒性。目的:研究组蛋白诱导血小板毒性的机制,探讨槲皮素(一种天然膳食植物化学物质)的保护作用。研究设计/方法:对组蛋白处理后的血小板进行血小板聚集/活化标记物、各种自噬相关信号蛋白和体外细胞毒性的评估。在抑制研究中,QUE和其他标准抑制剂在组蛋白刺激前进行预处理。此外,我们将组蛋白注射到存在或不存在QUE的小鼠体内,并评估尾出血、肺毒性和循环血小板应激标志物。此外,用que处理的小鼠对组蛋白引发的胶原-肾上腺素诱导的肺血栓栓塞进行挑战。结果:细胞外组蛋白通过与唾液酸在TLR1/2或TLR4中的相互作用诱导血小板活化和聚集。此外,我们首次证明了组蛋白诱导内质网应激介导的血小板自噬。QUE抑制组蛋白诱导的血小板活化、聚集和内质网应激介导的自噬。体外实验表明,口服QUE可以保护血小板,同时减轻血小板对组蛋白刺激的反应。此外,槲皮素可提高组蛋白引发的胶原-肾上腺素诱导的急性肺血栓栓塞小鼠的存活率。结论:总之,本研究证明了QUE在保护血小板方面的有益作用,可能对解决组蛋白加速病变具有重要意义。
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来源期刊
Phytomedicine
Phytomedicine 医学-药学
CiteScore
10.30
自引率
5.10%
发文量
670
审稿时长
91 days
期刊介绍: Phytomedicine is a therapy-oriented journal that publishes innovative studies on the efficacy, safety, quality, and mechanisms of action of specified plant extracts, phytopharmaceuticals, and their isolated constituents. This includes clinical, pharmacological, pharmacokinetic, and toxicological studies of herbal medicinal products, preparations, and purified compounds with defined and consistent quality, ensuring reproducible pharmacological activity. Founded in 1994, Phytomedicine aims to focus and stimulate research in this field and establish internationally accepted scientific standards for pharmacological studies, proof of clinical efficacy, and safety of phytomedicines.
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