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首页> 外文期刊>BioMed research international >Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
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Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters

机译:与慢性心力衰竭患者中循环刺激素相关的肌释嗪酶相关的氯化活性:与神经异常,炎症和营养参数的关系

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摘要

Rationale. Heart failure (HF) is accompanied by the development of an imbalance between oxygen- and nitric oxide-derived free radical production leading to protein nitration. Both chlorinating and peroxidase cycle of Myeloperoxidase (MPO) contribute to oxidative and nitrosative stress and are involved in tyrosine nitration of protein. Ceruloplasmin (Cp) has antioxidant function through its ferroxidase I (FeO_xI) activity and has recently been proposed as a physiological defense mechanism against MPO inappropriate actions. Objective. We investigated the relationship between plasma MPO-related chlorinating activity, Cp and FeO_xI, and nitrosative stress, inflammatory, neurohormonal, and nutritional biomarkers in HF patients. Methods and Results. In chronic HF patients (n = 81, 76 ± 9 years, NYHA Class II (26); Class III (29); Class IV (26)) and age-matched controls (n = 17, 75 ± 11 years, CTR), plasma MPO chlorinating activity, Cp, FeO_xI, nitrated protein, free Malondialdehyde, BNP, norepinephrine, hsCRP, albumin, and prealbumin were measured. Plasma MPO chlorinating activity, Cp, BNP, norepinephrine, and hsCRP were increased in HF. versus CTR. FeO_xI, albumin, and prealbumin were decreased in HF. MPO-related chlorinating activity was positively related to Cp (r = 0.363, P < 0.001), nitrated protein, hsCRP, and BNP and inversely to albumin. Conclusions. Plasma MPO chlorinated activity is increased in elderly chronic HF patients and positively associated with Cp, inflammatory, neurohormonal, and nitrosative parameters suggesting a role in HF progression.
机译:理由。心力衰竭(HF)伴随着开发氧和一氧化氮衍生自由基产生的不平衡,导致蛋白质硝化。髓过氧化物酶(MPO)的氯化和过氧化物酶循环均有助于氧化和亚硝酸盐应激,并参与酪氨酸硝化蛋白质。刺激素(CP)通过其铁氧化酶I(FeO_xi)活性具有抗氧化功能,并且最近已被提议作为针对MPO不恰当行动的生理防御机制。客观的。我们调查了血浆MPO相关的氯化活性,CP和Feo_xi和亚硝酸盐应激,炎症,神经外性和营养生物标志物之间的关系。方法和结果。在慢性HF患者中(n = 81,76±9年,Nyha II级(26); III类(29); IV类(26))和年龄匹配的对照(n = 17,75±11年,CTR) ,测定了等离子体MPO氯化活性,CP,FeO_xi,硝化蛋白质,游离丙二醛,BNP,去甲肾上腺素,HSCRP,白蛋白和预白蛋白。血浆MPO氯化活性,CP,BNP,去甲肾上腺素和HSCRP在HF中增加。与ctr。 Feo_xi,白蛋白和普利白蛋白在HF中降低。 MPO相关的氯化活性与Cp(r = 0.363,p <0.001),硝化蛋白,hSCRP和BNP呈正相关,并与白蛋白相反。结论。血浆MPO氯化活性在老年慢性HF患者中增加,与CP,炎症,神经外性和亚硝化参数呈正相关,表明HF进展中的作用。

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