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氧化还原代谢与慢性肾脏病血管钙化。

Redox Metabolism and Vascular Calcification in Chronic Kidney Disease.

机构信息

Bone and Mineral Research Unit, Instituto de Investigación Sanitaria del Principado de Asturias (ISPA), Hospital Universitario Central de Asturias, 33011 Oviedo, Spain.

Redes de Investigación Cooperativa Orientadas a Resultados en Salud (RICORS), RICORS2040 (Kidney Disease), 28029 Madrid, Spain.

出版信息

Biomolecules. 2023 Sep 20;13(9):1419. doi: 10.3390/biom13091419.


DOI:10.3390/biom13091419
PMID:37759819
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10526886/
Abstract

Vascular calcification (VC) is a common complication in patients with chronic kidney disease which increases their mortality. Although oxidative stress is involved in the onset and progression of this disorder, the specific role of some of the main redox regulators, such as catalase, the main scavenger of HO, remains unclear. In the present study, epigastric arteries of kidney transplant recipients, a rat model of VC, and an in vitro model of VC exhibiting catalase (Cts) overexpression were analysed. Pericalcified areas of human epigastric arteries had increased levels of catalase and cytoplasmic, rather than nuclear runt-related transcription factor 2 (RUNX2). In the rat model, advanced aortic VC concurred with lower levels of the HO-scavenger glutathione peroxidase 3 compared to controls. In an early model of calcification using vascular smooth muscle cells (VSMCs), Cts VSMCs showed the expected increase in total levels of RUNX2. However, Cts VMSCs also exhibited a lower percentage of the nucleus stained for RUNX2 in response to calcifying media. In this early model of VC, we did not observe a dysregulation of the mitochondrial redox state; instead, an increase in the general redox state was observed in the cytoplasm. These results highlight the complex role of antioxidant enzymes as catalase by regulation of RUNX2 subcellular location delaying the onset of VC.

摘要

血管钙化 (VC) 是慢性肾脏病患者的常见并发症,增加了他们的死亡率。虽然氧化应激参与了这种疾病的发生和进展,但一些主要氧化还原调节剂的具体作用,如过氧化氢酶,HO 的主要清除剂,仍然不清楚。在本研究中,分析了肾移植受者的上腹部动脉、VC 的大鼠模型和表现出过氧化氢酶 (Cts) 过表达的 VC 的体外模型。人类上腹部动脉的钙化区域中过氧化氢酶和细胞质(而非核) runt 相关转录因子 2 (RUNX2) 水平升高。在与对照组相比,主动脉高级 VC 时,HO 清除剂谷胱甘肽过氧化物酶 3 的水平较低。在使用血管平滑肌细胞 (VSMCs) 的早期钙化模型中,Cts VSMCs 表现出预期的总 RUNX2 水平增加。然而,Cts VMSCs 对钙化培养基的反应中,细胞核中 RUNX2 染色的百分比也较低。在这个 VC 的早期模型中,我们没有观察到线粒体氧化还原状态的失调;相反,在细胞质中观察到总体氧化还原状态的增加。这些结果强调了抗氧化酶如过氧化氢酶通过调节 RUNX2 亚细胞位置在延迟 VC 发生中的复杂作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/923dc45669b4/biomolecules-13-01419-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/c24e47f9a024/biomolecules-13-01419-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/c3fd2999c709/biomolecules-13-01419-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/ce4c29f329b6/biomolecules-13-01419-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/923dc45669b4/biomolecules-13-01419-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/c24e47f9a024/biomolecules-13-01419-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/c3fd2999c709/biomolecules-13-01419-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/ce4c29f329b6/biomolecules-13-01419-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5366/10526886/923dc45669b4/biomolecules-13-01419-g004.jpg

相似文献

[1]
Redox Metabolism and Vascular Calcification in Chronic Kidney Disease.

Biomolecules. 2023-9-20

[2]
Oxidative stress contributes to vascular calcification in patients with chronic kidney disease.

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[3]
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[4]
SIRT6 protects vascular smooth muscle cells from osteogenic transdifferentiation via Runx2 in chronic kidney disease.

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[5]
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[6]
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[7]
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[8]
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[9]
Upregulated LncRNA H19 Sponges MiR-106a-5p and Contributes to Aldosterone-Induced Vascular Calcification via Activating the Runx2-Dependent Pathway.

Arterioscler Thromb Vasc Biol. 2023-9

[10]
Long non-coding RNA MALAT1 sponges miR-30c to promote the calcification of human vascular smooth muscle cells by regulating Runx2.

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引用本文的文献

[1]
Calciprotein particle-activated endothelial cells aggravate smooth muscle cell calcification via paracrine signalling.

Cell Mol Life Sci. 2025-4-26

[2]
The Clinical Utility and Plausibility of Oxidative and Antioxidant Variables in Chronic and End-Stage Kidney Disease: A Review of the Literature.

Int J Mol Sci. 2025-4-4

[3]
Redox Imbalance and Mitochondrial Abnormalities in Kidney Disease-Volume II.

Biomolecules. 2024-8-9

本文引用的文献

[1]
Human Vascular Smooth Muscle Function and Oxidative Stress Induced by NADPH Oxidase with the Clinical Implications.

Cells. 2021-7-31

[2]
Influence of oxidative stress on vascular calcification in the setting of coexisting chronic kidney disease and diabetes mellitus.

Sci Rep. 2020-11-26

[3]
Regulation of Vascular Calcification by Reactive Oxygen Species.

Antioxidants (Basel). 2020-10-8

[4]
Targeting Vascular Calcification in Chronic Kidney Disease.

JACC Basic Transl Sci. 2020-4-27

[5]
Reactive oxygen species (ROS) as pleiotropic physiological signalling agents.

Nat Rev Mol Cell Biol. 2020-3-30

[6]
Oxidative stress contributes to vascular calcification in patients with chronic kidney disease.

J Mol Cell Cardiol. 2020-1

[7]
Nox, Reactive Oxygen Species and Regulation of Vascular Cell Fate.

Antioxidants (Basel). 2017-11-14

[8]
Contemporary Approaches to Modulating the Nitric Oxide-cGMP Pathway in Cardiovascular Disease.

Circ Res. 2017-3-31

[9]
Redox signaling in cardiovascular pathophysiology: A focus on hydrogen peroxide and vascular smooth muscle cells.

Redox Biol. 2016-10

[10]
Lamin A is involved in the development of vascular calcification induced by chronic kidney failure and phosphorus load.

Bone. 2016-3

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