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几种静脉注射用铁络合物对大鼠的氧化作用。

Oxidative effect of several intravenous iron complexes in the rat.

作者信息

Bailie George R, Schuler Catherine, Leggett Robert E, Li Hsin, Li Hsin-Dat, Patadia Hiten, Levin Robert

机构信息

Department of Pharmacy Practice, Albany College of Pharmacy and Health Sciences, Albany, NY 12208, USA.

出版信息

Biometals. 2013 Jun;26(3):473-8. doi: 10.1007/s10534-013-9632-4. Epub 2013 May 17.

Abstract

The objective of this study was to compare the oxidative stress induced in rat internal organs by the administration of the following clinically used intravenous (IV) iron (Fe) containing compounds: iron sucrose (IS), iron dextran (ID), ferric carboxymaltose and ferumoxytol. Groups of six adult rats received 1 mg/kg of each compound weekly for 5 doses. Seven days following the last dose, animals were euthanized and tissue samples of heart, lung, liver, and kidney were obtained, washed in warmed saline and frozen under liquid nitrogen and stored at -80 °C for analysis for nitrotyrosine (NT) and dinitro phenyl (DNP) as markers of oxidative stress. All tissues showed a similar pattern of oxidative stress. All Fe products stimulated an increase in the tissue concentration of both NT and DNP. In general, DNP was stimulated significantly less than NT except for IS. DNP was stimulated to an equal degree except for ID where NT was significantly higher than the NT concentrations in all other Fe compounds. ID produced over 10-fold the concentration of NT than any other Fe. IV Fe compounds present a risk of oxidative stress to a variety of internal organs. However, we found that IS was the least damaging and ID was the worst.

摘要

本研究的目的是比较以下临床使用的含静脉注射(IV)铁(Fe)化合物对大鼠内脏器官诱导的氧化应激:蔗糖铁(IS)、右旋糖酐铁(ID)、羧基麦芽糖铁和 ferumoxytol。每组六只成年大鼠每周接受 1 mg/kg 的每种化合物,共 5 剂。最后一剂后 7 天,对动物实施安乐死,并获取心脏、肺、肝和肾的组织样本,用温热的盐水冲洗,在液氮下冷冻,并储存在 -80°C 用于分析作为氧化应激标志物的硝基酪氨酸(NT)和二硝基苯基(DNP)。所有组织均呈现出相似的氧化应激模式。所有铁产品均刺激 NT 和 DNP 的组织浓度增加。一般来说,除 IS 外,DNP 的刺激程度明显低于 NT。除 ID 外,DNP 的刺激程度相同,其中 ID 的 NT 浓度明显高于所有其他铁化合物中的 NT 浓度。ID 产生的 NT 浓度比任何其他铁高出 10 倍以上。静脉注射铁化合物对多种内脏器官存在氧化应激风险。然而,我们发现 IS 的损害最小,而 ID 最差。

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