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乳酸脱氢酶在心室辅助装置溶血特性的体外评估中

Lactic Dehydrogenase in the In Vitro Evaluation of Hemolytic Properties of Ventricular Assist Device.

作者信息

Li Donghai, Wu Qingyu, Liu Shuhong, Chen Yuanyuan, Chen Haosheng, Ruan Yingmao, Zhang Yu

机构信息

School of Medicine, Tsinghua University, Beijing, China.

First Hospital of Tsinghua, Beijing, China.

出版信息

Artif Organs. 2017 Nov;41(11):E274-E284. doi: 10.1111/aor.12943. Epub 2017 Jul 19.

Abstract

Ventricular assist devices (VADs) can effectively improve the survival rate of patients with end-stage heart failure, but the hemolytic complications induced by long-time VAD support have received wide attention recently. The conventional evaluation method of the hemolytic properties of VADs by the indicator of plasma free hemoglobin (PFH) concentration is used but not sensitive enough to meet the needs of the actual examinations. In this study, an experimental method was applied for the evaluation of the injuries and damages caused by VADs to erythrocytes by both indicators of PFH and lactic dehydrogenase (LDH) in the in vitro hemolysis assay of VADs. The changes of LDH and PFH concentrations in plasma with the shear stress and the exposure time under a fixed shear stress were measured and analyzed to investigate the sensitivity and accuracy of the evaluation of erythrocyte damage by LDH. Furthermore, through 24 h in vitro hemolysis tests, the changes of LDH and PFH concentrations in blood samples were measured in combination with the microscopic histological changes and ultrastructural changes of erythrocytes, to assess the possibility of LDH evaluating the hemolysis of VADs. The changes of the concentration of LDH were more sensitive than those of PFH to different shear stress and exposure times, especially lower stress. Meanwhile, in the 24 h in vitro hemolysis assay, the PFH concentration in the blood samples showed no significant changes in the first 8 h, while the LDH concentration increased significantly in the first 3 h, which was consistent with the morphological changes of erythrocytes. Compared with the changes of the PFH concentration, the LDH concentration is sensitive to the damage of erythrocytes caused by VADs. It was considered that LDH could be applied as an additional indicator in the evaluation of erythrocyte damage and hemolytic properties of VADs in combination with the normalized index of hemolysis, for the more accurate assessment of the blood compatibility of VADs.

摘要

心室辅助装置(VADs)能有效提高终末期心力衰竭患者的生存率,但长期VAD支持引起的溶血并发症近来受到广泛关注。目前采用通过血浆游离血红蛋白(PFH)浓度指标来评估VADs溶血特性的传统方法,但该方法不够灵敏,无法满足实际检测需求。本研究在VADs的体外溶血试验中,应用实验方法通过PFH和乳酸脱氢酶(LDH)指标评估VADs对红细胞造成的损伤。测量并分析了在固定剪切应力下血浆中LDH和PFH浓度随剪切应力及暴露时间的变化,以研究LDH评估红细胞损伤的敏感性和准确性。此外,通过24小时体外溶血试验,结合红细胞的微观组织学变化和超微结构变化,测量血样中LDH和PFH浓度的变化,以评估LDH评估VADs溶血的可能性。LDH浓度变化对不同剪切应力和暴露时间,尤其是较低应力,比PFH浓度变化更敏感。同时,在24小时体外溶血试验中,血样中的PFH浓度在最初8小时无显著变化,而LDH浓度在最初3小时显著升高,这与红细胞的形态变化一致。与PFH浓度变化相比,LDH浓度对VADs引起的红细胞损伤更敏感。认为LDH可与溶血标准化指标联合应用于评估VADs的红细胞损伤和溶血特性,以更准确地评估VADs的血液相容性。

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