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通过氢核磁共振波谱对储存期间的红细胞进行生化评估。鉴定其抗氧化应激保护水平的生物标志物。

Biochemical assessment of red blood cells during storage by (1)H nuclear magnetic resonance spectroscopy. Identification of a biomarker of their level of protection against oxidative stress.

作者信息

Pertinhez Thelma A, Casali Emanuela, Lindner Luisa, Spisni Alberto, Baricchi Roberto, Berni Pamela

机构信息

CIM Laboratory, Technopole Parma, University of Parma, Parma, Italy.

Department of Biomedical, Biotechnological and Translational Sciences (S.Bi.Bi.T.), University of Parma, Parma, Italy.

出版信息

Blood Transfus. 2014 Oct;12(4):548-56. doi: 10.2450/2014.0305-13. Epub 2014 Jun 5.

Abstract

BACKGROUND

Blood transfusion is an established therapeutic practice. The characteristics of blood components at different storage times are expected to affect the efficacy of transfusion therapy. Metabolic profiling by nuclear magnetic resonance (NMR) spectroscopy requires little or no sample treatment and allows identification of more than 50 soluble metabolites in a single experiment. The aim of this study was to assess the metabolic behaviour of red blood cells during 42 days of storage in blood bank conditions.

MATERIALS AND METHODS

Red blood cells (RBC), collected from eight healthy male donors, aged 25-50 years, were prepared as prestorage leukoreduced erythrocyte concentrates and stored under standard blood bank conditions. Samples taken at various storage times were separated in two fractions: the supernatant, recovered after centrifugation, and the red blood cell lysate obtained after protein depletion by ultrafiltration. The metabolic profile of the red blood cells was determined from analysis of (1)H-NMR spectra.

RESULTS

The red blood cell supernatant was studied to track the consumption of the preservative additives and to detect and quantify up to 30 metabolites excreted by the erythrocytes. The NMR spectra of the RBC lysate provided complementary information on some biochemical pathways and set the basis for building a time-dependent red blood cell metabolic profile.

DISCUSSION

We proved the analytical power of (1)H-NMR spectroscopy to study red blood cell metabolism under blood bank conditions. A potential biomarker able to provide information on the level of cellular oxidative stress protection was identified. Our data support the hypothesis that a more detailed knowledge of metabolic modifications during storage opens the way to the development of new and more effective protocols for red blood cell conservation and patient-oriented transfusion therapy.

摘要

背景

输血是一种既定的治疗方法。不同储存时间的血液成分特征预计会影响输血治疗的效果。通过核磁共振(NMR)光谱进行代谢谱分析几乎不需要或无需样品处理,并且在一次实验中能够鉴定出50多种可溶性代谢物。本研究的目的是评估红细胞在血库条件下储存42天期间的代谢行为。

材料与方法

从8名年龄在25 - 50岁的健康男性供体采集红细胞(RBC),制备为储存前白细胞滤除的红细胞浓缩液,并在标准血库条件下储存。在不同储存时间采集的样品分为两部分:离心后回收的上清液,以及通过超滤去除蛋白质后获得的红细胞裂解物。通过分析¹H-NMR光谱确定红细胞的代谢谱。

结果

对红细胞上清液进行研究以追踪防腐剂添加剂的消耗情况,并检测和定量红细胞分泌的多达30种代谢物。红细胞裂解物的NMR光谱提供了关于某些生化途径的补充信息,并为建立随时间变化的红细胞代谢谱奠定了基础。

讨论

我们证明了¹H-NMR光谱在研究血库条件下红细胞代谢方面的分析能力。鉴定出一种能够提供细胞氧化应激保护水平信息的潜在生物标志物。我们的数据支持这样一种假设,即对储存期间代谢变化有更详细的了解为开发新的、更有效的红细胞保存方案和以患者为导向的输血治疗开辟了道路。

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