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脑脊液分析的现代方法:病理生理学、临床应用、概念验证及实验室报告

A modern approach to CSF analysis: pathophysiology, clinical application, proof of concept and laboratory reporting.

作者信息

Regeniter Axel, Kuhle Jens, Mehling Matthias, Möller Helgard, Wurster Ulrich, Freidank Heike, Siede Werner H

机构信息

University Hospital Basel, Laboratory Medicine, Petersgraben 4, CH 4031 Basel, Switzerland.

出版信息

Clin Neurol Neurosurg. 2009 May;111(4):313-8. doi: 10.1016/j.clineuro.2008.12.004. Epub 2009 Jan 30.

Abstract

The CNS immune response often leads to characteristic interrelated biochemical changes in cerebrospinal fluid. Multiple analytes, i.e. cell count, cell differential, evaluation of barrier function and intrathecal IgG, IgA and IgM synthesis should be included in basic diagnostic workup. We describe the scientific background, laboratory investigations and characteristic patterns found with basic CSF analysis, based on the recommendations of the German cerebrospinal fluid society. The concept is substantiated by retrospectively analyzing data of 4026 paired CSF/serum samples. 53% of our samples presented with at least one or several combined abnormal findings. An intrathecal IgG, IgA or IgM immunoglobulin response (37%, n=1481) and a blood-CSF barrier dysfunction (37%; n=1473) were most frequent; followed by an elevated leukocyte cell count (25%; n=992). The immunoglobulin response showed an intrathecal production of IgG in 49% (n=731/1481), which was only detectable in isoelectric focusing in 27% (n=200/731). Intrathecal IgM (n=389) and IgA (n=361) synthesis presented with nearly equal frequency of 25% in samples with intrathecal immunoglobulin response. The immunoglobulin pattern showed a solitary one class reaction of IgG, IgA or IgM in 67%, a combined two class reaction of IgG/IgA, IgG/IgM or IgA/IgM synthesis in 16% and a combined three-class reaction of IgG, IgA and IgM in 17%. This approach generates valuable but numerous complex and interrelated biochemical data. We therefore developed a knowledge-based system combined with visual oriented laboratory output to transfer the information more effectively. This often uncovers typical patterns specific for distinct neurological diseases, is well accepted by our medical community documented by a 37% increase in external ordering.

摘要

中枢神经系统免疫反应常常导致脑脊液中出现典型的、相互关联的生化变化。基础诊断检查应包括多种分析物,即细胞计数、细胞分类、屏障功能评估以及鞘内IgG、IgA和IgM合成情况。基于德国脑脊液协会的建议,我们描述了基础脑脊液分析的科学背景、实验室检查以及所发现的特征模式。通过对4026对脑脊液/血清样本数据进行回顾性分析,证实了这一概念。我们的样本中有53%至少呈现出一项或几项合并的异常结果。鞘内IgG、IgA或IgM免疫球蛋白反应(37%,n = 1481)和血脑屏障功能障碍(37%;n = 1473)最为常见;其次是白细胞计数升高(25%;n = 992)。免疫球蛋白反应显示,49%(n = 731/1481)的样本存在鞘内IgG产生,其中只有27%(n = 200/731)在等电聚焦中可检测到。在有鞘内免疫球蛋白反应的样本中,鞘内IgM(n = 389)和IgA(n = 361)合成的出现频率几乎相等,均为25%。免疫球蛋白模式显示,67%的样本呈现IgG、IgA或IgM单一类别反应,16%的样本呈现IgG/IgA、IgG/IgM或IgA/IgM合成的合并两类反应,17%的样本呈现IgG、IgA和IgM的合并三类反应。这种方法产生了有价值但数量众多、复杂且相互关联的生化数据。因此,我们开发了一个基于知识的系统,并结合直观的实验室输出,以便更有效地传递信息。这常常能揭示特定神经疾病的典型模式,受到我们医学界的广泛认可,外部订单增加了37%就是证明。

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