红细胞分布宽度(RDW)和新蝶呤作为诊断/预后生物标志物在临床实践中同时应用的医学意义

IF 0.5 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
E. Zvetkova, D. Fuchs
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引用次数: 8

摘要

摘要在我们的个人和合作研究中,我们参与了对生物标志物——红细胞分布宽度(RDW)和新蝶呤——有用性的开创性研究。这篇小型综述包括有关该主题的历史数据,与该领域的首次贡献有关,也与RDW和新蝶呤测量在预防中的进一步改进和同时应用的可能性有关,许多社会重要疾病(动脉、心血管、脑血管、外周动脉疾病、炎症、自身免疫状态、癌症和白血病、成瘾等)的预后和治疗。当将免疫生化生物标志物新蝶呤与RDW的结果进行比较时,据报道,它们作为人体相同病理状态的独立预测因子非常相似,尽管它们的生物医学起源非常不同。到目前为止,这两个参数都是成功的,但只是在医学实践中单独使用。这两种生物标志物的联合使用可以进一步阐明它们的相互关系,并为免疫系统激活和红细胞生物学之间的相互作用如何交织提供一些线索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Medical significance of simultaneous application of red blood cell distribution width (RDW) and neopterin as diagnostic/prognostic biomarkers in clinical practice
Abstract In our individual and collaborative studies, we have played a part in pioneering investigations on the usefulness of biomarkers – red blood cell distribution width (RDW) and neopterin. This mini review includes historical data on the topic and is related to the first contributions in this field, as well as to the possibilities for further improvement and simultaneous application of RDW and neopterin measurements in the prevention, prognosis and treatment of a great number of socially important disease conditions (arterial, cardiovascular, brain vascular, peripheral artery diseases, inflammations, autoimmune states, cancers and leukemias, addictions, etc.). When comparing the results obtained with the immunobiochemical biomarker neopterin with RDW, they are reported to be very similar as independent predictors of the same pathological states in the human body although their biomedical origins are very different. Both the parameters were until now successfully, but only separately used in medical practice. The combined use of these two biomarkers can shed some more light on their interrelationships and provide some clues as to how the interaction between immune system activation and red blood cells biology are intertwined.
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来源期刊
Pteridines
Pteridines 生物-生化与分子生物学
CiteScore
1.20
自引率
25.00%
发文量
6
审稿时长
>12 weeks
期刊介绍: Pteridines is an open acess international quarterly journal dealing with all aspects of pteridine research. Pteridines are heterocyclic fused ring compounds involved in a wide range of biological functions from the color on butterfly wings to cofactors in enzyme catalysis to essential vitamins. Of the pteridines, 5,6,7,8-tetrahydrobiopterin is the necessary cofactor of several aromatic amino acid monoxygenases, the nitric oxide synthases and glyceryl ether monoxygenase (GEMO). Neopterin plays an essential role in the immune system and is an important biomarker in laboratory medicine for diseases such as HIV, cardiovascular disease, malignant tumors, among others. Topics: -Neopterin, dihydroneopterin, monapterin- Biopterin, tetrahydrobiopterin- Folates, antifolates, riboflavin- Phenylalanine, tyrosine, phenylketonuria, serotonin, adrenalin, noradrenalin, L-DOPA, dopamine, related biogenic amines- Phenylalanine hydroxylase, tyrosine hydroxylase, tryptophan hydroxylase, nitric oxide synthases (iNOS), alkylglycerol monooxygenase (AGMO), dihydropterin reductase, sepiapterin reductase- Homocysteine, mediators of inflammation, redox systems, iron.
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