铜蓝蛋白特异性酶活性作为铜状态的潜在指标

K. Upadhyay, Ankit Viramgami
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引用次数: 0

摘要

血清铜(Cu)和铜蓝蛋白(Cp)浓度是铜代谢的常见血液标志物。在生理条件改变时,Cp可作为急性相反应物,其浓度可升高。评价血清铜水平与血清铜水平的相关性。根据NIOSH方法估计血清铜水平。按标准方法从酶活性和免疫浓度两方面测定Cp的特异性酶活性。采用SPSS软件包进行统计分析。临床组与对照组Cp平均比酶活性差异有统计学意义。对照组血清Cu水平与血清Cp特异性酶活性的相关性为中等,与临床组(r=0.338, p=0.016, N=50)相比有统计学意义(r=0.566, p=0.014, N=18)。研究发现,临床组与对照组相比,Cp的特异酶活性有显著差异。此外,Cp比酶活性在对照组中与血清Cu水平有中度但显著的相关性,而在临床人群中没有确凿的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specific Enzymatic Activity of Ceruloplasmin as a Potential Indicator of Copper Status
The serum copper (Cu) and ceruloplasmin (Cp) concentrations are common blood markers of copper metabolism. In altered physiological conditions, Cp can act as an acute phase reactant and its concentration may increase.To evaluate specific enzymatic activity of Cp as a potential indicator of Cu status and its correlation with serum Cu level.Serum Cu levels were estimated as per NIOSH method. Specific enzymatic activity of Cp was determined from enzymatic activity and immune concentration of Cp as per standard methods. The statistical analysis was carried out using the package of social science (SPSS) software.The difference in mean specific enzymatic activity of Cp was statistically significant between clinical and control groups. In control population, the correlation between serum Cu level and specific enzymatic activity of Cp was moderate and statistically significant (r=0.566, p=0.014, N=18) as compared to the clinical group (r=0.338, p=0.016, N=50).The study revealed that clinical group was significantly different in specific enzymatic activity of Cp as compared to control group. Besides this, the specific enzymatic activity of Cp was moderately but significantly correlated with serum Cu level in control group but did not reveal conclusive evidence in clinical population.
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来源期刊
Current Chemical Biology
Current Chemical Biology Medicine-Biochemistry (medical)
CiteScore
1.40
自引率
0.00%
发文量
16
期刊介绍: Current Chemical Biology aims to publish full-length and mini reviews on exciting new developments at the chemistry-biology interface, covering topics relating to Chemical Synthesis, Science at Chemistry-Biology Interface and Chemical Mechanisms of Biological Systems. Current Chemical Biology covers the following areas: Chemical Synthesis (Syntheses of biologically important macromolecules including proteins, polypeptides, oligonucleotides, oligosaccharides etc.; Asymmetric synthesis; Combinatorial synthesis; Diversity-oriented synthesis; Template-directed synthesis; Biomimetic synthesis; Solid phase biomolecular synthesis; Synthesis of small biomolecules: amino acids, peptides, lipids, carbohydrates and nucleosides; and Natural product synthesis).
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