尼日利亚乔斯联邦医学检验技术学院延迟分离血浆和血清样品对表面健康学生血糖参数的影响

U. Abara, ImohEtim Ibanga, Lucy Larrycarr Nwapi, Matina Imaobong Ekpo, Hilary Andrew Akpan, Obinna Nkechi, John Okon Mkpani, Nduese Innocent Joseph, Nanle Ibrahim Konglam, Brendan Chukwueke Nkwocha, Manji Bala Dalen
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引用次数: 0

摘要

背景:血糖测定在糖尿病、高血糖和低血糖的临床诊断中具有重要意义。提供准确、精密、可靠的检验结果是临床检验服务的核心目标。实验室做到这一点的能力取决于是否有训练有素的人员、设备和电力等。尼日利亚的糖尿病患病率逐渐增加,预计负担将进一步增加,适当诊断的必要性再怎么强调也不为过。目的:在本研究中,我们试图评估延迟分离血浆和血清细胞和凝块对血糖水平的影响。方法:随机抽取乔斯联邦医学检验技术(科学)学院表面健康的学生50人作为研究对象。每人采集血样,分别装入血清和血浆抗凝瓶。在10分钟内分析一个等值,以获得一个基线值,在此基线值与及时延迟后的其他值进行比较。在整个分析过程中,样品被旋转,但没有与细胞/凝块分离。血糖测定采用英国Randox实验室有限公司的葡萄糖氧化酶比色测定试剂盒。数据分析采用学生t检验,并使用社会科学统计软件包(SPSS) 20.0版本进行。结果:所得结果显示了血浆和血清各时间点的平均值和标准差。血浆中2、4和24小时(分别为5.2±0.7、5.1±0.4和5.3±0.5)的平均±SD与基线(0小时)值(5.3±0.5)相比无显著变化。基线和24小时(分别为5.3±0.5和5.3±0.5)明显高于48和74小时(分别为1.0±0.20和7±0.2)(P<0.001)。在血清中,得到了类似的结果。结论:总之,在可能的情况下,建议在处理和分析样品时遵循既定的最佳做法。然而,本工作的结果表明,在24小时内可以获得相当稳定的血糖测定结果。因此,与其丢弃样品,还不如对样品进行分析,并报告结果,表明在24小时内延迟的小时数。
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The Impact of Delayed Separation of Plasma and Serum Sample on Glucose Parameter of Apparently Healthy Students of Federal School of Medical Laboratory Technology (Science), Jos, Nigeria
Background: Estimation of glucose is very important in clinical diagnosis of diabetes mellitus, hyperglycemia and hypoglycemia. The core aim of clinical laboratory service is to produce accurate, precise and reliable test results. The ability of laboratories to do this lies in the availability of well trained personnel, equipment, electricity etc. There has been a progressive increase in the prevalence of diabetes mellitus in Nigeria and the burden is expected to increase even further and the need for proper diagnosis cannot be overemphasized. Aim: In this study we have tried to evaluate the impact of delayed separation of plasma and serum from cells and clot on glucose level. Method: A total of fifty (50) randomly selected apparently healthy students of Federal School of Medical Laboratory Technology (Science), Jos were recruited as subject into this study. Blood samples were collected from each of the subjects into plain and anticoagulant bottles for serum and plasma respectively. An aliquot was analyzed within 10 minutes to obtain a baseline value where other values after timely delays were compared. The samples were spun but not separated from the cells/clot all through the period of the analysis. Blood glucose was determined by glucose Oxidase Colourimetric assay kit obtained from Randox Laboratories Limited United Kingdom. Data were analyzed using student’s t-test and performed using the Statistical Package for Social Sciences (SPSS) version 20.0. Results: Result obtained shows the mean and standard deviation of all timing for plasma and serum. In plasma it shows that the means±SD of 2, 4 and 24hours (5.2±0.7, 5.1±0.4 and 5.3±0.5 respectively) were not significantly varied when compared to the baseline (0 hour) value (5.3±0.5). That of baseline and 24 hours (5.3±0.5 and5.3±0.5 respectively) were significantly higher (P<0.001) than that of 48 and 74 hours (1.0±0.20 and 7±0.2 respectively). In serum, similar results were obtained. Conclusion: In conclusion, where possible, it is advised that the established best practices in processing and analysis of samples be adhered to. However, the results of this work shows reasonably stable results for blood glucose determination could be obtained within 24 hours. Therefore, instead of discarding the sample, it might seem more appropriate that the sample be analyzed and the result reported indicating the number of hours delayed within 24hours.
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