在 Hb A1c 毛细管电泳中推定识别具有临床意义的血红蛋白变异体 Hb E、Hb S 和 Hb D。

IF 1.8 Q3 MEDICAL LABORATORY TECHNOLOGY Journal of Applied Laboratory Medicine Pub Date : 2024-10-04 DOI:10.1093/jalm/jfae102
Ankitha K Puthiyaveettil, Glen S Vaz, Sujay R Prasad, Deepalakshmi D Putchen
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引用次数: 0

摘要

背景:糖化血红蛋白(Hb A1c糖化血红蛋白(Hb A1c)的定量代表 2 至 3 个月的平均血糖水平,用于诊断、监测和管理糖尿病。如果样本中存在血红蛋白(Hb)变异体,则报告的结果不可靠。由于变异血红蛋白的存在,建议患者使用另一种方法,并对血红蛋白电泳进行反射测试,以获得有关变异血红蛋白的准确信息。本研究利用 Hb A1c 毛细管电泳(CE)的 x 轴值来识别具有临床意义的 Hb 变异型 Hb E、S 和 D:研究选取在 Hb A1c 检测中出现变异峰且 x 轴值在 190 至 240 之间的患者样本(n = 60)。将血红蛋白变异体的迁移位置(x 轴值)和血红蛋白 A1c 检测的变异体百分比与血红蛋白电泳检测的 x 轴值和变异体百分比进行比较,以推定变异体。变异体的身份使用质谱法(MS)进行确认:在 60 个样本中,20 个样本被鉴定为 Hb E(x 轴 225-227),20 个样本被鉴定为 Hb S(x 轴 210-214),18 个样本被鉴定为 Hb D-Punjab(x 轴 200-201)。两个 x 轴值为 194 的变异体被 MS 鉴定为 α 变异体 Hb Q India。与血红蛋白电泳相比,Hb A1c CE 的 x 轴总体呈负向移动(-1 至-13 个单位),变异率较低(-0.2% 至-8.7%):本研究强调了在血红蛋白 A1c CE 检测中,X 轴值和变异百分率对识别具有临床意义的血红蛋白变异具有重要意义。
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Presumptive Identification of Clinically Significant Hemoglobin Variants Hb E, Hb S, Hb D in Hb A1c Capillary Electrophoresis.

Background: The quantitation of glycated hemoglobin (Hb A1c) represents an average blood glucose level for a period of 2 to 3 months for diagnosing, monitoring, and managing diabetes mellitus. Unreliable results are reported when hemoglobin (Hb) variants are present in the sample. Patients are advised to use an alternate method due to the presence of the variant Hb and a reflex test to Hb electrophoresis to obtain precise information about the Hb variant. The present study utilizes x axis values from Hb A1c capillary electrophoresis (CE) to identify clinically significant Hb variants Hb E, S, and D.

Methods: Patient samples (n = 60) that showed a variant peak in the Hb A1c test with an x axis value of 190 to 240 were selected for the study. The migration position of the Hb variant (x axis value) and variant percent of the Hb A1c test were compared with the x axis value and variant percent in the Hb electrophoresis test to presumptively identify the variants. The identity of the variants was confirmed using mass spectrometry (MS).

Results: Out of 60 samples, 20 samples were identified as Hb E (x axis 225-227), 20 samples were identified as Hb S (x axis 210-214), and 18 samples were identified as Hb D-Punjab (x axis 200-201). Two variants with an x axis value of 194 were identified as an α variant Hb Q India using MS. There is an overall negative shift of the x axis (-1 to -13 units) and a lower variant percent (-0.2% to -8.7%) in Hb A1c CE when compared with Hb electrophoresis.

Conclusions: The present study highlights the significance of the x axis value and variant percent to identify clinically significant Hb variants in the Hb A1c CE test.

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来源期刊
Journal of Applied Laboratory Medicine
Journal of Applied Laboratory Medicine MEDICAL LABORATORY TECHNOLOGY-
CiteScore
3.70
自引率
5.00%
发文量
137
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