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Diabetes and mass spectrometry.

机译:糖尿病和质谱。

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Mass spectrometry (MS) has been successfully employed to investigate non-enzymatic protein glycation, a process relevant in diabetic disease. The high sensitivity and specificity of this technique allowed the development of methods that can individuate and evaluate some glycation markers to be validly employed in monitoring diabetes. More recent mass spectrometric techniques, such as the matrix-assisted laser desorption/ionization (MALDI), are able to determine the molecular weight of intact proteins. They were first employed in studying the in vitro reaction between hexoses and different proteins. Once the validity of the results obtained by this analytical approach was confirmed, a series of investigations on plasma proteins were undertaken in healthy and diabetic subjects. The method led to the evaluation of the number of glucose molecules condensed on the protein being studied, and consequently can be validly used for an accurate follow-up of metabolic control in diabetic patients. When applied to studies on haemoglobin glycation, the method showed that both alpha- and beta-globins are glycated to a similar extent and that the simply glycated molecules are accompanied by glyco-oxidized species therefore giving information on the oxidative stress experimented on in the subject. Furthermore, in the case of immunoglobulins, MALDI/MS was able to determine not only the total glycation level of IgG, but also to establish that the fragment antigen binding (Fab) moiety is the most glycated one, thus suggesting that the possible immunological impairment sometimes invoked in diabetes is related to the inhibition of the process of molecular recognition between antibody and antigen.
机译:质谱(MS)已成功用于研究非酶蛋白糖基化,这是与糖尿病疾病相关的过程。该技术的高灵敏度和特异性允许开发可以区分和评估某些糖基化标志物的方法,以有效地用于监测糖尿病。最近的质谱技术,例如基质辅助激光解吸/电离(MALDI),能够确定完整蛋白质的分子量。他们首先被用于研究己糖和不同蛋白质之间的体外反应。一旦确认了通过这种分析方法获得的结果的有效性,便在健康和糖尿病患者中进行了一系列血浆蛋白研究。该方法可以评估正在研究的蛋白质上浓缩的葡萄糖分子的数量,因此可以有效地用于糖尿病患者代谢控制的准确随访。当用于血红蛋白糖基化研究时,该方法表明α-和β-球蛋白都被糖化到相似的程度,并且简单糖化的分子伴随着糖氧化的物质,因此提供了受试者体内实验的氧化应激的信息。 。此外,就免疫球蛋白而言,MALDI / MS不仅能够确定IgG的总糖基化水平,而且能够确定片段抗原结合(Fab)部分糖基化程度最高,从而表明可能存在免疫学损伤在糖尿病中有时被引用与抑制抗体和抗原之间的分子识别过程有关。

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