首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Fasting Serum Lipid and Dehydroepiandrosterone Sulfate as Important Metabolites for Detecting Isolated Postchallenge Diabetes: Serum Metabolomics via Ultra-High-Performance LC-MS
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Fasting Serum Lipid and Dehydroepiandrosterone Sulfate as Important Metabolites for Detecting Isolated Postchallenge Diabetes: Serum Metabolomics via Ultra-High-Performance LC-MS

机译:空腹血清脂质和脱氢表雄酮硫酸盐是检测孤立的挑战后糖尿病的重要代谢物:通过超高性能LC-MS的血清代谢组学

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BACKGROUND: Isolated postchallenge diabetes (IPD), a subtype of type 2 diabetes mellitus (T2DM) defined as 2-h postprandial plasma glucose ≥200 mg/dL (≥11.1 mmol/L) and fasting plasma glucose (FPG) 108 mg/dL (6.0 mmol/L), is often overlooked during screening for diabetes on the basis of FPG concentrations. A key challenge is early identification of IPD by the use of fasting serum, which is critical for large-scale diabetes screening.METHODS: We applied a nontargeted metabolomic approach using ultra-high-performance liquid chromatography–quadrupole TOF–mass spectrometry (UPLC-QTOF-MS) to analyze serum samples from 51 patients with IPD, 52 with newly diagnosed T2DM, and 49 healthy individuals. We processed metabolite profiles by multivariate analysis to identify potential metabolites, which were further confirmed by tandem MS (MS/MS). We also used GC-MS and ELISA methods to detect potentially important metabolites. A number of independent samples were selected to validate the identified candidates.RESULTS: We selected 15 metabolites with a view to distinguishing patients with IPD, whereas 11 were identified with an authentic standard. The selected metabolites included linoleic acid, oleic acid, phospholipids, and dehydroepiandrosterone sulfate (DHEA-S). In IPD samples, significantly higher linoleic and oleic acid ( P 0.001) and lower DHEA-S ( P 0.001) concentrations were observed, compared with controls. The area under the curve from a combination of linoleic acid, oleic acid, and DHEA-S in the validation study was 0.849 for the IPD group.CONCLUSIONS: The current study provides useful information to bridge the gaps in our understanding of the metabolic alterations associated with IPD and might facilitate the characterization of patients with IPD by the use of fasting serum.
机译:背景:孤立的挑战后糖尿病(IPD)是2型糖尿病(T2DM)的一种亚型,定义为餐后2小时血糖≥200 mg / dL(≥11.1mmol / L)和空腹血糖(FPG)<108 mg / dL(<6.0 mmol / L)通常在以FPG浓度为基础的糖尿病筛查中被忽略。一个关键的挑战是通过空腹血清早期识别IPD,这对于大规模糖尿病筛查至关重要。方法:我们采用了超高效液相色谱-四极杆TOF-质谱法(UPLC- QTOF-MS)分析51位IPD患者,52位新诊断的T2DM患者和49位健康个体的血清样本。我们通过多变量分析处理了代谢物图谱,以鉴定潜在的代谢物,串联MS(MS / MS)进一步证实了这种可能性。我们还使用GC-MS和ELISA方法检测潜在的重要代谢产物。结果:我们选择了15种代谢物以区分IPD患者,而有11种被鉴定为真实标准品。选择的代谢物包括亚油酸,油酸,磷脂和脱氢表雄酮硫酸盐(DHEA-S)。与对照相比,在IPD样品中,观察到明显较高的亚油酸和油酸(P <0.001)和较低的DHEA-S(P <0.001)浓度。在IPD组的验证研究中,亚油酸,油酸和DHEA-S的组合曲线下面积为0.849。结论:当前研究为弥合我们对相关代谢改变的理解提供了有用的信息与IPD结合使用,并可能通过使用禁食血清促进IPD患者的表征。

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