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首页> 外文期刊>Journal of mass spectrometry: JMS >HPLC-electrospray ionization-mass spectrometry optimization by high-performance design of experiments for astrocyte glutamine measurement
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HPLC-electrospray ionization-mass spectrometry optimization by high-performance design of experiments for astrocyte glutamine measurement

机译:HPLC-Electrospray电离质谱通过高性能设计的星形胶质细胞谷氨酰胺测量实验的优化

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摘要

The amino acid glutamine (Gln) is a likely source of energy in the brain during neuroglucopenia. Effects of glucose deficiency on astrocyte Gln homeostasis remain unclear, as analytical tools of requisite sensitivity for quantification of intracellular levels of this molecule are not currently available. Here, a primary hypothalamic astrocyte culture model was used in conjunction with design of experiments (DOE)-refined high-performance liquid chromatography-electrospray ionization-mass spectrometry (LC-ESI-MS) methodology to investigate the hypothesis that glucoprivation alters astrocyte Gln content in a sex-specific manner. Critical mass spectrometric parameters for Gln derivative chromatographic response were identified by comparing the performance of central composite design, Box-Behnken design, and Optimal Design (OD)-A, -D, -I, -Distance, and -Modified Distance DOE models. The outcomes showed that the OD-A-generated response was superior relative to other design outcomes. Forecasted surface plot critical mass spectrometric parameters were maximized by OD-A, OD-Distance, and OD-Modified Distance designs. OD-A produced a high-performance method that yielded experimental run and forecasted surface plot maximal responses. Optimized mass spectrometric analysis of male versus female astrocyte Gln content provides novel evidence that glucoprivation significantly depletes this amino acid in female, but not in male, and that this sex-specific response may involve differential sensitivity to estrogen receptor signaling. This technological advance will facilitate efforts to ascertain how distinctive physiological and pathophysiological stimuli impact astrocyte Gln metabolism in each sex.
机译:氨基酸谷氨酰胺(Gln)可能是神经性糖减少症期间大脑的能量来源。葡萄糖缺乏对星形胶质细胞Gln稳态的影响尚不清楚,因为目前尚不具备定量该分子细胞内水平所需灵敏度的分析工具。在这里,一个初级下丘脑星形胶质细胞培养模型结合实验设计(DOE)-改进的高效液相色谱-电喷雾电离质谱(LC-ESI-MS)方法来研究缺糖以性别特异性方式改变星形胶质细胞Gln含量的假设。通过比较中心复合设计、Box-Behnken设计和优化设计(OD)-A、-D、-I、-Distance和-Modified Distance DOE模型的性能,确定了Gln衍生色谱响应的临界质谱参数。结果表明,OD-A产生的反应优于其他设计结果。通过OD-A、OD距离和OD修改距离设计使预测的表面图临界质谱参数最大化。OD-A产生了一种高性能的方法,产生了实验运行和预测的面图最大响应。优化的男性与女性星形胶质细胞Gln含量的质谱分析提供了新的证据,表明缺糖显著减少女性的这种氨基酸,但男性没有,而且这种性别特异性反应可能涉及对雌激素受体信号的不同敏感性。这项技术进步将有助于确定不同生理和病理生理刺激如何影响不同性别的星形胶质细胞Gln代谢。

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