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A Fluidic Isolation-Assisted Homogeneous-Flow-Pressure Chip-Solid Phase Extraction-Mass Spectrometry System for Online Dynamic Monitoring of 25-Hydroxyvitamin D3 Biotransformation in Cells

机译:流体隔离辅助均质流压芯片固相萃取质谱系统,用于在细胞中在线动态监测25-羟基羟胞素D3生物转化

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摘要

It is well known that cell can response to various chemical and mechanical stimuli. Therefore, flow pressure variation induced by sample loading and elution should be small enough to ignore the physical impact on cells when we use a Chip-SPE-MS system for cells. However, most existent Chip-SPE-MS systems ignored the pressure alternation because it is extremely difficult to develop a homogeneous-flow-pressure hyphenated module. Herein, we developed an interesting fluidic isolation-assisted homogeneous-flow-pressure Chip-SPE-MS system and demonstrated that it is adequate for online high-throughput determination and quantification of the 25-hydroxyvitamin D_(3) (25(OH)D_(3)) biotransformation in different cells. Briefly, the homogeneous ambient flow pressure is achieved by fluidic isolation between the cell culture channel and the SPE column, and an automatic sampling probe could accomplish the sample loading and dispensing to fulfill online pretreatment of the sample. Through this new system, the expression levels of 24,25-dihydroxyvitamin D_(3) (24,25(OH)_(2)D_(3)) can be determined in real time with a detection limit of 2.54 nM. In addition, the results revealed that 25(OH)D_(3) metabolic activity differed significantly between normal L-02 cells and cancerous HepG2 cells. Treatment of L-02 cells with a high dose of 25(OH)D_(3) was found to increase significant formation of 24,25(OH)_(2)D_(3), but this change was not apparent in HepG2 cells. The presented system promises to be a versatile tool for online accurate molecule biotransformation investigation and drug screening processes.
机译:众所周知,细胞可以对各种化学和机械刺激做出反应。因此,当我们使用芯片SPE MS系统检测细胞时,样品装载和洗脱引起的流动压力变化应足够小,以忽略对细胞的物理影响。然而,大多数现有的芯片SPE-MS系统忽略了压力变化,因为开发一个均匀流量-压力联合模块非常困难。在此,我们开发了一个有趣的流体隔离辅助均相流压力芯片SPE-MS系统,并证明它足以在线高通量测定和定量不同细胞中25-羟基维生素D_3(25(OH)D_3)的生物转化。简单地说,通过细胞培养通道和SPE柱之间的流体隔离来实现均匀的环境流动压力,并且自动取样探针可以完成样品装载和分配,以实现样品的在线预处理。通过这个新系统,24,25-二羟基维生素D_3(24,25(OH)_2)D_3)的表达水平可以实时测定,检测限为2.54 nM。此外,结果显示,正常L-02细胞和癌细胞HepG2细胞的25(OH)D_3代谢活性存在显著差异。用高剂量的25(OH)D_3处理L-02细胞可显著增加24,25(OH)2)D_3的形成,但这种变化在HepG2细胞中并不明显。该系统有望成为在线精确分子生物转化研究和药物筛选过程的通用工具。

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  • 来源
    《Analytical chemistry》 |2021年第4期|共8页
  • 作者单位

    Department of Chemistry Beijing Key Laboratory of Microanalytical Methods and Instrumentation MOE Key Laboratory of Bioorganic Phosphorus Chemistry &

    Chemical Biology Tsinghua University;

    Department of Applied Chemistry Graduate School of Urban Environmental Sciences Tokyo Metropolitan University Minamiohsawa;

    Department of Chemistry Beijing Key Laboratory of Microanalytical Methods and Instrumentation MOE Key Laboratory of Bioorganic Phosphorus Chemistry &

    Chemical Biology Tsinghua University;

    Department of Chemistry Beijing Key Laboratory of Microanalytical Methods and Instrumentation MOE Key Laboratory of Bioorganic Phosphorus Chemistry &

    Chemical Biology Tsinghua University;

    Department of Chemistry Beijing Key Laboratory of Microanalytical Methods and Instrumentation MOE Key Laboratory of Bioorganic Phosphorus Chemistry &

    Chemical Biology Tsinghua University;

    Department of Applied Chemistry Graduate School of Urban Environmental Sciences Tokyo Metropolitan University Minamiohsawa;

    Department of Applied Chemistry Graduate School of Urban Environmental Sciences Tokyo Metropolitan University Minamiohsawa;

    Department of Chemistry Beijing Key Laboratory of Microanalytical Methods and Instrumentation MOE Key Laboratory of Bioorganic Phosphorus Chemistry &

    Chemical Biology Tsinghua University;

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  • 正文语种 eng
  • 中图分类 分析化学;
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