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用于生物人工肝中细胞状态检测的微通道模拟与实验研究

Simulation and experimental research on micro-channel for detecting cell status in bio-artificial liver.

作者信息

Wu Changzhe, Cao Yue, Huo Xiaolin, Li Ming

出版信息

Technol Health Care. 2015;23 Suppl 2:S365-71. doi: 10.3233/THC-150973.

Abstract

BACKGROUND

Bioartificial liver support system (BALSS) based on culturing hepatocytes is an important research field for the treatment of acute liver failure. It is necessary to monitor the state of liver cell functions during the treatment of BALSS in order to guide clinical treatment.

OBJECTIVE

To design a micro-channel chip to achieve flash mixing for timely detection of liver cell status in bioreactors and improving liver cells growth environment to ensure the efficacy of the bio-artificial liver support system.

METHODS

Alanine aminotransferase (ALT) and Urea are chosen as detection indicators to reflect the degree of liver cell injury and the detoxification function. A diamond tandem structure micro-channel is designed and optimized to achieve the efficient mixing of serum and ALT or Urea reagent.

RESULTS

The simulation and experimental results show that the diamond tandem structure micro-channel can significantly improve the mixing efficiency and meet the online detecting requirements.

CONCLUSION

The easily controllable diamond tandem structure micro-channel combines the advantages of active and passive mixer and can effectively mix the serum and ALT or Urea reagent. It lays the foundation for online monitoring of liver cells and will help to improve the viability of liver cell in the bioreactor.

摘要

背景

基于肝细胞培养的生物人工肝支持系统(BALSS)是治疗急性肝衰竭的重要研究领域。在BALSS治疗过程中,有必要监测肝细胞功能状态以指导临床治疗。

目的

设计一种微通道芯片,实现快速混合,以便及时检测生物反应器中肝细胞状态,并改善肝细胞生长环境,确保生物人工肝支持系统的疗效。

方法

选择丙氨酸氨基转移酶(ALT)和尿素作为检测指标,以反映肝细胞损伤程度和解毒功能。设计并优化一种菱形串联结构微通道,以实现血清与ALT或尿素试剂的高效混合。

结果

模拟和实验结果表明,菱形串联结构微通道可显著提高混合效率,满足在线检测要求。

结论

易于控制的菱形串联结构微通道结合了主动式和被动式混合器的优点,能有效混合血清与ALT或尿素试剂。它为肝细胞的在线监测奠定了基础,并将有助于提高生物反应器中肝细胞的活力。

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