离体灌注大鼠肝脏:氨和氨基酸代谢研究的实验模型。

D Häussinger
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引用次数: 12

摘要

离体灌注大鼠肝脏是研究肝脏氨基酸和氨代谢的良好实验模型。讨论了肝脏灌注技术的一些方面和改进。用完整肝脏进行灌注研究的根本优势在于肝脏的结构和功能组织得以保留;然而,考虑到亚细胞和细胞间区隔以及最近在腺泡水平上不同细胞群的代谢相互作用,实验系统更加复杂。通过引入进一步的技术,如器官分光光度法、逆行/顺行灌注技术、微氧电极的使用、选择性抑制剂的使用、放射性标记化合物、肝组织的不同分离技术,这些由区隔引起的复杂性问题可以在很大程度上得到解决。通过这些方法,不仅可以通过分析肝通道前后灌注液的组成来间接跟踪细胞内事件,还可以直接在结构和代谢完整的肝脏的不同亚细胞和腺泡下室中进行跟踪。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolated perfused rat liver: an experimental model for studies on ammonium and amino acid metabolism.

Isolated perfused rat liver is a well-established experimental model for studies on hepatic amino acid and ammonia metabolism. Some aspects and modifications of the liver-perfusion technique are discussed. Perfusion studies with the intact liver have the fundamental advantage that the structural and functional organization of the liver is preserved; however, the experimental system is more complex in view of subcellular and intercellular compartmentation and the recently demonstrated metabolic interactions of different cell populations at the acinar level. These problems of complexity by compartmentation can be largely solved by introducing further techniques such as organ spectrophotometry, the retrograde/antegrade perfusion technique, use of micro-oxygen-electrodes, use of selective inhibitors, radiolabeled compounds, different fractionation techniques of the liver tissue. By means of these approaches, intracellular events can be followed up not only indirectly by analyzing the composition of the perfusate before and after a liver passage, but also directly in the different subcellular and subacinar compartments of a structurally and metabolically intact liver.

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