Heinonen J T, Sidhu J S, Reilly M T, Farin F M, Omiecinski C J, Eaton D L, Kavanagh T J
Department of Environmental Health, University of Washington, Seattle 98195, USA.
Environ Health Perspect. 1996 May;104(5):536-43. doi: 10.1289/ehp.96104536.
Characterizing constitutive activities and inducibility of various cytochrome P450 isozymes is important for elucidating species and individual differences in susceptibility to many toxicants. Although expression of certain P450s has been studied in homogenized tissues, the ability to assess functional enzyme activity without tissue disruption would further our understanding of interactive factors that modulate P450 activities. We used precision-cut, viable rat liver slices and confocal laser cytometry to determine the regional enzyme activities of P450 isozymes in situ. Livers from control and beta-naphthoflavone (beta NF)-treated rats were sectioned with a Krumdieck tissue slicer into 250-microns thick sections. A slice perfusion chamber that mounts on the cytometer stage was developed to allow for successive measurement of region-specific P450-dependent O-dealkylation of 7-ethoxy-, 7-pentoxy-, and 7-benzyloxyresorufin (EROD, PROD, and BROD activity, respectively) in the same liver slice. Images of the accumulated fluorescent resorufin product within the tissue were acquired using a confocal laser cytometer in confocal mode. As expected, slices isolated from beta NF-treated rats showed high levels of centrilobular EROD activity compared to slices from control rats, whereas PROD and BROD activities remained at control levels. These techniques should allow for the accurate quantification of regional and cell-specific P450 enzyme activity and, with subsequent analysis of the same slice, the ability to correlate specific P450 mRNAs or other factors with enzymatic activity. Moreover, these techniques should be amenable to examination of similar phenomena in other tissues such as lung and kidney, where marked heterogeneity in cellular P450 expression patterns is also known to occur.
表征各种细胞色素P450同工酶的组成型活性和诱导性对于阐明物种和个体对许多毒物易感性的差异非常重要。尽管某些P450s的表达已在匀浆组织中进行了研究,但在不破坏组织的情况下评估功能性酶活性的能力将进一步加深我们对调节P450活性的相互作用因素的理解。我们使用精确切割的、有活力的大鼠肝切片和共聚焦激光细胞术来原位测定P450同工酶的区域酶活性。将来自对照和β-萘黄酮(βNF)处理大鼠的肝脏用Krumdieck组织切片机切成250微米厚的切片。开发了一种安装在细胞仪载物台上的切片灌注室,以便在同一切片中连续测量7-乙氧基、7-戊氧基和7-苄氧基试卤灵(分别为EROD、PROD和BROD活性)的区域特异性P450依赖性O-脱烷基化。使用共聚焦激光细胞仪在共聚焦模式下获取组织内积累的荧光试卤灵产物的图像。正如预期的那样,与对照大鼠的切片相比,从βNF处理大鼠分离的切片显示出小叶中央区的EROD活性水平较高,而PROD和BROD活性保持在对照水平。这些技术应能准确量化区域和细胞特异性P450酶活性,并且通过对同一切片的后续分析,能够将特定的P450 mRNA或其他因素与酶活性相关联。此外,这些技术应该适用于检查其他组织(如肺和肾)中的类似现象,在这些组织中,细胞P450表达模式的明显异质性也已知会发生。