Maes Michaël, Yanguas Sara Crespo, Willebrords Joost, Vinken Mathieu
Department of In Vitro Toxicology and Dermato-Cosmetology, Vrije Universiteit Brussel, Laarbeeklaan 103, B-1090 Brussels, Belgium.
Toxicol In Vitro. 2015 Dec 25;30(1 Pt B):569-577. doi: 10.1016/j.tiv.2015.09.024. Epub 2015 Sep 28.
Inherent to their pivotal roles in controlling all aspects of the liver cell life cycle, hepatocellular gap junctions are frequently disrupted upon impairment of the homeostatic balance, as occurs during liver toxicity. Hepatic gap junctions, which are mainly built up by connexin32, are specifically targeted by tumor promoters and epigenetic carcinogens. This renders inhibition of gap junction functionality a suitable indicator for the in vitro detection of nongenotoxic hepatocarcinogenicity. The establishment of a reliable liver gap junction inhibition assay for routine in vitro testing purposes requires a cellular system in which gap junctions are expressed at an in vivo-like level as well as an appropriate technique to probe gap junction activity. Both these models and methods are discussed in the current paper, thereby focusing on connexin32-based gap junctions.
肝细胞间隙连接在控制肝细胞生命周期的各个方面起着关键作用,其内在特性决定了在稳态平衡受损时,如在肝毒性发生期间,它们经常会被破坏。主要由连接蛋白32构成的肝间隙连接是肿瘤启动子和表观遗传致癌物的特定作用靶点。这使得间隙连接功能的抑制成为体外检测非遗传毒性肝癌发生的一个合适指标。建立一种用于常规体外检测目的的可靠的肝间隙连接抑制试验,需要一个能以类似体内水平表达间隙连接的细胞系统,以及一种探测间隙连接活性的合适技术。本文讨论了这两种模型和方法,重点是基于连接蛋白32的间隙连接。