Liu Jian, Kuznetsova Larisa A, Edwards Gareth O, Xu Jinsheng, Ma Mingwen, Purcell Wendy M, Jackson Simon K, Coakley W Terence
Centre for Research in Biomedicine, Faculty of Applied Sciences, University of the West of England, Coldharbour Lane, Bristol BS16 1QY, UK.
J Cell Biochem. 2007 Dec 1;102(5):1180-9. doi: 10.1002/jcb.21345.
Three-dimensional culture systems are an ideal in vitro model being capable of sustaining cell functionalities in a manner that resembles the in vivo conditions. In the present study, we developed an ultrasound trap-based technique to rapidly produce HepG2 hepatocarcinoma cell aggregates within 30 min. Enhanced junctional F-actin was observed at the points of cell-cell contact throughout the aggregates. HepG2 aggregates prepared by the ultrasound trap can be maintained in culture on a P-HEMA-coated surface for up to 3 weeks. The cells in these aggregates proliferated during the initial 3 days and cell number was consistent during the following maintenance period. Albumin secretion from these HepG2 aggregates recovered after 3 days of aggregate formation and remained relatively stable for the following 12 days. Cytochrome P450-1A1 activity was significantly enhanced after 6 days with maximal enzyme activity observed between 9 and 18 days. In addition, comparison experiments demonstrated that HepG2 aggregates generated by the ultrasound trap had comparable functional characterizations with HepG2 spheroids formed by a traditional gyrotatory-mediated method. Our results suggest that HepG2 aggregate cultures prepared through the ultrasound trap-based technique may provide a novel approach to produce in vitro models for hepatocyte functional studies.
三维培养系统是一种理想的体外模型,能够以类似于体内条件的方式维持细胞功能。在本研究中,我们开发了一种基于超声捕获的技术,可在30分钟内快速产生HepG2肝癌细胞聚集体。在整个聚集体的细胞 - 细胞接触点观察到增强的连接性F - 肌动蛋白。通过超声捕获制备的HepG2聚集体可以在涂有P - HEMA的表面上培养长达3周。这些聚集体中的细胞在最初3天内增殖,并且在随后的维持期内细胞数量保持一致。这些HepG2聚集体形成3天后白蛋白分泌恢复,并在接下来的12天内保持相对稳定。细胞色素P450 - 1A1活性在6天后显著增强,在9至18天观察到最大酶活性。此外,比较实验表明,通过超声捕获产生的HepG2聚集体与通过传统旋转介导方法形成的HepG2球体具有可比的功能特征。我们的结果表明,通过基于超声捕获的技术制备的HepG2聚集体培养物可能为产生用于肝细胞功能研究的体外模型提供一种新方法。