Burkhardt Britta, Martinez-Sanchez Juan José, Bachmann Anastasia, Ladurner Ruth, Nüssler Andreas K
BG Trauma Center, Siegfried Weller Institut, Eberhard Karls University Tübingen, Schnarrenbergstr. 95, 72076, Tübingen, Germany.
Clinic for General, Visceral and Transplantation Surgery, Eberhard Karls University Tübingen, Hoppe-Seyler-Str. 3, 72076, Tübingen, Germany.
Hepatol Int. 2014 Jan;8(1):14-22. doi: 10.1007/s12072-013-9487-3. Epub 2013 Nov 21.
Prediction of in vivo drug-induced hepatotoxicity by in vitro cell culture systems is still one of the main challenges in drug development. To date, most in vitro approaches are based on monolayer cultures of primary hepatocytes, although it is known that they rapidly lose their morphology and liver-specific functions, such as activities of drug-metabolizing enzymes and transporters. Hepatocyte dedifferentiation can be delayed by culturing cells in a 3D environment. Combination with continuous medium flow, which creates a more physiological situation, further improves the maintenance of hepatic functions. Here, we present recently developed hydrogels and scaffolds for 3D culture of hepatocytes, which aim at preserving hepatic morphology and functionality for up to 4 weeks in culture. Furthermore, major benefits and drawbacks of microfluidic devices for in vitro hepatotoxicity screening are discussed. Although promising advances have been made regarding the preservation of hepatic functions in 3D flow culture, major issues, such as expensive equipment, large cell numbers and low throughput, are still hampering their use in drug toxicity screening. For these devices to be applied and accepted in the drug-developing industry, it is necessary to combine easily accessible matrices that highly preserve the activities of drug-metabolizing enzymes with a user-friendly microfluidic platform, thereby finding the right balance between reflecting the in vivo situation and enabling satisfying throughput for drug candidate screening.
利用体外细胞培养系统预测体内药物诱导的肝毒性仍是药物研发中的主要挑战之一。迄今为止,大多数体外方法都基于原代肝细胞的单层培养,尽管人们已知这些细胞会迅速丧失其形态和肝脏特异性功能,如药物代谢酶和转运蛋白的活性。通过在三维环境中培养细胞,可以延缓肝细胞的去分化。与连续的培养基流动相结合,营造出更接近生理状态的环境,能进一步改善肝功能的维持。在此,我们介绍了最近开发的用于肝细胞三维培养的水凝胶和支架,其目的是在培养过程中长达4周保持肝脏形态和功能。此外,还讨论了用于体外肝毒性筛选的微流控装置的主要优缺点。尽管在三维流动培养中维持肝功能方面已取得了有前景的进展,但诸如设备昂贵、细胞数量多和通量低等主要问题仍阻碍着它们在药物毒性筛选中的应用。为使这些装置能在药物研发行业中得到应用和认可,有必要将能高度保留药物代谢酶活性的易于获取的基质与用户友好的微流控平台相结合,从而在反映体内情况与实现令人满意的药物候选物筛选通量之间找到恰当的平衡。