Kegel Victoria, Deharde Daniela, Pfeiffer Elisa, Zeilinger Katrin, Seehofer Daniel, Damm Georg
Department of General-, Visceral- and Transplantation Surgery, Charité University Medicine Berlin.
Brandenburg Center for Regenerative Therapies, Charité University Medicine Berlin.
J Vis Exp. 2016 Mar 30(109):e53069. doi: 10.3791/53069.
Beside parenchymal hepatocytes, the liver consists of non-parenchymal cells (NPC) namely Kupffer cells (KC), liver endothelial cells (LEC) and hepatic Stellate cells (HSC). Two-dimensional (2D) culture of primary human hepatocyte (PHH) is still considered as the "gold standard" for in vitro testing of drug metabolism and hepatotoxicity. It is well-known that the 2D monoculture of PHH suffers from dedifferentiation and loss of function. Recently it was shown that hepatic NPC play a central role in liver (patho-) physiology and the maintenance of PHH functions. Current research focuses on the reconstruction of in vivo tissue architecture by 3D- and co-culture models to overcome the limitations of 2D monocultures. Previously we published a method to isolate human liver cells and investigated the suitability of these cells for their use in cell cultures in Experimental Biology and Medicine(1). Based on the broad interest in this technique the aim of this article was to provide a more detailed protocol for the liver cell isolation process including a video, which will allow an easy reproduction of this technique. Human liver cells were isolated from human liver tissue samples of surgical interventions by a two-step EGTA/collagenase P perfusion technique. PHH were separated from the NPC by an initial centrifugation at 50 x g. Density gradient centrifugation steps were used for removal of dead cells. Individual liver cell populations were isolated from the enriched NPC fraction using specific cell properties and cell sorting procedures. Beside the PHH isolation we were able to separate KC, LEC and HSC for further cultivation. Taken together, the presented protocol allows the isolation of PHH and NPC in high quality and quantity from one donor tissue sample. The access to purified liver cell populations could allow the creation of in vivo like human liver models.
除实质肝细胞外,肝脏还由非实质细胞(NPC)组成,即库普弗细胞(KC)、肝内皮细胞(LEC)和肝星状细胞(HSC)。原代人肝细胞(PHH)的二维(2D)培养仍被视为药物代谢和肝毒性体外检测的“金标准”。众所周知,PHH的二维单培养存在去分化和功能丧失的问题。最近的研究表明,肝脏NPC在肝脏(病理)生理学和PHH功能的维持中起着核心作用。目前的研究重点是通过三维和共培养模型重建体内组织结构,以克服二维单培养的局限性。此前我们发表了一种分离人肝细胞的方法,并在《实验生物学与医学》中研究了这些细胞用于细胞培养的适用性(1)。基于对该技术的广泛关注,本文的目的是提供一个更详细的肝细胞分离过程方案,包括一段视频,这将使该技术易于重现。通过两步EGTA/胶原酶P灌注技术从手术干预的人肝组织样本中分离人肝细胞。通过50×g的初始离心将PHH与NPC分离。密度梯度离心步骤用于去除死细胞。利用特定的细胞特性和细胞分选程序从富集的NPC组分中分离出单个肝细胞群体。除了分离PHH,我们还能够分离KC、LEC和HSC用于进一步培养。综上所述,所提出的方案能够从一个供体组织样本中高质量、大量地分离出PHH和NPC。获得纯化的肝细胞群体可以创建类似体内的人肝模型。