Kang Yunyi, Georgiou Anastasia I, MacFarlane Robert J, Klontzas Michail E, Heliotis Manolis, Tsiridis Eleftherios, Mantalaris Athanasios
Biological Systems Engineering Laboratory, Department of Chemical Engineering, Imperial College London, UK.
Maxillofacial Unit, Northwick Park Hospital, London, UK.
J Tissue Eng Regen Med. 2017 Jul;11(7):1929-1940. doi: 10.1002/term.2090. Epub 2015 Oct 9.
Conditioned medium from human hepatocarcinoma cells (HepG2-CM) has been shown to stimulate the osteogenic/chondrogenic differentiation of murine embryonic stem cells (mESCs). HepG2-CM is considered to contain visceral endoderm (VE)-like signals and attempts have recently been made to characterize it, using proteomic profiling, with fibronectin being identified as one promising candidate. Herein, we investigated whether fibronectin is able to mimic the activities of HepG2-CM during the osteogenic differentiation of mESCs. Specifically, the addition of RGD peptides and heparin in HepG2-CM significantly reduced the growth- and adhesion-promoting effects of HepG2-CM, in addition to suppressing its osteogenic-inductive activity. Furthermore, direct addition of fibronectin to basal medium was able to reproduce, at least partially, the function of HepG2-CM. In particular, fibronectin induced the early onset of osteogenic differentiation in mESCs, as confirmed by gene expression of osteogenic markers, and resulted in the three-fold higher calcium deposition at day 11 of osteogenic culture compared to the control group. These data clearly suggest that fibronectin contributes to the biological activities of HepG2-CM and plays a stimulatory role during the process of osteogenesis in mESCs. Copyright © 2015 John Wiley & Sons, Ltd.
人肝癌细胞条件培养基(HepG2-CM)已被证明能刺激小鼠胚胎干细胞(mESCs)的成骨/软骨分化。HepG2-CM被认为含有内胚层样信号,最近人们试图通过蛋白质组学分析对其进行表征,纤连蛋白被确定为一个有前景的候选物。在此,我们研究了纤连蛋白在mESCs成骨分化过程中是否能够模拟HepG2-CM的活性。具体而言,在HepG2-CM中添加RGD肽和肝素,除了抑制其成骨诱导活性外,还显著降低了HepG2-CM的生长促进和黏附促进作用。此外,将纤连蛋白直接添加到基础培养基中能够至少部分重现HepG2-CM的功能。特别是,纤连蛋白诱导了mESCs成骨分化的早期开始,这通过成骨标志物的基因表达得到证实,并且在成骨培养第11天时,与对照组相比,钙沉积增加了两倍。这些数据清楚地表明,纤连蛋白有助于HepG2-CM的生物学活性,并在mESCs的成骨过程中发挥刺激作用。版权所有© 2015约翰威立父子有限公司。