Nagai Takayuki, Ikegami Yasuhiro, Mizumachi Hideyuki, Shirakigawa Nana, Ijima Hiroyuki
Department of Chemical Engineering, Faculty of Engineering, Graduate School, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
Department of Chemical Engineering, Faculty of Engineering, Graduate School, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
J Biosci Bioeng. 2017 Oct;124(4):430-438. doi: 10.1016/j.jbiosc.2017.04.018. Epub 2017 Jun 29.
Two-dimensional monolayer culture is the most popular cell culture method. However, the cells may not respond as they do in vivo because the culture conditions are different from in vivo conditions. However, hydrogel-embedding culture, which cultures cells in a biocompatible culture substrate, can produce in vivo-like cell responses, but in situ evaluation of cells in a gel is difficult. In this study, we realized an in vivo-like environment in vitro to produce cell responses similar to those in vivo and established an in situ evaluation system for hydrogel-embedded cell responses. The extracellular matrix (ECM)-modeled gel consisted of collagen and heparin (Hep-col) to mimic an in vivo-like environment. The Hep-col gel could immobilize growth factors, which is important for ECM functions. Neural stem/progenitor cells cultured in the Hep-col gel grew and differentiated more actively than in collagen, indicating an in vivo-like environment in the Hep-col gel. Second, a thin-layered gel culture system was developed to realize in situ evaluation of the gel-embedded cells. Cells in a 200-μm-thick gel could be evaluated clearly by a phase-contrast microscope and immunofluorescence staining through reduced optical and diffusional effects. Finally, we found that the neural cells cultured in this system had synaptic connections and neuronal action potentials by immunofluorescence staining and Ca imaging. In conclusion, this culture method may be a valuable evaluation system for neurotoxicity testing.
二维单层培养是最常用的细胞培养方法。然而,由于培养条件与体内条件不同,细胞的反应可能与在体内时有所不同。不过,水凝胶包埋培养法可在生物相容性培养底物中培养细胞,能产生类似体内的细胞反应,但对凝胶内细胞进行原位评估较为困难。在本研究中,我们在体外实现了类似体内的环境以产生与体内相似的细胞反应,并建立了水凝胶包埋细胞反应的原位评估系统。细胞外基质(ECM)模拟凝胶由胶原蛋白和肝素(Hep-col)组成,以模拟类似体内的环境。Hep-col凝胶能够固定生长因子,这对ECM功能很重要。在Hep-col凝胶中培养的神经干/祖细胞比在胶原蛋白中生长和分化更为活跃,表明Hep-col凝胶具有类似体内的环境。其次,开发了一种薄层凝胶培养系统以实现对凝胶包埋细胞的原位评估。通过减少光学和扩散效应,利用相差显微镜和免疫荧光染色可清晰评估200μm厚凝胶中的细胞。最后,通过免疫荧光染色和钙成像,我们发现在此系统中培养的神经细胞具有突触连接和神经元动作电位。总之,这种培养方法可能是用于神经毒性测试的有价值的评估系统。