Department of Bioengineering, University of California, San Diego, La Jolla, CA 92093, USA.
Integr Biol (Camb). 2013 Nov;5(11):1344-54. doi: 10.1039/c3ib40078f. Epub 2013 Sep 24.
Cell behavior on 2-D in vitro cultures is continually being improved to better mimic in vivo physiological conditions by combining niche cues including multiple cell types and substrate stiffness, which are well known to impact cell phenotype. However, no system exists in which a user can systematically examine cell behavior on a substrate with a specific stiffness (elastic modulus) in culture with a different cell type, while maintaining distinct cell populations. We demonstrate the modification of a silicon reconfigurable co-culture system with a covalently linked hydrogel of user-defined stiffness. This device allows the user to control whether two separate cell populations are in contact with each other or only experience paracrine interactions on substrates of controllable stiffness. To illustrate the utility of this device, we examined the role of substrate stiffness combined with myoblast co-culture on adipose derived stem cell (ASC) differentiation and found that the presence of myoblasts and a 10 kPa substrate stiffness increased ASC myogenesis versus co-culture on stiff substrates. As this example highlights, this technology better controls the in vitro microenvironment, allowing the user to develop a more thorough understanding of the combined effects of cell-cell and cell-matrix interactions.
二维体外培养中的细胞行为通过结合多种细胞类型和基质硬度等生态位线索不断得到改善,以更好地模拟体内生理条件,这些线索已知会影响细胞表型。然而,目前还没有这样的系统,用户可以在培养过程中用不同的细胞类型在具有特定刚度(弹性模量)的基质上系统地检查细胞行为,同时保持不同的细胞群体。我们展示了一种硅可重构共培养系统的修改,该系统采用了用户定义的刚度的共价连接水凝胶。该设备允许用户控制两个单独的细胞群体是否彼此接触,或者仅在可控制的刚度的基质上经历旁分泌相互作用。为了说明该设备的实用性,我们研究了基质刚度与成肌细胞共培养对脂肪来源干细胞(ASC)分化的影响,发现成肌细胞的存在和 10kPa 的基质刚度增加了 ASC 的成肌分化,而在硬基质上共培养则没有。正如这个例子所强调的,该技术更好地控制了体外微环境,使研究人员能够更深入地了解细胞-细胞和细胞-基质相互作用的综合影响。