Mosadegh Bobak, Dabiri Borna E, Lockett Matthew R, Derda Ratmir, Campbell Patrick, Parker Kevin Kit, Whitesides George M
Wyss Institute for Biologically Inspired Engineering, Harvard University, 60 Oxford Street, Cambridge, MA, 02138, USA; Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, MA, 02138, USA.
Adv Healthc Mater. 2014 Jul;3(7):1036-43. doi: 10.1002/adhm.201300575. Epub 2014 Feb 12.
In vitro models of ischemia have not historically recapitulated the cellular interactions and gradients of molecules that occur in a 3D tissue. This work demonstrates a paper-based 3D culture system that mimics some of the interactions that occur among populations of cells in the heart during ischemia. Multiple layers of paper containing cells, suspended in hydrogels, are stacked to form a layered 3D model of a tissue. Mass transport of oxygen and glucose into this 3D system can be modulated to induce an ischemic environment in the bottom layers of the stack. This ischemic stress induces cardiomyocytes at the bottom of the stack to secrete chemokines which subsequently trigger fibroblasts residing in adjacent layers to migrate toward the ischemic region. This work demonstrates the usefulness of patterned, stacked paper for performing in vitro mechanistic studies of cellular motility and viability within a model of the laminar ventricle tissue of the heart.
从历史角度来看,缺血的体外模型未能重现三维组织中发生的细胞相互作用和分子梯度。这项研究展示了一种基于纸张的三维培养系统,该系统模拟了缺血期间心脏中细胞群体之间发生的一些相互作用。将多层含有细胞的纸张悬浮在水凝胶中,堆叠起来形成组织的分层三维模型。可以调节氧气和葡萄糖向这个三维系统的质量传输,以在堆叠底部诱导缺血环境。这种缺血应激会诱导堆叠底部的心肌细胞分泌趋化因子,随后触发相邻层中的成纤维细胞向缺血区域迁移。这项研究证明了图案化、堆叠纸张在心脏层状心室组织模型内进行细胞运动性和活力的体外机制研究中的有用性。