Center for Engineering in Medicine, Department of Surgery, Massachusetts General Hospital, Harvard Medical School, and Shriners Hospitals for Children-Boston, Boston, MA, USA.
Department of Biomedical Engineering, Rutgers University, 599 Taylor Rd., Piscataway, NJ, USA.
Sci Rep. 2018 Jun 12;8(1):8951. doi: 10.1038/s41598-018-27179-6.
An important number of healthy and diseased tissues shows spatial variations in their metabolic capacities across the tissue. The liver is a prime example of such heterogeneity where the gradual changes in various metabolic activities across the liver sinusoid is termed as "zonation" of the liver. Here, we introduce the Metabolic Patterning on a Chip (MPOC) platform capable of dynamically creating metabolic patterns across the length of a microchamber of liver tissue via actively enforced gradients of various metabolic modulators such as hormones and inducers. Using this platform, we were able to create continuous liver tissues of both rat and human origin with gradually changing metabolic activities. The gradients we have created in nitrogen, carbohydrate and xenobiotic metabolisms recapitulated an in vivo like zonation and zonal toxic response. Beyond its application in recapitulation of liver zonation in vitro as we demonstrate here, the MPOC platform can be used and expanded for a variety of purposes including better understanding of heterogeneity in many different tissues during developmental and adult stages.
许多健康和患病的组织在其代谢能力上表现出跨组织的空间变化。肝脏就是这种异质性的一个主要例子,其中各种代谢活动在肝窦内的逐渐变化被称为肝脏的“分区”。在这里,我们介绍了代谢图案化芯片(MPOC)平台,该平台能够通过主动施加各种代谢调节剂(如激素和诱导剂)的浓度梯度,在微室肝组织的长度上动态地创建代谢图案。使用这个平台,我们能够创建具有逐渐变化的代谢活性的大鼠和人源连续肝组织。我们在氮、碳水化合物和外来物代谢中创建的梯度再现了类似于体内的分区和分区毒性反应。除了我们在这里展示的在体外再现肝脏分区的应用外,MPOC 平台还可以用于和扩展用于各种目的,包括在发育和成年阶段更好地理解许多不同组织中的异质性。