Yang Feipeng, Cohen Ronald N, Brey Eric M
Department of Biomedical Engineering, Illinois Institute of Technology, Chicago, IL 60616, USA.
Department of Medicine, The University of Chicago, Chicago, IL 60637, USA.
Bioengineering (Basel). 2020 Sep 17;7(3):114. doi: 10.3390/bioengineering7030114.
In vitro adipose tissue models can be used to provide insight into fundamental aspects of adipose physiology. These systems may serve as replacements for animal models, which are often poor predictors of obesity and metabolic diseases in humans. Adipose tissue consists of a rich vasculature that is essential to its function. However, the study of endothelial cell-adipocyte interactions has been challenging due to differences in culture conditions required for the survival and function of each cell type. To address this issue, we performed an extensive evaluation of the cell culture media composition to identify the conditions optimal for the co-culture of endothelial cells and adipocytes. The effects of individual media factors on cell survival, proliferation, and differentiation were systematically explored. Several media factors were determined to disrupt the co-culture system. Optimized culture conditions were identified and used to generate a vascularized human adipose microtissue. An interconnected vascular network was established within an adipose micro-tissue, and the networks were anastomosed with perfused channels to form a functional network. In conclusion, media conditions were identified that enabled endothelial cell-adipocyte co-culture and were used to support the formation of a vascularized adipose tissue within a microfluidic device.
体外脂肪组织模型可用于深入了解脂肪生理学的基本方面。这些系统可作为动物模型的替代品,动物模型往往不能很好地预测人类的肥胖和代谢疾病。脂肪组织由丰富的脉管系统组成,这对其功能至关重要。然而,由于每种细胞类型的存活和功能所需的培养条件不同,内皮细胞与脂肪细胞相互作用的研究一直具有挑战性。为了解决这个问题,我们对细胞培养基成分进行了广泛评估,以确定内皮细胞和脂肪细胞共培养的最佳条件。系统地探索了各个培养基因素对细胞存活、增殖和分化的影响。确定了几种破坏共培养系统的培养基因素。确定了优化的培养条件,并用于生成血管化的人脂肪微组织。在脂肪微组织内建立了相互连接的血管网络,这些网络与灌注通道吻合形成功能网络。总之,确定了能够实现内皮细胞与脂肪细胞共培养的培养基条件,并用于支持微流控装置内血管化脂肪组织的形成。