Knezevic Lea, Schaupper Mira, Mühleder Severin, Schimek Katharina, Hasenberg Tobias, Marx Uwe, Priglinger Eleni, Redl Heinz, Holnthoner Wolfgang
Ludwig Boltzmann Institute for Experimental and Clinical Traumatology, Vienna, Austria.
Austrian Cluster for Tissue Regeneration, Vienna, Austria.
Front Bioeng Biotechnol. 2017 Apr 18;5:25. doi: 10.3389/fbioe.2017.00025. eCollection 2017.
Vascular network engineering is essential for nutrient delivery to tissue-engineered constructs and, consequently, their survival. In addition, the functionality of tissues also depends on tissue drainage and immune cell accessibility, which are the main functions of the lymphatic system. Engineering both the blood and lymphatic microvasculature would advance the survival and functionality of tissue-engineered constructs. The aim of this study was to isolate pure populations of lymphatic endothelial cells (LEC) and blood vascular endothelial cells (BEC) from human dermal microvascular endothelial cells and to study their network formation in our previously described coculture model with adipose-derived stromal cells (ASC) in fibrin scaffolds. We could follow the network development over a period of 4 weeks by fluorescently labeling the cells. We show that LEC and BEC form separate networks, which are morphologically distinguishable and sustainable over several weeks. In addition, lymphatic network development was dependent on vascular endothelial growth factor (VEGF)-C, resulting in denser networks with increasing VEGF-C concentration. Finally, we confirm the necessity of cell-cell contact between endothelial cells and ASC for the formation of both blood and lymphatic microvascular networks. This model represents a valuable platform for drug testing and for the future studies on lymphatic and blood microvascularization.
血管网络工程对于向组织工程构建体输送营养物质以及其存活至关重要。此外,组织的功能还取决于组织引流和免疫细胞的可达性,而这正是淋巴系统的主要功能。构建血液和淋巴微血管系统将提高组织工程构建体的存活率和功能。本研究的目的是从人真皮微血管内皮细胞中分离出纯的淋巴管内皮细胞(LEC)和血管内皮细胞(BEC)群体,并在我们之前描述的纤维蛋白支架中与脂肪来源的基质细胞(ASC)共培养模型中研究它们的网络形成。我们可以通过对细胞进行荧光标记来跟踪4周内的网络发育情况。我们发现LEC和BEC形成了独立的网络,这些网络在形态上可区分且可持续数周。此外,淋巴管网络的发育依赖于血管内皮生长因子(VEGF)-C,随着VEGF-C浓度的增加,网络变得更加密集。最后,我们证实了内皮细胞与ASC之间的细胞间接触对于血液和淋巴微血管网络形成的必要性。该模型是药物测试以及未来淋巴和血液微血管化研究的宝贵平台。