UMC Utrecht Cancer Center, University Medical Center Utrecht and Utrecht University, Heidelberglaan 100, Utrecht 3584CX, The Netherlands.
Mimetas BV, JH Oortweg 19, Leiden, The Netherlands.
ACS Biomater Sci Eng. 2021 Jul 12;7(7):3030-3042. doi: 10.1021/acsbiomaterials.0c01378. Epub 2021 Jun 29.
The lymphatic system is essential in maintaining tissue fluid homeostasis as well as antigen and immune cell transport to lymph nodes. Moreover, lymphatic vasculature plays an important role in various pathological processes, such as cancer. Fundamental to this research field are representative in vitro models. Here we present a microfluidic lymphatic vessel model to study lymphangiogenesis and its interaction with colon cancer organoids using a newly developed lymphatic endothelial cell (LEC) line. We generated immortalized human LECs by lentiviral transduction of human telomerase (hTERT) and BMI-1 expression cassettes into primary LECs. Immortalized LECs showed an increased growth potential, reduced senescence, and elongated lifespan with maintenance of typical LEC morphology and marker expression for over 12 months while remaining nontransformed. Immortalized LECs were introduced in a microfluidic chip, comprising a free-standing extracellular matrix, where they formed a perfusable vessel-like structure against the extracellular matrix. A gradient of lymphangiogenic factors over the extracellular matrix gel induced the formation of luminated sprouts. Adding mouse colon cancer organoids adjacent to the lymphatic vessel resulted in a stable long-lived coculture model in which cancer cell-induced lymphangiogenesis and cancer cell motility can be investigated. Thus, the development of a stable immortalized lymphatic endothelial cell line in a membrane-free, perfused microfluidic chip yields a highly standardized lymphangiogenesis and lymphatic vessel-tumor cell coculture assay.
淋巴系统对于维持组织液稳态以及抗原和免疫细胞向淋巴结的运输至关重要。此外,淋巴血管系统在各种病理过程中起着重要作用,如癌症。这个研究领域的基础是具有代表性的体外模型。在这里,我们使用新开发的淋巴管内皮细胞 (LEC) 系,展示了一种用于研究淋巴管生成及其与结肠癌细胞类器官相互作用的微流控淋巴管模型。我们通过慢病毒转导将人端粒酶 (hTERT) 和 BMI-1 表达盒转入原代 LEC 中,从而生成永生化的人 LEC。永生化的 LEC 表现出更高的生长潜力、减少衰老和延长寿命,同时保持典型的 LEC 形态和标志物表达,超过 12 个月而不发生转化。将永生化的 LEC 引入微流控芯片中,该芯片包含一个独立的细胞外基质,其中它们可以在细胞外基质上形成可灌注的类似血管的结构。在细胞外基质凝胶上形成的淋巴管生成因子梯度诱导了发光芽的形成。将小鼠结肠癌细胞类器官添加到淋巴管旁边,可形成稳定的长期共培养模型,可在此模型中研究癌细胞诱导的淋巴管生成和癌细胞迁移。因此,在无膜、灌注的微流控芯片中开发稳定的永生化淋巴管内皮细胞系,可以提供高度标准化的淋巴管生成和淋巴管-肿瘤细胞共培养测定。