Center for Vascular and Inflammatory Diseases, University of Maryland School of Medicine, Baltimore, USA.
Alberta Transplant Applied Genomics Centre, University of Alberta, Edmonton, Canada.
Sci Rep. 2017 May 9;7(1):1633. doi: 10.1038/s41598-017-01575-w.
Trans-endothelial migration (TEM) is essential for leukocyte circulation. While much is known about trans-blood endothelial migration, far less is known about trans-lymphatic endothelial migration. We established an in vitro system to evaluate lymphatic TEM for various cell types across primary mouse and human lymphatic endothelial cells (LEC), and validated the model for the murine LEC cell line SVEC4-10. T cells exhibited enhanced unidirectional migration from the basal (abluminal) to the apical (luminal) surface across LEC, whereas for blood endothelial cells (BEC) they migrated similarly in both directions. This preferential, vectorial migration was chemotactic toward many different chemoattractants and dose-dependent. Stromal protein fibers, interstitial type fluid flow, distribution of chemokines in the stromal layer, and inflammatory cytokines influenced LEC phenotype and leukocyte TEM. Activated and memory CD4 T cells, macrophages, and dendritic cell (DC) showed chemoattractantΔdriven vectorial migration, while CD8 T cell migration across LEC was not. The system was further validated for studying cancer cell transmigration across lymphatic endothelium. This model for lymphatic TEM for various migrating and endothelial cell types possesses the capacity to be high-throughput, highly reproducible and integrate the complexities of lymphatic biology, stromal variability, chemoattractant distribution, and fluid flow.
跨内皮迁移(TEM)是白细胞循环的关键。虽然人们对跨血内皮迁移有了很多了解,但对跨淋巴内皮迁移的了解却少得多。我们建立了一个体外系统,用于评估各种细胞类型穿过原代小鼠和人淋巴管内皮细胞(LEC)的淋巴 TEM,并验证了该模型在小鼠 LEC 细胞系 SVEC4-10 中的适用性。T 细胞表现出穿过 LEC 从基底(腔侧)到顶侧(腔面)的单向迁移增强,而对于血内皮细胞(BEC),它们在两个方向上的迁移相似。这种优先的、定向的迁移对许多不同的趋化因子具有趋化性,且呈剂量依赖性。基质蛋白纤维、间质型流体流动、基质层中趋化因子的分布以及炎症细胞因子影响 LEC 表型和白细胞 TEM。激活和记忆 CD4 T 细胞、巨噬细胞和树突状细胞(DC)表现出趋化因子驱动的定向迁移,而 CD8 T 细胞穿过 LEC 的迁移则不然。该系统进一步验证了用于研究癌细胞穿过淋巴管内皮的迁移。该模型具有评估各种迁移细胞和内皮细胞类型的淋巴 TEM 的能力,具有高通量、高重复性,并整合了淋巴管生物学、基质变异性、趋化因子分布和流体流动的复杂性。