Ando T, Jordan P, Joh T, Wang Y, Jennings M H, Houghton J, Alexander J S
Department of Molecular and Cellular Physiology, Louisiana State University Health Sciences Center, Shreveport, Louisiana 71130-3932, USA.
Lymphat Res Biol. 2005;3(3):105-15. doi: 10.1089/lrb.2005.3.105.
The lymphatic system regulates interstitial fluid and protein balance and modulates immune responses by regulating leukocyte and antigen traffic to lymph nodes. The present article describes a stable mouse lymphatic endothelial cell line from mesenteric adventitial tissue (SV-LEC) which is distinct from blood aortic (AEC) and venous (VEC) endothelial cells, based on expression of several lymphatic markers (e.g., Prox-1, LYVE-1, Flt-4). SV-LEC also expresses MAdCAM-1 in response to TNF-alpha, an effect seen in VEC, but not AEC.
Lymphatic endothelial cells (SV-LEC) were isolated from mesenteric adventitia from mice expressing temperature-sensitive SV40 large T ('Immortomouse', H-2K(b)tsA58) selected with hypoxia culture in D-valine-substituted MEM supplemented with VEGFC in a low oxygen atmosphere (0% O2, 5% CO2, and 95% N2) with 5 mM thioglycolate. Expression of lymphatic-specific markers (Flt-4, LYVE-1, Prox-1) and the tight junction proteins (ZO-1) were examined by RT-PCR, immunoblotting, and fluorescent microscopy. MAdCAM-1 (a high endothelial venular marker) expression was also examined in response to TNF-alpha IL-1beta and IFN-gamma.
Message for Flt-4 and LYVE-1 was detected on SV-LEC. Immunoblotting for LYVE-1 and Prox-1 showed strong expression on SV-LEC and VEC, but not AEC. Occludin expression was seen in all cell types, junctional ZO-1 was detected at SV-LEC and VEC junctions, not AEC.
SV-LEC expresses several lymphatic endothelial markers, some of which are shared with VEC, but not AEC, and may represent a useful system for modeling lymphatic function in vitro.
淋巴系统调节组织间液和蛋白质平衡,并通过调节白细胞和抗原向淋巴结的运输来调节免疫反应。本文描述了一种源自肠系膜外膜组织的稳定小鼠淋巴内皮细胞系(SV-LEC),基于几种淋巴标志物(如Prox-1、LYVE-1、Flt-4)的表达,它与血主动脉(AEC)和静脉(VEC)内皮细胞不同。SV-LEC在肿瘤坏死因子-α(TNF-α)作用下也表达黏膜地址素细胞黏附分子-1(MAdCAM-1),这种效应在VEC中可见,但在AEC中未见。
从表达温度敏感型SV40大T抗原的小鼠(“永生小鼠”,H-2K(b)tsA58)的肠系膜外膜中分离淋巴内皮细胞(SV-LEC),在低氧环境(0% O2、5% CO2和95% N2)下,于添加了VEGFC的D-缬氨酸替代的MEM中,用5 mM巯基乙酸盐进行缺氧培养筛选。通过逆转录聚合酶链反应(RT-PCR)、免疫印迹和荧光显微镜检查淋巴特异性标志物(Flt-4、LYVE-1、Prox-1)和紧密连接蛋白(ZO-1)的表达。还检测了在TNF-α、白细胞介素-1β(IL-1β)和干扰素-γ(IFN-γ)作用下MAdCAM-1(一种高内皮微静脉标志物)的表达。
在SV-LEC上检测到Flt-4和LYVE-1的信使核糖核酸(mRNA)。对LYVE-1和Prox-1的免疫印迹显示,SV-LEC和VEC上有强表达,但AEC上没有。在所有细胞类型中均可见闭合蛋白表达,在SV-LEC和VEC连接处检测到连接蛋白ZO-1,而AEC中未检测到。
SV-LEC表达几种淋巴内皮标志物,其中一些与VEC共有,但AEC没有,它可能是体外模拟淋巴功能的有用系统。