Wormstone I M, Tamiya S, Marcantonio J M, Reddan J R
School of Biological Sciences, University of East Anglia, Norwich, United Kingdom.
Invest Ophthalmol Vis Sci. 2000 Dec;41(13):4216-22.
Hepatocyte growth factor (HGF) and its receptor c-met perform a multitude of functions. However, despite the significant degree of study of HGF and c-met in numerous tissues and cell types, relatively few investigations have been performed on the lens. In the current study, therefore, the role of HGF and the receptor c-met in human lens epithelial cells was investigated.
Anterior epithelium and capsular bags were prepared from human donor eyes and maintained in Eagle's minimum essential medium (EMEM) in a 5% CO(2) atmosphere at 35 degrees C. In addition, the human lens cell line FHL124, was routinely cultured and seeded onto glass coverslips (c-met immunodetection), 12-well plates (DNA and protein synthesis), and tissue culture dishes (migration). c-Met was detected by immunocytochemistry and fluorescence-activated cell scanning (FACS). HGF was measured using enzyme-linked immunosorbent assay (ELISA) techniques. Proliferation and protein synthesis were determined by [(3)H]thymidine and (35)S-methionine incorporation into DNA and proteins, respectively. Migration was assessed using a scratch-wound assay and time-lapse video microscopy.
HGF was detected at all stages of culture of capsular bags in protein-free medium. Moreover, c-met was present on the native epithelium and after mechanical trauma was seen to be upregulated. Immunolocalization and FACS analysis demonstrated c-met expression on FHL124 cells throughout the whole population. Furthermore, FACS analysis showed that serum-maintained cells sustained a higher level of receptor expression relative to serum-deprived cells. Additionally, HGF was found to stimulate proliferation, protein synthesis, and migratory responses.
c-Met receptors are expressed in native epithelium, capsular bag cultures, and FHL124 cells. Receptor is distributed across the entire cell population; however, this expression is environmentally and mechanically sensitive. HGF is also present in capsular bags at all stages of culture. In addition, HGF can stimulate migration, proliferation, and protein synthesis. It therefore appears that a multifunctional autocrine loop involving HGF and c-met is in place and could be important in the development of posterior capsule opacification.
肝细胞生长因子(HGF)及其受体c-met具有多种功能。然而,尽管对HGF和c-met在众多组织和细胞类型中进行了大量研究,但对晶状体的研究相对较少。因此,在本研究中,我们调查了HGF和受体c-met在人晶状体上皮细胞中的作用。
从人供体眼中制备前囊膜上皮和囊袋,并在35℃、5%二氧化碳的培养箱中,于伊格尔氏最低限度基本培养基(EMEM)中培养。此外,人晶状体细胞系FHL124常规培养后接种到盖玻片上(用于c-met免疫检测)、12孔板中(用于DNA和蛋白质合成检测)以及组织培养皿中(用于迁移检测)。通过免疫细胞化学和荧光激活细胞扫描(FACS)检测c-met。使用酶联免疫吸附测定(ELISA)技术测量HGF。分别通过[³H]胸腺嘧啶核苷掺入DNA以及³⁵S-蛋氨酸掺入蛋白质来测定增殖和蛋白质合成。使用划痕损伤试验和延时视频显微镜评估迁移情况。
在无蛋白培养基中培养的囊袋的各个阶段均检测到HGF。此外,c-met存在于天然上皮细胞上,并且在机械损伤后可见其表达上调。免疫定位和FACS分析表明FHL124细胞群体中均有c-met表达。此外,FACS分析显示,与血清饥饿的细胞相比,血清维持培养的细胞维持更高水平的受体表达。另外,发现HGF可刺激增殖、蛋白质合成和迁移反应。
c-met受体在天然上皮细胞、囊袋培养物和FHL124细胞中均有表达。受体分布于整个细胞群体;然而,这种表达对环境和机械因素敏感。在培养的各个阶段,囊袋中也存在HGF。此外,HGF可刺激迁移、增殖和蛋白质合成。因此,似乎存在一个涉及HGF和c-met的多功能自分泌环路,这可能在后囊膜混浊的发生发展中起重要作用。