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鉴定抗HAI-1和整合素α6β4抗体作为人绒毛细胞滋养层细胞免疫组织化学标志物。

Identification of antibodies against HAI-1 and integrin alpha6beta4 as immunohistochemical markers of human villous cytotrophoblast.

作者信息

Hallikas Outi K, Aaltonen Johanna M, von Koskull Harriet, Lindberg Lars-Axel, Valmu Leena, Kalkkinen Nisse, Wahlström Torsten, Kataoka Hiroaki, Andersson Leif, Lindholm Dan, Schröder Jim

机构信息

Department of Biological and Environmental Sciences, Division of Genetics, University of Helsinki, Helsinki, Finland.

出版信息

J Histochem Cytochem. 2006 Jul;54(7):745-52. doi: 10.1369/jhc.5A6816.2006. Epub 2006 Feb 22.

Abstract

Syncytiotrophoblast and invasive extravillous trophoblast arise from a common stem cell, namely villous cytotrophoblast, but have very different characteristics. The study of the differentiation process relies on the availability of suitable markers for these different cell types of developing placenta. In this work, we have produced monoclonal antibodies that are specific to human villous cytotrophoblast. Monoclonal antibody (MAb) MG2 was specific to villous cytotrophoblast across gestation, and recognizes hepatocyte growth factor activator inhibitor type 1. MAb MD10 stained villous cytotrophoblast across gestation and also some endothelial cells, particularly in the second or third trimester. MAb MD10 recognizes human integrin alpha6beta4. As a test for specificity, the novel MAbs were also used for staining of frozen tissue from human colon carcinoma. The results show that the two antibodies can be used as tools to study human villous cytotrophoblasts and also human tumors. The MG2 antibody seems most specific and promising for the study of various aspects of human villous cytotrophoblast.

摘要

合体滋养层细胞和侵入性绒毛外滋养层细胞起源于一个共同的干细胞,即绒毛细胞滋养层细胞,但具有非常不同的特征。对分化过程的研究依赖于为发育中的胎盘这些不同细胞类型提供合适的标志物。在这项工作中,我们制备了对人绒毛细胞滋养层细胞具有特异性的单克隆抗体。单克隆抗体(MAb)MG2在整个妊娠期对绒毛细胞滋养层细胞具有特异性,并识别1型肝细胞生长因子激活剂抑制剂。单克隆抗体MD10在整个妊娠期对绒毛细胞滋养层细胞进行染色,并且还对一些内皮细胞进行染色,特别是在妊娠中期或晚期。单克隆抗体MD10识别人类整合素α6β4。作为特异性测试,新型单克隆抗体还用于对人结肠癌冷冻组织进行染色。结果表明,这两种抗体可作为研究人绒毛细胞滋养层细胞以及人类肿瘤的工具。MG2抗体似乎对研究人绒毛细胞滋养层细胞的各个方面最具特异性且前景广阔。

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