Sugihara Kazuhiro, Kabir-Salmani Maryam, Byrne James, Wolf Don P, Lessey Bruce, Iwashita Mitsutoshi, Aoki Daisuke, Nakayama Jun, Fukuda Michiko N
Cancer Research Center, Burnham Institute for Medical Research, 10901 North Torrey Pines Road, La Jolla, CA 92037, USA.
FEBS Lett. 2008 Jan 23;582(2):197-202. doi: 10.1016/j.febslet.2007.12.001. Epub 2007 Dec 17.
During embryo implantation, trophinin mediates cell adhesion by homophilic binding at the apical surfaces of trophectoderm and endometrium. Trophinin is expressed on the human endometrial epithelia in rare occasions. We developed hCG-coated agarose beads that mimic the physical and physiological features of an implantation-stage human blastocyst. When hCG-coated beads were applied to human endometrial epithelial cells in the presence of IL-1beta, endometrial cells acquired strong trophinin expression and the ability for apical cell adhesion with trophinin-expressing human trophoblastic cells. These results provide a mechanism for trophinin-mediated adhesion of human blastocyst to endometrium by a spatially and temporally restricted paracrine effect of hCG derived from the blastocyst.
在胚胎植入过程中,滋养素通过在滋养外胚层和子宫内膜的顶端表面进行同种型结合来介导细胞粘附。滋养素在极少数情况下在人子宫内膜上皮细胞中表达。我们开发了模仿植入期人类囊胚物理和生理特征的hCG包被琼脂糖珠。当在IL-1β存在的情况下将hCG包被的珠子应用于人子宫内膜上皮细胞时,子宫内膜细胞获得了强烈的滋养素表达以及与表达滋养素的人滋养层细胞进行顶端细胞粘附的能力。这些结果为囊胚来源的hCG通过空间和时间受限的旁分泌作用介导人囊胚与子宫内膜的粘附提供了一种机制。