Matsumoto Harunobu, Nasu Kaei, Nishida Masakazu, Ito Hiroko, Bing Sun, Miyakawa Isao
Department of Obstetrics and Gynecology, Faculty of Medicine, Oita University, Hasama-machi, Oita 879-5593, Japan.
J Clin Endocrinol Metab. 2005 Jun;90(6):3560-7. doi: 10.1210/jc.2004-1918. Epub 2005 Mar 8.
To evaluate the involvement of platelet-derived growth factor (PDGF) isoforms (PDGF-AlphaAlpha, PDGF-AB, and PDGF-BB) on endometrial tissue remodeling during the perimenstrual period, we investigated the effects of PDGF on the proliferation, motility, invasiveness, and contractility of cultured human endometrial stromal cells (ESC) using a modified methylthiazoletetrazolium assay, a 5-bromo-2'-deoxyuridine incorporation assay, an in vitro wound repair assay, a chemotactic migration assay, a Transwell invasion assay, and a collagen gel contraction assay. All three isoforms of PDGF significantly enhanced the cell proliferation, DNA synthesis, and in vitro wound repair of ESC. Chemotactic migration assay, Transwell invasion assay, and collagen gel contraction assay demonstrated that the PDGF isoforms significantly stimulated both the motility of ESC and the collagen gel contractility of ESC. PDGF-BB showed the strongest effects on these cellular functions of ESC. The present study suggested that PDGF isoforms may promote endometrial tissue repair by enhancing the proliferation and expansion of ESC, stimulating ESC migration, and stimulating the contraction of the collagen gel matrix by ESC. By regulating ESC function during the perimenstrual period, PDGF may help to protect the endometrium from extensive fibrosis and scarring.
为评估血小板衍生生长因子(PDGF)亚型(PDGF - αα、PDGF - AB和PDGF - BB)在月经周期期间对子宫内膜组织重塑的影响,我们使用改良的甲基噻唑基四氮唑蓝法、5 - 溴 - 2'- 脱氧尿苷掺入法、体外伤口修复试验、趋化迁移试验、Transwell侵袭试验和胶原凝胶收缩试验,研究了PDGF对培养的人子宫内膜基质细胞(ESC)增殖、运动性、侵袭性和收缩性的影响。PDGF的所有三种亚型均显著增强了ESC的细胞增殖、DNA合成及体外伤口修复能力。趋化迁移试验、Transwell侵袭试验和胶原凝胶收缩试验表明,PDGF亚型显著刺激了ESC的运动性以及ESC的胶原凝胶收缩性。PDGF - BB对ESC的这些细胞功能表现出最强的作用。本研究提示,PDGF亚型可能通过增强ESC的增殖和扩张、刺激ESC迁移以及刺激ESC对胶原凝胶基质的收缩,来促进子宫内膜组织修复。通过在月经周期期间调节ESC功能,PDGF可能有助于保护子宫内膜免受广泛纤维化和瘢痕形成的影响。