Kim Wontae, Choi Jungwon, Yoon Hyejin, Lee Jaewang, Jun Jin Hyun
Department of Biomedical Laboratory Science, Graduate School, Eulji University, Seongnam, Korea.
Department of Senior Healthcare, BK21 Plus Program, Graduate School, Eulji University, Seongnam, Korea.
Clin Exp Reprod Med. 2021 Jun;48(2):132-141. doi: 10.5653/cerm.2021.04448. Epub 2021 May 31.
Lipopolysaccharide (LPS) from Gram-negative bacteria causes poor uterine receptivity by inducing excessive inflammation at the maternal-fetal interface. This study aimed to investigate the detrimental effects of LPS on the attachment and outgrowth of various types of trophoblastic spheroids on endometrial epithelial cells (ECC-1 cells) in an in vitro model of implantation.
Three types of spheroids with JAr, JEG-3, and JAr mixed JEG-3 (JmJ) cells were used to evaluate the effect of LPS on early implantation events. ECC-1 cells were treated with LPS to mimic endometrial infection, and the expression of inflammatory cytokines and adhesion molecules was analyzed by quantitative real-time polymerase chain reaction and western blotting. The attachment rates and outgrowth areas were evaluated in the various trophoblastic spheroids and ECC-1 cells treated with LPS.
LPS treatment significantly increased the mRNA expression of inflammatory cytokines (CXCL1, IL-8, and IL-33) and decreased the protein expression of adhesion molecules (ITGβ3 and ITGβ5) in ECC-1 cells. The attachment rates of JAr and JmJ spheroids on ECC-1 cells significantly decreased after treating the ECC-1 cells with 1 and 10 μg/mL LPS. In the outgrowth assay, JAr spheroids did not show any outgrowth areas. However, the outgrowth areas of JEG-3 spheroids were similar regardless of LPS treatment. LPS treatment of JmJ spheroids significantly decreased the outgrowth area after 72 hours of coincubation.
An in vitro implantation model using novel JmJ spheroids was established, and the inhibitory effects of LPS on ECC-1 endometrial epithelial cells were confirmed in the early implantation process.
革兰氏阴性菌的脂多糖(LPS)通过在母胎界面诱导过度炎症反应导致子宫容受性降低。本研究旨在通过体外着床模型,探讨LPS对各种类型滋养层球体在子宫内膜上皮细胞(ECC-1细胞)上的附着和生长的有害影响。
使用含有JAr、JEG-3和JAr混合JEG-3(JmJ)细胞的三种类型球体来评估LPS对早期着床事件的影响。用LPS处理ECC-1细胞以模拟子宫内膜感染,并通过定量实时聚合酶链反应和蛋白质印迹分析炎症细胞因子和黏附分子的表达。评估用LPS处理的各种滋养层球体和ECC-1细胞的附着率和生长面积。
LPS处理显著增加了ECC-1细胞中炎症细胞因子(CXCL1、IL-8和IL-33)的mRNA表达,并降低了黏附分子(ITGβ3和ITGβ5)的蛋白质表达。用1和10μg/mL LPS处理ECC-1细胞后,JAr和JmJ球体在ECC-1细胞上的附着率显著降低。在生长试验中,JAr球体未显示任何生长面积。然而,无论是否用LPS处理,JEG-