1 School of Biomedical Engineering, Drexel University , Philadelphia, Pennsylvania.
Tissue Eng Part A. 2014 Jan;20(1-2):189-96. doi: 10.1089/ten.TEA.2013.0067. Epub 2013 Oct 12.
An estimated 12% of women in the United States suffer from some form of infertility. In vitro fertilization (IVF) is the most common treatment for infertility encompassing over 99% of all assisted reproductive technologies. However, IVF has a low success rate. Live birth rates using IVF can range from 40% in women younger than 35 years to 4% in women older than 42 years. Costs for a successful IVF outcome can be upward of $61,000. The low success rate of IVF has been attributed to the inability of the blastocyst to implant to the uterus. Blastocyst implantation is initiated by L-selectin expressing cells, trophoblasts, binding to L-selectin ligands, primarily sialyl Lewis X (sLeX), on the uterine surface endometrium. Legal and ethical considerations have limited the research on human subjects and tissues, whereas animal models are costly or do not properly mimic human implantation biochemistry. In this work, we describe a cellular model system for quantifying L-selectin adhesion mechanics. L-selectin expression was confirmed in Jeg-3, JAR, and BeWo cell lines, with only Jeg-3 cells exhibiting surface expression. Jeg-3 cells were cultured into three-dimensional spheres, termed "trophospheres," as a mimic to human blastocysts. Detachment assays using a custom-built parallel plate flow chamber show that trophospheres detach from sLeX functionalized slides with 2.75 × 10(-3) dyn of force and 7.5 × 10(-5) dyn-cm of torque. This work marks the first time a three-dimensional cell model has been utilized for quantifying L-selectin binding mechanics related to blastocyst implantation.
据估计,美国有 12%的女性患有某种形式的不孕症。体外受精(IVF)是治疗不孕症最常见的方法,涵盖了超过 99%的所有辅助生殖技术。然而,IVF 的成功率很低。使用 IVF 的活产率在 35 岁以下的女性中可以达到 40%,而在 42 岁以上的女性中则为 4%。成功进行 IVF 的费用可能高达 61000 美元以上。IVF 成功率低的原因是胚胎不能植入子宫。胚胎着床是由表达 L-选择素的细胞、滋养层通过与子宫表面子宫内膜上的 L-选择素配体(主要是唾液酸化路易斯 X(sLeX))结合而启动的。法律和伦理考虑因素限制了对人体和组织的研究,而动物模型成本高昂或不能很好地模拟人类着床生物化学。在这项工作中,我们描述了一种用于量化 L-选择素粘附力学的细胞模型系统。L-选择素表达在 Jeg-3、JAR 和 BeWo 细胞系中得到了证实,只有 Jeg-3 细胞表现出表面表达。Jeg-3 细胞被培养成三维球体,称为“滋养球体”,作为人类胚胎的模拟物。使用定制的平行板流动室进行的分离测定表明,滋养球体从 sLeX 功能化载玻片上分离的力为 2.75×10(-3)dyn,扭矩为 7.5×10(-5)dyn-cm。这项工作标志着首次利用三维细胞模型来量化与胚胎着床相关的 L-选择素结合力学。