Dekel Nava, Gnainsky Yulia, Granot Irit, Racicot Karen, Mor Gil
Department of Biological Regulation, The Weizmann Institute, Rehovot, Israel.
Am J Reprod Immunol. 2014 Aug;72(2):141-7. doi: 10.1111/aji.12266. Epub 2014 May 9.
Approximately half of all human embryo implantations result in failed pregnancy. Multiple factors may contribute to this failure, including genetic or metabolic abnormalities of the embryo. However, many of these spontaneous early abortion cases are attributed to poor uterine receptivity. Furthermore, although many fertility disorders have been overcome by a variety of assisted reproductive techniques, implantation remains the rate-limiting step for the success of the in vitro fertilization (IVF) treatments. We, as well as others, have demonstrated that endometrial biopsies performed either during the spontaneous, preceding cycle, or during the IVF cycle itself, significantly improve the rate of implantation, clinical pregnancies, and live births. These observations suggest that mechanical injury of the endometrium may enhance uterine receptivity by provoking the immune system to generate an inflammatory reaction. In strong support of this idea, we recently found that dendritic cells (DCs), an important cellular component of the innate immune system, play a critical role in successful implantation in a mouse model. In this review, we discuss the hypothesis that the injury-derived inflammation in the biopsy-treated patients generates a focus for uterine DCs and Mac accumulation that, in turn, enhance the endometrial expression of essential molecules that facilitate the interaction between the embryo and the uterine epithelium.
大约一半的人类胚胎着床会导致妊娠失败。多种因素可能导致这种失败,包括胚胎的基因或代谢异常。然而,许多这些自然流产病例归因于子宫容受性差。此外,尽管多种辅助生殖技术已经克服了许多生育障碍,但着床仍然是体外受精(IVF)治疗成功的限速步骤。我们以及其他人已经证明,在自然的前一个周期或IVF周期本身进行子宫内膜活检,可显著提高着床率、临床妊娠率和活产率。这些观察结果表明,子宫内膜的机械损伤可能通过激发免疫系统产生炎症反应来增强子宫容受性。为大力支持这一观点,我们最近发现,树突状细胞(DCs)作为固有免疫系统的重要细胞成分,在小鼠模型的成功着床中起关键作用。在这篇综述中,我们讨论了这样一个假说:活检治疗患者中由损伤引发的炎症为子宫DCs和巨噬细胞(Mac)的聚集产生了一个聚集点,进而增强了促进胚胎与子宫上皮细胞相互作用的关键分子的子宫内膜表达。