人羊膜间充质干细胞改善复发性自然流产小鼠的炎症浸润和妊娠结局。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-08-15 DOI:10.1093/biolre/ioae074
Yi Xiao, Fanyu Zeng, Jingli Sun
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引用次数: 0

摘要

复发性自然流产(RSA)被认为主要是由免疫相关原因引发的。间充质干细胞(MSCs)具有多向分化能力和低免疫原性的特点,最近被推荐作为治疗易自然流产小鼠的可行方法,以提高妊娠成功率。羊膜组织是妊娠和分娩的副产品,因其原料易得、伦理限制少而具有广泛的潜在用途。为了构建易流产小鼠模型进行研究,CBA/J雌性小鼠与雄性DBA/2小鼠配对,而CBA/J雌性小鼠与雄性BALB/c小鼠配对作为对照。在妊娠的第 4.5 天腹腔注射相同体积的 hAMSCs 或 PBS。雌性 CBA/J 小鼠于妊娠第 13.5 天宫颈脱位处死,计算胚胎吸收率,收集子宫、蜕膜组织和胎盘进行检查。通过检测发现,在RSA + hAMSCs组中,hAMSCs能显著提高白细胞介素10(IL-10)和转化生长因子β(TGF-β)的表达,同时显著降低白细胞介素1β(IL-1β)和白细胞介素6(IL-6)的表达,改善血管形成和血管生成,最大限度地降低胚胎吸收率和炎性细胞浸润。无论如何,hAMSCs能调节母胎界面的炎症因子和细胞平衡,从而降低胚胎吸收率和炎症浸润,为RSA的临床治疗提供了新的视角。
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The improvement of inflammatory infiltration and pregnancy outcome in mice with recurrent spontaneous abortion by human amniotic mesenchymal stem cells.

Recurrent spontaneous abortion is thought to be mostly triggered by immune-related causes. Mesenchymal stem cells, which exhibit the traits of multi-directional differentiation capacity and low immunogenicity, have recently been recommended as a viable treatment for spontaneous abortion-prone mice to increase the success of pregnancy. Amniotic membrane tissue is a byproduct of pregnancy and delivery that has a wide range of potential uses due to its easy access to raw materials and little ethical constraints. To construct an abortion-prone mouse model for this investigation, CBA/J female mice were coupled with male DBA/2 mice, while CBA/J female mice were paired with male BALB/c mice as a control. The identical volume of human amniotic mesenchymal stem cells or phosphate buffer was injected intraperitoneally on the 4.5th day of pregnancy. CBA/J female mice were sacrificed by cervical dislocation on the 13.5th day of pregnancy, the embryo absorption rate was calculated, and the uterus, decidua tissues and placenta were gathered for examination. Through detection, it was discovered that human amniotic mesenchymal stem cells significantly increased the expression of interleukin 10 and transforming growth factor beta, while they significantly decreased the expression of interleukin 1 beta and interleukin 6, improved vascular formation and angiogenesis, and minimized the embryo absorption rate and inflammatory cell infiltration in the recurrent spontaneous abortion + human amniotic mesenchymal stem cells group. In any case, human amniotic mesenchymal stem cells regulate inflammatory factors and cell balance at the maternal-fetal interface, which result in a reduction in the rate of embryo absorption and inflammatory infiltration and provide an innovative perspective to the clinical therapy of recurrent spontaneous abortion.

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4.30%
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567
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