Department of Surgery, Boston Children's Hospital and Harvard Medical School, Boston, Massachusetts, USA.
Fetal Diagn Ther. 2021;48(5):381-391. doi: 10.1159/000515277. Epub 2021 Apr 14.
We examined select pulmonary effects and donor cell kinetics after transamniotic stem cell therapy (TRASCET) in a model of congenital diaphragmatic hernia (CDH).
Pregnant dams (n = 58) received nitrofen on gestational day 9.5 (E9) to induce fetal CDH. Fetuses (n = 681) were divided into 4 groups: untreated (n = 99) and 3 groups receiving volume-matched intra-amniotic injections on E17 of either saline (n = 142), luciferase-labeled amniotic fluid-derived mesenchymal stem cells (afMSCs; n = 299), or acellular recombinant luciferase (n = 141). Pulmonary morphometry, quantitative gene expression of pulmonary vascular tone mediators, or screening for labeled afMSCs were performed at term (E22). Statistical comparisons were by Mann-Whitney U-test, nested ANOVA, and Wald test.
TRASCET led to significant downregulation of endothelial nitric oxide synthase and endothelin receptor-A expressions compared to both untreated and saline groups (both p < 0.001). TRASCET also led to a significant decrease in arteriole wall thickness compared to the untreated group (p < 0.001) but not the saline group (p = 0.180). Donor afMSCs were identified in the bone marrow and umbilical cord (p = 0.035 and 0.015, respectively, vs. plain luciferase controls).
The effects of TRASCET in experimental CDH appear to be centered on the pulmonary vasculature and to derive from circulating donor cells.
我们研究了经羊膜腔干细胞治疗(TRASCET)在先天性膈疝(CDH)模型中的选择肺效应和供体细胞动力学。
妊娠母鼠(n = 58)在妊娠第 9.5 天(E9)接受硝基酚以诱导胎儿 CDH。胎儿(n = 681)分为 4 组:未治疗组(n = 99)和 3 组在 E17 时接受体积匹配的经羊膜腔内注射生理盐水(n = 142)、荧光素酶标记的羊水衍生间充质干细胞(afMSCs;n = 299)或无细胞重组荧光素酶(n = 141)。在足月(E22)时进行肺形态计量学、肺血管张力调节剂的定量基因表达或标记 afMSC 的筛选。统计比较采用 Mann-Whitney U 检验、嵌套 ANOVA 和 Wald 检验。
与未治疗组和生理盐水组相比,TRASCET 导致内皮型一氧化氮合酶和内皮素受体-A 的表达显著下调(均 p < 0.001)。TRASCET 还导致小动脉壁厚度与未治疗组相比显著降低(p < 0.001),但与生理盐水组相比无差异(p = 0.180)。在骨髓和脐带中鉴定出供体 afMSC(分别与单纯荧光素酶对照相比,p = 0.035 和 0.015)。
TRASCET 在实验性 CDH 中的作用似乎集中在肺血管系统,并源自循环供体细胞。