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首页> 外文期刊>Cell transplantation >Amniotic fluid stem cells rescue both in vitro and in vivo growth, innervation, and motility in nitrofen-exposed hypoplastic rat lungs through paracrine effects
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Amniotic fluid stem cells rescue both in vitro and in vivo growth, innervation, and motility in nitrofen-exposed hypoplastic rat lungs through paracrine effects

机译:羊水干细胞通过旁分泌作用在硝基苯暴露的发育不良的大鼠肺中挽救体外和体内的生长,神经支配和运动

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Lung hypoplasia can be prevented in vitro by retinoic acid (RA). Recent evidence suggests that amniotic fluid stem (AFS) cells may integrate injured lungs and influence their recovery. We tested the hypothesis that AFS cells might improve lung growth and motility by paracrine mechanisms. Pregnant rats received either nitrofen or vehicle on E9.5. In vitro E13 embryonic lungs were cultured in the presence of culture medium alone or with RA, basophils, or AFS cells. In vivo green fluorescent protein-expressing (GFP+) rat AFS cells were transplanted in nitrofen-exposed rats on E10.5. E13 lung explants were cultured before analysis. The surface, the number of terminal buds, and the frequency of bronchial contractions were assessed. Protein gene product 9.5 (PGP 9.5) and α-actin protein levels were measured. The lung explants transplanted with AFS cells were stained for α-actin, PGP 9.5, and TTF-1. The levels of FGF-10, VEGFα,and TGF-β1 secreted by the AFS cells in the culture medium were measured. Comparison between groups was made by ANOVA. In vitro, the surface, the number of terminal buds, and the bronchial peristalsis were increased in nitrofen+AFS cell explants in comparison with nitrofen-exposed lungs. While nitrofen + RAlungs were similar to nitrofen+AFS ones, basophils did not normalize these measurements. PGP 9.5 protein was decreased in nitrofen lungs, but after adding AFS cells, the value was similar to controls. No differences were found in the expression of α-actin. In vivo, the surface, number of terminal buds, and peristalsis were similar to control after injection of AFS cells in nitrofen-exposed rats. Colocalization with TTF-1-positive cells was found. The levels of FGF-10 and VEGF were increased in nitrofen + AFS cell explants, while the levels of TGF-β1 were similar to controls. Lung growth, bronchial motility, and innervation were decreased in nitrofen explants and rescued by AFS cells both in vitro and in vivo, similarly to that observed before with RA. The AFS cell beneficial effect was probably related to paracrine action of growth factor secretion.
机译:视黄酸(RA)可以在体外预防肺发育不全。最近的证据表明,羊水干(AFS)细胞可能整合受伤的肺并影响其恢复。我们检验了AFS细胞可能通过旁分泌机制改善肺部生长和运动的假设。怀孕的大鼠在E9.5上接受了硝基苯酚或媒介物。在单独或与RA,嗜碱性粒细胞或AFS细胞一起存在的培养基中培养体外E13胚胎肺。在E10.5上,将体内表达绿色荧光蛋白(GFP +)的大鼠AFS细胞移植到硝基苯暴露的大鼠中。分析前先培养E13肺外植体。评估表面,末端芽的数量和支气管收缩的频率。测量了蛋白质基因产物9.5(PGP 9.5)和α-肌动蛋白的蛋白质水平。对移植有AFS细胞的肺外植体进行α-肌动蛋白,PGP 9.5和TTF-1染色。测定培养基中AFS细胞分泌的FGF-10,VEGFα和TGF-β1的水平。组间比较由ANOVA进行。在体外,与暴露于硝基芬的肺相比,硝基芬+ AFS细胞外植体的表面,末端芽的数量和支气管蠕动增加。尽管nitrofen + RAlungs与nitrofen + AFS相似,但嗜碱性粒细胞并未将这些测量值标准化。在硝基芬肺中,PGP 9.5蛋白降低,但是在添加AFS细胞后,该值与对照组相似。在α-肌动蛋白的表达中未发现差异。在体内,在暴露于硝基苯的大鼠中注射AFS细胞后,其表面,末端芽的数量和蠕动与对照相似。发现与TTF-1阳性细胞共定位。硝基芬+ AFS细胞外植体中FGF-10和VEGF的水平升高,而TGF-β1的水平与对照组相似。硝基芬外植体中的肺生长,支气管蠕动和神经支配减少,并通过AFS细胞在体内外进行拯救,这与RA之前观察到的相似。 AFS细胞的有益作用可能与生长因子分泌的旁分泌作用有关。

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