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首页> 外文期刊>Fetal diagnosis and therapy >Age Does Matter: A Pilot Comparison of Placenta-Derived Stromal Cells for in utero Repair of Myelomeningocele Using a Lamb Model
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Age Does Matter: A Pilot Comparison of Placenta-Derived Stromal Cells for in utero Repair of Myelomeningocele Using a Lamb Model

机译:年龄很重要:胎盘来源的基质细胞在羔羊子宫内膜膨出术子宫修复中的初步比较

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Introduction: Fetal amniotic membranes (FM) have been shown to preserve spinal cord histology in the fetal sheep model of myelomeningocele (MMC). This study compares the effectiveness of placenta-derived mesenchymal stromal cells (PMSCs) from early-gestation versus term-gestation placenta to augment FM repair to improve distal motor function in a sheep model. Methods: Fetal lambs (n = 4) underwent surgical MMC creation followed by repair with FM patch with term-gestation PMSCs (n = 1), FM with early-gestation PMSCs (n = 1), FM only (n = 1), and skin closure only (n = 1). Histopathology and motor assessment was performed. Results: Histopathologic analysis demonstrated increased preservation of spinal cord architecture and large neurons in the lamb repaired with early-gestation cells compared to all others. Lambs repaired with skin closure only, FM alone, and term-gestation PMSCs exhibited extremely limited distal motor function; the lamb repaired with early-gestation PMSCs was capable of normal ambulation. Discussion: This pilot study is the first in vivo comparison of different gestational-age placenta-derived stromal cells for repair in the fetal sheep MMC model. The preservation of large neurons and markedly improved motor function in the lamb repaired with early-gestation cells suggest that early-gestation placental stromal cells may exhibit unique properties that augment in utero MMC repair to improve paralysis. (C) 2015 S. Karger AG, Basel
机译:简介:胎儿羊膜(FM)已显示在脊髓膜羊膜膨出(MMC)的胎羊模型中保留脊髓组织学。这项研究比较了早期妊娠和足月妊娠胎盘来源的胎盘来源的间充质基质细胞(PMSC)在绵羊模型中增强FM修复以改善远端运动功能的有效性。方法:对胎羊(n = 4)进行外科MMC创建,然后用足月妊娠PMSC(n = 1)FM修补修复,早期妊娠PMSCs(n = 1)FM修补,仅FM(n = 1),仅皮肤闭合(n = 1)。进行组织病理学和运动评估。结果:组织病理学分析显示,与其他所有胚胎相比,经早期妊娠细胞修复的羔羊的脊髓结构和大型神经元的保存增强。仅用皮肤封闭修复的羔羊,仅使用FM以及足月妊娠的PMSC表现出极有限的远端运动功能。早期妊娠PMSCs修复的羔羊能够正常行走。讨论:这项先导研究是不同胎龄胎盘来源基质细胞在胎羊MMC模型中修复的首次体内比较。在早期妊娠细胞修复的羔羊中,大型神经元的保存和运动功能的显着改善表明,早期妊娠胎盘基质细胞可能表现出独特的特性,可以增强子宫内MMC修复以改善麻痹。 (C)2015 S.Karger AG,巴塞尔

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