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首页> 外文期刊>Neurogastroenterology and motility >Xenotransplantation of human intestine into mouse abdomen or subcutaneous tissue: Novel platforms for the study of the human enteric nervous system
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Xenotransplantation of human intestine into mouse abdomen or subcutaneous tissue: Novel platforms for the study of the human enteric nervous system

机译:人类肠道转化为小鼠腹部或皮下组织:对人肠道神经系统研究的新平台

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摘要

Abstract Background Current efforts to develop stem cell therapy as a novel treatment for neurointestinal diseases are limited by the unavailability of a model system to study cell transplantation in the human intestine. We propose that xenograft models support enteric nervous system ( ENS ) development in the fetal human intestine when transplanted into mice subcutaneously or intra‐abdominally. Methods Fetal human small and large intestine were grafted onto the small intestinal mesentery and into the subcutaneous tissue of immunodeficient mice for up to 4?months. Intestinal cytoarchitecture and ENS development were studied using immunohistochemistry. Key Results In both abdominal and subcutaneous grafts, the intestine developed normally with formation of mature epithelial and mesenchymal layers. The ENS was patterned in two ganglionated plexuses containing enteric neurons and glia, including cholinergic and nitrergic neuronal subtypes. c‐Kit‐immunoreactive interstitial cells of Cajal were present in the gut wall. Conclusions & Inferences Abdominal xenografts represent a novel model that supports the growth and development of fetal human intestine. This in vivo approach will be a useful method to study maturation of the ENS , the pathophysiology of neurointestinal diseases, and the long‐term survival and functional differentiation of neuronal stem cells for the treatment of enteric neuropathies.
机译:摘要背景技术发展干细胞疗法作为神经灶性疾病的新型治疗的努力受模型系统研究人肠中的细胞移植的不可用的限制。我们提出了当皮下或腹腔内移植到小鼠时,卵泡移植模型支持胎儿人肠中的肠道神经系统(ENS)发育。方法将胎儿的小和大肠嫁接到小肠中肠道上,并进入免疫缺陷小鼠的皮下组织,最多4个月。使用免疫组化研究了肠细胞建筑和ENS开发。关键导致腹部和皮下移植物,肠道通常具有成熟上皮和间充质层的形成。 ENA在含有肠道神经元和胶质植物的两个神经条状的神经丛中被图案化,包括胆碱能和氮原神经元亚型。 Cajal的C-kit-免疫反应性间质细胞存在于肠壁中。结论&推迟腹部异种移植物代表一种支持胎儿肠道生长和发展的新型模型。这种体内方法将是研究ENA的成熟,神经节目疾病的病理生理学以及神经元干细胞治疗肠道神经病的长期存活和功能分化的有用方法。

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