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首页> 外文期刊>Journal of Surgical Research: Clinical and Laboratory Investigation >Tissue engineered esophagus by mesenchymal stem cell seeding for esophageal repair in a canine model
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Tissue engineered esophagus by mesenchymal stem cell seeding for esophageal repair in a canine model

机译:间充质干细胞播种的组织工程食管在犬模型中进行食道修复

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摘要

Purpose: Acellular porcine small intestinal submucosa (SIS) has been successfully used for esophagoplasty in dogs. However, this has not led to complete epithelialization and muscular regeneration. We undertook the present study to assess the effect of tissue-engineered esophagus generated by seeding bone marrow mesenchymal stem cells (BMSCs) onto an SIS scaffold (BMSCs-SIS) in a canine model. Methods: We cultured, passaged, and measured autologous BMSCs and myoblasts with cell proliferation and immunohistochemical assays. We labeled the third passage of BMSCs with PKH-26, a fluorescent dye, before seeded it onto the SIS. We resected canine cervical esophagus to generate a defect 5 cm in length and 50% in circumference, which we repaired with BMSCs-SIS or SIS alone. Results: Four weeks later, barium esophagram demonstrated that esophageal lumen surface of the patch graft was smoother in the BMSCs-SIS group compared with the SIS group. Histological examination suggested a strong similarity between BMSCs and esophageal myoblasts in terms of morphology and function. Although both BMSCs-SIS and SIS repaired the esophageal defects, we noted complete re-epithelialization with almost no inflammation only in the former group. By 12 wk after the surgery, we observed long bundles of skeletal muscles only in the BMSCs-SIS group, where the microvessel density was also much greater. Conclusions: Bone marrow mesenchymal stem cells on an SIS scaffold can promote re-epithelialization, revascularization, and muscular regeneration. This approach may provide an attractive option for esophageal regeneration.
机译:目的:脱细胞猪小肠粘膜下层(SIS)已成功用于狗的食管成形术。但是,这并未导致完全上皮化和肌肉再生。我们进行了本研究,以评估通过在犬模型中将骨髓间充质干细胞(BMSCs)植入SIS支架(BMSCs-SIS)所产生的组织工程化食道的作用。方法:我们通过细胞增殖和免疫组织化学方法培养,传代和测量自体BMSC和成肌细胞。在将其播种到SIS之前,我们用荧光染料PKH-26标记了BMSC的第三次传代。我们切除了犬颈食管以产生长度为5 cm,周长为50%的缺损,我们仅用BMSCs-SIS或SIS对其进行了修复。结果:四周后,食管钡餐造影显示,与SIS组相比,BMSCs-SIS组的贴片移植物的食管腔表面更光滑。组织学检查表明,骨髓间充质干细胞和食管成肌细胞在形态和功能上有很强的相似性。尽管BMSCs-SIS和SIS均可修复食管缺损,但我们注意到仅在前一组中完全重新上皮化,几乎没有炎症。手术后第12周,我们仅在BMSCs-SIS组中观察到长束骨骼肌,其中微血管密度也更大。结论:SIS支架上的骨髓间充质干细胞可以促进上皮再形成,血运重建和肌肉再生。这种方法可以为食道再生提供有吸引力的选择。

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