首页> 外文期刊>Tissue engineering, Part A >Transplantation of Amniotic Scaffold-Seeded Mesenchymal Stem Cells and/or Endothelial Progenitor Cells From Bone Marrow to Efficiently Repair 3-cm Circumferential Urethral Defect in Model Dogs
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Transplantation of Amniotic Scaffold-Seeded Mesenchymal Stem Cells and/or Endothelial Progenitor Cells From Bone Marrow to Efficiently Repair 3-cm Circumferential Urethral Defect in Model Dogs

机译:从骨髓移植羊装支架种子间充质干细胞和/或内皮祖细胞在模型犬的3厘米周长尿道缺陷中有效修复3厘米

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摘要

The treatment options for patients with a urethral defect are limited by the availability of autologous tissues. We hypothesized that transplantation of decellularized human amniotic scaffolds (dHAS) seeded with allogeneic bone marrow mesenchymal cells (BMSCs) and/or endothelial progenitor cells (EPCs) may serve as a promising repair strategy for long segment of circumferential urethral defect. To verify the hypothesis, with urinary catheterization, a 3-cm segment of whole urethra in 25 male mongrel dogs was excised and replaced by dHAS seeded with allogeneic BMSCs and/or EPCs. Postoperative observation and ascending urethrogram found that dHAS+BMSCs+EPCs and dHAS+EPCs groups demonstrated unhindered urination and capacious urethral caliber, which were similar to the normal group, while urethrostenosis was revealed in dHAS+BMSCs, dHAS, and sham-operated groups, with the shortest narrow section in dHAS+BMSCs group and the longest in sham-operated group. Urethral anatomy check and histological analyses showed that new urethral mucosa composed of stratified columnar epithelium completely covered on the inner surface of the graft site in dHAS+BMSCs+EPCs and dHAS+EPCs groups, but the middle epithelium was thin in dHAS+EPCs group, while incompletely covered in dHAS+BMSCs, dHAS, and sham-operated groups, and there were monolayer epithelial cells at the urethrostenosis in dHAS+BMSCs and dHAS groups. In addition, abundant new vessel and blood sinus showed at submucosa in dHAS+BMSCs+EPCs and dHAS+EPCs groups, instead of the scar tissue of collagen deposition and structural distortion at the urethrostenosis in dHAS+BMSCs, dHAS, and sham-operated groups. This study demonstrates that dHAS seeded with BMSCs+EPCs or EPCs can successfully repair a 3-cm circumferential urethral defect in model dogs, but the former works best. This technology may provide some references for human clinical trials on long segment of circumferential urethral defect repair.
机译:尿道缺陷患者的治疗方案受到自体组织的可用性的限制。我们假设用同种异体骨髓间充质细胞(BMSCs)和/或内皮祖细胞(EPC)移植脱细胞的人羊膜支架(DHAs)的移植可以作为长期周向尿道缺陷的有希望的修复策略。为了验证假设,随着尿导管化,切除了25只雄性杂种犬的3厘米的整个尿道部分,并被DHA替换为同种异体BMSC和/或EPCs。术后观察和上升尿道记录发现,DHAs + BMSCs + EPC和DHAS + EPCS组展示了不受阻尼的排尿和省族尿道口径,其与正常组相似,而在DHAS + BMSCS,DHA和假手术组中揭示了尿道睾丸病,达到DHAS + BMSCS组中最短的狭窄部分,是假手术组最长的。尿道解剖检查和组织学分析显示,新的尿道粘膜由分层柱状上皮组成,完全覆盖在DHAS + BMSCs + EPC和DHAS + EPCS组的移植物位点的内表面上,但中间上皮在DHAS + EPCS组中薄,在DHAS + BMSCS,DHA和假手术组中不完全覆盖,并且在DHAS + BMSCs和DHAS组中有单层上皮细胞。此外,丰富的新血管和血窦在DHAS + BMSCS + EPCS和DHAS + EPCS组中显示出脓肿,而不是在DHAS + BMSCS,DHAS和假手术组中的尿道静脉沉积和结构畸变的瘢痕组织。本研究表明,使用BMSCs + EPCS或EPC种植DHA可以成功修复模型犬的3厘米周向尿道缺陷,但前者最佳作品。该技术可以在长期尿道缺陷修复中提供一些对人类临床试验的参考。

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