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Tissue-Engineered Esophagus via Bioreactor Cultivation for Circumferential Esophageal Reconstruction.组织工程化食管通过生物反应器培养用于环形食管重建。
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Polyurethane scaffolds seeded with autologous cells can regenerate long esophageal gaps: An esophageal atresia treatment model.自体细胞种植的聚氨酯支架可再生长段食管缺损:一种食管闭锁的治疗模型。
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Circumferential Esophageal Replacement by a Tissue-engineered Substitute Using Mesenchymal Stem Cells: An Experimental Study in Mini Pigs.使用间充质干细胞构建组织工程化替代物环形食管重建:小型猪的实验研究。
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9
Bilayer silk fibroin grafts support functional oesophageal repair in a rodent model of caustic injury.双层丝素蛋白移植物支持在腐蚀性损伤的啮齿动物模型中功能性食管修复。
J Tissue Eng Regen Med. 2018 Feb;12(2):e1068-e1075. doi: 10.1002/term.2434. Epub 2017 Jun 21.
10
Large Animal Models: The Key to Translational Discovery in Digestive Disease Research.大型动物模型:消化系统疾病研究中转化性发现的关键
Cell Mol Gastroenterol Hepatol. 2016 Nov;2(6):716-724. doi: 10.1016/j.jcmgh.2016.09.003.

双层丝素蛋白移植物在猪食管缺损模型中的管状食管成形术评价。

Evaluation of Bilayer Silk Fibroin Grafts for Tubular Esophagoplasty in a Porcine Defect Model.

机构信息

Departments of Urology and Biomedical Engineering, University of California, Irvine, Orange, California, USA.

Urological Diseases Research Center, Boston Children's Hospital, Boston, Massachusetts, USA.

出版信息

Tissue Eng Part A. 2021 Jan;27(1-2):103-116. doi: 10.1089/ten.TEA.2020.0061. Epub 2020 Jun 26.

DOI:10.1089/ten.TEA.2020.0061
PMID:32460641
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7826443/
Abstract

Surgical reconstruction of tubular esophageal defects with autologous gastrointestinal segments is the gold standard treatment to replace damaged or diseased esophageal tissues. Unfortunately, this approach is associated with adverse complications, including dysphagia, donor-site morbidity, and in some cases patient death. Bilayer silk fibroin (BLSF) scaffolds were investigated as alternative, acellular grafts for tubular esophagoplasty in a porcine defect model for 3 months of implantation. Adult Yucatan mini-swine ( = 5) were subjected to esophageal reconstruction with tubular BLSF grafts (2 cm in length) in combination with transient esophageal stenting for 2 months followed by a 1-month period, where the graft site was unstented. All animals receiving BLSF grafts survived and were capable of solid food consumption, however strictures were noted at graft regions in 60% of the experimental cohort between 2 and 3 months postop and required balloon dilation. In addition, fluoroscopic analysis showed peristaltic function in only 1/5 neotissues. Following swine harvest at 3 months, tissue bath evaluations revealed that neoconduits exhibited contractile responses to carbachol, electric field stimulation, and KCl, whereas sodium nitroprusside and isoproterenol induced relaxation effects. Histological (Masson's Trichrome) and immunohistochemical analyses of regenerated tissue conduits showed a stratified, squamous epithelium expressing pan-cytokeratins buttressed by a vascularized lamina propria containing a smooth muscle-rich muscularis mucosa surrounded by a muscularis externa. Neuronal density, characterized by the presence of synaptophysin-positive boutons, was significantly lower in neotissues in comparison to nonsurgical controls. BLSF scaffolds represent a promising platform for the repair of tubular esophageal defects, however improvements in scaffold design are needed to reduce the rate of complications and improve the extent of constructive tissue remodeling. Impact statement The search for a superior "off-the-shelf" scaffold capable of repairing tubularesophageal defects as well as overcoming limitations associated with conventional autologous gastrointestinal segments remains elusive. The purpose of this study was to investigate the performance of an acellular, bilayer silk fibroin graft (BLSF) for tubular esophagoplasty in a porcine model. Our results demonstrated that BLSF scaffolds supported the formation of tubular neotissues with innervated, vascularized epithelial and muscular components capable of contractile and relaxation responses. BLSF scaffolds represent a promising platform for esophageal tissue engineering.

摘要

管状食管缺损的自体胃肠道段重建是替代受损或患病食管组织的金标准治疗方法。不幸的是,这种方法与不良并发症相关,包括吞咽困难、供体部位发病率,并且在某些情况下会导致患者死亡。双层丝素蛋白(BLSF)支架被研究作为管状食管成形术的替代无细胞移植物,在猪的缺陷模型中进行了 3 个月的植入。成年 Yucatan 小型猪(n=5)接受管状 BLSF 移植物(长度为 2cm)的食管重建,同时进行短暂的食管支架置入 2 个月,然后在 1 个月期间,移植物部位不支架。所有接受 BLSF 移植物的动物均存活并能够进食固体食物,但是在手术后 2 至 3 个月,实验队列中有 60%的动物在移植物区域出现狭窄,需要球囊扩张。此外,荧光透视分析显示仅 1/5 的新组织具有蠕动功能。在 3 个月时猪被收获后,组织浴评估显示新的导管对卡巴胆碱、电场刺激和 KCl 表现出收缩反应,而硝普钠和异丙肾上腺素诱导松弛作用。再生组织导管的组织学(Masson's Trichrome)和免疫组织化学分析显示,分层的鳞状上皮表达广谱细胞角蛋白,由富含平滑肌的黏膜固有层支撑,周围是外肌层。与非手术对照组相比,新组织中的神经元密度(以突触素阳性小结的存在为特征)显著降低。BLSF 支架为管状食管缺损的修复提供了一个有前途的平台,但是需要改进支架设计以降低并发症发生率并改善建设性组织重塑的程度。