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Tissue-engineered tubular substitutions for urinary diversion in a rabbit model

机译:组织工程肾小管置换术在兔模型中的尿分流

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摘要

Clinically, autologous gastrointestinal segments are traditionally used for urinary diversion. However, this procedure often causes many serious complications. Tissue engineering may provide an alternative treatment method in urinary diversion. This research aims to produce tissue-engineered tubular substitutions by using homologous adipose-derived stem cells, smooth muscle cells, and bladder acellular matrix in developing urinary diversion in a rabbit model. Adipose-derived stem cells and smooth muscle cells of rabbit were obtained and cultured in vitro. These cultured adipose-derived stem cells and smooth muscle cells were seeded onto the two sides of the bladder acellular matrix and then incubated for seven days. The cell-seeded matrix was used to build tissue-engineered tubular substitutions, which were then implanted and wrapped into the omentum in vivo for two weeks to promote angiogenesis. In the experimental group, the bladder of 20 rabbits was totally resected, and the above tissue-engineered tubular substitutions were used for urinary diversion. In the control group, bladder acellular matrix tubular substitutions with unseeded cells were implanted into the omentum and were used as urinary diversion on another five rabbits with the same process. The implants were harvested, and histological examination was conducted at 2, 4, 8, and 16 weeks after operation. Intravenous urography assessment was performed at 16 weeks postoperatively. All the rabbits were alive in the experimental group until they were sacrificed. Histological analysis of the construct displayed the presence of multilayer urothelial cells on the luminal side and organized smooth muscle tissue on the other side, and different diameters of neovascularization were clearly identified in the substitutions obtained. No leakage, stricture, or obstructions were noted with intravenous urography assessment. All the animals in the control group died within two weeks, and urine leakage, scar formation, and inflammation were detected through autopsy. This study demonstrates the feasibility of tissue-engineered tubular substitutions constructed using homologous adipose-derived stem cells, smooth muscle cells, and bladder acellular matrix for urinary diversion in a rabbit model.
机译:临床上,自体胃肠段传统上用于尿流改道。然而,该过程经常引起许多严重的并发症。组织工程可为尿流改道提供另一种治疗方法。这项研究旨在通过使用同源脂肪来源的干细胞,平滑肌细胞和膀胱脱细胞基质来产生组织工程化的肾小管替代物,从而在兔模型中进行尿液转移。获得兔脂肪来源的干细胞和平滑肌细胞,并进行体外培养。将这些培养的​​源自脂肪的干细胞和平滑肌细胞接种到膀胱脱细胞基质的两侧,然后孵育7天。细胞接种的基质用于构建组织工程化的管状替代物,然后将其植入体内并包裹在网膜中两周以促进血管生成。在实验组中,将20只兔的膀胱完全切除,并且将上述组织工程的管状替代物用于尿液改道。在对照组中,将无种子细胞的膀胱脱细胞基质管状替代物植入网膜中,并以相同的过程用于另外五只兔子的尿液转移。收集植入物,并在术后2、4、8和16周进行组织学检查。术后16周进行静脉尿路造影评估。实验组中所有的兔子都活着直到被处死。对该组织的组织学分析显示,在腔侧存在多层尿路上皮细胞,而在另一侧组织有序的平滑肌组织,并且在获得的取代物中清楚地鉴定出不同直径的新血管形成。静脉输尿管造影检查未发现渗漏,狭窄或阻塞。对照组中的所有动物均在两周内死亡,并通过尸检发现尿液渗漏,疤痕形成和炎症。这项研究证明了使用同源脂肪干细胞,平滑肌细胞和膀胱脱细胞基质构建的组织工程性肾小管替代物在兔模型中进行尿分流的可行性。

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