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Porous poly-l-lactide-co-ɛ-caprolactone scaffold: a novel biomaterial for vaginal tissue engineering

机译:多孔聚l-丙交酯-co-己内酯支架:一种用于阴道组织工程的新型生物材料

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摘要

The surgical reconstruction of functional neovagina is challenging and susceptible to complications. Therefore, developing tissue engineering-based treatment methods for vaginal defects is important. Our aim was to develop and test a novel supercritical carbon dioxide foamed poly-l-lactide-co-ɛ-caprolactone (scPLCL) scaffold for vaginal reconstruction. The scaffolds were manufactured and characterized for porosity (65 ± 4%), pore size (350 ± 150 µm) and elastic modulus (2.8 ± 0.4 MPa). Vaginal epithelial (EC) and stromal cells (SC) were isolated, expanded and characterized with flow cytometry. Finally, cells were cultured with scPLCL scaffolds in separate and/or co-cultures. Their attachment, viability, proliferation and phenotype were analysed. Both cell types strongly expressed cell surface markers CD44, CD73 and CD166. Strong expression of CD326 was detected with ECs and CD90 and CD105 with SCs. Both ECs and SCs attached and maintained viability on scPLCL. Further, scPLCL supported the proliferation of especially ECs, which also maintained epithelial phenotype (cytokeratin expression) during 14-day assessment period. Interestingly, ECs expressed uroplakin (UP) Ia, UPIb and UPIII markers; further, UPIa and UPIII expression was significantly higher on ECs cultured on scPLCL than on cell culture plastic. In conclusion, the scPLCL is potential scaffold for vaginal tissue engineering and the results of this study further illustrate the excellent biocompatibility of PLCL.
机译:功能性新阴道的外科手术重建具有挑战性,容易发生并发症。因此,开发基于组织工程的阴道缺陷治疗方法很重要。我们的目的是开发和测试一种用于阴道重建的新型超临界二氧化碳泡沫聚l-丙交酯-co-ε-己内酯(scPLCL)支架。制备支架并表征其孔隙率(65±4%),孔径(350±150μm)和弹性模量(2.8±0.4MPa)。分离阴道上皮(EC)和基质细胞(SC),并通过流式细胞仪对其进行扩增和鉴定。最后,用scPLCL支架在分开的和/或共培养物中培养细胞。分析了它们的附着,生存力,增殖和表型。两种细胞类型都强烈表达细胞表面标志物CD44,CD73和CD166。 ECs检测到CD326的强表达,SCs检测到CD90和CD105的强表达。 EC和SC都在scPLCL上连接并保持了生存能力。此外,scPLCL特别支持EC的增殖,EC在14天评估期内也保持上皮表型(细胞角蛋白表达)。有趣的是,ECs表达了uroplakin(UP)Ia,UPIb和UPIII标记。此外,在scPLCL上培养的EC上的UPIa和UPIII表达明显高于在细胞培养塑料上。总之,scPLCL是阴道组织工程的潜在支架,这项研究的结果进一步说明了PLCL具有出色的生物相容性。

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