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The relationship between the mechanical properties and cell behaviour on PLGA and PCL scaffolds for bladder tissue engineering.

机译:膀胱组织工程PLGA和PCL支架的力学性能与细胞行为之间的关系。

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Previous work on 2D synthetic films showed growth of human bladder stromal cells was enhanced on materials with lower moduli that mimic the elastic properties of native tissue. This study developed 3D synthetic foam scaffolds for soft tissue engineering by emulsion freeze-drying. Foams of poly(lactide-co-glycolide) (PLGA) and poly(varepsilon-caprolactone) (PCL) were extensively characterised using scanning electron microscopy, mercury porosimetry, dynamic mechanical analysis, degradation analysis, size exclusion chromatography and differential scanning calorimetry. Foams of 85-88% porosity and 35 microm pore diameter were selected for further study; the storage modulus of PCL foams was around half that of PLGA (2 MPa vs 4 MPa) and closer to the reported value for native bladder tissue. Urinary tract stromal cells showed a 4.4 and 2.4-fold higher attachment and rate of growth, respectively, on PCL scaffolds, as assessed by a modified 3-[4,5-dimethyl(thiazol-2yl)-3,5-diphery] tetrazolium bromide assay. Agreater contractile force was exerted by cells seeded in PLGA than on PCL scaffolds, raising the possibility that the reduced rate of proliferation of cells on PLGA scaffolds may reflect differentiation into a contractile phenotype. This study has generated PCL foam scaffolds with properties that may be pertinent to the tissue engineering of the bladder and other soft tissues.
机译:先前在2D合成胶片上的工作表明,在模拟天然组织弹性特性的较低模量的材料上,人膀胱基质细胞的生长得到增强。这项研究通过乳液冷冻干燥开发了用于软组织工程的3D合成泡沫支架。使用扫描电子显微镜,水银孔隙率法,动态力学分析,降解分析,尺寸排阻色谱法和差示扫描量热法对聚丙交酯-乙交酯-乙交酯(PLGA)和聚戊二酸-己内酯(PCL)的泡沫进行了广泛表征。选择孔隙率为85%至88%,孔径为35微米的泡沫进行进一步研究。 PCL泡沫的储能模量约为PLGA的储能模量的一半(2 MPa对4 MPa),接近自然膀胱组织的报道值。根据改良的3- [4,5-二甲基(噻唑-2yl)-3,5-diphery]四唑鎓评估,泌尿道基质细胞在PCL支架上的附着和生长速率分别提高了4.4倍和2.4倍溴化物测定。 PLGA种子中的细胞比PCL支架上的细胞施加了更大的收缩力,这增加了PLGA支架上细胞增殖速率降低可能反映出分化为收缩表型的可能性。该研究产生了具有与膀胱和其他软组织的组织工程有关的性质的PCL泡沫支架。

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