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Evaluation of electrospun bioresorbable scaffolds for tissue-engineered urinary bladder augmentation

机译:电纺生物可吸收支架用于组织工程膀胱扩张术的评估

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摘要

Tissue engineering represents a potential and valuable approach for the treatment of urologic pathologies. Bioresorbable polymeric scaffolds can be regarded as effective platforms to surgically treat bladder diseases and subsequently guide the formation of novel tissue after implantation. To this aim, the evaluation of electrospun scaffolds made up of poly(ε- caprolactone) blended with poly(3-hydroxybutyrate-co-3-hydroxyvalerate) is presented here. Firstly, the microstructure and the viscoelastic/mechanical properties of the electrospun fabrics were investigated. Then, the in vivo response was assessed by performing a urinary bladder augmentation using female Wistar rats as an animal model. 15 days after the surgical procedure, the scaffolds were covered by regenerative urothelium up to 50%, which increased to 50-100% after 30 days. These encouraging results, collected in the 90-day follow-up, clearly showed the potential applications of tissue engineering in the urologic field. A longer in vivo evaluation is currently underway.
机译:组织工程学是治疗泌尿外科病理学的一种潜在且有价值的方法。可生物吸收的聚合物支架可以被认为是通过手术治疗膀胱疾病并随后在植入后指导新组织形成的有效平台。为此,这里介绍了由聚(ε-己内酯)与聚(3-羟基丁酸酯-co-3-羟基戊酸酯)混合而成的电纺支架的评估。首先,研究了电纺织物的微观结构和粘弹性/力学性能。然后,通过使用雌性Wistar大鼠作为动物模型进行膀胱增大来评估体内反应。手术后15天,支架被再生尿路上皮覆盖达50%,30天后增加到50-100%。在90天的随访中收集到的这些令人鼓舞的结果清楚地表明了组织工程在泌尿外科领域的潜在应用。目前正在进行更长的体内评估。

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