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Composite scaffolds for the engineering of hollow organs and tissues.

机译:用于中空器官和组织工程的复合支架。

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摘要

Several types of synthetic and naturally derived biomaterials have been used for augmenting hollow organs and tissues. However, each has desirable traits which were exclusive of the other. We fabricated a composite scaffold and tested its potential for the engineering of hollow organs in a bladder tissue model. The composite scaffolds were configured to accommodate a large number of cells on one side and were designed to serve as a barrier on the opposite side. The scaffolds were fabricated by bonding a collagen matrix to PGA polymers with threaded collagen fiber stitches. Urothelial and bladder smooth muscle cells were seeded on the composite scaffolds, and implanted in mice for up to 4 weeks and analyzed. Both cell types readily attached and proliferated on the scaffolds and formed bladder tissue-like structures in vivo. These structures consisted of a luminal urothelial layer, a collagen rich compartment and a peripheral smooth muscle layer. Biomechanical studies demonstrated that the tissues were readily elastic while maintaining their pre-configured structures. This study demonstrates that a composite scaffold can be fabricated with two completely different polymer systems for the engineering of hollow organs. The composite scaffolds are biocompatible, possess adequate physical and structural characteristics for bladder tissue engineering, and are able to form tissues in vivo. This scaffold system may be useful in patients requiring hollow organ replacement.
机译:几种类型的合成的和天然衍生的生物材料已用于增强中空器官和组织。但是,每个人都有彼此排斥的理想特征。我们制造了一个复合支架,并测试了其在膀胱组织模型中改造中空器官的潜力。复合支架被配置为在一侧容纳大量细胞,并被设计为在相对侧用作屏障。通过将胶原蛋白基质通过带螺纹的胶原纤维缝线粘合到PGA聚合物上来制造支架。将尿道和膀胱平滑肌细胞接种在复合支架上,并植入小鼠长达4周并进行分析。两种细胞类型都易于附着并在支架上增殖,并在体内形成膀胱组织样结构。这些结构由管腔尿路上皮层,富含胶原蛋白的隔室和外周平滑肌层组成。生物力学研究表明,这些组织在保持其预先配置的结构的同时,容易产生弹性。这项研究表明,可以使用两种完全不同的聚合物系统制造复合支架,以用于中空器官的工程设计。复合支架是生物相容的,具有用于膀胱组织工程的足够的物理和结构特征,并且能够在体内形成组织。该支架系统在需要中空器官置换的患者中可能有用。

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