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A dynamic distention protocol for whole-organ bladder decellularization: histological and biomechanical characterization of the acellular matrix

机译:全器官膀胱脱细胞的动态扩张协议:无细胞基质的组织学和生物力学表征

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摘要

A combined physical-chemical protocol for whole full-thickness bladder decellularization is proposed, based on organ cyclic distention through repeated infusion/withdrawal of the decellularization agents through the urethra. The dynamic decellularization was intended to enhance cell removal efficiency, facilitating the delivery of detergents within the inner layers of the tissue and the removal of cell debris. The use of mild chemical detergents (hypotonic solution and non-ionic detergent) was employed to limit adverse effects upon matrix 3D ultrastructure. Inspection of the presence of residual DNA and RNA was carried out on decellularized matrices to verify effective cell removal. Histological investigation was focused on assessing the retention of adequate structural and functional components that regulate the biomechanical behaviour of the acellular tissue. Biomechanical properties were evaluated through uniaxial tensile loading tests of tissue strips and through ex vivo filling cystometry to evaluate the whole-organ mechanical response to a physiological-like loading state. According to our results, a dynamic decellularization protocol of 17 h duration with a 5 ml/min detergent infusion flow rate revealed higher DNA removal efficiency than standard static decellularization, resulting in residual DNA content<50 ng/mg dry tissue weight. Furthermore, the collagen network and elastic fibres distribution were preserved in the acellular ECM, which exhibited suitable biomechanical properties in the perspective of its future use as an implant for bladder augmentation. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:提出了一种通过整个尿道全厚度脱细胞的综合物理化学方案,该方案基于通过尿道反复注入/脱细胞剂的器官循环扩张。动态脱细胞作用旨在增强细胞去除效率,促进清洁剂在组织内层内的递送和细胞碎片的去除。使用温和的化学清洁剂(低渗溶液和非离子清洁剂)来限制对基质3D超结构的不利影响。在脱细胞基质上检查残留DNA和RNA的存在,以验证是否能有效去除细胞。组织学研究集中于评估调节脱细胞组织的生物力学行为的适当结构和功能组件的保留。通过对组织条带的单轴拉伸载荷测试和通过离体填充膀胱测压仪评估生物器官对生理样载荷状态的机械响应来评估生物力学性能。根据我们的结果,以5 ml / min的去污剂注入流速进行的持续17小时的动态脱细胞方案显示,与标准静态脱细胞相比,DNA去除效率更高,导致残留DNA含量<50 ng / mg干组织重量。此外,胶原蛋白网络和弹性纤维分布被保留在无细胞ECM中,从其将来用作膀胱增强植入物的角度来看,它具有合适的生物力学特性。版权所有(c)2013 John Wiley&Sons,Ltd.

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