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用于全器官组织工程的支架:一种带附件的无缝、球形和中空胶原膀胱构建体的构建及体外评估

Scaffolds for whole organ tissue engineering: Construction and in vitro evaluation of a seamless, spherical and hollow collagen bladder construct with appendices.

作者信息

Hoogenkamp Henk R, Pot Michiel W, Hafmans Theo G, Tiemessen Dorien M, Sun Yi, Oosterwijk Egbert, Feitz Wout F, Daamen Willeke F, van Kuppevelt Toin H

机构信息

Department of Biochemistry 280, Radboud Institute for Molecular Life Sciences, Radboud university medical center, PO Box 9101, 6500 HB Nijmegen, The Netherlands.

Department of Urology 659, Radboud Institute for Molecular Life Sciences, Radboud university medical center, PO Box 9101, 6500 HB Nijmegen, The Netherlands.

出版信息

Acta Biomater. 2016 Oct 1;43:112-121. doi: 10.1016/j.actbio.2016.07.022. Epub 2016 Jul 14.

Abstract

UNLABELLED

The field of regenerative medicine has developed promising techniques to improve current neobladder strategies used for radical cystectomies or congenital anomalies. Scaffolds made from molecularly defined biomaterials are instrumental in the regeneration of tissues, but are generally confined to small flat patches and do not comprise the whole organ. We have developed a simple, one-step casting method to produce a seamless large hollow collagen-based scaffold, mimicking the shape of the whole bladder, and with integrated anastomotic sites for ureters and urethra. The hollow bladder scaffold is highly standardized, with uniform wall thickness and a unidirectional pore structure to facilitate cell infiltration in vivo. Human and porcine bladder urothelial and smooth muscle cells were able to attach to the scaffold and maintained their phenotype in vitro. The closed luminal side and the porous outside of the scaffold facilitated the formation of an urothelial lining and infiltration of smooth muscle cells, respectively. The cells aligned according to the provided scaffold template. The technology used is highly adjustable (shape, size, materials) and may be used as a starting point for research to an off-the-shelf medical device suitable for neobladders.

STATEMENT OF SIGNIFICANCE

In this study, we describe the development of a simple, one-step casting method to produce a seamless large hollow collagen-based scaffold mimicking the shape of the whole bladder with integrated anastomotic sites for ureters and urethra. The hollow bladder scaffold is highly standardized with uniform wall thickness and a unidirectional pore structure to facilitate cell infiltration in vivo. The closed luminal surface and the porous exterior of the scaffold facilitated the formation of a urothelial lining and infiltration of smooth muscle cells, respectively. The applied technology is highly adjustable (shape, size, materials) and can be the starting point for research to an off-the-shelf medical device suitable for neobladders.

摘要

未标注

再生医学领域已开发出有前景的技术,以改进目前用于根治性膀胱切除术或先天性异常的新膀胱策略。由分子定义的生物材料制成的支架对组织再生至关重要,但通常局限于小的扁平贴片,并不构成整个器官。我们开发了一种简单的一步浇铸方法,以生产一种无缝的大型中空胶原基支架,模仿整个膀胱的形状,并带有用于输尿管和尿道的集成吻合部位。该中空膀胱支架高度标准化,壁厚均匀且具有单向孔隙结构,以促进体内细胞浸润。人和猪的膀胱尿路上皮细胞和平滑肌细胞能够附着在支架上,并在体外维持其表型。支架封闭的管腔侧和多孔的外侧分别促进了尿路上皮衬里的形成和平滑肌细胞的浸润。细胞根据提供的支架模板排列。所使用的技术具有高度可调节性(形状、尺寸、材料),可作为研究适用于新膀胱的现成医疗设备的起点。

意义声明

在本研究中,我们描述了一种简单的一步浇铸方法的开发,该方法可生产一种无缝的大型中空胶原基支架,模仿整个膀胱的形状,并带有用于输尿管和尿道的集成吻合部位。该中空膀胱支架高度标准化,壁厚均匀且具有单向孔隙结构,以促进体内细胞浸润。支架封闭的管腔表面和多孔的外部分别促进了尿路上皮衬里的形成和平滑肌细胞的浸润。所应用的技术具有高度可调节性(形状、尺寸、材料),可作为研究适用于新膀胱的现成医疗设备的起点。

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