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冷冻铸造多孔壳聚糖输尿管支架以改善引流。

Freeze-casting porous chitosan ureteral stents for improved drainage.

机构信息

Thayer School of Engineering, Dartmouth College, 14 Engineering Dr, Hanover, NH 03755, USA.

Thayer School of Engineering, Dartmouth College, 14 Engineering Dr, Hanover, NH 03755, USA.

出版信息

Acta Biomater. 2019 Jan 15;84:231-241. doi: 10.1016/j.actbio.2018.11.005. Epub 2018 Nov 7.

Abstract

As a new strategy for improved urinary drainage, in parallel to the potential for additional functions such as drug release and self-removal, highly porous chitosan stents are manufactured by radial, bi-directional freeze-casting. Inserting the porous stent in to a silicone tube to emulate its placement in the ureter shows that it is shape conforming and remains safely positioned in place, also during flow tests, including those performed in a peristaltic pump. Cyclic compression tests on fully-hydrated porous stents reveal high stent resilience and close to full elastic recovery upon unloading. The drainage performance of the chitosan stent is evaluated, using effective viscosity in addition to volumetric flow and flux; the porous stent's performance is compared to that of the straight portion of a commercial 8 Fr double-J stent which possesses, in its otherwise solid tube wall, regularly spaced holes along its length. Both the porous and the 8 Fr stent show higher effective viscosities, when tested in the silicone tube. The performance of the porous stent improves considerably more (47.5%) than that of the 8 Fr stent (30.6%) upon removal from the tube, illustrating the effectiveness of the radially aligned porosity for drainage. We conclude that the newly-developed porous chitosan ureteral stent merits further in vitro and in vivo assessment of its promise as an alternative and complement to currently available medical devices. STATEMENT OF SIGNIFICANCE: No papers, to date, report on porous ureteral stents, which we propose as a new strategy for improved urinary drainage. The highly porous chitosan stents of our study are manufactured by radial, bi-directional freeze casting. Cyclic compression tests on fully-hydrated porous stents revealed high stent resilience and close to full recovery upon unloading. The drainage performance of the chitosan is evaluated, using effective viscosity in addition to volumetric flow and flux, and compared to that of the straight portion of a commercial 8 Fr double-J stent. The performance of the porous stent improves considerably more (47.5%) than that of the 8 Fr stent (30.6%) upon removal from the tube, illustrating the effectiveness of the radially aligned porosity for drainage. While further studies are required to explore other potential benefits of the porous stent design such as antimicrobial behavior, drug release, and biodegradability, we conclude that the newly-developed porous chitosan ureteral stent has considerable potential as a medical device.

摘要

作为一种改善尿路引流的新策略,除了具有药物释放和自去除等额外功能的潜力外,还通过径向、双向冷冻铸造制造出高多孔壳聚糖支架。将多孔支架插入硅胶管中以模拟其在输尿管中的位置表明,它具有形状顺应性,并在放置时保持安全位置,即使在包括蠕动泵在内的流动测试中也是如此。对完全水合的多孔支架进行循环压缩测试表明,支架具有高弹性和几乎完全的卸载后弹性恢复。除了体积流量和通量外,还使用有效粘度来评估壳聚糖支架的引流性能;将多孔支架的性能与商业 8Fr 双 J 支架的直段进行比较,该支架在其实心管壁中沿其长度具有规则间隔的孔。当在硅胶管中测试时,多孔支架和 8Fr 支架的有效粘度都更高。当从管中取出时,多孔支架的性能提高了 47.5%,而 8Fr 支架的性能仅提高了 30.6%,这说明了径向排列的孔隙对于引流的有效性。我们得出的结论是,新开发的多孔壳聚糖输尿管支架值得进一步进行体外和体内评估,以评估其作为现有医疗设备的替代和补充的潜力。

意义声明

迄今为止,没有论文报道过多孔输尿管支架,我们提出这是一种改善尿路引流的新策略。我们的研究中的高多孔壳聚糖支架是通过径向、双向冷冻铸造制造的。对完全水合的多孔支架进行循环压缩测试表明,支架具有高弹性和几乎完全的卸载后弹性恢复。除了体积流量和通量外,还使用有效粘度来评估壳聚糖的引流性能,并与商业 8Fr 双 J 支架的直段进行比较。当从管中取出时,多孔支架的性能提高了 47.5%,而 8Fr 支架的性能仅提高了 30.6%,这说明了径向排列的孔隙对于引流的有效性。虽然还需要进一步研究来探索多孔支架设计的其他潜在优势,如抗菌行为、药物释放和生物降解性,但我们得出的结论是,新开发的多孔壳聚糖输尿管支架作为一种医疗器械具有相当大的潜力。

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