Novel Silk Fibroin Based Bilayer Scaffolds for Bioabsorbable Internal Biliary Stenting

IF 3.2 4区 医学 Q2 ENGINEERING, BIOMEDICAL
Benedetta Isella, Nourhan Hassan, Aleksander Drinic, Roman M. Eickhoff, Nadja Kröger, Ted J. Vaughan, Alexander Kopp
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Abstract

Biliary duct reconstruction is one of the most challenging parts of liver transplantation and accounts for 40%–60% of complications. While current stent-based devices on the market show promising results in reducing complications, they are manufactured from permanent synthetic materials and require a second reintervention for their removal. This exposes the patients to other potential complications and increases healthcare costs. This study develops a fabrication technique to produce a bioabsorbable biliary stent based on silk fibroin. The process used a dip-coating procedure for silk fibroin that produced highly smooth monolayer tubular specimens without the use of any additional surfactants during removal. This process was combined with an electrospinning step to produce bilayer structures through the deposition of electrospun silk fibroin on the outer surface. The structures proved to have promising mechanical, morphological, and cytocompatibility properties for use in the field of biliary stenting. Furthermore, the technique investigated proved to be reproducible, achieving an important requirement for large-scale use even in the presence of a biomaterial derived from a natural source. These results show the possibility of obtaining a completely bioabsorbable internal biliary stent that does not require any second reintervention. This study can be the starting point for further investigations both in vitro and in vivo to assess the suitability of silk fibroin biliary stents for clinical applications.

Abstract Image

新型丝素双层支架用于生物可吸收胆道内支架。
胆管重建是肝移植中最具挑战性的部分之一,占并发症的40%-60%。虽然目前市场上基于支架的设备在减少并发症方面显示出有希望的结果,但它们是由永久性合成材料制造的,需要第二次再干预才能取出。这使患者面临其他潜在的并发症,并增加了医疗费用。本研究开发了一种基于丝素蛋白的生物可吸收胆道支架的制备技术。该工艺使用丝素的浸渍涂层程序,在去除过程中不使用任何额外的表面活性剂,产生了高度光滑的单层管状样品。该工艺与静电纺丝步骤相结合,通过在外表面沉积静电纺丝丝素产生双层结构。该结构被证明具有良好的力学、形态学和细胞相容性,可用于胆道支架领域。此外,所研究的技术被证明是可复制的,即使在天然来源的生物材料存在的情况下,也实现了大规模使用的重要要求。这些结果表明获得完全生物可吸收的胆道内支架的可能性,不需要任何第二次再干预。本研究可作为进一步体外和体内研究的起点,以评估丝素蛋白胆道支架在临床应用中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.50
自引率
2.90%
发文量
199
审稿时长
12 months
期刊介绍: Journal of Biomedical Materials Research – Part B: Applied Biomaterials is a highly interdisciplinary peer-reviewed journal serving the needs of biomaterials professionals who design, develop, produce and apply biomaterials and medical devices. It has the common focus of biomaterials applied to the human body and covers all disciplines where medical devices are used. Papers are published on biomaterials related to medical device development and manufacture, degradation in the body, nano- and biomimetic- biomaterials interactions, mechanics of biomaterials, implant retrieval and analysis, tissue-biomaterial surface interactions, wound healing, infection, drug delivery, standards and regulation of devices, animal and pre-clinical studies of biomaterials and medical devices, and tissue-biopolymer-material combination products. Manuscripts are published in one of six formats: • original research reports • short research and development reports • scientific reviews • current concepts articles • special reports • editorials Journal of Biomedical Materials Research – Part B: Applied Biomaterials is an official journal of the Society for Biomaterials, Japanese Society for Biomaterials, the Australasian Society for Biomaterials, and the Korean Society for Biomaterials. Manuscripts from all countries are invited but must be in English. Authors are not required to be members of the affiliated Societies, but members of these societies are encouraged to submit their work to the journal for consideration.
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