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用于生物合成胆管支架的3D打印

3D Printing for Bio-Synthetic Biliary Stents.

作者信息

Boyer Christen J, Boktor Moheb, Samant Hrishikesh, White Luke A, Wang Yuping, Ballard David H, Huebert Robert C, Woerner Jennifer E, Ghali Ghali E, Alexander Jonathan S

机构信息

Molecular and Cellular Physiology, Health Sciences Center, Louisiana State University, Shreveport, LA 71103, USA.

Oral and Maxillofacial Surgery, Health Sciences Center, Louisiana State University, Shreveport, LA 71103, USA.

出版信息

Bioengineering (Basel). 2019 Feb 9;6(1):16. doi: 10.3390/bioengineering6010016.

Abstract

Three-dimensional (3D) printing is an additive manufacturing method that holds great potential in a variety of future patient-specific medical technologies. This project validated a novel crosslinked polyvinyl alcohol (XL-PVA) 3D printed stent infused with collagen, human placental mesenchymal stem cells (PMSCs), and cholangiocytes. The biofabrication method in the present study examined 3D printing and collagen injection molding for rapid prototyping of customized living biliary stents with clinical applications in the setting of malignant and benign bile duct obstructions. XL-PVA stents showed hydrophilic swelling and addition of radiocontrast to the stent matrix improved radiographic opacity. Collagen loaded with PMSCs contracted tightly around hydrophilic stents and dense choloangiocyte coatings were verified through histology and fluorescence microscopy. It is anticipated that design elements used in these stents may enable appropriate stent placement, provide protection of the stent-stem cell matrix against bile constituents, and potentially limit biofilm development. Overall, this approach may allow physicians to create personalized bio-integrating stents for use in biliary procedures and lays a foundation for new patient-specific stent fabrication techniques.

摘要

三维(3D)打印是一种增材制造方法,在未来各种针对患者的特定医疗技术中具有巨大潜力。该项目验证了一种新型的交联聚乙烯醇(XL-PVA)3D打印支架,其注入了胶原蛋白、人胎盘间充质干细胞(PMSC)和胆管细胞。本研究中的生物制造方法研究了3D打印和胶原蛋白注射成型,用于快速制造定制的活体胆管支架,在恶性和良性胆管梗阻情况下具有临床应用价值。XL-PVA支架表现出亲水性膨胀,向支架基质中添加放射性对比剂可改善射线不透性。负载PMSC的胶原蛋白在亲水性支架周围紧密收缩,通过组织学和荧光显微镜证实了致密的胆管细胞涂层。预计这些支架中使用的设计元素可能有助于正确放置支架,保护支架-干细胞基质免受胆汁成分的影响,并可能限制生物膜的形成。总体而言,这种方法可能使医生能够制造用于胆道手术的个性化生物整合支架,并为新的针对患者的支架制造技术奠定基础。

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