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A novel biopolymer device fabricated by 3D printing for simplifying procedures of pancreaticojejunostomy

机译:用于简化PancreaticojeNunoStomy的方法制造的一种新型生物聚合物装置,用于简化PancreaticojeNunostomy的程序

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摘要

The purpose of our research was to verify the feasibility and effectiveness of a novel three-dimensional printed biopolymer device (3DP-BPD) for duct-to-mucosa pancreaticojejunostomy (PJ) in minipigs. Polylactic acid (PLA) was selected as the raw materials for 3DP-BPD. Three components of a 3DP-BPD were designed and manufactured: hollow stent, supporting disk, and nut. A pancreatic duct dilation model was developed in six minipigs. After 4 weeks, minipigs underwent operations with duct-to-mucosa PJ using 3DP-BPD. The operation time and postoperative complications were analyzed. The anastomotic sites were evaluated grossly 4 weeks and 24 weeks after PJ, and the histological evaluation of anastomotic sites was performed 24 weeks after PJ. The operation time of six stitches duct-to-mucosa PJ was 9.1 +/- 1.7 min. All minipigs survived without any adverse events like postoperative pancreatic fistula (POPF). Serum C reactive protein (CRP) and procalcitonin (PCT) levels were normal, and the anastomotic sites were connected tightly on gross observation and touch at 4 weeks and 24 weeks. Histological examinations indicated that the tissues were continuous between the pancreas and the jejunum. The use of 3DP-BPD did not increase the risk of severe local inflammation and POPF. 3DP-BPD used for duct-to-mucosa PJ is more convenient and clinically feasible for pancreatoenteric reconstruction.
机译:我们的研究目的是验证新型三维印刷生物聚合物装置(3DP-BPD)的可行性和有效性,用于M微小的导管对粘膜Pancreaticojejunostomy(PJ)。选择聚乳酸(PLA)作为3DP-BPD的原料。设计和制造了3DP-BPD的三个组件:中空支架,支撑盘和螺母。胰管扩张模型是以六个微型引发的。 4周后,MINIPIGS使用3DP-BPD与导管对粘膜PJ进行操作。分析了操作时间和术后并发症。在PJ后4周和24周评估吻合网站,并在PJ后24周进行吻合点的组织学评估。六针刺对粘膜pj的操作时间为9.1 +/- 1.7分钟。所有MINIPIG都幸存下来,没有术后胰瘘(POPF)等不良事件。血清C反应蛋白(CRP)和ProCalcitonin(PCT)水平正常,吻合点在4周和24周内紧密连接在粗略观察和触摸。组织学检查表明,组织在胰腺和JEJUNUM之间是连续的。使用3DP-BPD并未增加严重局部炎症和POPF的风险。用于导管对粘膜PJ的3DP-BPD对于胰腺重建更方便和临床可行。

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