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首页> 外文期刊>Acta biomaterialia >3D-printed flexible polymer stents for potential applications in inoperable esophageal malignancies
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3D-printed flexible polymer stents for potential applications in inoperable esophageal malignancies

机译:用于潜在应用的3D印刷柔性聚合物支架,无法迈彻的食管恶性肿瘤

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摘要

Palliation therapy for dysphagia using esophageal stents is the current treatment of choice for those patients with inoperable esophageal malignancies. However, the metallic and plastic stents currently used in the clinical setting may cause complications, such as tumor ingrowth and stent migration into the stomach. To effectively reduce/overcome these complications, we designed a tubular, flexible polymer stent with spirals. The parameters of the spirals were computationally optimized by using a finite element analysis. The designed polymer stents with optimized spirals were then printed by a 3D printing technique. 3D-printed tubular polymer stents without spirals served as controls. The self-expansion and anti-migration properties of the printed stent were characterized in an ex vivo normal porcine esophagus. The biodegradability test of the stent was performed in a neutral buffer and acidic gastric buffer. The cytotoxicity of the new stent was examined through the viability test of human esophagus epithelial cells. Results showed the self-expansion force of the 3D-printed polymer stent with spirals was higher than the stent without spirals. The anti-migration force of the 3D-printed stent with spirals was significantly higher than that of the stent without spirals. Furthermore, the stent with spirals significantly decreased the migration distance compared to the non-spiral 3D-printed polymer stent. Degradation study showed that the polymer materials started to degrade after six weeks and the compressive strength of the stent was not significantly decreased with time. In vitro cell viability results further indicated that the polymer stent does not have any cytotoxicity. Together, these results showed that the 3D-printed stent with spirals has potential applications in the treatment of inoperable esophageal malignancies. (C) 2018 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:使用食管支架的吞咽嗜血症治疗吞咽症是目前对那些无法操作食管恶性肿瘤的患者的选择。然而,目前在临床环境中使用的金属和塑料支架可能导致并发症,例如肿瘤的生长和支架迁移到胃中。为了有效减少/克服这些并发症,我们设计了一种具有螺旋的管状,柔性聚合物支架。通过使用有限元分析来计算螺旋的参数。然后通过3D打印技术印刷具有优化螺旋的设计的聚合物支架。 3D印刷管状聚合物支架没有螺旋作为对照。印刷支架的自膨胀和抗迁移性质在前体内正常猪食管中表征。支架的生物降解性试验在中性缓冲液和酸性胃缓冲液中进行。通过人食道上皮细胞的活力试验检查新支架的细胞毒性。结果表明,3D印刷聚合物支架的自膨胀力高于没有螺旋的支架。用螺旋的3D印刷支架的防迁移力显着高于没有螺旋的支架。此外,与非螺旋3D印刷聚合物支架相比,具有螺旋的支架显着降低了迁移距离。降解研究表明,聚合物材料在六周后开始降解,并且支架的抗压强度随时间没有显着降低。体外细胞活力结果进一步表明聚合物支架没有任何细胞毒性。这些结果表明,具有螺旋的3D印刷支架在治疗不可操作的食管恶性肿瘤中具有潜在的应用。 (c)2018 Acta Materialia Inc.出版的Althervier Ltd.保留所有权利。

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