Chen Ke, Wan Haoran, Fang Xiang, Chen Hongyu
Key Laboratory of Impact and Safety Engineering of Ministry of Education of China, Ningbo University, Ningbo 315211, China.
Department of Vascular Surgery, Second Xiangya Hospital, Central South University, Changsha 410011, China.
Micromachines (Basel). 2022 Jul 18;13(7):1135. doi: 10.3390/mi13071135.
Laser additive manufacturing (LAM) of complex-shaped metallic components offers great potential for fabricating customized endovascular stents. In this study, anti-tetrachiral auxetic stents with negative Poisson ratios (NPR) were designed and fabricated via LAM. Poisson's ratios of models with different diameters of circular node (DCN) were calculated using finite element analysis (FEA). The experimental method was conducted with the LAM-fabricated anti-tetrachiral stents to validate their NPR effect and the simulation results. The results show that, with the increase in DCN from 0.6 to 1.5 mm, the Poisson ratios of anti-tetrachiral stents varied from -1.03 to -1.12, which is in line with the simulation results. The interrelationship between structural parameters of anti-tetrachiral stents, their mechanical properties and biocompatibility was demonstrated. The anti-tetrachiral stents with a DCN of 0.9 mm showed the highest absolute value of negative Poisson's ratio, combined with good cytocompatibility. The cytocompatibility tests indicate the envisaged cell viability and adhesion of the vascular endothelial cell on the LAM-fabricated anti-tetrachiral auxetic stents. The manufactured stents exhibit great superiority in the application of endovascular stent implantation due to their high flexibility for easy maneuverability during deployment and enough strength for arterial support.
复杂形状金属部件的激光增材制造(LAM)为定制血管内支架的制造提供了巨大潜力。在本研究中,通过LAM设计并制造了具有负泊松比(NPR)的抗四手性负泊松比支架。使用有限元分析(FEA)计算了具有不同圆形节点直径(DCN)的模型的泊松比。采用LAM制造的抗四手性支架进行实验,以验证其NPR效应和模拟结果。结果表明,随着DCN从0.6 mm增加到1.5 mm,抗四手性支架的泊松比从-1.03变化到-1.12,这与模拟结果一致。证明了抗四手性支架的结构参数、力学性能和生物相容性之间的相互关系。DCN为0.9 mm的抗四手性支架显示出最高的负泊松比绝对值,同时具有良好的细胞相容性。细胞相容性测试表明,血管内皮细胞在LAM制造的抗四手性负泊松比支架上具有预期的细胞活力和粘附性。所制造的支架在血管内支架植入应用中表现出巨大优势,因为它们具有高度的柔韧性,便于在部署过程中操作,并且具有足够的强度来支撑动脉。