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3D打印移植物作为潜在用于血液透析的血管通路的配方及特性研究。

The formulation and characterization of 3D printed grafts as vascular access for potential use in hemodialysis.

作者信息

Cheng Bill, Xing Yue-Min, Shih Nai-Chia, Weng Jen-Po, Lin Hsin-Chieh

机构信息

Department of Materials Science and Engineering, National Chiao Tung University Hsinchu 30010 Taiwan Republic of China

出版信息

RSC Adv. 2018 Apr 24;8(28):15471-15479. doi: 10.1039/c8ra01583j. eCollection 2018 Apr 23.

Abstract

Arteriovenous graft (AVG) failure continues to be a life-threatening problem in haemodialysis. Graft failure can occur if the implanted graft is not well-matched to the vasculature of the patient. Likewise, stenosis often develops at the vein-graft anastomosis, contributing to thrombosis and early graft failure. To address this clinical need, a novel ink formulation comprised of ACMO/TMPTA/TMETA for 3D printing a AVG was developed (ACMO-AVG), in which the printed AVG was biocompatible and did not induce cytotoxicity. The ease of customizing the ACMO-AVG according to different requirements was demonstrated. Furthermore, the AVG displayed similar mechanical properties to the commercially available arteriovenous ePTFE graft (ePTFE-AVG). Unlike ePTFE-AVG, the ACMO-AVG displayed excellent anti-fouling characteristics because no plasma protein adsorption and platelet adhesion were detected on the luminal surfaces after 2 h of incubation. Similarly, exposure to human endothelial cells and human vascular smooth muscle cells did not result in any cell detection on the surfaces of the ACMO-AVG. Thus, the present study demonstrates a newly developed 3D printing ink formulation that can be successfully 3D printed into a clinically applicable vascular access used for haemodialysis.

摘要

动静脉移植物(AVG)功能衰竭在血液透析中仍然是一个危及生命的问题。如果植入的移植物与患者的脉管系统不匹配,就可能发生移植物功能衰竭。同样,静脉 - 移植物吻合处常常会出现狭窄,导致血栓形成和移植物早期功能衰竭。为满足这一临床需求,开发了一种由ACMO/TMPTA/TMETA组成的用于3D打印AVG的新型墨水配方(ACMO - AVG),其中打印出的AVG具有生物相容性且不会诱导细胞毒性。展示了根据不同要求定制ACMO - AVG的便利性。此外,ACMO - AVG表现出与市售动静脉ePTFE移植物(ePTFE - AVG)相似的机械性能。与ePTFE - AVG不同,ACMO - AVG表现出优异的抗污特性,因为孵育2小时后在管腔表面未检测到血浆蛋白吸附和血小板粘附。同样,将ACMO - AVG暴露于人类内皮细胞和人类血管平滑肌细胞后,在其表面未检测到任何细胞。因此,本研究展示了一种新开发的3D打印墨水配方,该配方可以成功地3D打印成用于血液透析的临床适用血管通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d276/9080031/3bcfbd43645e/c8ra01583j-f1.jpg

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