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用于血液透析的功能定制 3D 打印血管移植物。

Functioning tailor-made 3D-printed vascular graft for hemodialysis.

机构信息

Department of Biological Science and Technology, College of Biological Science and Technology, National Yang Ming Chiao Tung University, Hsinchu.

Center for Intelligent Drug Systems and Smart Bio-devices (IDS2B), Hsinchu.

出版信息

J Vasc Access. 2024 Jan;25(1):244-253. doi: 10.1177/11297298221086173. Epub 2022 Jun 30.

Abstract

BACKGROUND

The two ends of arteriovenous graft (AVG) are anastomosed to the upper limb vessels by surgery for hemodialysis therapy. However, the size of upper limb vessels varies to a large extent among different individuals.

METHODS

According to the shape and size of neck vessels quantified from the preoperative computed tomography angiographic scan, the ethylene-vinyl acetate (EVA)-based AVG was produced in H-shape by the three-dimensional (3D) printer and then sterilized. This study investigated the function of this novel 3D-printed AVG in vitro and in vivo.

RESULTS

This 3D-printed AVG can be implanted in the rabbit's common carotid artery and common jugular vein with ease and functions in vivo. The surgical procedure was quick, and no suture was required. The blood loss was minimal, and no hematoma was noted at least 1 week after the surgery. The blood flow velocity within the implanted AVG was 14.9 ± 3.7 cm/s. Additionally, the in vitro characterization experiments demonstrated that this EVA-based biomaterial is biocompatible and possesses a superior recovery property than ePTFE after hemodialysis needle cannulation.

CONCLUSIONS

Through the 3D printing technology, the EVA-based AVG can be tailor-made to fit the specific vessel size. This kind of 3D-printed AVG is functioning in vivo, and our results realize personalized vascular implants. Further large-animal studies are warranted to examine the long-term patency.

摘要

背景

动静脉移植物(AVG)的两端通过手术与上肢血管吻合,用于血液透析治疗。然而,上肢血管的大小在不同个体之间存在很大差异。

方法

根据术前 CT 血管造影扫描量化的颈部血管形状和大小,通过三维(3D)打印机生产基于乙烯-醋酸乙烯酯(EVA)的 H 形 AVG,然后对其进行消毒。本研究体外和体内研究了这种新型 3D 打印 AVG 的功能。

结果

这种 3D 打印的 AVG 可以轻松植入兔子的颈总动脉和颈总静脉,并在体内发挥功能。手术过程迅速,无需缝合。出血量极少,术后至少 1 周未发现血肿。植入 AVG 内的血流速度为 14.9±3.7cm/s。此外,体外特性实验表明,与 ePTFE 相比,这种基于 EVA 的生物材料具有更好的生物相容性和恢复性能,在经过血液透析针穿刺后。

结论

通过 3D 打印技术,可以根据特定的血管尺寸定制基于 EVA 的 AVG。这种 3D 打印的 AVG 在体内发挥作用,我们的结果实现了个性化血管植入。需要进一步的大动物研究来检查长期通畅性。

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