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在机器人辅助生物打印系统中使用温度调节打印头改进热敏生物墨水支架制造

Improving Thermosensitive Bioink Scaffold Fabrication with a Temperature-Regulated Printhead in Robot-Assisted Bioprinting System.

作者信息

Wang Zitong, Lin Li, Li Xiangyu, Zhang Quan, Mi Xuelian, Xu Bide, Xu Yuanjing, Liu Tongyou, Shen Yuling, Wang Zan, Xie Neng, Wang Jinwu

机构信息

Department of Biomedical Engineering, School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.

Shanghai Ninth People's Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200011, China.

出版信息

ACS Omega. 2024 Sep 18;9(39):40618-40631. doi: 10.1021/acsomega.4c04373. eCollection 2024 Oct 1.

Abstract

bioprinting enables precise 3D printing inside the human body using modified bioprinters with thermosensitive bioinks such as gelatin methacrylate (GelMA). However, these devices lack refined temperature-regulated mechanisms essential for ensuring bioink viscosity, as compared to traditional bio-3D printers. Addressing this challenge, this study presents a temperature-regulated printhead designed to improve the fabrication of thermosensitive bioink scaffolds in bioprinting, integrated into a UR5 robotic arm. Featuring a closed-loop system, it achieves a temperature steady error of 1 °C and a response time of approximately 1 min. The effectiveness of the printer was validated by bioprinting multilayer lattice 3D bioscaffolds. Comparisons were made with or without temperature control using different concentrations of GelMA + LAP. The deformation of the bioscaffolds under both conditions was analyzed, and cell culture tests were conducted to verify viability. Additionally, the rheology and mechanical properties of GelMA were tested. A final preliminary bioprinting experiment was conducted on a model of a damaged femur to demonstrate practical application. The fabrication of this printhead is entirely open source, facilitating easy modifications to accommodate various robotic arms. We encourage readers to advance this prototype for application in increasingly complex bioprinting situations, especially those utilizing thermosensitive bioinks.

摘要

生物打印能够使用配备热敏生物墨水(如甲基丙烯酸明胶(GelMA))的改良生物打印机在人体内进行精确的3D打印。然而,与传统的生物3D打印机相比,这些设备缺乏确保生物墨水粘度所必需的精细温度调节机制。为应对这一挑战,本研究提出了一种温度调节打印头,旨在改进生物打印中热敏生物墨水支架的制造,并将其集成到UR5机器人手臂中。该打印头具有闭环系统,温度稳定误差可达1°C,响应时间约为1分钟。通过生物打印多层格子3D生物支架验证了该打印机的有效性。使用不同浓度的GelMA + LAP进行了有无温度控制的比较。分析了两种条件下生物支架的变形情况,并进行了细胞培养测试以验证细胞活力。此外,还测试了GelMA的流变学和力学性能。在受损股骨模型上进行了最终的初步生物打印实验,以展示其实际应用。该打印头的制造完全开源,便于轻松修改以适应各种机器人手臂。我们鼓励读者改进这个原型,以便在日益复杂的生物打印场景中应用,特别是那些使用热敏生物墨水的场景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ca3/11447728/bce198444780/ao4c04373_0001.jpg

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