用于皮肤伤口愈合的商业关节协作原位3D生物打印机。

IF 6.8 3区 医学 Q1 ENGINEERING, BIOMEDICAL
Aleksandr A Levin, Pavel A Karalkin, Elizaveta V Koudan, Fedor S Senatov, Vladislav A Parfenov, Vladislav A Lvov, Stanislav V Petrov, Frederico D A S Pereira, Alexey V Kovalev, Egor O Osidak, Sergey P Domogatsky, Natalya E Manturova, Vladimir A Kasyanov, Natalia S Sergeeva, Vadim L Zorin, Yusef D Khesuani, Vladimir A Mironov
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引用次数: 0

摘要

原位生物打印技术是新兴的生物打印技术中最具临床意义的技术之一,因为它可以在手术室中直接在人体上进行,并且不需要生物反应器进行打印后的组织成熟。然而,市场上仍然没有商业化的原位生物打印机。在这项研究中,我们展示了最初开发的第一个商业铰接式协作原位生物打印机在大鼠和猪模型中治疗全层伤口的益处。我们使用了KUKA公司的铰接式协作机械臂,并开发了原始打印头和通信软件,可以在曲线和移动表面上进行原位生物打印。体外和体内实验结果表明,生物墨水的原位生物打印具有很强的水凝胶附着力,能够在湿组织的曲面上进行高保真度的打印。原位生物打印机在手术室使用方便。另外的体外实验(体外胶原收缩实验和体外3D血管生成实验)和组织学分析表明,原位生物打印提高了大鼠和猪皮肤伤口愈合的质量。没有对正常伤口愈合过程的干扰,甚至在一定程度上改善了这一过程的动力学,这强烈表明原位生物打印可以作为一种新的伤口愈合治疗方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Commercial articulated collaborative <i>in situ</i> 3D bioprinter for skin wound healing.

Commercial articulated collaborative <i>in situ</i> 3D bioprinter for skin wound healing.

Commercial articulated collaborative <i>in situ</i> 3D bioprinter for skin wound healing.

Commercial articulated collaborative in situ 3D bioprinter for skin wound healing.

In situ bioprinting is one of the most clinically relevant techniques in the emerging bioprinting technology because it could be performed directly on the human body in the operating room and it does not require bioreactors for post-printing tissue maturation. However, commercial in situ bioprinters are still not available on the market. In this study, we demonstrated the benefit of the originally developed first commercial articulated collaborative in situ bioprinter for the treatment of full-thickness wounds in rat and porcine models. We used an articulated and collaborative robotic arm from company KUKA and developed original printhead and correspondence software enabling in situ bioprinting on curve and moving surfaces. The results of in vitro and in vivo experiments show that in situ bioprinting of bioink induces a strong hydrogel adhesion and enables printing on curved surfaces of wet tissues with a high level of fidelity. The in situ bioprinter was convenient to use in the operating room. Additional in vitro experiments (in vitro collagen contraction assay and in vitro 3D angiogenesis assay) and histological analyses demonstrated that in situ bioprinting improves the quality of wound healing in rat and porcine skin wounds. The absence of interference with the normal process of wound healing and even certain improvement in the dynamics of this process strongly suggests that in situ bioprinting could be used as a novel therapeutic modality in wound healing.

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来源期刊
CiteScore
6.90
自引率
4.80%
发文量
81
期刊介绍: The International Journal of Bioprinting is a globally recognized publication that focuses on the advancements, scientific discoveries, and practical implementations of Bioprinting. Bioprinting, in simple terms, involves the utilization of 3D printing technology and materials that contain living cells or biological components to fabricate tissues or other biotechnological products. Our journal encompasses interdisciplinary research that spans across technology, science, and clinical applications within the expansive realm of Bioprinting.
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