首页 /研究 /Commercial articulated collaborative in situ 3D bioprinter for skin wound healing
OTHER

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

Aleksandr Levin, P. A. Karalkin, Elizaveta V. Koudan, Fedor Senatov, Vladislav A. Parfenov, Vladislav Lvov, Stanislav V. Petrov, Frederico D. A. S. Pereira, Kovalev Av, E. O. Osidak, S.P. Domogatsky, Natalya E. Manturova, Vladimir Kasyanov, Н. С. Сергеева, V. L Zorin, Yusef D. Khesuani, Vladimir Mironov

发表年份
2023
引用次数
20

摘要

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.

关键词

3D bioprintingBiomedical engineeringIn situWound healingRegeneration (biology)In vivoMaterials scienceIn vitroTissue engineeringMedicine

相关论文

查看 OTHER 分类全部论文