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利用磁声悬浮定向组装技术从组织球状体生物制造功能性管状结构。

Biofabrication of a Functional Tubular Construct from Tissue Spheroids Using Magnetoacoustic Levitational Directed Assembly.

作者信息

Parfenov Vladislav A, Koudan Elizaveta V, Krokhmal Alisa A, Annenkova Elena A, Petrov Stanislav V, Pereira Frederico D A S, Karalkin Pavel A, Nezhurina Elizaveta K, Gryadunova Anna A, Bulanova Elena A, Sapozhnikov Oleg A, Tsysar Sergey A, Liu Kaizheng, Oosterwijk Egbert, van Beuningen Henk, van der Kraan Peter, Granneman Sanne, Engelkamp Hans, Christianen Peter, Kasyanov Vladimir, Khesuani Yusef D, Mironov Vladimir A

机构信息

Laboratory for Biotechnological Research "3D Bioprinting Solutions", Moscow, 115409, Russia.

A. A. Baikov Institute of Metallurgy and Material Science, Russian Academy of Sciences, Moscow, 119334, Russia.

出版信息

Adv Healthc Mater. 2020 Dec;9(24):e2000721. doi: 10.1002/adhm.202000721. Epub 2020 Aug 18.

Abstract

In traditional tissue engineering, synthetic or natural scaffolds are usually used as removable temporal support, which involves some biotechnology limitations. The concept of "scaffield" approach utilizing the physical fields instead of biomaterial scaffold has been proposed recently. In particular, a combination of intense magnetic and acoustic fields can enable rapid levitational bioassembly of complex-shaped 3D tissue constructs from tissue spheroids at low concentration of paramagnetic agent (gadolinium salt) in the medium. In the current study, the tissue spheroids from human bladder smooth muscle cells (myospheres) are used as building blocks for assembling the tubular 3D constructs. Levitational assembly is accomplished at low concentrations of gadolinium salts in the high magnetic field at 9.5 T. The biofabricated smooth muscle constructs demonstrate contraction after the addition of vasoconstrictive agent endothelin-1. Thus, hybrid magnetoacoustic levitational bioassembly is considered as a new technology platform in the emerging field of formative biofabrication. This novel technology of scaffold-free, nozzle-free, and label-free bioassembly opens a unique opportunity for rapid biofabrication of 3D tissue and organ constructs with complex geometry.

摘要

在传统组织工程中,合成或天然支架通常用作可移除的临时支撑物,这存在一些生物技术局限性。最近提出了利用物理场而非生物材料支架的“支架”方法概念。特别是,强磁场和声场的组合能够在培养基中低浓度顺磁性剂(钆盐)的情况下,使来自组织球体的复杂形状三维组织构建体实现快速悬浮生物组装。在当前研究中,来自人膀胱平滑肌细胞的组织球体(肌球体)被用作组装管状三维构建体的基础材料。悬浮组装在9.5T的高磁场中低浓度钆盐条件下完成。生物制造的平滑肌构建体在添加血管收缩剂内皮素-1后表现出收缩。因此,混合磁声悬浮生物组装被视为新兴的成型生物制造领域中的一种新技术平台。这种无支架、无喷嘴且无标记的生物组装新技术为快速生物制造具有复杂几何形状的三维组织和器官构建体提供了独特机遇。

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