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用于神经保护药物筛选的具有血脑屏障功能的三层血管结构的同轴生物打印。

Coaxial bioprinting of a three-layer vascular structure exhibiting blood-brain barrier function for neuroprotective drug screening.

作者信息

Wang Zhichao, Huang Chuanzhen, Shi Zhenyu, Liu Hanlian, Han Xu, Chen Zhuang, Li Shuying, Wang Zhen, Huang Jun

机构信息

Centre for Advanced Jet Engineering Technology (CaJET), Key Laboratory of High-efficiency and Clean Mechanical Manufacture (Ministry of Education), National Experimental Teaching Demonstration Center for Mechanical Engineering (Shandong University), School of Mechanical Engineering, Shandong University, Jinan 250061, China.

School of Mechanical Engineering, Yanshan University, Qinhuangdao 066004, China.

出版信息

Colloids Surf B Biointerfaces. 2025 May;249:114494. doi: 10.1016/j.colsurfb.2025.114494. Epub 2025 Jan 3.

Abstract

The in vitro blood-brain barrier (BBB) structures can offer advantages for studying cerebrovascular functions and developing neuroprotective drugs. However, currently developed BBB models are overly simplistic and inadequate for replicating the complex three-dimensional architecture of the in vivo BBB. In this study, a method is introduced for fabricating a three-layer vascular structure exhibiting BBB function using a coaxial extrusion bioprinting technique with a two-layer nozzle. Photocurable materials were incorporated into the inner layer of the coaxial nozzle, and photoinitiators from the outer layer diffused into the inner layer. As a result, only the materials in the inner layer at the interface between the inner and outer layers underwent crosslinking upon UV exposure. After removing the uncrosslinked materials, a two-layer vascular structure can be formed. Subsequently, a three-layer structure was established after seeding endothelial cells. The perfusion experiments demonstrated that the vascular structure facilitated the continuous flow of culture medium, thereby providing nutrients and oxygen to the surrounding neural tissue. The drug screening analysis indicated that this vascular structure could possess barrier function, allowing the passage of small molecular drugs while effectively blocking macromolecular drugs. Overall, these results suggest that the three-layer vascular structure exhibits excellent perfusion capacity and barrier function, making it a promising candidate for neuroprotective drug screening.

摘要

体外血脑屏障(BBB)结构可为研究脑血管功能和开发神经保护药物提供优势。然而,目前开发的BBB模型过于简单,不足以复制体内BBB复杂的三维结构。在本研究中,介绍了一种使用具有双层喷嘴的同轴挤出生物打印技术制造具有BBB功能的三层血管结构的方法。将光固化材料掺入同轴喷嘴的内层,外层的光引发剂扩散到内层。结果,仅在内层与外层之间的界面处的内层材料在紫外线照射下发生交联。去除未交联的材料后,可形成双层血管结构。随后,在内皮细胞接种后建立了三层结构。灌注实验表明,血管结构促进了培养基的连续流动,从而为周围的神经组织提供营养和氧气。药物筛选分析表明,这种血管结构可能具有屏障功能,允许小分子药物通过,同时有效阻断大分子药物。总体而言,这些结果表明,三层血管结构具有出色的灌注能力和屏障功能,使其成为神经保护药物筛选的有希望的候选者。

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