UCL Centre for Nerve Engineering, Department of Pharmacology, UCL School of Pharmacy, University College London, London, United Kingdom.
Department of Mining and Materials Engineering, McGill University, Montreal, Quebec, Canada.
Biofabrication. 2024 Nov 20;17(1). doi: 10.1088/1758-5090/ad8efd.
Engineered neural tissue (EngNT) is a stabilised aligned cellular hydrogel that offers a potential alternative to the nerve autograft for the treatment of severe peripheral nerve injury. This work aimed to automate the production of EngNT, to improve the feasibility of scalable manufacture for clinical translation. Endothelial cells were used as the cellular component of the EngNT, with the formation of endothelial cell tube-like structures mimicking the polarised vascular structures formed early on in the natural regenerative process. Gel aspiration-ejection for the production of EngNT was automated by integrating a syringe pump with a robotic positioning system, using software coded in Python to control both devices. Having established the production method and tested mechanical properties, the EngNT containing human umbilical vein endothelial cells (EngNT-HUVEC) was characterised in terms of viability and alignment, compatibility with neurite outgrowth from rat dorsal root ganglion neurons and formation of endothelial cell networks. EngNT-HUVEC manufactured using the automated system contained viable and aligned endothelial cells, which developed into a network of multinucleated endothelial cell tube-like structures inside the constructs and an outer layer of endothelialisation. The EngNT-HUVEC constructs were made in various sizes within minutes. Constructs provided support and guidance to regenerating neurites. This work automated the formation of EngNT, facilitating high throughput manufacture at scale. The formation of endothelial cell tube-like structures within stabilised hydrogels provides an engineered tissue with potential for use in nerve repair.
工程化神经组织(EngNT)是一种稳定的定向细胞水凝胶,为治疗严重周围神经损伤提供了一种替代神经自体移植物的潜在选择。这项工作旨在实现 EngNT 的自动化生产,以提高可扩展制造的可行性,实现临床转化。内皮细胞被用作 EngNT 的细胞成分,其管腔样结构的形成模拟了在自然再生过程早期形成的极化血管结构。通过将注射器泵与机器人定位系统集成,并使用 Python 编写的软件控制这两个设备,实现了用于生产 EngNT 的凝胶抽吸-喷射的自动化。在建立了生产方法并测试了机械性能之后,对含有人脐静脉内皮细胞的 EngNT(EngNT-HUVEC)进行了细胞活力和取向、与大鼠背根神经节神经元的神经突生长的相容性以及内皮细胞网络形成的特征分析。使用自动化系统制造的 EngNT-HUVEC 含有存活且定向的内皮细胞,这些细胞在构建体内部形成了多核内皮细胞管腔样结构的网络和内皮化的外层。EngNT-HUVEC 构建体在数分钟内可以制成各种尺寸。构建体为再生神经突提供了支持和引导。这项工作实现了 EngNT 的自动化形成,促进了大规模高通量制造。稳定水凝胶内内皮细胞管腔样结构的形成提供了一种具有神经修复应用潜力的工程化组织。