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用于重建功能性新皮质组织的体内平台。

An In Vivo Platform for Rebuilding Functional Neocortical Tissue.

作者信息

Quezada Alexandra, Ward Claire, Bader Edward R, Zolotavin Pavlo, Altun Esra, Hong Sarah, Killian Nathaniel J, Xie Chong, Batista-Brito Renata, Hébert Jean M

机构信息

Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

Stem Cell Institute, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

Bioengineering (Basel). 2023 Feb 16;10(2):263. doi: 10.3390/bioengineering10020263.

Abstract

Recent progress in cortical stem cell transplantation has demonstrated its potential to repair the brain. However, current transplant models have yet to demonstrate that the circuitry of transplant-derived neurons can encode useful function to the host. This is likely due to missing cell types within the grafts, abnormal proportions of cell types, abnormal cytoarchitecture, and inefficient vascularization. Here, we devised a transplant platform for testing neocortical tissue prototypes. Dissociated mouse embryonic telencephalic cells in a liquid scaffold were transplanted into aspiration-lesioned adult mouse cortices. The donor neuronal precursors differentiated into upper and deep layer neurons that exhibited synaptic puncta, projected outside of the graft to appropriate brain areas, became electrophysiologically active within one month post-transplant, and responded to visual stimuli. Interneurons and oligodendrocytes were present at normal densities in grafts. Grafts became fully vascularized by one week post-transplant and vessels in grafts were perfused with blood. With this paradigm, we could also organize cells into layers. Overall, we have provided proof of a concept for an in vivo platform that can be used for developing and testing neocortical-like tissue prototypes.

摘要

皮质干细胞移植的最新进展已证明其修复大脑的潜力。然而,目前的移植模型尚未证明移植来源的神经元的神经回路能够为宿主编码有用的功能。这可能是由于移植物中缺少细胞类型、细胞类型比例异常、细胞结构异常以及血管化效率低下。在此,我们设计了一个用于测试新皮质组织原型的移植平台。将液体支架中解离的小鼠胚胎端脑细胞移植到成年小鼠皮质的抽吸损伤部位。供体神经前体细胞分化为上层和深层神经元,这些神经元表现出突触小体,从移植物向外投射到适当的脑区,在移植后一个月内变得具有电生理活性,并对视觉刺激作出反应。中间神经元和少突胶质细胞在移植物中的密度正常。移植后一周移植物实现完全血管化,移植物中的血管有血液灌注。通过这种模式,我们还可以将细胞组织成层。总体而言,我们为一个可用于开发和测试类新皮质组织原型的体内平台提供了概念验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8373/9952056/3e9d6424bea0/bioengineering-10-00263-g001.jpg

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