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静脉内和脑室内给药后造血干细胞植入的高通量分析。

High-throughput analysis of hematopoietic stem cell engraftment after intravenous and intracerebroventricular dosing.

机构信息

AVROBIO, Inc, Cambridge, MA 02139, USA.

AVROBIO, Inc, Cambridge, MA 02139, USA; Department of Child Neurology, Amsterdam Leukodystrophy Center, Emma Children's Hospital, Amsterdam University Medical Centers, VU University, and Amsterdam Neuroscience, Amsterdam, the Netherlands.

出版信息

Mol Ther. 2022 Oct 5;30(10):3209-3225. doi: 10.1016/j.ymthe.2022.05.022. Epub 2022 May 25.

Abstract

Hematopoietic stem/progenitor cell gene therapy (HSPC-GT) has shown clear neurological benefit in rare diseases, which is achieved through the engraftment of genetically modified microglia-like cells (MLCs) in the brain. Still, the engraftment dynamics and the nature of engineered MLCs, as well as their potential use in common neurogenerative diseases, have remained largely unexplored. Here, we comprehensively characterized how different routes of administration affect the biodistribution of genetically engineered MLCs and other HSPC derivatives in mice. We generated a high-resolution single-cell transcriptional map of MLCs and discovered that they could clearly be distinguished from macrophages as well as from resident microglia by the expression of a specific gene signature that is reflective of their HSPC ontogeny and irrespective of their long-term engraftment history. Lastly, using murine models of Parkinson's disease and frontotemporal dementia, we demonstrated that MLCs can deliver therapeutically relevant levels of transgenic protein to the brain, thereby opening avenues for the clinical translation of HSPC-GT to the treatment of major neurological diseases.

摘要

造血干细胞/祖细胞基因治疗 (HSPC-GT) 在罕见疾病中显示出明显的神经益处,这是通过在大脑中植入经过基因修饰的类小胶质细胞 (MLC) 实现的。尽管如此,工程 MLC 的植入动力学和性质,以及它们在常见神经退行性疾病中的潜在用途,在很大程度上仍未得到探索。在这里,我们全面描述了不同给药途径如何影响基因工程 MLC 和其他 HSPC 衍生物在小鼠中的分布。我们生成了 MLC 的高分辨率单细胞转录图谱,并发现它们可以通过表达特定的基因特征与巨噬细胞以及固有小胶质细胞区分开来,该基因特征反映了它们的 HSPC 发生,而与它们的长期植入史无关。最后,使用帕金森病和额颞叶痴呆的小鼠模型,我们证明了 MLC 可以向大脑输送治疗相关水平的转基因蛋白,从而为 HSPC-GT 向治疗主要神经疾病的临床转化开辟了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d23e/9552809/48189f87d44d/fx1.jpg

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