Therapeutic potential of human microglia transplantation in a chimeric model of CSF1R-related leukoencephalopathy

人类小胶质细胞移植在CSF1R相关脑白质病嵌合模型中的治疗潜力

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作者:Jean Paul Chadarevian ,Jonathan Hasselmann ,Alina Lahian ,Joia K Capocchi ,Adrian Escobar ,Tau En Lim ,Lauren Le ,Christina Tu ,Jasmine Nguyen ,Sepideh Kiani Shabestari ,William Carlen-Jones ,Sunil Gandhi ,Guojun Bu ,David A Hume ,Clare Pridans ,Zbigniew K Wszolek ,Robert C Spitale ,Hayk Davtyan ,Mathew Blurton-Jones

Abstract

Microglia replacement strategies are increasingly being considered for the treatment of primary microgliopathies like adult-onset leukoencephalopathy with axonal spheroids and pigmented glia (ALSP). However, available mouse models fail to recapitulate the diverse neuropathologies and reduced microglia numbers observed in patients. In this study, we generated a xenotolerant mouse model lacking the fms-intronic regulatory element (FIRE) enhancer within Csf1r, which develops nearly all the hallmark pathologies associated with ALSP. Remarkably, transplantation of human induced pluripotent stem cell (iPSC)-derived microglial (iMG) progenitors restores a homeostatic microglial signature and prevents the development of axonal spheroids, white matter abnormalities, reactive astrocytosis, and brain calcifications. Furthermore, transplantation of CRISPR-corrected ALSP-patient-derived iMG reverses pre-existing spheroids, astrogliosis, and calcification pathologies. Together with the accompanying study by Munro and colleagues, our results demonstrate the utility of FIRE mice to model ALSP and provide compelling evidence that iMG transplantation could offer a promising new therapeutic strategy for ALSP and perhaps other microglia-associated neurological disorders.

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