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PMID: 41232525 Published · ppublish English

Microglia replacement by peripheral delivery of CSF1R inhibitor-resistant hematopoietic cells.

Lombroso SI, Church EI, Anderson RN, O'Brien CA, Zhu Y, Dar AA, Purnell FS, Levitt EM, Temsamrit B, Yaqoob F, Aisenberg WH, Davis M, Elfayoumi B, Chaluvadi S, Nemec KM, Axsom J, Shapiro DA, Oon CH, Chadarevian JP, Assenmacher CA, De Arcangeli S, Banerjee E, Shukla S, Davtyan H, Bailis W, Hunter CA, Blurton-Jones M, Bennett ML, Haney MS, Bennett FC

Abstract

Microglia replacement holds great promise for the study and treatment of neurological diseases. We previously achieved high-efficiency replacement by engineering an inhibitor-resistant human CSF1R variant, G795A. Here and in Chadarevian et al, we introduce a transgenic mouse line carrying the homologous murine inhibitor resistance mutation, G793A. G793A confers resistance to CSF1R inhibitors (CSF1Ris) without impacting cell or organismal function, allowing brain-wide microglia replacement after intravascular delivery of myeloid cells or progenitors. G793A macrophages have normal CSF1R signaling and effector responses in cell-based assays. CSF1Ri treatment paired with peripheral vascular delivery of G793A myeloid cells, including ex vivo expanded hematopoietic stem cells, leads to microglia replacement in neonates and adults, with low peripheral chimerism. With vascular adoptive transfer of GFP+ G793A donor cells, engraftment is inconsistent and variable. Rag1-deficient hosts or GFP- donor cells, however, led to robust replacement of virtually all microglia, suggesting that G793A-based microglia replacement substantially spares host adaptive immune function. Although equally efficient, microglia replacement using G793A donors is less toxic to neuronal and oligodendrocyte progenitors than traditional hematopoietic stem cell transplantation. We present an approach for robust, reduced toxicity microglia replacement by intravenous adoptive transfer using a new research tool, the G793A mouse.

Keywords
CSF1R microglia microglia replacement myeloid cell therapies neuroimmunology stem cell transplantation
Article Info
Journal
Molecular therapy : the journal of the American Society of Gene Therapy
Abbr.
Mol Ther
ISSN
1525-0024
Corresponding email
Published
2026-02-04
Language
English
Country/Region
United States
NLM ID
100890581
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