Pro-repair properties of a human embryonic stem cell-derived astrocyte cell therapy in demyelinating disorders
Lihi Sofer Stepanov1, Nina Fainstein1, Marva Lachish1
1Faculty of Medicine, Hebrew University of Jerusalem, Jerusalem, Israel; The Department of Neurology, The Agnes-Ginges Center for Human Neurogenetics, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
Abstract:
Remyelination failure in demyelinating diseases is driven by inefficient myelin debris clearance, impaired oligodendrocyte progenitor cell (OPC) differentiation into mature oligodendrocytes, and the absence of a sustained pro-repair inflammatory environment. Effective remyelination requires a pro-repair inflammatory environment that supports myelin debris removal and promotes OPC maturation. We examined whether AstroRx, a clinical-grade human embryonic stem cell (hESC)-derived astrocyte therapy, addresses these barriers. In co-cultures in-vitro, AstroRx enhanced microglial phagocytosis of myelin debris, extended lymphocyte proliferation, and survival without excessive activation, and enhanced murine and hESC-derived OPC differentiation. In a lysolecithin-induced demyelination model in-vivo, intraventricular-delivered AstroRx promoted microglial-mediated myelin debris clearance and oligodendrogenesis in the peri-lesion white matter. These findings demonstrate that AstroRx sustains a pro-repair effect via a bystander mechanism, maintaining an inflammatory milieu, facilitating myelin debris removal, and oligodendrogenesis. With demonstrated clinical safety, scalability, and multi-targeted reparative effects, AstroRx offers a promising off-the-shelf cell therapy for chronic demyelination.
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