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1.
Stem Cell Reports ; 13(2): 254-261, 2019 08 13.
Article in English | MEDLINE | ID: mdl-31378671

ABSTRACT

Four boys with Pelizaeus-Merzbacher disease, an X-linked leukodystrophy, underwent transplantation with human allogeneic central nervous system stem cells (HuCNS-SC). Subsequently, all subjects were followed for an additional 4 years in this separate follow-up study to evaluate safety, neurologic function, magnetic resonance imaging (MRI) data, and immunologic response. The neurosurgical procedure, immunosuppression, and HuCNS-SC transplantation were well tolerated and all four subjects were alive at the conclusion of the study period. At year 2, all subjects exhibited diffusion MRI changes at the implantation sites as well as in more distant brain regions. There were persistent, increased signal changes in the three patients who were studied up to year 5. Two of four subjects developed donor-specific HLA alloantibodies, demonstrating that neural stem cells can elicit an immune response when injected into the CNS, and suggesting the importance of monitoring immunologic parameters and identifying markers of engraftment in future studies.


Subject(s)
Brain/diagnostic imaging , Neural Stem Cells/transplantation , Pelizaeus-Merzbacher Disease/therapy , Brain/physiology , Child, Preschool , Follow-Up Studies , HLA Antigens/immunology , Humans , Infant , Isoantibodies/blood , Magnetic Resonance Imaging , Male , Neural Stem Cells/cytology , Neural Stem Cells/metabolism , Pelizaeus-Merzbacher Disease/immunology , Pelizaeus-Merzbacher Disease/pathology , Severity of Illness Index , Stem Cell Transplantation/adverse effects , Transplantation, Homologous , Treatment Outcome
2.
Stem Cells ; 34(4): 984-96, 2016 Apr.
Article in English | MEDLINE | ID: mdl-26676415

ABSTRACT

Pelizaeus-Merzbacher disease (PMD) results from an X-linked misexpression of proteolipid protein 1 (PLP1). This leukodystrophy causes severe hypomyelination with progressive inflammation, leading to neurological dysfunctions and shortened life expectancy. While no cure exists for PMD, experimental cell-based therapy in the dysmyelinated shiverer model suggested that human oligodendrocyte progenitor cells (hOPCs) or human neural precursor cells (hNPCs) are promising candidates to treat myelinopathies. However, the fate and restorative advantages of human NPCs/OPCs in a relevant model of PMD has not yet been addressed. Using a model of Plp1 overexpression, resulting in demyelination with progressive inflammation, we compared side-by-side the therapeutic benefits of intracerebrally grafted hNPCs and hOPCs. Our findings reveal equal integration of the donor cells within presumptive white matter tracks. While the onset of exogenous remyelination was earlier in hOPCs-grafted mice than in hNPC-grafted mice, extended lifespan occurred only in hNPCs-grafted animals. This improved survival was correlated with reduced neuroinflammation (microglial and astrocytosis loads) and microglia polarization toward M2-like phenotype followed by remyelination. Thus modulation of neuroinflammation combined with myelin restoration is crucial to prevent PMD pathology progression and ensure successful rescue of PMD mice. These findings should help to design novel therapeutic strategies combining immunomodulation and stem/progenitor cell-based therapy for disorders associating hypomyelination with inflammation as observed in PMD.


Subject(s)
Immunity, Innate , Inflammation/therapy , Neural Stem Cells/transplantation , Oligodendroglia/transplantation , Pelizaeus-Merzbacher Disease/therapy , Animals , Demyelinating Diseases/immunology , Demyelinating Diseases/pathology , Gene Expression Regulation, Developmental , Humans , Immunomodulation , Inflammation/immunology , Inflammation/pathology , Mice , Microglia/immunology , Microglia/pathology , Myelin Proteolipid Protein/biosynthesis , Myelin Sheath/metabolism , Neural Stem Cells/immunology , Oligodendroglia/immunology , Pelizaeus-Merzbacher Disease/immunology , Pelizaeus-Merzbacher Disease/pathology , Regeneration
3.
Biol Chem ; 394(12): 1571-81, 2013 Dec.
Article in English | MEDLINE | ID: mdl-23959664

ABSTRACT

Myelinating cells wrap axons with multi-layered myelin sheaths for rapid impulse propagation. Dysfunctions of oligodendrocytes or Schwann cells are often associated with neuroinflammation, as observed in animal models of leukodystrophies and peripheral neuropathies, respectively. The neuroinflammatory response modulates the pathological changes, including demyelination and axonal injury, but also remyelination and repair. Here we discuss different immune mechanisms as well as factors released or exposed by myelinating glia in disease conditions. The spectrum of inflammatory mediators varies with different myelin disorders and has a major impact on the beneficial or detrimental role of immune cells in keeping nervous system integrity.


Subject(s)
Demyelinating Diseases/immunology , Neurodegenerative Diseases/immunology , Animals , Charcot-Marie-Tooth Disease/genetics , Charcot-Marie-Tooth Disease/immunology , Charcot-Marie-Tooth Disease/metabolism , Demyelinating Diseases/genetics , Demyelinating Diseases/metabolism , Disease Models, Animal , Inflammation/immunology , Inflammation/metabolism , Leukodystrophy, Metachromatic/genetics , Leukodystrophy, Metachromatic/immunology , Leukodystrophy, Metachromatic/metabolism , Mice , Myelin Sheath/genetics , Myelin Sheath/metabolism , Neurodegenerative Diseases/genetics , Neurodegenerative Diseases/metabolism , Neurons/immunology , Neurons/metabolism , Neurons/pathology , Oligodendroglia/immunology , Oligodendroglia/metabolism , Oligodendroglia/pathology , Pelizaeus-Merzbacher Disease/genetics , Pelizaeus-Merzbacher Disease/immunology , Pelizaeus-Merzbacher Disease/metabolism , Peroxisomal Disorders/genetics , Peroxisomal Disorders/immunology , Peroxisomal Disorders/metabolism
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