Mouse mutants heterozygously deficient for the myelin protein P0 (P0+/-) resemble certain forms of human hereditary neuropathies. Endoneurial macrophages of intrinsic origin are intimately involved in the pathogenesis of the demyelinating neuropathy in these mutants. We have previously shown that deficiency for macrophage colony stimulating factor (M-CSF) prevents an increase of the number of endoneurial macrophages and alleviates the mutants' demyelinating phenotype. The aim of this study was to investigate which population of endoneurial macrophages - long-term resident macrophages or recently infiltrated macrophages - is affected by M-CSF deficiency. For this purpose, we generated bone marrow chimeric mice by transplanting GFP+ bone marrow into P0 mutants (P0+/-) and P0 mutants that lack M-CSF (P0+/- mcsf-op). This enabled us to discriminate recently infiltrated short-term resident GFP+ macrophages from long-term resident GFP- macrophages. Three months after bone marrow transplantation, P0+/- mice expressing M-CSF showed a substantial upregulation and activation of both GFP- and GFP+ macrophages in femoral nerves when compared to P0+/+ mice. In contrast, in P0+/- mcsf-op mutants, both GFP- and GFP+ macrophages did not substantially increase. Only small numbers of GFP+ but no GFP- macrophages were activated and phagocytosed myelin in chimeric P0+/- mcsf-op mutants, possibly reflecting recent activation outside the endoneurium before entering the nerve. Our findings demonstrate that M-CSF is crucial for the activation, in situ increase and myelin phagocytosis of both long-term and short-term resident endoneurial macrophages in P0+/- myelin mutants. M-CSF is, therefore, considered as a target candidate for therapeutic strategies to treat human demyelinating neuropathies.

译文

杂合子缺乏髓磷脂蛋白P0(P0 /-)的小鼠突变体类似于人类遗传性神经病的某些形式。在这些突变体中,固有来源的神经内膜巨噬细胞与脱髓鞘性神经病的发病机理密切相关。先前我们已经表明,巨噬细胞集落刺激因子(M-CSF)的缺乏会阻止神经内膜巨噬细胞数量的增加,并减轻突变体的脱髓鞘表型。这项研究的目的是调查哪些神经内膜巨噬细胞群-长期驻留巨噬细胞或最近渗透的巨噬细胞-受M-CSF缺乏症的影响。为此,我们通过将GFP骨髓移植到P0突变体(P0 /-)和缺少M-CSF的P0突变体(P0 /-mcsf-op)中,生成了骨髓嵌合小鼠。这使我们能够将近期浸润的短期驻留GFP巨噬细胞与长期驻留GFP-巨噬细胞区分开来。与P0 /小鼠相比,骨髓移植后三个月,表达M-CSF的P0 /-小鼠显示股神经中GFP-和GFP巨噬细胞均显着上调和激活。相反,在P 0 --mcsf-op突变体中,GFP-和GFP巨噬细胞均没有显着增加。在嵌合的P0-mcsf-op突变体中,只有少量的GFP激活,但没有GFP-巨噬细胞被吞噬的髓磷脂,可能反映了进入神经之前在神经内膜外的最近激活。我们的发现表明,M-CSF对于P0 /-髓磷脂突变体中长期和短期驻留的神经内膜巨噬细胞的活化,原位增加和髓磷脂吞噬至关重要。因此,M-CSF被认为是治疗人脱髓鞘性神经病的治疗策略的靶标候选物。

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