Departamento de Química Biológica, Facultad de Farmacia y Bioquímica. IQUIFIB-CONICET, Universidad de Buenos Aires, Junín 956, C1113, Buenos Aires, Argentina.
Instituto Leloir - IIBBA-CONICET, Buenos Aires, Argentina.
Mol Neurobiol. 2018 Feb;55(2):1068-1081. doi: 10.1007/s12035-016-0369-2. Epub 2017 Jan 14.
When disrupted, iron homeostasis negatively impacts oligodendrocyte (OLG) differentiation and impairs myelination. To better understand myelin formation and OLG maturation, in vivo and in vitro studies were conducted to evaluate the effect of iron deficiency (ID) not only on OLG maturation but also on astrocytes (AST) and microglial cells (MG). In vivo experiments in an ID model were carried out to describe maturational events during OLG and AST development and the reactive profile of MG during myelination when iron availability is lower than normal. In turn, in vitro assays were conducted to explore proliferating and maturational states of each glial cell type derived from control or ID conditions. Studies targeted NG2, PDGFRα, CNPAse, CC1, and MBP expression in OLG, GFAP and S100 expression in AST, and CD11b, ED1, and cytokine expression in MG, as well as BrDU incorporation in the three cell types. Our results show that ID affected OLG development at early stages, not only reducing their maturation capacity but also increasing their proliferation and affecting their morphological complexity. AST ID proliferated more than control ones and were more immature, much like OLG. Cytokine expression in ID animals reflected an anti-inflammatory state which probably influenced OLG maturation. These results show that ID conditions alter all glial cells and may impact myelin formation, which could be regulated by a mechanism involving a cross talk between AST, MG, and oligodendrocyte progenitors (OPC).
当铁稳态受到干扰时,会对少突胶质细胞(OLG)的分化产生负面影响,并损害髓鞘形成。为了更好地理解髓鞘形成和 OLG 的成熟,进行了体内和体外研究,以评估铁缺乏(ID)不仅对 OLG 成熟,而且对星形胶质细胞(AST)和小胶质细胞(MG)的影响。在 ID 模型中的体内实验描述了 OLG 和 AST 发育过程中的成熟事件,以及在铁供应低于正常水平时,MG 在髓鞘形成过程中的反应性特征。反过来,进行了体外测定,以探索源自对照或 ID 条件的每种神经胶质细胞类型的增殖和成熟状态。研究的目标是 NG2、PDGFRα、CNPAse、CC1 和 MBP 在 OLG 中的表达、GFAP 和 S100 在 AST 中的表达以及 CD11b、ED1 和细胞因子在 MG 中的表达,以及 BrDU 在三种细胞类型中的掺入。我们的结果表明,ID 早期影响 OLG 的发育,不仅降低了其成熟能力,而且增加了其增殖并影响了其形态复杂性。ID 条件下的 AST 比对照条件下的 AST 增殖更多,且更不成熟,与 OLG 非常相似。ID 动物中的细胞因子表达反映了抗炎状态,这可能影响 OLG 的成熟。这些结果表明,ID 条件改变了所有神经胶质细胞,并可能影响髓鞘形成,这可能受到涉及 AST、MG 和少突胶质细胞前体细胞(OPC)之间串扰的机制的调节。