Baldassarro Vito Antonio, Cescatti Maura, Rocco Maria Luisa, Aloe Luigi, Lorenzini Luca, Giardino Luciana, Calzà Laura
Department of Veterinary Medical Science, University of Bologna, Bologna, Italy.
IRET Foundation, Bologna, Italy.
Front Neurosci. 2023 Feb 16;17:1111170. doi: 10.3389/fnins.2023.1111170. eCollection 2023.
Nerve growth factor (NGF) is a pleiotropic molecule acting on different cell types in physiological and pathological conditions. However, the effect of NGF on the survival, differentiation and maturation of oligodendrocyte precursor cells (OPCs) and oligodendrocytes (OLs), the cells responsible for myelin formation, turnover, and repair in the central nervous system (CNS), is still poorly understood and heavily debated.
Here we used mixed neural stem cell (NSC)-derived OPC/astrocyte cultures to clarify the role of NGF throughout the entire process of OL differentiation and investigate its putative role in OPC protection under pathological conditions.
We first showed that the gene expression of all the neurotrophin receptors (, , , and ) dynamically changes during the differentiation. However, only and expression depends on T3-differentiation induction, as gene expression induction and protein secretion in the culture medium. Moreover, in the mixed culture, astrocytes are the main producer of NGF protein, and OPCs express both and . NGF treatment increases the percentage of mature OLs, while NGF blocking by neutralizing antibody and TRKA antagonist impairs OPC differentiation. Moreover, both NGF exposure and astrocyte-conditioned medium protect OPCs exposed to oxygenglucose deprivation (OGD) from cell death and NGF induces an increase of AKT/pAKT levels in OPCs nuclei by TRKA activation.
This study demonstrated that NGF is implicated in OPC differentiation, maturation, and protection in the presence of metabolic challenges, also suggesting implications for the treatment of demyelinating lesions and diseases.
神经生长因子(NGF)是一种多效性分子,在生理和病理条件下作用于不同的细胞类型。然而,NGF对少突胶质前体细胞(OPCs)和少突胶质细胞(OLs)的存活、分化和成熟的影响仍知之甚少且存在激烈争论,OPCs和OLs是负责中枢神经系统(CNS)髓鞘形成、更新和修复的细胞。
在这里,我们使用混合神经干细胞(NSC)来源的OPC/星形胶质细胞培养物来阐明NGF在OL分化的整个过程中的作用,并研究其在病理条件下对OPC保护的假定作用。
我们首先表明,所有神经营养因子受体( 、 、 和 )的基因表达在分化过程中动态变化。然而,只有 和 的表达依赖于T3分化诱导,如培养基中的 基因表达诱导和蛋白质分泌。此外,在混合培养中,星形胶质细胞是NGF蛋白的主要产生者,而OPCs同时表达 和 。NGF处理增加了成熟OLs的百分比,而用中和抗体和TRKA拮抗剂阻断NGF会损害OPC分化。此外,NGF暴露和星形胶质细胞条件培养基都能保护暴露于氧葡萄糖剥夺(OGD)的OPCs免于细胞死亡,并且NGF通过TRKA激活诱导OPCs细胞核中AKT/pAKT水平升高。
这项研究表明,在存在代谢挑战的情况下,NGF与OPC分化、成熟和保护有关,这也提示了其在脱髓鞘病变和疾病治疗中的意义。