Boltz Felix, Enders Michael, Feigenspan Andreas, Kirchner Philipp, Ekici Arif, Kuerten Stefanie
Institute of Anatomy and Cell Biology, Friedrich-Alexander University of Erlangen-Nuremberg, 91054 Erlangen, Germany.
Institute of Neuroanatomy, Medical Faculty, University of Bonn, 53115 Bonn, Germany.
Brain Sci. 2022 Apr 4;12(4):476. doi: 10.3390/brainsci12040476.
Multiple sclerosis (MS) is a chronic autoimmune disease of the central nervous system (CNS). Therapy is currently limited to drugs that interfere with the immune system; treatment options that primarily mediate neuroprotection and prevent neurodegeneration are not available. Here, we studied the effects of nimodipine on the rat cell line OLN-93, which resembles young mature oligodendrocytes. Nimodipine is a dihydropyridine that blocks the voltage-gated L-type calcium channel family members Ca1.2 and Ca1.3. Our data show that the treatment of OLN-93 cells with nimodipine induced the upregulation of myelin genes, in particular of proteolipid protein 1 (), which was confirmed by a significantly greater expression of PLP1 in immunofluorescence analysis and the presence of myelin structures in the cytoplasm at the ultrastructural level. Whole-genome RNA sequencing additionally revealed the upregulation of genes that are involved in neuroprotection, remyelination, and antioxidation pathways. Interestingly, the observed effects were independent of Ca1.2 and Ca1.3 because OLN-93 cells do not express these channels, and there was no measurable response pattern in patch-clamp analysis. Taking into consideration previous studies that demonstrated a beneficial effect of nimodipine on microglia, our data support the notion that nimodipine is an interesting drug candidate for the treatment of MS and other demyelinating diseases.
多发性硬化症(MS)是一种中枢神经系统(CNS)的慢性自身免疫性疾病。目前的治疗仅限于干扰免疫系统的药物;主要介导神经保护和预防神经退行性变的治疗选择尚不存在。在此,我们研究了尼莫地平对大鼠细胞系OLN-93的影响,该细胞系类似于年轻成熟的少突胶质细胞。尼莫地平是一种二氢吡啶,可阻断电压门控L型钙通道家族成员Ca1.2和Ca1.3。我们的数据表明,用尼莫地平处理OLN-93细胞可诱导髓鞘基因上调,尤其是蛋白脂蛋白1(PLP1),免疫荧光分析中PLP1表达显著增加以及超微结构水平细胞质中存在髓鞘结构证实了这一点。全基因组RNA测序还揭示了参与神经保护、髓鞘再生和抗氧化途径的基因上调。有趣的是,观察到的效应与Ca1.2和Ca1.3无关,因为OLN-93细胞不表达这些通道,并且在膜片钳分析中没有可测量的反应模式。考虑到先前证明尼莫地平对小胶质细胞有有益作用的研究,我们的数据支持尼莫地平是治疗MS和其他脱髓鞘疾病的有吸引力的候选药物这一观点。