Ghaderi Sadegh, Mohammadi Sana, Fatehi Farzad
Department of Neuroscience and Addiction Studies, School of Advanced Technologies in Medicine Tehran University of Medical Sciences Tehran Iran.
Neuromuscular Research Center, Department of Neurology, Shariati Hospital Tehran University of Medical Sciences Tehran Iran.
Ibrain. 2024 Jun 28;10(3):375-377. doi: 10.1002/ibra.12168. eCollection 2024 Fall.
Amyotrophic lateral sclerosis (ALS) causes progressive motor neuron degeneration, but an in vivo understanding of its early pathology remains limited. A recent study used topographic layer imaging to investigate iron and calcium accumulation in the primary motor cortex (M1) of patients with ALS compared with controls. Despite the preserved cortical thickness, ALS patients showed increased iron in layer 6 and calcium accumulation in layer 5a and the superficial layer. Calcium accumulation was particularly prominent in the low-myelin borders, potentially preceding the demyelination. This study reveals a novel in vivo pathology in ALS, suggesting that calcium dysregulation may precede iron accumulation and contribute to early M1 cell degeneration. Further investigation using quantitative susceptibility mapping and complementary techniques, such as diffusion kurtosis imaging, along with ultrahigh-field magnetic resonance imaging, into the role of calcium and early intervention strategies is warranted.
肌萎缩侧索硬化症(ALS)会导致运动神经元进行性退化,但对其早期病理学的体内研究仍然有限。最近一项研究使用地形图成像技术,调查了与对照组相比,ALS患者初级运动皮层(M1)中铁和钙的积累情况。尽管皮层厚度保持不变,但ALS患者在6层显示铁含量增加,在5a层和表层有钙积累。钙积累在低髓鞘边界尤为突出,可能先于脱髓鞘发生。这项研究揭示了ALS一种新的体内病理学特征,表明钙调节异常可能先于铁积累,并导致早期M1细胞退化。有必要使用定量磁化率成像和扩散峰度成像等互补技术,结合超高场磁共振成像,进一步研究钙的作用和早期干预策略。