Koeppen Arnulf H, Becker Alyssa B, Qian Jiang, Feustel Paul J
Research Service, Veterans Affairs Medical Center, Albany, NY, USA.
Department of Pathology, Albany Medical College, Albany, NY, USA.
J Neuropathol Exp Neurol. 2017 Feb 1;76(2):101-108. doi: 10.1093/jnen/nlw111.
After Friedreich's description in 1877, depletion of myelinated fibers in the dorsal columns, dorsal spinocerebellar and lateral corticospinal tracts, and neuronal loss in the dorsal nuclei of Clarke columns were considered unique and essential neuropathological features of Friedreich ataxia (FA). Lack of large neurons in dorsal root ganglia (DRG), thinning of dorsal roots (DR), and poor myelination in sensory nerves are now recognized as key components of FA. Here, we measured cross-sectional areas of the mid-thoracic spinal cord (SC) and neuronal sizes in lumbosacral DRG of 24 genetically confirmed FA cases. Mean thoracic SC areas in FA (24.17 mm2) were significantly smaller than those in 12 normal controls (37.5 mm2); DRG neuron perikarya in FA (1362 µm2) were also significantly smaller than normal (2004 µm2). DRG neuron sizes were not correlated with SC areas. The FA patients included a wide range of disease onset and duration suggesting that the SC undergoes growth arrest early and remains abnormally small throughout life. Immunohistochemistry for phosphorylated neurofilament protein, peripheral myelin protein 22, and myelin proteolipid protein confirmed chaotic transition of axons into the SC in DR entry zones. We conclude that smaller SC areas and lack of large DRG neurons indicate hypoplasia rather than atrophy in FA.
1877年弗里德赖希进行描述之后,脊髓后索、脊髓背侧小脑束和外侧皮质脊髓束中髓鞘化纤维的缺失,以及克拉克柱背核中的神经元丢失,被认为是弗里德赖希共济失调(FA)独特且重要的神经病理学特征。背根神经节(DRG)中缺乏大神经元、背根(DR)变细以及感觉神经髓鞘形成不良,现在被认为是FA的关键组成部分。在此,我们测量了24例经基因确诊的FA病例胸段脊髓(SC)的横截面积以及腰骶部DRG中的神经元大小。FA患者胸段脊髓平均面积(24.17平方毫米)显著小于12名正常对照者(37.5平方毫米);FA患者DRG神经元胞体(1362平方微米)也显著小于正常对照者(2004平方微米)。DRG神经元大小与脊髓面积不相关。FA患者涵盖了广泛的疾病起病时间和病程,这表明脊髓在早期就经历生长停滞,并在一生中保持异常小的状态。针对磷酸化神经丝蛋白、外周髓鞘蛋白22和髓鞘蛋白脂蛋白的免疫组织化学证实,在背根进入脊髓区域,轴突向脊髓的过渡混乱。我们得出结论,较小的脊髓面积和缺乏大的DRG神经元表明FA中存在发育不全而非萎缩。