Gifondorwa David J, Jimenz-Moreno Ramon, Hayes Crystal D, Rouhani Hesam, Robinson Mac B, Strupe Jane L, Caress James, Milligan Carol
Department of Neurobiology and Anatomy, Wake Forest University School of Medicine, Winston-Salem, NC 27157, USA.
Neurol Res Int. 2012;2012:170426. doi: 10.1155/2012/170426. Epub 2012 Aug 1.
A prominent clinical feature of ALS is muscle weakness due to dysfunction, denervation and degeneration of motoneurons (MNs). While MN degeneration is a late stage event in the ALS mouse model, muscle denervation occurs significantly earlier in the disease. Strategies to prevent this early denervation may improve quality of life by maintaining muscle control and slowing disease progression. The precise cause of MN dysfunction and denervation is not known, but several mechanisms have been proposed that involve potentially toxic intra- and extracellular changes. Many cells confront these changes by mounting a stress response that includes increased expression of heat shock protein 70 (Hsp70). MNs do not upregulate Hsp70, and this may result in a potentially increased vulnerability. We previously reported that recombinant human hsp70 (rhHsp70) injections delayed symptom onset and increased lifespan in SOD1(G93A) mice. The exogenous rhHsp70 was localized to the muscle and not to spinal cord or brain suggesting it modulates peripheral pathophysiology. In the current study, we focused on earlier administration of Hsp70 and its effect on initial muscle denervation. Injections of the protein appeared to arrest denervation with preserved large myelinated peripheral axons, and reduced glial activation.
肌萎缩侧索硬化症(ALS)的一个突出临床特征是由于运动神经元(MNs)功能障碍、失神经支配和变性导致的肌肉无力。虽然MN变性是ALS小鼠模型中的晚期事件,但肌肉失神经支配在疾病中发生得要早得多。预防这种早期失神经支配的策略可能通过维持肌肉控制和减缓疾病进展来改善生活质量。MN功能障碍和失神经支配的确切原因尚不清楚,但已经提出了几种机制,涉及潜在的细胞内和细胞外毒性变化。许多细胞通过启动应激反应来应对这些变化,应激反应包括热休克蛋白70(Hsp70)表达增加。MNs不会上调Hsp70,这可能导致潜在的易损性增加。我们之前报道过,注射重组人hsp70(rhHsp70)可延迟SOD1(G93A)小鼠的症状发作并延长其寿命。外源性rhHsp70定位于肌肉,而非脊髓或大脑,这表明它调节外周病理生理学。在当前研究中,我们重点关注Hsp70的早期给药及其对初始肌肉失神经支配的影响。注射该蛋白似乎可以阻止失神经支配,保留大的有髓外周轴突,并减少胶质细胞激活。