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Copper delivery to the CNS by CuATSM effectively treats motor neuron disease in SODG93A mice co-expressing the Copper-Chaperone-for-SOD

机译:CuATSM将铜递送至CNS可有效治疗共表达铜伴侣换SOD的SODG93A小鼠的运动神经元疾病

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摘要

Over-expression of mutant copper, zinc superoxide dismutase (SOD) in mice induces ALS and has become the most widely used model of neurodegeneration. However, no pharmaceutical agent in twenty years has extended lifespan by more than a few weeks. The Copper-Chaperone-for-SOD (CCS) protein completes the maturation of SOD by inserting copper, but paradoxically human CCS causes mice co-expressing mutant SOD to die within two weeks of birth. Hypothesizing that co-expression of CCS created copper deficiency in spinal cord, we treated these pups with the PET-imaging agent CuATSM, which is known to deliver copper into the CNS within minutes. CuATSM prevented the early mortality of CCSxSOD mice, while markedly increasing Cu,Zn SOD protein in their ventral spinal cord. Remarkably, continued treatment with CuATSM extended the survival of these mice by an average of 18 months. When CuATSM treatment was stopped, these mice developed ALS-related symptoms and died within three months. Restoring CuATSM treatment could rescue these mice after they became symptomatic, providing a means to start and stop disease progression. All ALS patients also express human CCS, raising the hope that familial SOD ALS patients could respond to CuATSM treatment similarly to the CCSxSOD mice.
机译:小鼠中突变铜,过氧化锌歧化酶(SOD)的过度表达可诱导ALS,并已成为神经变性最广泛使用的模型。但是,二十年来没有任何药剂能将寿命延长几周以上。用于SOD的铜伴侣蛋白(CCS)蛋白通过插入铜来完成SOD的成熟,但是自相矛盾的是,人类CCS导致共表达突变型SOD的小鼠在出生后两周内死亡。假设CCS的共表达在脊髓中造成铜缺乏,我们用PET成像剂CuATSM处理了这些幼崽,该成像剂可在几分钟之内将铜传送到CNS中。 CuATSM预防了CCSxSOD小鼠的早期死亡,同时显着增加了腹侧脊髓中的Cu,Zn SOD蛋白。值得注意的是,继续用CuATSM进行治疗可使这些小鼠的生存期平均延长18个月。停止CuATSM治疗后,这些小鼠出现了ALS相关症状,并在三个月内死亡。恢复CuATSM治疗可在这些小鼠出现症状后对其进行抢救,从而提供了启动和停止疾病进展的手段。所有ALS患者也都表达人CCS,这增加了希望家族SOD ALS患者对CCATSM治疗的反应类似于CCSxSOD小鼠的希望。

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