Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Nogo receptor decoy promotes recovery and corticospinal growth in non-human primate spinal cord injury

作者:Xingxing Wang, Tianna Zhou, George D. Maynard, Pramod Terse, William B.J. Cafferty, Jeffery D. Kocsis, Stephen M. Strittmatter · 发表于:Brain · 年份:2020 · DOI:10.1093/brain/awaa116 · 被引用次数:55 · 研究领域:Nerve injury and regeneration、Spinal Cord Injury Research、Neurogenesis and neuroplasticity mechanisms

After CNS trauma such as spinal cord injury, the ability of surviving neural elements to sprout axons, reorganize neural networks and support recovery of function is severely restricted, contributing to chronic neurological deficits. Among limitations on neural recovery are myelin-associated inhibitors functioning as ligands for neuronal Nogo receptor 1 (NgR1). A soluble decoy (NgR1-Fc, AXER-204) blocks these ligands and provides a means to promote recovery of function in multiple preclinical rodent models of spinal cord injury. However, the safety and efficacy of this reagent in non-human primate spinal cord injury and its toxicological profile have not been described. Here, we provide evidence that chronic intrathecal and intravenous administration of NgR1-Fc to cynomolgus monkey and to rat are without evident toxicity at doses of 20 mg and greater every other day (≥2.0 mg/kg/day), and far greater than the projected human dose. Adult female African green monkeys underwent right C5/6 lateral hemisection with evidence of persistent disuse of the right forelimb during feeding and right hindlimb during locomotion. At 1 month post-injury, the animals were randomized to treatment with vehicle (n = 6) or 0.10-0.17 mg/kg/day of NgR1-Fc (n = 8) delivered via intrathecal lumbar catheter and osmotic minipump for 4 months. One animal was removed from the study because of surgical complications of the catheter, but no treatment-related adverse events were noted in either group. Animal b...