抗体
鼻腔给药
医学
中枢神经系统
单克隆抗体
免疫学
血脑屏障
神经科学
生物
内科学
作者
Daphne Correa,Myriam I. Scheuber,Huimin Shan,Oliver Weinmann,Yves A. Baumgartner,Aliona Harten,Anna-Sophia Wahl,Kirstin L. Skaar,Martin E. Schwab
标识
DOI:10.1073/pnas.2200057120
摘要
Antibody delivery to the CNS remains a huge hurdle for the clinical application of antibodies targeting a CNS antigen. The blood–brain barrier and blood–CSF barrier restrict access of therapeutic antibodies to their CNS targets in a major way. The very high amounts of therapeutic antibodies that are administered systemically in recent clinical trials to reach CNS targets are barely viable cost-wise for broad, routine applications. Though global CNS delivery of antibodies can be achieved by intrathecal application, these procedures are invasive. A non-invasive method to bring antibodies into the CNS reliably and reproducibly remains an important unmet need in neurology. In the present study, we show that intranasal application of a mouse monoclonal antibody against the neurite growth-inhibiting and plasticity-restricting membrane protein Nogo-A leads to a rapid transfer of significant amounts of antibody to the brain and spinal cord in intact adult rats. Daily intranasal application for 2 wk of anti-Nogo-A antibody enhanced growth and compensatory sprouting of corticofugal projections and functional recovery in rats after large unilateral cortical strokes. These findings are a starting point for clinical translation for a less invasive route of application of therapeutic antibodies to CNS targets for many neurological indications.
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