Brain Penetrating Bifunctional Erythropoietin–Transferrin Receptor Antibody Fusion Protein for Alzheimer’s Disease

促红细胞生成素 转铁蛋白受体 双功能 融合蛋白 抗体 转铁蛋白 促红细胞生成素受体 受体 疾病 化学 医学 病毒学 神经科学 免疫学 生物化学 生物 内科学 重组DNA 基因 催化作用
作者
Rudy Chang,Abrar Al Maghribi,Victoria Vanderpoel,Vitaly Vasilevko,David H. Cribbs,Rubén J. Boado,William M. Pardridge,Rachita K. Sumbria
出处
期刊:Molecular Pharmaceutics [American Chemical Society]
卷期号:15 (11): 4963-4973 被引量:46
标识
DOI:10.1021/acs.molpharmaceut.8b00594
摘要

Erythropoietin (EPO), a glycoprotein cytokine essential to hematopoiesis, has neuroprotective effects in rodent models of Alzheimer's disease (AD). However, high therapeutic doses or invasive routes of administration of EPO are required to achieve effective brain concentrations due to low blood–brain barrier (BBB) penetrability, and high EPO doses result in hematopoietic side effects. These obstacles can be overcome by engineering a BBB-penetrable analog of EPO, which is rapidly cleared from the blood, by fusing EPO to a chimeric monoclonal antibody targeting the transferrin receptor (cTfRMAb), which acts as a molecular Trojan horse to ferry the EPO into the brain via the transvascular route. In the current study, we investigated the effects of the BBB-penetrable analog of EPO on AD pathology in a double transgenic mouse model of AD. Five and a half month old male APPswe/PSEN1dE9 (APP/PS1) transgenic mice were treated with saline (n = 10) or the BBB-penetrable EPO (n = 10) 3 days/week intraperitoneally for 8 weeks, compared to same-aged C57BL/6J wild-type mice treated with saline (n = 8) with identical regiment. At 9 weeks following treatment initiation, exploration and spatial memory were assessed with the open-field and Y-maze test, mice were sacrificed, and brains were evaluated for Aβ peptide load, synaptic loss, BBB disruption, microglial activation, and microhemorrhages. APP/PS1 mice treated with the BBB-penetrable cTfRMAb-EPO fusion protein had significantly lower cortical and hippocampal Aβ peptide number (p < 0.05) and immune-positive area (p < 0.05), a decrease in hippocampal synaptic loss (p < 0.05) and cortical microglial activation (p < 0.001), and improved spatial memory (p < 0.05) compared with APP/PS1 saline controls. BBB-penetrating EPO was not associated with microhemorrhage development. The cTfRMAb-EPO fusion protein offers therapeutic benefits by targeting multiple targets of AD pathogenesis and progression (Aβ load, synaptic loss, microglial activation) and improving spatial memory in the APP/PS1 mouse model of AD.
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