Single domain antibody-scFv conjugate targeting amyloid β and TfR penetrates the blood-brain barrier and interacts with amyloid β.

IF 5.6 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL mAbs Pub Date : 2024-01-01 Epub Date: 2024-10-02 DOI:10.1080/19420862.2024.2410968
Rebecca Faresjö, Elisabet O Sjöström, Tiffany Dallas, Magnus M Berglund, Jonas Eriksson, Dag Sehlin, Stina Syvänen
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Abstract

Neurodegenerative diseases such as Alzheimer's disease (AD) pose substantial challenges to patients and health-care systems, particularly in countries with aging populations. Immunotherapies, including the marketed antibodies lecanemab (Leqembi®) and donanemab (KisunlaTM), offer promise but face hurdles due to limited delivery across the blood-brain barrier (BBB). This limitation necessitates high doses, resulting in increased costs and a higher risk of side effects. This study explores transferrin receptor (TfR)-binding camelid single-domain antibodies (VHHs) for facilitated brain delivery. We developed and evaluated fusion proteins (FPs) combining VHHs with human IgG Fc domains or single-chain variable fragments (scFvs) of the anti-amyloid-beta (Aβ) antibody 3D6. In vitro assessments showed varying affinities of the FPs for TfR. In vivo evaluations indicated that specific VHH-Fc and VHH-scFv fusions reached significant brain concentrations, emphasizing the importance of optimal TfR binding affinities. The VHH-scFv fusions were further investigated in mouse models with Aβ pathology, showing higher retention compared to wild-type mice without Aβ pathology. Our findings suggest that these novel VHH-based FPs hold potential for therapeutic and diagnostic applications in AD, providing a strategy to overcome BBB limitations and enhance brain targeting of antibody-based treatments. Furthermore, our results suggest that a given bispecific TfR-binding fusion format has a window of "optimal" affinity where parenchymal delivery is adequate, while blood pharmacokinetics aligns with the desired application of the fusion protein.

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靶向淀粉样蛋白β和TfR的单域抗体-scFv共轭物可穿透血脑屏障并与淀粉样蛋白β相互作用。
阿尔茨海默病(AD)等神经退行性疾病给患者和医疗保健系统带来了巨大挑战,尤其是在人口老龄化国家。免疫疗法,包括已上市的抗体 lecanemab (Leqembi®) 和 donanemab (KisunlaTM),带来了希望,但由于通过血脑屏障 (BBB) 的传递能力有限而面临障碍。由于这种限制,必须使用高剂量,从而导致成本增加和副作用风险升高。本研究探索了转铁蛋白受体(TfR)结合的驼科单域抗体(VHHs),以促进脑部给药。我们开发并评估了将 VHHs 与人类 IgG Fc 域或抗淀粉样蛋白-β(Aβ)抗体 3D6 的单链可变片段(scFvs)相结合的融合蛋白(FPs)。体外评估显示,FPs 与 TfR 的亲和力各不相同。体内评估表明,特异性VHH-Fc和VHH-scFv融合物在大脑中的浓度很高,这强调了最佳TfR结合亲和力的重要性。在患有 Aβ 病变的小鼠模型中对 VHH-scFv 融合体进行了进一步研究,结果显示,与没有 Aβ 病变的野生型小鼠相比,VHH-scFv 融合体的保留率更高。我们的研究结果表明,这些基于VHH的新型FPs具有治疗和诊断AD的潜力,为克服BBB限制和增强基于抗体治疗的脑靶向性提供了一种策略。此外,我们的研究结果表明,特定的双特异性 TfR 结合融合格式有一个 "最佳 "亲和力窗口,在这个窗口中,实质组织的传递是充分的,同时血液药代动力学与融合蛋白的预期应用相一致。
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来源期刊
mAbs
mAbs 工程技术-仪器仪表
CiteScore
10.70
自引率
11.30%
发文量
77
审稿时长
6-12 weeks
期刊介绍: mAbs is a multi-disciplinary journal dedicated to the art and science of antibody research and development. The journal has a strong scientific and medical focus, but also strives to serve a broader readership. The articles are thus of interest to scientists, clinical researchers, and physicians, as well as the wider mAb community, including our readers involved in technology transfer, legal issues, investment, strategic planning and the regulation of therapeutics.
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