Development of brain-penetrable antibody radioligands for in vivo PET imaging of amyloid-β and tau.

Vinay Banka, Andrew Kelleher, Dag Sehlin, Greta Hultqvist, Einar M Sigurdsson, Stina Syvänen, Yu-Shin Ding
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引用次数: 0

Abstract

Introduction: Alzheimer's disease (AD) is characterized by the misfolding and aggregation of two major proteins: amyloid-beta (Aβ) and tau. Antibody-based PET radioligands are desirable due to their high specificity and affinity; however, antibody uptake in the brain is limited by the blood-brain barrier (BBB). Previously, we demonstrated that antibody transport across the BBB can be facilitated through interaction with the transferrin receptor (TfR), and the bispecific antibody-based PET ligands were capable of detecting Aβ aggregates via ex vivo imaging. Since tau accumulation in the brain is more closely correlated with neuronal death and cognition, we report here our strategies to prepare four F-18-labeled specifically engineered bispecific antibody probes for the selective detection of tau and Aβ aggregates to evaluate their feasibility and specificity, particularly for in vivo PET imaging.

Methods: We first created and evaluated (via both in vitro and ex vivo studies) four specifically engineered bispecific antibodies, by fusion of single-chain variable fragments (scFv) of a TfR antibody with either a full-size IgG antibody of Aβ or tau or with their respective scFv. Using [18F]SFB as the prosthetic group, all four 18F-labeled bispecific antibody probes were then prepared by conjugation of antibody and [18F]SFB in acetonitrile/0.1 M borate buffer solution (final pH ~ 8.5) with an incubation of 20 min at room temperature, followed by purification on a PD MiniTrap G-25 size exclusion gravity column.

Results: Based on both in vitro and ex vivo evaluation, the bispecific antibodies displayed much higher brain concentrations than the unmodified antibody, supporting our subsequent F18-radiolabeling. [18F]SFB was produced in high yields in 60 min (decay-corrected radiochemical yield (RCY) 46.7 ± 5.4) with radiochemical purities of >95%, confirmed by analytical high performance liquid chromatography (HPLC) and radio-TLC. Conjugation of [18F]SFB and bispecific antibodies showed a 65%-83% conversion efficiency with radiochemical purities of 95%-99% by radio-TLC.

Conclusions: We successfully labeled four novel and specifically engineered bispecific antibodies with [18F]SFB under mild conditions with a high RCY and purities. This study provides strategies to create brain-penetrable F-18 radiolabeled antibody probes for the selective detection of tau and Aβ aggregates in the brain of transgenic AD mice via in vivo PET imaging.

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用于淀粉样蛋白-β和tau蛋白体内PET成像的脑穿透抗体配体的研制。
简介:阿尔茨海默病(AD)的特点是两种主要蛋白的错误折叠和聚集:淀粉样蛋白- β (Aβ)和tau。基于抗体的PET放射配体由于其高特异性和亲和力是理想的;然而,抗体在大脑中的摄取受到血脑屏障(BBB)的限制。之前,我们证明了抗体通过血脑屏障的转运可以通过与转铁蛋白受体(TfR)的相互作用来促进,并且基于双特异性抗体的PET配体能够通过离体成像检测Aβ聚集体。由于tau在大脑中的积累与神经元死亡和认知更密切相关,我们在这里报告了我们的策略,制备了四种f -18标记的特异性工程双特异性抗体探针,用于选择性检测tau和Aβ聚集体,以评估其可行性和特异性,特别是用于体内PET成像。方法:我们首先创建并评估(通过体外和离体研究)四种特异性工程双特异性抗体,通过将TfR抗体的单链可变片段(scFv)与a β或tau的全尺寸IgG抗体或其各自的scFv融合。以[18F]SFB为假体基团,将抗体与[18F]SFB偶联于乙腈/0.1 M硼酸盐缓冲溶液(终pH ~ 8.5)中,室温孵育20 min,制备4个18F标记的双特异性抗体探针,在PD MiniTrap G-25大小的排斥重力柱上纯化。结果:基于体外和离体评估,双特异性抗体显示出比未修饰抗体更高的脑浓度,支持我们随后的f18放射性标记。[18F]经高效液相色谱(HPLC)和放射性薄层色谱(radio-TLC)证实,SFB在60 min内高产出(衰变校正放射化学产率(RCY) 46.7±5.4),放射化学纯度>95%。[18F]SFB与双特异性抗体偶联的转化效率为65%-83%,放射化学纯度为95%-99%。结论:我们在温和条件下成功地用[18F]SFB标记了四种新的特异性工程双特异性抗体,具有高RCY和高纯度。本研究提供了创建可穿透大脑的F-18放射性标记抗体探针的策略,用于通过体内PET成像选择性检测转基因AD小鼠大脑中的tau和Aβ聚集物。
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