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环状 Tau-转铁蛋白受体双功能适体增强 Tau 病治疗的血脑屏障穿透性。

Enhanced in Vivo Blood-Brain Barrier Penetration by Circular Tau-Transferrin Receptor Bifunctional Aptamer for Tauopathy Therapy.

机构信息

Department of Chemistry and Department of Physiology and Functional Genomics, Center for Research at Bio/Nano Interface, Health Cancer Center, UF Genetics Institute and McKnight Brain Institute , University of Florida , Gainesville , Florida 32611 , United States.

Department of Emergency Medicine, Department of Neuroscience, Department of Psychiatry, McKnight Brain Institute , University of Florida , Gainesville , Florida 32611 , United States.

出版信息

J Am Chem Soc. 2020 Feb 26;142(8):3862-3872. doi: 10.1021/jacs.9b11490. Epub 2020 Feb 11.

Abstract

The lack of blood-brain barrier (BBB) penetrating ability has hindered the delivery of many therapeutic agents for tauopathy treatment. In this study, we report the synthesis of a circular bifunctional aptamer to enhance the in vivo BBB penetration for better tauopathy therapy. The circular aptamer consists of one reported transferrin receptor (TfR) aptamer to facilitate TfR-aptamer recognition-induced transcytosis across BBB endothelial cells, and one Tau protein aptamer that we recently selected to inhibit Tau phosphorylation and other tauopathy-related pathological events in the brain. This novel circular Tau-TfR bifunctional aptamer displays significantly improved plasma stability and brain exposure, as well as the ability to disrupt tauopathy and improve traumatic brain injury (TBI)-induced cognitive/memory deficits in vivo, providing important proof-of-principle evidence that circular Tau-TfR aptamer can be further developed into diagnostic and therapeutic candidates for tauopathies.

摘要

血脑屏障(BBB)通透性差阻碍了许多用于治疗 tau 病的治疗剂的递送。在这项研究中,我们报告了一种环状双功能适体的合成,以增强体内 BBB 穿透性,从而更好地治疗 tau 病。该环状适体由一个已报道的转铁蛋白受体(TfR)适体组成,以促进 TfR-适体识别诱导的跨 BBB 内皮细胞胞吞作用,以及一个我们最近选择的 Tau 蛋白适体,以抑制 Tau 磷酸化和大脑中其他与 tau 病相关的病理事件。这种新型环状 Tau-TfR 双功能适体显示出显著改善的血浆稳定性和脑暴露,以及破坏 tau 病和改善创伤性脑损伤(TBI)诱导的认知/记忆缺陷的能力,为环状 Tau-TfR 适体可进一步开发为 tau 病的诊断和治疗候选物提供了重要的原理验证证据。

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