Validation, kinetic modeling, and test-retest reproducibility of [18F]SynVesT-1 for PET imaging of synaptic vesicle glycoprotein 2A in mice

Daniele Bertoglio, Franziska Zajicek, Stef De Lombaerde, A. Miranda, S. Stroobants, Yuchuan Wang, C. Dominguez, I. Muñoz-Sanjuán, J. Bard, Longbin Liu, J. Verhaeghe, S. Staelens
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引用次数: 6

Abstract

Alterations in synaptic vesicle glycoprotein 2 A (SV2A) have been associated with several neuropsychiatric and neurodegenerative disorders. Therefore, SV2A positron emission tomography (PET) imaging may provide a unique tool to investigate synaptic density dynamics during disease progression and after therapeutic intervention. This study aims to extensively characterize the novel radioligand [18F]SynVesT-1 for preclinical applications. In C57Bl/6J mice (n = 39), we assessed the plasma profile of [18F]SynVesT-1, validated the use of a noninvasive image-derived input function (IDIF) compared to an arterial input function (AIF), performed a blocking study with levetiracetam (50 and 200 mg/kg, i.p.) to verify the specificity towards SV2A, examined kinetic models for volume of distribution (VT) quantification, and explored test-retest reproducibility of [18F]SynVesT-1 in the central nervous system (CNS). Plasma availability of [18F]SynVesT-1 decreased rapidly (13.4 ± 1.5% at 30 min post-injection). VT based on AIF and IDIF showed excellent agreement (r2 = 0.95, p < 0.0001) and could be reliably estimated with a 60-min acquisition. The blocking study resulted in a complete blockade with no suitable reference region. Test-retest analysis indicated good reproducibility (mean absolute variability <10%). In conclusion, [18F]SynVesT-1 is selective for SV2A with optimal kinetics representing a candidate tool to quantify CNS synaptic density non-invasively.
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[18F]SynVesT-1用于小鼠突触囊泡糖蛋白2A PET成像的验证、动力学建模和重测再现性
突触囊泡糖蛋白2a (SV2A)的改变与几种神经精神和神经退行性疾病有关。因此,SV2A正电子发射断层扫描(PET)成像可以提供一种独特的工具来研究疾病进展期间和治疗干预后的突触密度动态。本研究旨在广泛表征新型放射配体[18F]SynVesT-1的临床前应用。在C57Bl/6J小鼠(n = 39)中,我们评估了[18F]SynVesT-1的血浆谱,验证了非侵入性图像输入功能(IDIF)与动脉输入功能(AIF)的使用,进行了左乙曲坦(50和200 mg/kg, i.p)的阻断研究,以验证对SV2A的特异性,检查了体积分布(VT)量化的动力学模型,并探讨了[18F]SynVesT-1在中枢神经系统(CNS)中的重复性。[18F]SynVesT-1的血浆利用率在注射后30分钟迅速下降(13.4±1.5%)。基于AIF和IDIF的VT显示出极好的一致性(r2 = 0.95, p < 0.0001),并且可以通过60分钟的采集可靠地估计。阻断研究的结果是完全阻断,没有合适的参考区域。重测分析表明重复性好(平均绝对变异性<10%)。总之,[18F]SynVesT-1对SV2A具有选择性,具有最佳动力学,是一种非侵入性量化CNS突触密度的候选工具。
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