Ultrasound Molecular Imaging of Atherosclerosis With Nanobodies: Translatable Microbubble Targeting Murine and Human VCAM (Vascular Cell Adhesion Molecule) 1.

Mukesh Punjabi, Lifen Xu, Amanda Ochoa-Espinosa, A. Kosareva, T. Wolff, A. Murtaja, A. Broisat, N. Devoogdt, B. Kaufmann
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引用次数: 30

Abstract

OBJECTIVE Contrast-enhanced ultrasound molecular imaging (CEUMI) of endothelial expression of VCAM (vascular cell adhesion molecule)-1 could improve risk stratification for atherosclerosis. The microbubble contrast agents developed for preclinical studies are not suitable for clinical translation. Our aim was to characterize and validate a microbubble contrast agent using a clinically translatable single-variable domain immunoglobulin (nanobody) ligand. Approach and Results: Microbubble with a nanobody targeting VCAM-1 (MBcAbVcam1-5) and microbubble with a control nanobody (MBVHH2E7) were prepared and characterized in vitro. Attachment efficiency to VCAM-1 under continuous and pulsatile flow was investigated using activated murine endothelial cells. In vivo CEUMI of the aorta was performed in atherosclerotic double knockout and wild-type mice after injection of MBcAbVcam1-5 and MBVHH2E7. Ex vivo CEUMI of human endarterectomy specimens was performed in a closed-loop circulation model. The surface density of the nanobody ligand was 3.5×105 per microbubble. Compared with MBVHH2E7, MBcAbVcam1-5 showed increased attachment under continuous flow with increasing shear stress of 1-8 dynes/cm2 while under pulsatile flow attachment occurred at higher shear stress. CEUMI in double knockout mice showed signal enhancement for MBcAbVcam1-5 in early (P=0.0003 versus MBVHH2E7) and late atherosclerosis (P=0.007 versus MBVHH2E7); in wild-type mice, there were no differences between MBcAbVcam1-5 and MBVHH2E7. CEUMI in human endarterectomy specimens showed a 100% increase in signal for MBcAbVcam1-5versus MBVHH2E7 (20.6±27.7 versus 9.6±14.7, P=0.0156). CONCLUSIONS CEUMI of the expression of VCAM-1 is feasible in murine models of atherosclerosis and on human tissue using a clinically translatable microbubble bearing a VCAM-1 targeted nanobody.
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动脉粥样硬化纳米体超声分子成像:可翻译微泡靶向小鼠和人血管细胞粘附分子
目的造影增强超声分子成像(CEUMI)检测血管细胞粘附分子(VCAM)-1在内皮细胞中的表达可改善动脉粥样硬化的危险分层。用于临床前研究的微泡造影剂不适合临床应用。我们的目的是利用临床可翻译的单变量免疫球蛋白(纳米体)配体来表征和验证微泡造影剂。方法与结果:制备了靶向VCAM-1纳米体的微泡(MBcAbVcam1-5)和对照纳米体的微泡(mbvh2e7),并对其进行了体外表征。利用活化的小鼠内皮细胞,研究了连续和脉动流对VCAM-1的附着效率。在体内注射MBcAbVcam1-5和MBVHH2E7后,对动脉粥样硬化双敲除小鼠和野生型小鼠进行主动脉CEUMI。人动脉内膜切除术标本的离体CEUMI在闭环循环模型中进行。纳米体配体的表面密度为3.5×105 /微泡。与MBVHH2E7相比,MBcAbVcam1-5在连续流动条件下,剪切应力增加1-8 dynes/cm2,附着增加,而在脉动流动条件下,剪切应力增加,附着增加。双敲除小鼠CEUMI在动脉粥样硬化早期(P=0.0003,与MBVHH2E7相比)和晚期(P=0.007,与MBVHH2E7相比)MBcAbVcam1-5的信号增强;在野生型小鼠中,MBcAbVcam1-5和MBVHH2E7之间没有差异。人动脉内膜切除术标本的CEUMI显示mbcabvcam1 -5的信号比mbvh2e7增加100%(20.6±27.7比9.6±14.7,P=0.0156)。结论:在小鼠动脉粥样硬化模型和人体组织中,使用含有VCAM-1靶向纳米体的临床可翻译微泡检测VCAM-1的表达是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Editors and Editorial Board. Correction to: Role of LpL (Lipoprotein Lipase) in Macrophage Polarization In Vitro and In Vivo. Tribute to Paul M. Vanhoutte, MD, PhD (1940-2019). Correction to: 18F-Sodium Fluoride Imaging of Coronary Atherosclerosis in Ambulatory Patients With Diabetes Mellitus. Extracellular MicroRNA-92a Mediates Endothelial Cell-Macrophage Communication.
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