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Visualization and quantification of simian immunodeficiency virus-infected cells using non-invasive molecular imaging

机译:使用无创分子成像技术对猿猴免疫缺陷病毒感染的细胞进行可视化和定量

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摘要

In vivo imaging can provide real-time information and three-dimensional (3D) non-invasive images of deep tissues and organs, including the brain, whilst allowing longitudinal observation of the same animals, thus eliminating potential variation between subjects. Current in vivo imaging technologies, such as magnetic resonance imaging (MRI), positron emission tomography-computed tomography (PET-CT) and bioluminescence imaging (BLI), can be used to pinpoint the spatial location of target cells, which is urgently needed for revealing human immunodeficiency virus (HIV) dissemination in real-time and HIV-1 reservoirs during suppressive antiretroviral therapy (ART). To demonstrate that in vivo imaging can be used to visualize and quantify simian immunodeficiency virus (SIV)-transduced cells, we genetically engineered SIV to carry different imaging reporters. Based on the expression of the reporter genes, we could visualize and quantify the SIV-transduced cells via vesicular stomatitis virus glycoprotein pseudotyping in a mouse model using BLI, PET-CT or MRI. We also engineered a chimeric EcoSIV for in vivo infection study. Our results demonstrated that BLI is sensitive enough to detect as few as five single cells transduced with virus, whilst PET-CT can provide 3D images of the spatial location of as few as 10 000 SIV-infected cells. We also demonstrated that MRI can provide images with high spatial resolution in a 3D anatomical context to distinguish a small population of SIV-transduced cells. The in vivo imaging platform described here can potentially serve as a powerful tool to visualize lentiviral infection, including when and where viraemia rebounds, and how reservoirs are formed and maintained during latency or suppressive ART.
机译:体内成像可以提供包括大脑在内的深层组织和器官的实时信息和三维(3D)非侵入性图像,同时允许纵向观察相同的动物,从而消除了受试者之间的潜在差异。当前的体内成像技术,例如磁共振成像(MRI),正电子发射断层扫描计算机断层扫描(PET-CT)和生物发光成像(BLI),可用于查明靶细胞的空间位置,这是迫切需要的。揭示了在抑制性抗逆转录病毒疗法(ART)期间实时传播的人类免疫缺陷病毒(HIV)和HIV-1库。为了证明体内成像可用于可视化和量化猿猴免疫缺陷病毒(SIV)转导的细胞,我们进行了基因工程改造以携带不同的成像报告基因。基于报告基因的表达,我们可以在小鼠模型中使用BLI,PET-CT或MRI通过水泡性口炎病毒糖蛋白假型化来可视化和定量SIV转导的细胞。我们还设计了一种嵌合的EcoSIV用于体内感染研究。我们的结果表明,BLI足够灵敏,可以检测到多达5个被病毒转导的单细胞,而PET-CT可以提供30000张SIV感染细胞的空间位置图像。我们还证明了MRI可在3D解剖环境中提供具有高空间分辨率的图像,以区分少量的SIV转导细胞。此处描述的体内成像平台可以潜在地用作可视化慢病毒感染的强大工具,包括病毒血症何时何地反弹以及在潜伏期或抑制性ART期间如何形成和维持储库。

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