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3D imaging of theranostic nanoparticles in mice organs by means of X-ray Phase Contrast Tomography

机译:通过X射线相位对比度分层扫描通过X射线相位造影小鼠器官纳米粒子的3D成像

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Theranostics is an innovative research field that aims to develop high target specificity cancer treatments by administering small metal-based nanoparticles (NPs). This new generation of compounds exhibits diagnostic and therapeutic properties due to the high atomic number of their metal component. In the framework of a combined research program on low dose X-ray imaging and theranostic NPs, X-ray Phase Contrast Tomography (XPCT) was performed at ESRF using a 3 μm pixel optical system on two samples: a mouse brain bearing melanoma metastases injected with gadolinium NPs and, a mouse liver injected with gold NPs. XPCT is a non-destructive technique suitable to achieve the 3D reconstruction of a specimen and, widely used at micro-scale to detect abnormalities of the vessels, which are associated to the tumor growth or to the development of neurodegenerative diseases. Moreover, XPCT represents a promising and complementary tool to study the biodistribution of theranostic NPs in biological materials, thanks to the strong contrast with respect to soft tissues that metal-based NPs provide in radiological images. This work is relied on an original imaging approach based on the evaluation of the contrast differences between the images acquired below and above K-edge energies, as a proof of the certain localization of NPs. We will present different methods aiming to enhance the localization of NPs and a 3D map of their distribution in large volume of tissues.
机译:Theranostics是一种创新的研究领域,旨在通过施用小型金属基纳米颗粒(NPS)来发展高目标特异性癌症治疗方法。这种新一代化合物由于其金属组分的高原子数而表现出诊断和治疗性质。在低剂量X射线成像和Theranostic NPS的组合研究程序的框架中,在两个样品上使用3μm像素光学系统在ESRF在ESRF进行X射线相位对比度断层扫描(XPCT):注射了马赛克瘤转移的小鼠脑肿瘤含钆NPS和,用金NPS注射的小鼠肝脏。 XPCT是一种非破坏性技术,适用于实现样品的3D重建,并广泛用于微尺度以检测与肿瘤生长或神经变性疾病的发育相关的血管异常。此外,由于与基于金属基NPS在放射性图像中提供的软组织的强对比度,XPCT代表了研究其在生物材料中的治疗NPS的生物分布的有希望和互补的工具。根据基于下面和高于K边缘能量的图像之间的对比度差异的评估,依赖于原始成像方法,作为NPS的某些定位的证据,依赖于原始成像方法。我们将呈现不同的方法,旨在增强NPS的定位和它们在大量组织中分布的3D地图。

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