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Functionalization of Gadolinium Chelates Silica Nanoparticle through Silane Chemistry for Simultaneous MRI/64Cu PET Imaging

机译:通过硅烷化学对of螯合物二氧化硅纳米颗粒的功能进行同步MRI / 64Cu PET成像

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摘要

Multimodal nanoprobes are highly demanded for biomedical imaging applications to enhance the reliability of the diagnostic results. Among different types of nano-objects, ultrasmall silica gadolinium nanoparticle (SiGdNP) appears as a safe, effective, and versatile platform for this purpose. In this study, a new method to functionalize SiGdNP based on silane chemistry has been reported. Two types of chelating silanes (APTES-DOTAGA and APTES-NODAGA) have been synthesized and grafted on SiGdNP by a simple one-step protocol. This functionalization strategy requires no other reactants or catalyzers and does not compromise the ultrasmall size of the particles. NODAGA-functionalized particle has been labeled with 64Cu isotope and injected intravenously to mice bearing TS/A carcinoma tumor for biodistribution study to demonstrate its potential as a bimodal MRI/PET imaging agent. A fully integrated MRI/PET system was used to simultaneously monitor the distribution of the particle. The results showed that the functionalized particle maintained properties of a renal clearable NP which could rapidly escape through kidneys and had low retention in other organs, especially liver, even though its accumulation in the tumor was modest.
机译:生物医学成像应用强烈需要多峰纳米探针,以提高诊断结果的可靠性。在不同类型的纳米物体中,超小型二氧化硅g纳米粒子(SiGdNP)似乎是用于此目的的安全,有效和多功能的平台。在这项研究中,已经报道了一种基于硅烷化学的功能化SiGdNP的新方法。已经合成了两种类型的螯合硅烷(APTES-DOTAGA和APTES-NODAGA),并通过简单的一步协议将其接枝到SiGdNP上。这种官能化策略不需要其他反应物或催化剂,也不会损害颗粒的超小尺寸。 NODAGA功能化的粒子已用 64 Cu同位素标记,并经静脉注射到患有TS / A癌肿瘤的小鼠中进行生物分布研究,以证明其作为双峰MRI / PET成像剂的潜力。完全集成的MRI / PET系统用于同时监视颗粒的分布。结果表明,功能化粒子保持了肾脏可清除NP的特性,即使它在肿瘤中的蓄积不多,它也可以通过肾脏快速逸出,并且在其他器官(尤其是肝脏)中的滞留率较低。

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