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Radiolabeled, Antibody-Conjugated Manganese Oxide Nanoparticles for Tumor Vasculature Targeted Positron Emission Tomography and Magnetic Resonance Imaging

机译:放射性标记,抗体缀合的锰氧化物纳米粒子用于肿瘤脉管系统靶向正电子发射断层扫描和磁共振成像

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Manganese oxide nanoparticles (Mn3O4 NPs) have attracted a great deal of attention in the field of biomedical imaging because of their ability to create an enhanced imaging signal in MRI as novel potent T-1 contrast agents. In this study, we present tumor vasculature-targeted imaging in mice using Mn3O4 NPs through conjugation to the anti-CD105 antibody TRC105 and radionuclide copper-64 (Cu-64, t(1/2): 12.7 h). The Mn3O4 conjugated NPs, Cu-64-NOTAMn(3)O(4)@PEG-TRC105, exhibited sufficient stability in vitro and in vivo. Serial positron emission tomography (PET) and magnetic resonance imaging (MRI) studies evaluated the pharmacokinetics and demonstrated targeting of Cu-64-NOTA-Mn3O4@PEG-TRC105 to 4T(1) murine breast tumors in vivo, compared to Cu-64-NOTA-Mn3O4@PEG. The specificity of Cu-64-NOTA-Mn3O4@PEG-TRC105 for the vascular marker CD105 was confirmed through in vivo, in vitro, and ex vivo experiments. Since Mn3O4 conjugated NPs exhibited desirable properties for T1 enhanced imaging and low toxicity, the tumor-specific Mn3O4 conjugated NPs reported in this study may serve as promising multifunctional nanoplatforms for precise cancer imaging and diagnosis.
机译:氧化锰纳米颗粒(MN3O4 NPS)在生物医学成像领域引起了大量的注意,因为它们在MRI中产生增强的成像信号作为新型有效的T-1造影剂。在这项研究中,我们通过缀合到抗CD105抗体TRC105和放射性核素铜-64(Cu-64,T(1/2):12.7h),将肿瘤脉管系统靶向成像在小鼠中使用MN3O4 NPS缀合。 Mn3O4缀合的NPS,Cu-64-NOTAMN(3)O(4)o(4)×PEG-TRC105在体外和体内表现出足够的稳定性。串行正电子发射断层扫描(PET)和磁共振成像(MRI)研究评估了药代动力学,并在体内证明了CU-64-NOTA-MN3O4 @ PEG-TRC105至4T(1)鼠乳腺肿瘤的靶向,与CU-64相比nota-mn3o4 @ peg。通过体内,体外和离体实验证实了血管标记CD105的Cu-64-Nota-Mn3O4 @ PEG-TRC105的特异性。由于MN3O4缀合的NPS表现出T1增强的成像和低毒性的理想性质,因此本研究报告的肿瘤特异性MN3O4共轭NPS可用作精确癌症成像和诊断的有前途的多功能纳米片。

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