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Characterization of Magnetic Viral Complexes for Targeted Delivery in Oncology

机译:磁性病毒配合物在肿瘤中靶向递送的表征

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Oncolytic viruses are promising new agents in cancer therapy. Success of tumor lysis is often hampered by low intra-tumoral titers due to a strong anti-viral host immune response and insufficient tumor targeting. Previous work on the co-assembly of oncolytic virus particles (VPs) with magnetic nanoparticles (MNPs) was shown to provide shielding from inactivating immune response and improve targeting by external field gradients. In addition, MNPs are detected by magnet resonance imaging (MRI) enabling non-invasive therapy monitoring. In this study two selected core-shell type iron oxide MNPs were assembled with adenovirus (Ad) or vesicular stomatitis virus (VSV). The selected MNPs were characterized by high r2 and r2* relaxivities and thus could be quantified non-invasively by 1.5 and 3.0 tesla MRI with a detection limit below 0.001 mM iron in tissue-mimicking phantoms. Assembly and cell internalization of MNP-VP complexes resulted in 81 - 97 % reduction of r2 and 35 - 82 % increase of r2* compared to free MNPs. The relaxivity changes could be attributed to the clusterization of particles and complexes shown by transmission electron microscopy (TEM). In a proof-of-principle study the non-invasive detection of MNP-VPs by MRI was shown in vivo in an orthotopic rat hepatocellular carcinoma model. In conclusion, MNP assembly and compartmentalization have a major impact on relaxivities, therefore calibration measurements are required for the correct quantification in biodistribution studies. Furthermore, our study provides first evidence of the in vivo applicability of selected MNP-VPs in cancer therapy.
机译:溶瘤病毒是有望用于癌症治疗的新型药物。由于强烈的抗病毒宿主免疫反应和不足的肿瘤靶向性,低的肿瘤内滴度常常会阻碍肿瘤溶解的成功。溶瘤病毒颗粒(VPs)与磁性纳米颗粒(MNP)的共组装的先前工作已显示出可以屏蔽失活的免疫反应并通过外部电场梯度改善靶向性。另外,通过磁共振成像(MRI)检测MNP,从而实现无创治疗监测。在这项研究中,两个选定的核壳型氧化铁MNP与腺病毒(Ad)或水泡性口炎病毒(VSV)组装在一起。选定的MNPs具有较高的r 2 和r 2 * 弛豫性,因此可通过1.5和3.0的tesla MRI进行无创定量组织模拟体模中铁的检出限低于0.001 mM。 MNP-VP复合物的组装和细胞内在化导致r 2 减少81-97%,r 2 * 增加35-82%与免费的MNP相比。弛豫度的变化可以归因于透射电子显微镜(TEM)显示的颗粒和复合物的聚集。在一项原理验证研究中,在原位大鼠肝细胞癌模型中显示了在体内通过MRI进行MNP-VPs的无创检测。总之,MNP的组装和分隔对弛豫性有重要影响,因此需要进行校准测量才能对生物分布研究进行正确的定量。此外,我们的研究提供了选定的MNP-VPs在癌症治疗中体内应用的初步证据。

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