99mTc-labeled aminosilane-coated iron oxide nanoparticles for molecular imaging of αvβ3-mediated tumor expression and feasibility for hyperthermia treatment

被引:50
作者
Tsiapa, Irene [1 ,4 ]
Efthimiadou, Eleni K. [2 ]
Fragogeorgi, Eirini [3 ,4 ]
Loudos, George [3 ]
Varvarigou, Alexandra D. [4 ]
Bouziotis, Penelope [4 ]
Kordas, George C. [1 ]
Mihailidis, Dimitris [5 ]
Nikiforidis, George C. [1 ]
Xanthopoulos, Stavros [4 ]
Psimadas, Dimitrios [3 ,4 ]
Paravatou-Petsotas, Maria [4 ]
Palamaris, Lazaros [3 ]
Hazle, John D.
Kagadis, George C. [1 ,6 ]
机构
[1] Univ Patras, Sch Med, Dept Med Phys, GR-26504 Rion, Greece
[2] NCSR Demokritos, Inst Adv Mat Physicochem Proc Nanotechnol & Micro, Sol Gel Lab, Aghia Paraskevi Athens, Greece
[3] TEI Athens, Dept Biomed Technol Engn, Aigaleo Athens, Greece
[4] NCSR Demokritos, Inst Nucl & Radiol Sci Energy Technol & Safety, Aghia Paraskevi Athens, Greece
[5] Charleston Radiat Therapy Consultants, Charleston, WV 25304 USA
[6] Univ Texas MD Anderson Canc Ctr, Dept Imaging Phys, Houston, TX 77030 USA
关键词
Technetium; Radiolabeling; Nanoparticles; RGD; Integrin; Hyperthermia; MAGNETIC NANOPARTICLES; RGD PEPTIDE; CYCLIC RGD; ANGIOGENESIS; CANCER; THERAPY; FUNCTIONALIZATION; BIODISTRIBUTION; MECHANISMS; STRATEGIES;
D O I
10.1016/j.jcis.2014.07.032
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hypothesis: Dual-modality imaging agents, such as radiolabeled iron oxide nanoparticles (10-NPs), are promising candidates for cancer diagnosis and therapy. We developed and evaluated aminosilane coated Fe3O4 (10 +/- 2 nm) as a tumor imaging agent in nuclear medicine through 3-aminopropyltriethoxysilane (APTES) functionalization. We evaluated this multimeric system of targeted Tc-99m-labeled nanoparticles (NPs) conjugated with a new RGD derivate (cRGDIK-Orn(3)-CGG), characterized as NPs-RGD as a potential thermal therapy delivery vehicle. Experiments: Transmission Electron Microscopy (TEM) and spectroscopy techniques were used to characterize the IO-NPs indicating their functionalization with peptides. Radiolabeled IO-NPs (targeted, non-targeted) were evaluated with regard to their radiochemical, radiobiological and imaging characteristics. In vivo studies were performed in normal and alpha(v)beta(3)-positive tumor (U87MG glioblastoma) bearing mice. We also demonstrated that this system could reach ablative temperatures in vivo. Findings: Both radiolabeled IO-NPs were obtained in high radiochemical yield (>98%) and proved stable in vitro. The in vivo studies for both 10-NPs have shown significant liver and spleen uptake at all examined time points in normal and U87MG glioblastoma tumor-bearing mice, due to their colloidal nature. We have confirmed through in vivo biodistribution studies that the non-targeted Tc-99m-NPs poorly internalized in the tumor, while the targeted Tc-99m-NPs-RGD, present 9-fold higher tumor accumulation at 1 h p.i. Accumulation of both IO-NPs in other organs was negligible. Blocking experiments indicated target specificity for integrin receptors in U87MG glioblastoma cells. The preliminary in vivo study of applied alternating magnetic field showed that the induced hyperthermia is feasible due to the aid of IO-NPs. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:163 / 175
页数:13
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