Author/Authors :
Zhang, Yingying Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Zhang, Yongxue Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Yin, Lianglan Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Xia, Xiaotian Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Hu, Fan Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Liu, QingYao Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Qin, Chunxia Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China , Lan, Xiaoli Department of Nuclear Medicine - union Hospital - Tongji Medical College - Huazhong University of Science and Technology - Wuhan, China
Abstract :
Radiolabeled gold nanoparticles play an important role in biomedical application.The aim of this study was to prepare
iodine-131 (131I)-labeled gold nanorods (GNRs) conjugated with cyclic RGD and evaluate its biological characteristics for targeted
imaging of integrin 𝛼v𝛽3-expressing tumors. Methods. HS-PEG(5000)-COOH molecules were applied to replace CTAB covering
the surface of bare GNRs for better biocompatibility, and c(RGDfK) peptides were conjugated onto the carboxyl terminal of GNRPEG-COOH via EDC/NHS coupling reactions. The nanoconjugate was characterized, and 131I was directly tagged on the surface of
GNRs via AuI bonds for SPECT/CT imaging. We preliminarily studied the characteristics of the probe and its feasibility for tumortargeting SPECT/CT imaging. Results. The [
131I]GNR-PEG-cRGD probe was prepared in a simple and rapid manner and was stable
in both PBS and fetal bovine serum. It targeted selectively and could be taken up by tumor cells mainly via integrin 𝛼v𝛽3-receptormediated endocytosis. In vivo imaging, biodistribution, and autoradiography results showed evident tumor uptake in integrin 𝛼v𝛽3-
expressing tumors. Conclusions. These promising results showed that this smart nanoprobe can be used for angiogenesis-targeted
SPECT/CT imaging. Furthermore, the nanoprobe possesses a remarkable capacity for highly efficient photothermal conversion in
the near-infrared region, suggesting its potential as a multifunctional theranostic agent.
Keywords :
RGD-PEGylated , Gold , Tumor-Targeted , GNR