225 Ac-iPSMA-RGD for Alpha-Therapy Dual Targeting of Stromal/Tumor Cell PSMA and Integrins.
Blanca Ocampo-GarciaPedro Cruz-NovaNallely Jiménez-MancillaMyrna Luna-GutiérrezRigoberto Oros-PantojaNancy Lara-AlmazánDiana Pérez-VelascoClara Leticia Santos CuevasGuillermina Ferro-FloresPublished in: International journal of molecular sciences (2023)
Prostate-specific membrane antigens (PSMAs) are frequently overexpressed in both tumor stromal endothelial cells and malignant cells (stromal/tumor cells) of various cancers. The RGD (Arg-Gly-Asp) peptide sequence can specifically detect integrins involved in tumor angiogenesis. This study aimed to preclinically evaluate the cytotoxicity, biokinetics, dosimetry, and therapeutic efficacy of 225 Ac-iPSMA-RGD to determine its potential as an improved radiopharmaceutical for alpha therapy compared with the 225 Ac-iPSMA and 225 Ac-RGD monomers. HEHA-HYNIC-iPSMA-RGD (iPSMA-RGD) was synthesized and characterized by FT-IR, UV-vis, and UPLC mass spectroscopy. The cytotoxicity of 225 Ac-iPSMA-RGD was assessed in HCT116 colorectal cancer cells. Biodistribution, biokinetics, and therapeutic efficacy were evaluated in nude mice with induced HCT116 tumors. In vitro results showed increased DNA double-strand breaks through ROS generation, cell apoptosis, and death in HCT116 cells treated with 225 Ac-iPSMA-RGD. The results also demonstrated in vivo cytotoxicity in cancer cells after treatment with 225 Ac-iPSMA-RGD and biokinetic and dosimetric properties suitable for alpha therapy, delivering ablative radiation doses up to 237 Gy/3.7 kBq to HCT116 tumors in mice. Given the phenotype of HCT116 cancer cells, the results of this study warrant further dosimetric and clinical studies to determine the potential of 225 Ac-iPSMA-RGD in the treatment of colorectal cancer.
Keyphrases
- cell cycle arrest
- endothelial cells
- cell death
- induced apoptosis
- radiation therapy
- bone marrow
- prostate cancer
- computed tomography
- type diabetes
- high resolution
- single molecule
- cell therapy
- oxidative stress
- single cell
- cancer therapy
- radiation induced
- skeletal muscle
- dendritic cells
- diabetic rats
- metabolic syndrome
- insulin resistance
- replacement therapy
- pet ct
- high fat diet induced
- smoking cessation
- nucleic acid
- human health
- cell adhesion