» Articles » PMID: 38067350

Towards Cancer Nanoradiopharmaceuticals-Radioisotope Nanocarrier System for Prostate Cancer Theranostics Based on Radiation-Synthesized Polymer Nanogels

Abstract

Despite the tremendous development of oncology, prostate cancer remains a debilitating malignancy. One of the most promising approaches to addressing this issue is to exploit the advancements of nanomedicine in combination with well-established nuclear medicine and radiotherapy. Following this idea, we have developed a radioisotope nanocarrier platform of electron-beam-synthesized nanogels based on poly(acrylic acid). We have developed a functionalization protocol, showing the very high (>97%) efficiency of the conjugation in targeting a ligand-bombesin derivative. This engineered peptide can bind gastrin-releasing peptide receptors overexpressed in prostate cancer cells; moreover, it bears a radioisotope-chelating moiety. Our nanoplatform exhibits very promising performance in vitro; the radiolabeled nanocarriers maintained high radiochemical purity of >90% in both the labeling buffer and human serum for up to 14 days. The application of the targeted nanocarrier allowed also effective and specific uptake in PC-3 prostate cancer cells, up to almost 30% after 4 h, which is a statistically significant improvement in comparison to carrier-free radiolabeled peptides. Although our system requires further studies for more promising results in vivo, our study represents a vital advancement in radionanomedicine-one of many steps that will lead to effective therapy for castration-resistant prostate cancer.

Citing Articles

Nanogels-Innovative Drug Carriers for Overcoming Biological Membranes.

Radeva L, Yoncheva K Gels. 2025; 11(2).

PMID: 39996667 PMC: 11854394. DOI: 10.3390/gels11020124.

References
1.
Carlucci G, Kuipers A, Ananias H, De Paula Faria D, Dierckx R, Helfrich W . GRPR-selective PET imaging of prostate cancer using [(18)F]-lanthionine-bombesin analogs. Peptides. 2015; 67:45-54. DOI: 10.1016/j.peptides.2015.03.004. View

2.
Wang Z, Ye M, Ma D, Shen J, Fang F . Engineering of Lu-labeled gold encapsulated into dendrimeric nanomaterials for the treatment of lung cancer. J Biomater Sci Polym Ed. 2021; 33(2):197-211. DOI: 10.1080/09205063.2021.1982446. View

3.
Ghaffarlou M, Sutekin S, Karacaoglu E, Karahisar Turan S, Inci O, Guven O . Folic acid-modified biocompatible Pullulan/poly(acrylic acid) nanogels for targeted delivery to MCF-7 cancer cells. Eur J Pharm Biopharm. 2023; 184:189-201. DOI: 10.1016/j.ejpb.2023.02.001. View

4.
Kaminski Z, Kolesinska B, Kolesinska J, Sabatino G, Chelli M, Rovero P . N-triazinylammonium tetrafluoroborates. A new generation of efficient coupling reagents useful for peptide synthesis. J Am Chem Soc. 2005; 127(48):16912-20. DOI: 10.1021/ja054260y. View

5.
Nakajima T, Ninomiya Y, Nenoi M . Radiation-Induced Reactions in The Liver - Modulation of Radiation Effects by Lifestyle-Related Factors. Int J Mol Sci. 2018; 19(12). PMC: 6321068. DOI: 10.3390/ijms19123855. View