A Novel Fluorescent Gemcitabine Prodrug That Follows a Nucleoside Transporter‐Independent Internalization and Bears Enhanced Therapeutic Efficacy With Respect to Gemcitabine

Author:

Vrettos Eirinaios Ι.1ORCID,Kyrkou Stavroula G.1ORCID,Zoi Vasiliki2,Giannakopoulou Maria2,Chatziathanasiadou Maria V.1,Kanaki Zoi3,Agalou Adamantia4,Bistas Vasileios‐Panagiotis1,Kougioumtzi Anastasia5,Karampelas Theodoros4,Diamantis Dimitrios A.1,Murphy Carol5,Beis Dimitris46,Klinakis Apostolos3,Tamvakopoulos Constantin4,Kyritsis Athanasios P.2,Alexiou George A.2,Tzakos Andreas G.1ORCID

Affiliation:

1. Department of Chemistry University of Ioannina GR-45110 Ioannina Greece

2. Neurosurgical Institute University of Ioannina GR-45110 Ioannina Greece

3. Center for Basic Research Biomedical Research Foundation of the Academy of Athens Soranou Ephessiou Street 4 GR-11527 Athens Greece

4. Clinical, Experimental Surgery, & Translational Research Center Biomedical Research Foundation of the Academy of Athens Soranou Ephessiou Street 4 Athens GR-11527 Greece

5. Biomedical Research Institute BRI-FORTH Ioannina Greece

6. School of Health Sciences University of Ioannina Ioannina GR-45110 Greece

Abstract

AbstractThe multiplexity of cancer has rendered it the second leading cause of mortality worldwide and theragnostic prodrugs have gained popularity in recent years as a means of treatment. Theragnostic prodrugs enable the simultaneous diagnosis and therapy of tumors via high‐precision real‐time drug release monitoring. Herein, we report the development of the small theragnostic prodrug GF, based on the nucleoside anticancer agent gemcitabine and the fluorescent dye 5(6)‐carboxyfluorescein. We have successfully demonstrated its efficient internalization in tumor cells, showing localization throughout both the early and late endocytic pathways. Its mechanism of cell internalization was evaluated, confirming its independence from nucleoside transporters. Its cellular localization via confocal microscopy revealed a clathrin‐mediated endocytosis mechanism, distinguishing it from analogous compounds studied previously. Furthermore, GF exhibited stability across various pH values and in human blood plasma. Subsequently, its in vitro cytotoxicity was assessed in three human cancer cell lines (A549, U87 and T98). Additionally, its pharmacokinetic profile in mice was investigated and the consequent drug release was monitored. Finally, its in vivo visualization was accomplished in zebrafish xenotransplantation models and its in vivo efficacy was evaluated in A549 xenografts. The results unveiled an intriguing efficacy profile, positioning GF as a compelling candidate warranting further investigation.

Funder

Ministry of Education and Religious Affairs, Sport and Culture

Publisher

Wiley

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