Organotin(IV)‐Decorated Graphene Quantum Dots as Dual Platform for Molecular Imaging and Treatment of Triple Negative Breast Cancer

Author:

Gómez I. Jénnifer12ORCID,Ovejero‐Paredes Karina34ORCID,Méndez‐Arriaga José Manuel5ORCID,Pizúrová Naděžda6ORCID,Filice Marco34ORCID,Zajíčková Lenka17ORCID,Prashar Sanjiv5ORCID,Gómez‐Ruiz Santiago5ORCID

Affiliation:

1. Department of Condensed Matter Physics Faculty of Science Masaryk University Kotlářská 2 61137 Brno Czech Republic

2. Centro Interdisciplinar de Química e Bioloxía (CICA) Universidade da Coruña Rúa as Carballeiras 15071 A Coruña Spain

3. Nanobiotechnology for Life Sciences Group Departamento de Química en Ciencias Farmacéuticas Facultad de Farmacia Universidad Complutense de Madrid (UCM) Plaza Ramón y Cajal 28040 Madrid Spain

4. Microscopy and Dynamic Imaging Unit Fundación Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC) Calle Melchor Fernández Almagro 3 E-28029 Madrid Spain

5. COMET-NANO Group Departamento de Biología y Geología Física y Química Inorgánica E.S.C.E.T. Universidad Rey Juan Carlos Calle Tulipán s/n E-28933 Móstoles Madrid Spain

6. Institute of Physics of Materials Czech Academy of Sciences 61662 Brno Czech Republic

7. Central European Institute of Technology – CEITEC Brno University of Technology Purkyňova 123 61200 Brno Czech Republic

Abstract

AbstractThe pharmacological activity of organotin(IV) complexes in cancer therapy is well recognized but their large applicability is hampered by their poor water solubility. Hence, carbon dots, in particular nitrogen‐doped graphene quantum dots (NGQDs), may be a promising alternative for the efficient delivery of organotin(IV) compounds as they have a substantial aqueous solubility, a good chemical stability, and non‐toxicity as well as a bright photoluminescence that make them ideal for theranostic applications against cancer. Two different multifunctional nanosystems have been synthesized and fully characterized based on two fragments of organotin‐based cytotoxic compounds and 4‐formylbenzoic acid (FBA), covalently grafted onto the NGQDs surface. Subsequently, an in vitro determination of the therapeutic and theranostic potential of the achieved multifunctional systems was carried out. The results showed a high cytotoxic potential of the NGQDs‐FBA‐Sn materials against breast cancer cell line (MDA‐MB‐231) and a lower effect on a non‐cancer cell line (kidney cells, HEK293T). Besides, thanks to their optical properties, the dots enabled their fluorescence molecular imaging in the cytoplasmatic region of the cells pointing towards a successful cellular uptake and a release of the metallodrug inside cancer cells (NGQDs‐FBA‐Sn).

Funder

Ministerio de Universidades

Ministerstvo Školství, Mládeže a Tělovýchovy

Instituto de Salud Carlos III

Ministerio de Ciencia e Innovación

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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