Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/150649
Título: Magneto-Fluorescent Mesoporous Nanocarriers for the Dual-Delivery of Ofloxacin and Doxorubicin to Tackle Opportunistic Bacterial Infections in Colorectal Cancer
Autor: Marcelo, Gonçalo A.
Galhano, Joana
Robalo, Tiago T.
Cruz, Maria Margarida
Marcos, María D.
Martínez-Máñez, Ramón
Duarte, Maria Paula
Capelo-Martínez, José Luis
Lodeiro, Carlos
Oliveira, Elisabete
Palavras-chave: antimicrobial
drug delivery
hyperthermia
magneto-fluorescence
mesoporous nanoparticles
opportunistic cancer-related bacteria
Catalysis
Molecular Biology
Spectroscopy
Computer Science Applications
Physical and Theoretical Chemistry
Organic Chemistry
Inorganic Chemistry
SDG 3 - Good Health and Well-being
Data: 14-Out-2022
Resumo: Cancer-related opportunistic bacterial infections are one major barrier for successful clinical therapies, often correlated to the production of genotoxic factors and higher cancer incidence. Although dual anticancer and antimicrobial therapies are a growing therapeutic fashion, they still fall short when it comes to specific delivery and local action in in vivo systems. Nanoparticles are seen as potential therapeutic vectors, be it by means of their intrinsic antibacterial properties and effective delivery capacity, or by means of their repeatedly reported modulation and maneuverability. Herein we report on the production of a biocompatible, antimicrobial magneto-fluorescent nanosystem (NANO3) for the delivery of a dual doxorubicin–ofloxacin formulation against cancer-related bacterial infections. The drug delivery capacity, rendered by its mesoporous silica matrix, is confirmed by the high loading capacity and stimuli-driven release of both drugs, with preference for tumor-like acidic media. The pH-dependent emission of its surface fluorescent SiQDs, provides an insight into NANO3 surface behavior and pore availability, with the SiQDs working as pore gates. Hyperthermia induces heat generation to febrile temperatures, doubling drug release. NANO3-loaded systems demonstrate significant antimicrobial activity, specifically after the application of hyperthermia conditions. NANO3 structure and antimicrobial properties confirm their potential use in a future dual anticancer and antimicrobial therapeutical vector, due to their drug loading capacity and their surface availability for further modification with bioactive, targeting species.
Descrição: Funding Information: This work was funded by the Associate Laboratory for Green Chemistry—LAQV which is financed by national funds from the Scientific Society PROTEOMASS (Portugal) for funding support (General Funding Grant 2021). Publisher Copyright: © 2022 by the authors.
Peer review: yes
URI: http://hdl.handle.net/10362/150649
DOI: https://doi.org/10.3390/ijms232012287
ISSN: 1661-6596
Aparece nas colecções:FCT: DQ - Artigos em revista internacional com arbitragem científica

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