6‐Nitro‐Quinazolin−4(3 H )−one Exhibits Photodynamic Effects and Photodegrades Human Melanoma Cell Lines. A Study on the Photoreactivity of Simple Quinazolin−4(3 H )−ones
Autor: | Vassilios Vrazas, Konstantinos E. Litinas, Thomas Balalas, Achilleas Mitrakas, Alexandros E. Koumbis, Konstantina C. Fylaktakidou, Michael I. Koukourakis, Katerina R. Katsani, Anastasios Panagopoulos |
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Rok vydání: | 2021 |
Předmět: |
01 natural sciences
Biochemistry Cell Line Structure-Activity Relationship 03 medical and health sciences chemistry.chemical_compound 0302 clinical medicine medicine Humans Physical and Theoretical Chemistry Melanoma Quinazolinone Quinazolinones chemistry.chemical_classification Reactive oxygen species 010405 organic chemistry Chemistry General Medicine medicine.disease Combinatorial chemistry In vitro Anti-Bacterial Agents 0104 chemical sciences Cell culture 030220 oncology & carcinogenesis Nitro Human melanoma DNA |
Zdroj: | Photochemistry and Photobiology. |
ISSN: | 1751-1097 0031-8655 |
DOI: | 10.1111/php.13376 |
Popis: | Photochemo and photodynamic therapies are minimally invasive approaches for the treatment of cancers and powerful weapons for competing bacterial resistance to antibiotics. Synthetic and naturally occurring quinazolinones are considered privileged anticancer and antibacterial agents, with several of them to have emerged as commercially available drugs. In the present study, applying a single-step green microwave irradiation mediated protocol we have synthesized eleven quinazolinon-4(3H)-ones, from cheap readily available anthranilic acids, in very good yields and purity. These products were irradiated in the presence of pBR322 plasmid DNA under UVB, UVA and visible light. Four of the compounds proved to be very effective DNA photocleavers, at low concentrations, being time and concentration dependent as well as pH independent. Participation of reactive oxygen species was related to the substitution of quinazolinone derivatives. 6-Nitro-quinazolinone in combination with UVA irradiation was found to be in vitro photodestructive for three cell lines; glioblastoma (U87MG and T98G) and mainly melanoma (A-375). Thus, certain appropriately substituted quinazolinones may serve as new lead photosensitizers for the development of promising biotechnological applications and as novel photochemo and photodynamic therapeutics. |
Databáze: | OpenAIRE |
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