Chemical tuning for potential antitumor fluoroquinolones.

Autores de IIS La Fe
Participantes ajenos a IIS La Fe
- Anaya-Gonzalez C
- Soldevila S
- Bosca F
Grupos
Abstract
Phototoxic effects of 6,8 dihalogenated quinolones confers to this type of molecules a potential property as photochemotherapeutic agents. Two photodehalogenation processes seem to be involved in the remarkable photoinduced cellular damage. In this context, a new 6,8 dihalogenated quinolone 1 (1-methyl-6,8-difluoro-4-oxo-7-aminodimethyl-1,4-dihydroquinoline-3-carboxylic acid) was synthetized looking for improving the phototoxic properties of fluoroquinolones (FQ) and to determine the role of the photodegradation pathways in the FQ phototoxicity. With this purpose, fluorescence emissions, laser flash photolysis experiments and photodegradation studies were performed with compound 1 using 1-ethyl-6,8-difluoro-4-oxo-7-aminodimethyl-1,4-dihidroquinoline-3-carboxylic acid (2) and lomefloxacin (LFX) as reference compounds. The shortening of alkyl chain of the N(1) of the quinolone ring revealed a lifetime increase of the reactive aryl cation generated from photolysis of the three FQ and a significant reduction of the FQ photodegradation quantum yield. The fact that these differences were smaller when the same study was done using a hydrogen donor solvent (ethanol-aqueous buffer, 50/50 v/v) evidenced the highest ability of the reactive intermediate arising from 1 to produce intermolecular alkylations. These results were correlated with in vitro 3T3 NRU phototoxicity test. Thus, when Photo-Irritation-Factor (PIF) was determined for 1, 2 and LFX using cytotoxicity profiles of BALB/c 3T3 fibroblasts treated with each compound in the presence and absence of UVA light, a PIF more higher than 30 was obtained for 1 while the values for 2 and LFX were only higher than 8 and 10, respectively. Thereby, the present study illustrates an approach to modulate the photosensitizing properties of FQ with the purpose to improve the chemotherapeutic properties of antitumor quinolones. Moreover, the results obtained in this study also evidence that the key pathway responsible for the phototoxic properties associated with dihalogenated quinolones is the aryl cation generation.
Datos de la publicación
- ISSN/ISSNe:
- 0891-5849, 1873-4596
- Tipo:
- Article
- Páginas:
- 150-158
- Factor de Impacto:
- 1,841 SCImago ℠
- Cuartil:
- Q1 SCImago ℠
Free radical biology & medicine ELSEVIER SCIENCE INC
Citas Recibidas en Web of Science: 2
Documentos
- No hay documentos
Filiaciones
Keywords
- Excited states, Fluorescence emission, Laser flash photolysis, Photodehalogenation process, Phototoxicity test
Proyectos asociados
ESTRATEGIA INTEGRADA DE FOTODIAGNOSTICO COMBINANDO EVALUACION CLINICA, ENSAYOS BIOLOGICOS Y ESTUDIOS MECANISTICOS.
Investigador Principal: INMACULADA ANDREU ROS
PI16/01877 . INSTITUTO DE SALUD CARLOS III . 2017
Fotoalergia y fotocarcinogénesis debida a metabolitos y a fotoproductos de xenobióticos diana.
Investigador Principal: INMACULADA ANDREU ROS
ACIF/2018/153 . 2018
Asma, reacciones adversas y alergicas.
Investigador Principal: MIGUEL ÁNGEL MIRANDA ALONSO
RD16/0006/0030 . INSTITUTO DE SALUD CARLOS III . 2017
ESTRATEGIA INTEGRADA DE FOTODIAGNÓSTICO COMBINANDO EVALUACIÓN CLÍNICA, ENSAYOS BIOLÓGICOS Y ESTUDIOS MECANÍSTICOS.
Investigador Principal: INMACULADA ANDREU ROS
IAR-DIC-2017-01
Cita
Anaya C,Soldevila S,Garcia G,Bosca F,Andreu I. Chemical tuning for potential antitumor fluoroquinolones. Free Radic Biol Med. 2019. 141. p. 150-158. IF:6,170. (1).