Your browser doesn't support javascript.
loading
Discovery of pyridoquinoxaline-based new P-gp inhibitors as coadjutant against Multi Drug Resistance in cancer.
Ibba, Roberta; Sestito, Simona; Ambrosio, Francesca Alessandra; Marchese, Emanuela; Costa, Giosuè; Fiorentino, Francesco Paolo; Fusi, Fabio; Marchesi, Irene; Polini, Beatrice; Chiellini, Grazia; Alcaro, Stefano; Piras, Sandra; Carta, Antonio.
Affiliation
  • Ibba R; Department of Medicine, Surgery and Pharmacy, University of Sassari, 07100, Sassari, Italy. Electronic address: ribba@uniss.it.
  • Sestito S; Department of Chemical, Physical, Mathematical and Natural Sciences, University of Sassari, 07100, Sassari, Italy. Electronic address: ssestito@uniss.it.
  • Ambrosio FA; Department of Health Sciences, University "Magna Græcia" of Catanzaro, Campus "S. Venuta", 88100, Catanzaro, Italy. Electronic address: ambrosio@unicz.it.
  • Marchese E; Department of Health Sciences, University "Magna Græcia" of Catanzaro, Campus "S. Venuta", 88100, Catanzaro, Italy. Electronic address: e.marchese@unicz.it.
  • Costa G; Department of Health Sciences, University "Magna Græcia" of Catanzaro, Campus "S. Venuta", 88100, Catanzaro, Italy; Net4Science Academic Spin-Off, University "Magna Græcia" of Catanzaro, Campus "S. Venuta", 88100, Catanzaro, Italy. Electronic address: gcosta@unicz.it.
  • Fiorentino FP; Kitos Biotech Srls, Tramariglio, Alghero, SS, Italy. Electronic address: fpfiorentino@kitosbiotech.org.
  • Fusi F; Department of Biotechnologies, Chemistry and Pharmacy, University of Siena, 53100, Siena, Italy. Electronic address: fabio.fusi@unisi.it.
  • Marchesi I; Kitos Biotech Srls, Tramariglio, Alghero, SS, Italy. Electronic address: imarchesi@kitosbiotech.org.
  • Polini B; Department of Pathology, University of Pisa, 56100, Pisa, Italy. Electronic address: beatrice.polini@farm.unipi.it.
  • Chiellini G; Department of Pathology, University of Pisa, 56100, Pisa, Italy. Electronic address: grazia.chiellini@unipi.it.
  • Alcaro S; Department of Health Sciences, University "Magna Græcia" of Catanzaro, Campus "S. Venuta", 88100, Catanzaro, Italy; Net4Science Academic Spin-Off, University "Magna Græcia" of Catanzaro, Campus "S. Venuta", 88100, Catanzaro, Italy. Electronic address: alcaro@unicz.it.
  • Piras S; Department of Medicine, Surgery and Pharmacy, University of Sassari, 07100, Sassari, Italy. Electronic address: piras@uniss.it.
  • Carta A; Department of Medicine, Surgery and Pharmacy, University of Sassari, 07100, Sassari, Italy. Electronic address: acarta@uniss.it.
Eur J Med Chem ; 276: 116647, 2024 Oct 05.
Article in En | MEDLINE | ID: mdl-38981337
ABSTRACT
Multi-drug resistance (MDR) is a serious challenge in contemporary clinical practice and is mostly responsible for the failure of cancer medication therapies. Several experimental evidence links MDR to the overexpression of the drug efflux transporter P-gp, therefore, the discovery of novel P-glycoprotein inhibitors is required to treat or prevent MDR and to improve the absorption of chemotherapy drugs via the gastrointestinal system. In this work, we explored a series of novel pyridoquinoxaline-based derivatives designed from parental compounds, previously proved active in enhancing anticancer drugs in MDR nasopharyngeal carcinoma (KB). Among them, derivative 10d showed the most potent and selective inhibition of fluorescent dye efflux, if compared to reference compounds (MK-571, Novobiocin, Verapamil), and the highest MDR reversal activity when co-administered with the chemotherapeutic agents Vincristine and Etoposide, at non-cytotoxic concentrations. Molecular modelling predicted the two compound 10d binding mode in a ratio of 21 with the target protein. No cytotoxicity was observed in healthy microglia cells and off-target investigations showed the absence of CaV1.2 channel blockade. In summary, our findings indicated that 10d could potentially be a novel therapeutic coadjutant by inhibiting P-gp transport function in vitro, thereby reversing cancer multidrug resistance.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Quinoxalines / ATP Binding Cassette Transporter, Subfamily B, Member 1 / Drug Resistance, Multiple / Drug Resistance, Neoplasm / Drug Discovery / Antineoplastic Agents Limits: Humans Language: En Journal: Eur J Med Chem Year: 2024 Document type: Article Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Quinoxalines / ATP Binding Cassette Transporter, Subfamily B, Member 1 / Drug Resistance, Multiple / Drug Resistance, Neoplasm / Drug Discovery / Antineoplastic Agents Limits: Humans Language: En Journal: Eur J Med Chem Year: 2024 Document type: Article Country of publication: