Drug-Drug Interactions within Protein Cavities Probed by Triplet-Triplet Energy Transfer.
Autores de IIS La Fe
Participantes ajenos a IIS La Fe
- Nuin E
- Sastre G
Grupos
Abstract
A new direct and noninvasive methodology based on transient absorption spectroscopy has been developed to probe the feasibility of drug-drug interactions within a common protein binding site. The simultaneous presence of (R)-cinacalcet (CIN) and (S)-propranolol (PPN) within human or bovine a1-acid glycoproteins (AAGs) is revealed by detection of (3)CIN* as the only transient species after laser flash photolysis of CIN/PPN/AAG mixtures at 308 nm. This is the result of triplet-triplet energy transfer from (3)PPN* to CIN, which requires close contact between the two drugs within the same biological compartment. Similar results are obtained with nabumetone and CIN as donor/acceptor partners. This new methodology can, in principle, be extended to a variety of drug/drug/biomolecule combinations.
Datos de la publicación
- ISSN/ISSNe:
- 1948-7185,
- Tipo:
- Article
- Páginas:
- 1603-1607
- DOI:
- 10.1021/jz400640s
- PubMed:
- 26282966
- Factor de Impacto:
- 3,529 SCImago ℠
- Cuartil:
- Q1 SCImago ℠
Journal of Physical Chemistry Letters AMER CHEMICAL SOC
Citas Recibidas en Web of Science: 8
Documentos
- No hay documentos
Filiaciones
Keywords
- cinacalcet, laser flash photolysis, nabumetone, propranolol, triplet excited state, a1-acid glycoprotein
Cita
Nuin E,JIMÉNEZ MC,Sastre G,ANDREU I,MIRANDA MA. Drug-Drug Interactions within Protein Cavities Probed by Triplet-Triplet Energy Transfer. J. Phys. Chem. Lett. 2013. 4. (10):p. 1603-1607. IF:6,687. (1).
Portal de investigación