The interaction with erythrocytes of four [V(V)O2L2]- complexes, with L = picolinate (pic), 5-cyanopicolinate (picCN), 3-aminopyrazine-2-carboxylate (przNH2), and 1,2-dimethyl-3-hydroxy-4(1H)-pyridinonate (dhp), was studied. The thermodynamic stability at physiological pH is: [V(V)O2(dhp)2]- > [V(V)O2(przNH2)2]- > [V(V)O2(pic)2]- > [V(V)O2(picCN)2]-. With picCN and pic, V exists at physiological pH as H2V(V)O4-, with przNH2 as a mixture of H2V(V)O4- and [V(V)O2(przNH2)2]- and with dhp as [V(V)O2(dhp)2]-. In the systems with pic and picCN, H2V(V)O4- and the ligands cross the erythrocyte membrane independently, with dhp the uptake occurs by diffusion, whereas with przNH2 both the mechanisms are active. Inside erythrocytes stable V(IV)OL2 complexes are formed, indicating that there is no relationship with the stability and redox state of the administered compounds and that, if the metal ion changes its oxidation state in the cytosol as V does, unstable complexes in the extracellular medium could become stable inside the cells and contribute to the pharmacological action.

Role of Ligands in the Uptake and Reduction of V(V) Complexes in Red Blood Cells

Daniele Sanna;
2019

Abstract

The interaction with erythrocytes of four [V(V)O2L2]- complexes, with L = picolinate (pic), 5-cyanopicolinate (picCN), 3-aminopyrazine-2-carboxylate (przNH2), and 1,2-dimethyl-3-hydroxy-4(1H)-pyridinonate (dhp), was studied. The thermodynamic stability at physiological pH is: [V(V)O2(dhp)2]- > [V(V)O2(przNH2)2]- > [V(V)O2(pic)2]- > [V(V)O2(picCN)2]-. With picCN and pic, V exists at physiological pH as H2V(V)O4-, with przNH2 as a mixture of H2V(V)O4- and [V(V)O2(przNH2)2]- and with dhp as [V(V)O2(dhp)2]-. In the systems with pic and picCN, H2V(V)O4- and the ligands cross the erythrocyte membrane independently, with dhp the uptake occurs by diffusion, whereas with przNH2 both the mechanisms are active. Inside erythrocytes stable V(IV)OL2 complexes are formed, indicating that there is no relationship with the stability and redox state of the administered compounds and that, if the metal ion changes its oxidation state in the cytosol as V does, unstable complexes in the extracellular medium could become stable inside the cells and contribute to the pharmacological action.
2019
Istituto di Chimica Biomolecolare - ICB - Sede Pozzuoli
Inglese
62
2
654
664
https://doi.org/10.1021/acs.jmedchem.8b01330
Sì, ma tipo non specificato
vanadate(V)
EPR
red blood cells
reduction
1
info:eu-repo/semantics/article
262
Daniele Sanna; Jessica Palomba; Giuseppe Lubinu; Péter Buglyó; Sándor Nagy; Franc Perdih;Eugenio Garribba
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/351423
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