Cargando…

The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions

The interactions of dopamine [2-(3,4-Dihydroxyphenyl)ethylamine, (Dop(−))] with methylmercury(II) (CH(3)Hg(+)), magnesium(II), calcium(II), and tin(II) were studied in NaCl(aq) at different ionic strengths and temperatures. Different speciation models were obtained, mainly characterized by mononucle...

Descripción completa

Detalles Bibliográficos
Autores principales: Gigliuto, Antonio, Cigala, Rosalia Maria, Irto, Anna, Felice, Maria Rosa, Pettignano, Alberto, Milea, Demetrio, Materazzi, Stefano, De Stefano, Concetta, Crea, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8466117/
https://www.ncbi.nlm.nih.gov/pubmed/34572525
http://dx.doi.org/10.3390/biom11091312
_version_ 1784573050632536064
author Gigliuto, Antonio
Cigala, Rosalia Maria
Irto, Anna
Felice, Maria Rosa
Pettignano, Alberto
Milea, Demetrio
Materazzi, Stefano
De Stefano, Concetta
Crea, Francesco
author_facet Gigliuto, Antonio
Cigala, Rosalia Maria
Irto, Anna
Felice, Maria Rosa
Pettignano, Alberto
Milea, Demetrio
Materazzi, Stefano
De Stefano, Concetta
Crea, Francesco
author_sort Gigliuto, Antonio
collection PubMed
description The interactions of dopamine [2-(3,4-Dihydroxyphenyl)ethylamine, (Dop(−))] with methylmercury(II) (CH(3)Hg(+)), magnesium(II), calcium(II), and tin(II) were studied in NaCl(aq) at different ionic strengths and temperatures. Different speciation models were obtained, mainly characterized by mononuclear species. Only for Sn(2+) we observed the formation of binuclear complexes (M(2)L(2) and M(2)LOH (charge omitted for simplicity); M = Sn(2+), L = Dop(−)). For CH(3)Hg(+), the speciation model reported the ternary MLCl (M = CH(3)Hg(+)) complex. The dependence on the ionic strength of complex formation constants was modeled by using both an extended Debye–Hückel equation that included the Van’t Hoff term for the calculation of enthalpy change values of the formation and the Specific Ion Interaction Theory (SIT). The results highlighted that, in general, the entropy is the driving force of the process. The sequestering ability of dopamine towards the investigated cations was evaluated using the calculation of pL(0.5) parameter. The sequestering ability trend resulted to be: Sn(2+) > CH(3)Hg(+) > Ca(2+) > Mg(2+). For example, at I = 0.15 mol dm(−3), T = 298.15 K and pH = 7.4, pL(0.5) = 3.46, 2.63, 1.15, and 2.27 for Sn(2+), CH(3)Hg(+), Ca(2+) and Mg(2+) (pH = 9.5 for Mg(2+)), respectively. For the Ca(2+)/Dop(−) system, the precipitates collected at the end of the potentiometric titrations were analyzed by thermogravimetry (TGA). The thermogravimetric calculations highlighted the formation of solid with stoichiometry dependent on the different metal:ligand ratios and concentrations of the starting solutions.
format Online
Article
Text
id pubmed-8466117
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-84661172021-09-27 The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions Gigliuto, Antonio Cigala, Rosalia Maria Irto, Anna Felice, Maria Rosa Pettignano, Alberto Milea, Demetrio Materazzi, Stefano De Stefano, Concetta Crea, Francesco Biomolecules Article The interactions of dopamine [2-(3,4-Dihydroxyphenyl)ethylamine, (Dop(−))] with methylmercury(II) (CH(3)Hg(+)), magnesium(II), calcium(II), and tin(II) were studied in NaCl(aq) at different ionic strengths and temperatures. Different speciation models were obtained, mainly characterized by mononuclear species. Only for Sn(2+) we observed the formation of binuclear complexes (M(2)L(2) and M(2)LOH (charge omitted for simplicity); M = Sn(2+), L = Dop(−)). For CH(3)Hg(+), the speciation model reported the ternary MLCl (M = CH(3)Hg(+)) complex. The dependence on the ionic strength of complex formation constants was modeled by using both an extended Debye–Hückel equation that included the Van’t Hoff term for the calculation of enthalpy change values of the formation and the Specific Ion Interaction Theory (SIT). The results highlighted that, in general, the entropy is the driving force of the process. The sequestering ability of dopamine towards the investigated cations was evaluated using the calculation of pL(0.5) parameter. The sequestering ability trend resulted to be: Sn(2+) > CH(3)Hg(+) > Ca(2+) > Mg(2+). For example, at I = 0.15 mol dm(−3), T = 298.15 K and pH = 7.4, pL(0.5) = 3.46, 2.63, 1.15, and 2.27 for Sn(2+), CH(3)Hg(+), Ca(2+) and Mg(2+) (pH = 9.5 for Mg(2+)), respectively. For the Ca(2+)/Dop(−) system, the precipitates collected at the end of the potentiometric titrations were analyzed by thermogravimetry (TGA). The thermogravimetric calculations highlighted the formation of solid with stoichiometry dependent on the different metal:ligand ratios and concentrations of the starting solutions. MDPI 2021-09-05 /pmc/articles/PMC8466117/ /pubmed/34572525 http://dx.doi.org/10.3390/biom11091312 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gigliuto, Antonio
Cigala, Rosalia Maria
Irto, Anna
Felice, Maria Rosa
Pettignano, Alberto
Milea, Demetrio
Materazzi, Stefano
De Stefano, Concetta
Crea, Francesco
The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions
title The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions
title_full The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions
title_fullStr The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions
title_full_unstemmed The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions
title_short The Solution Behavior of Dopamine in the Presence of Mono and Divalent Cations: A Thermodynamic Investigation in Different Experimental Conditions
title_sort solution behavior of dopamine in the presence of mono and divalent cations: a thermodynamic investigation in different experimental conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8466117/
https://www.ncbi.nlm.nih.gov/pubmed/34572525
http://dx.doi.org/10.3390/biom11091312
work_keys_str_mv AT gigliutoantonio thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT cigalarosaliamaria thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT irtoanna thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT felicemariarosa thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT pettignanoalberto thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT mileademetrio thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT materazzistefano thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT destefanoconcetta thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT creafrancesco thesolutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT gigliutoantonio solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT cigalarosaliamaria solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT irtoanna solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT felicemariarosa solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT pettignanoalberto solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT mileademetrio solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT materazzistefano solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT destefanoconcetta solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions
AT creafrancesco solutionbehaviorofdopamineinthepresenceofmonoanddivalentcationsathermodynamicinvestigationindifferentexperimentalconditions