Development of new double-stranded phenylalanyl chelators using eta-chi diagrams and binding constants for chelators and lanthanide ions.

Chem Pharm Bull (Tokyo)

Department of Analytical Chemistry of Medicines, Showa Pharmaceutical University, 3-3165 Higashi-tamagawagakuen, Machida, Tokyo 194-8543, Japan.

Published: May 2010

AI Article Synopsis

  • The study explored how certain ligands interact with alkaline and lanthanide ions using eta-chi diagrams to better understand their properties.
  • New amino acid chelators were created that can bind both hard and soft metal ions, forming stable complexes with specific lanthanide ions.
  • The findings suggest that these chelators could be beneficial for selectively separating lanthanide ions and developing functional peptides for various applications.

Article Abstract

We examined the interaction between several ligands and alkaline (M(+)) or lanthanide (Ln(3+)) ions using eta-chi diagrams. eta and chi represent absolute hardness and absolute electronegativity, respectively. Based on the diagrams, new double-stranded amino acid chelators (1) conjugated to Cat (catechol) were synthesized. They had two cavities coordinating hard metal ions, such as Li(+) and K(+), and soft metal ions, such as Lu(3+) and Eu(3+). 1 formed a solvated molecular complex, 1-Ln(3+), with a molar ratio of 1 : 1 at a binding constant (K(b)) of 10(4)-10(6) with Y(3+), La(3+), Eu(3+), and Lu(3+), respectively. With a chemical hard ion, Li(+), we found that the K(b) of the 1-Eu(3+) complex increased. The optimized geometries of 1-Lu(3+) and 1-La(3+) complexes were obtained from B3LYP correlation functions using Stuttgart-Dresden-Bonn (SDD) Effective Core Potential (ECP) basis sets for Lu(3+) and La(3+) ions. The double-stranded chelator may prove useful for studying the selective separation of lanthanide ions, and the development of functional peptides.

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Source
http://dx.doi.org/10.1248/cpb.58.620DOI Listing

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