Metal ion–binding properties of the L-aspartic acid and tartaric acid, a coparative investigation. How can be increased the dosage of mineral absorption in the body

Sajadi, Seyed Ali Akbar (2010) Metal ion–binding properties of the L-aspartic acid and tartaric acid, a coparative investigation. How can be increased the dosage of mineral absorption in the body. Advances in Bioscience and Biotechnology, 01 (04). pp. 354-360. ISSN 2156-8456

[thumbnail of ABB20100400014_80774158.pdf] Text
ABB20100400014_80774158.pdf - Published Version

Download (199kB)

Abstract

A comparative research has been developed for acidity and stability constants of M(TTA)1 and M(Asp)2 complexes which have been determined by potentiometric pH titration. Depending on metal ion–binding properties, vital differences in building complex were observed. The present study shows that in M(TTA) complexes, metal ions are coordinated to the carboxyl groups, but in M(Asp) some metal ions are able to build macrochelate over amine group. Hence, the following intermolecular and as a result independent concentration equilibrium between an open–isomer M(Asp)op and a closed–isomer M(Asp)cl, has to be considered cl op. The amounts are reported. The results mentioned above demonstrate that for some M(Asp) complexes the stability constants is also largely determined by the affinity of metal ions for amine group. This leads to a kind of selectivity of metal ions and transfer them via building complexes with the aspartate. The result of this effect is a higher dosage-absorption of minerals in body. Based on the sort of metal ions, the drug-therapy can be different. For heavy metal ions this building complex helps the absorption and filtration of the blood plasma, and consequently the excursion of heavy metal ions takes place. This is an important method in microdialysis. Other metal ions such as the complexes can be considered as mineral carriers. These complexes in certain conditions (PH–range) can release the minerals in body.

Item Type: Article
Subjects: Bengali Archive > Biological Science
Depositing User: Unnamed user with email support@bengaliarchive.com
Date Deposited: 01 Apr 2023 08:11
Last Modified: 24 May 2024 06:53
URI: http://science.archiveopenbook.com/id/eprint/682

Actions (login required)

View Item
View Item