Impact of Temperature Variations on the Entrapment of Bacterial Endotoxins in Aqueous Solutions of Four-Antennary Oligoglycines

Author:

Gyurova Anna Y.1,Arabadzhieva Dimitrinka1,Minkov Ivan12,Nikolov Ljubomir1,Mileva Elena1

Affiliation:

1. Institute of Physical Chemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., bl. 11, 1113 Sofia, Bulgaria

2. Faculty of Medicine, Sofia University, 1 Koziak Str., 1407 Sofia, Bulgaria

Abstract

Specific self-assembly is registered in aqueous solution formulations based on four-antennary oligoglycines (T4), namely a spontaneous onset of highly ordered nanostructures—tectomers. This phenomenon is initiated by the action of hydrogen-bonding interactions that promote molecular recognition propensities involving Polyglycine-II-type non-canonical architecture. The result is the formation of positively charged supramolecular entities. These have high potential to capture bacterial endotoxins, like lipopolysaccharides (LPSs). By now, it has been established that the overall properties of these systems can be precisely regulated and gradually changed through fine-tuning the parameters in the aqueous environment (composition, pH, etc.). One unexplored option is to clarify the impact of temperature variations. The aim of the present study is to implement systematic investigations on how changes in temperature influence the various options for the removal of trace LPS quantities, captured by the T4 tectomers. The additional goal is to verify the possibility to develop consecutive paths of recovering the extra T4 quantities that have not participated in the formation of T4+LPS complexes. Some prospects for further applications, e.g., in medicine and pharmaceutics, are also generally outlined.

Funder

Bulgarian National Fund for Scientific Research

Publisher

MDPI AG

Subject

Colloid and Surface Chemistry,Chemistry (miscellaneous)

Reference24 articles.

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2. Self-assembly of four- and two-antennary oligoglycines in aqueous medium;Gyurova;Colloids Surf. A,2017

3. Structure of polyglycine;Bamford;Nature,1955

4. Structure of Polydlycine II;Crick;Nature,1955

5. Molecular structure of polyglycine II;Ramachandran;Biochim. Biophys. Acta,1966

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