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Gemini ester quat surfactants and their biological activity

Cationic gemini surfactants are an important class of surface-active compounds that exhibit much higher surface activity than their monomeric counterparts. This type of compound architecture lends itself to the compound being easily adsorbed at interfaces and interacting with the cellular membranes...

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Autores principales: Łuczyński, Jacek, Frąckowiak, Renata, Włoch, Aleksandra, Kleszczyńska, Halina, Witek, Stanisław
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SP Versita 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6275804/
https://www.ncbi.nlm.nih.gov/pubmed/23271433
http://dx.doi.org/10.2478/s11658-012-0041-4
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author Łuczyński, Jacek
Frąckowiak, Renata
Włoch, Aleksandra
Kleszczyńska, Halina
Witek, Stanisław
author_facet Łuczyński, Jacek
Frąckowiak, Renata
Włoch, Aleksandra
Kleszczyńska, Halina
Witek, Stanisław
author_sort Łuczyński, Jacek
collection PubMed
description Cationic gemini surfactants are an important class of surface-active compounds that exhibit much higher surface activity than their monomeric counterparts. This type of compound architecture lends itself to the compound being easily adsorbed at interfaces and interacting with the cellular membranes of microorganisms. Conventional cationic surfactants have high chemical stability but poor chemical and biological degradability. One of the main approaches to the design of readily biodegradable and environmentally friendly surfactants involves inserting a bond with limited stability into the surfactant molecule to give a cleavable surfactant. The best-known example of such a compound is the family of ester quats, which are cationic surfactants with a labile ester bond inserted into the molecule. As part of this study, a series of gemini ester quat surfactants were synthesized and assayed for their biological activity. Their hemolytic activity and changes in the fluidity and packing order of the lipid polar heads were used as the measures of their biological activity. A clear correlation between the hemolytic activity of the tested compounds and their alkyl chain length was established. It was found that the compounds with a long hydrocarbon chain showed higher activity. Moreover, the compounds with greater spacing between their alkyl chains were more active. This proves that they incorporate more easily into the lipid bilayer of the erythrocyte membrane and affect its properties to a greater extent. A better understanding of the process of cell lysis by surfactants and of their biological activity may assist in developing surfactants with enhanced selectivity and in widening their range of application.
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spelling pubmed-62758042018-12-10 Gemini ester quat surfactants and their biological activity Łuczyński, Jacek Frąckowiak, Renata Włoch, Aleksandra Kleszczyńska, Halina Witek, Stanisław Cell Mol Biol Lett Short Communication Cationic gemini surfactants are an important class of surface-active compounds that exhibit much higher surface activity than their monomeric counterparts. This type of compound architecture lends itself to the compound being easily adsorbed at interfaces and interacting with the cellular membranes of microorganisms. Conventional cationic surfactants have high chemical stability but poor chemical and biological degradability. One of the main approaches to the design of readily biodegradable and environmentally friendly surfactants involves inserting a bond with limited stability into the surfactant molecule to give a cleavable surfactant. The best-known example of such a compound is the family of ester quats, which are cationic surfactants with a labile ester bond inserted into the molecule. As part of this study, a series of gemini ester quat surfactants were synthesized and assayed for their biological activity. Their hemolytic activity and changes in the fluidity and packing order of the lipid polar heads were used as the measures of their biological activity. A clear correlation between the hemolytic activity of the tested compounds and their alkyl chain length was established. It was found that the compounds with a long hydrocarbon chain showed higher activity. Moreover, the compounds with greater spacing between their alkyl chains were more active. This proves that they incorporate more easily into the lipid bilayer of the erythrocyte membrane and affect its properties to a greater extent. A better understanding of the process of cell lysis by surfactants and of their biological activity may assist in developing surfactants with enhanced selectivity and in widening their range of application. SP Versita 2012-12-27 /pmc/articles/PMC6275804/ /pubmed/23271433 http://dx.doi.org/10.2478/s11658-012-0041-4 Text en © Versita Warsaw and Springer-Verlag Wien 2012
spellingShingle Short Communication
Łuczyński, Jacek
Frąckowiak, Renata
Włoch, Aleksandra
Kleszczyńska, Halina
Witek, Stanisław
Gemini ester quat surfactants and their biological activity
title Gemini ester quat surfactants and their biological activity
title_full Gemini ester quat surfactants and their biological activity
title_fullStr Gemini ester quat surfactants and their biological activity
title_full_unstemmed Gemini ester quat surfactants and their biological activity
title_short Gemini ester quat surfactants and their biological activity
title_sort gemini ester quat surfactants and their biological activity
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6275804/
https://www.ncbi.nlm.nih.gov/pubmed/23271433
http://dx.doi.org/10.2478/s11658-012-0041-4
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