Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents
Includes abstract. === Includes bibliographical references (p. 193-202). === Allicin, a known constituent of garlic, is a potent but unstable antimicrobial agent. Consideration of the underlying features responsible for allicin’s activity, as well as its instability, prompted an investigation into s...
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University of Cape Town
2014
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Online Access: | http://hdl.handle.net/11427/6291 |
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ndltd-netd.ac.za-oai-union.ndltd.org-uct-oai-localhost-11427-62912020-07-22T05:07:28Z Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents Stellenboom, Nashia Hunter, Roger Caira, Mino R Chemistry Includes abstract. Includes bibliographical references (p. 193-202). Allicin, a known constituent of garlic, is a potent but unstable antimicrobial agent. Consideration of the underlying features responsible for allicin’s activity, as well as its instability, prompted an investigation into substituted S-aryl alkylthiosulfinates as a class of potential allicin mimics with enhanced stability. Synthesis of the targets also inspired development of a novel unsymmetrical disulfide synthesis. This thesis describes the development of a new methodology for synthesizing unsymmetrical disulfides. The synthesis involves converting a thiol to a sulfenylating agent by 1-chlorobenzotriazole (BtCl) in the presence of 1,2,3-benzotriazole (BtH). Addition of a second thiol affords unsymmetrical disulfides in excellent yields. In addition to being a one-pot methodology, the approach offers attractive environmentally friendly and cost-saving aspects. The methodology proved to be versatile, producing all types of unsymmetrical disulfides; aromatic-aliphatic disulfides, aromatic-aromatic disulfides as well as aliphatic-aliphatic disulfides including unsymmetrical cysteine disulfides. 2014-08-13T14:25:51Z 2014-08-13T14:25:51Z 2008 Doctoral Thesis Doctoral PhD http://hdl.handle.net/11427/6291 eng application/pdf University of Cape Town Faculty of Science Department of Chemistry |
collection |
NDLTD |
language |
English |
format |
Doctoral Thesis |
sources |
NDLTD |
topic |
Chemistry |
spellingShingle |
Chemistry Stellenboom, Nashia Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
description |
Includes abstract. === Includes bibliographical references (p. 193-202). === Allicin, a known constituent of garlic, is a potent but unstable antimicrobial agent. Consideration of the underlying features responsible for allicin’s activity, as well as its instability, prompted an investigation into substituted S-aryl alkylthiosulfinates as a class of potential allicin mimics with enhanced stability. Synthesis of the targets also inspired development of a novel unsymmetrical disulfide synthesis. This thesis describes the development of a new methodology for synthesizing unsymmetrical disulfides. The synthesis involves converting a thiol to a sulfenylating agent by 1-chlorobenzotriazole (BtCl) in the presence of 1,2,3-benzotriazole (BtH). Addition of a second thiol affords unsymmetrical disulfides in excellent yields. In addition to being a one-pot methodology, the approach offers attractive environmentally friendly and cost-saving aspects. The methodology proved to be versatile, producing all types of unsymmetrical disulfides; aromatic-aliphatic disulfides, aromatic-aromatic disulfides as well as aliphatic-aliphatic disulfides including unsymmetrical cysteine disulfides. |
author2 |
Hunter, Roger |
author_facet |
Hunter, Roger Stellenboom, Nashia |
author |
Stellenboom, Nashia |
author_sort |
Stellenboom, Nashia |
title |
Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
title_short |
Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
title_full |
Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
title_fullStr |
Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
title_full_unstemmed |
Synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
title_sort |
synthesis and inclusion studies of stable allicin mimics as novel antimicrobial agents |
publisher |
University of Cape Town |
publishDate |
2014 |
url |
http://hdl.handle.net/11427/6291 |
work_keys_str_mv |
AT stellenboomnashia synthesisandinclusionstudiesofstableallicinmimicsasnovelantimicrobialagents |
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1719330381746929664 |