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Transesterification of PHA to Oligomers Covalently Bonded with (Bio)Active Compounds Containing Either Carboxyl or Hydroxyl Functionalities
Authors
A Muhr
B Zawidlak-Węgrzyńska
+33 more
C Guo-Qiang
C Guo-Qiang
D Jendrossek
D Seebach
FA Lobo
G Adamus
G Adamus
G Adamus
G Impallomeni
Grażyna Adamus
Guo-Qiang Chen
I Kwiecień
I Kwiecień
I Vergili
Iwona Kwiecień
Iza Radecka
K Numata
L Savenkova
M Koller
M Kwiecień
M Maksymiak
Marek Kowalczuk
ON Voinova
R Abate
RAJ Verlinden
RC Tappel
RG Bowles
SV Prudnikova
T Lakshmi
WJ Kowalski
WJ Kowalski
X Jiang
Y Osanai
Publication date
17 March 2015
Publisher
'Public Library of Science (PLoS)'
Doi
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PubMed
Abstract
© 2015 The Authors. Published by Public Library of Science. This is an open access article available under a Creative Commons licence. The published version can be accessed at the following link on the publisher’s website: https://doi.org/10.1371/journal.pone.0120149This manuscript presents the synthesis and structural characterisation of novel biodegradable polymeric controlled-release systems of pesticides with potentially higher resistance to weather conditions in comparison to conventional forms of pesticides. Two methods for the preparation of pesticide-oligomer conjugates using the transesterification reaction were developed. The first method of obtaining conjugates, which consist of bioactive compounds with the carboxyl group and polyhydroxyalkanoates (PHAs) oligomers, is "one-pot" transesterification. In the second method, conjugates of bioactive compounds with hydroxyl group and polyhydroxyalkanoates oligomers were obtained in two-step method, through cyclic poly(3-hydroxybutyrate) oligomers. The obtained pesticide-PHA conjugates were comprehensively characterised using GPC, 1H NMR and mass spectrometry techniques. The structural characterisation of the obtained products at the molecular level with the aid of mass spectrometry confirmed that both of the synthetic strategies employed led to the formation of conjugates in which selected pesticides were covalently bonded to PHA oligomers via a hydrolysable ester bond
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