Unusual Enthalpy Driven Self Assembly at Room Temperature with Chitosan Amphiphiles
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Published:2019-05-10
Issue:1
Volume:7
Page:57-71
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ISSN:2211-7385
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Container-title:Pharmaceutical Nanotechnology
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language:en
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Short-container-title:PNT
Author:
Odunze Uchechukwu1, O'Brien Fionn1, Godfrey Lisa1, Schätzlein Andreas1, Uchegbu Ijeoma1
Affiliation:
1. School of Pharmacy, University College London, 29-39 Brunswick Square, London WC1N 1AX, United Kingdom
Abstract
Background:
GCPQ (N-palmitoyl-N-monomethyl-N,N-dimethyl-N,N,N-trimethyl-
6-O-glycolchitosan) is a self-assembling polymer being investigated as a pharmaceutical
nano-carrier. GCPQ nanoparticles shuttle drugs across biological barriers, improving
drug performance. The exact chemistry of GCPQ is varied by the relative proportion of
hydrophobic (N-palmitoyl) and hydrophilic (quaternary ammonium) groups and molecular
weight.
Objective:
We hypothesised that the thermodynamics of self-assembly is controlled by the
polymer molecular weight and hydrophobicity.
Method:
The thermodynamics of self-assembly was investigated using isothermal calorimetry.
Results:
GCPQs (Mw = 8-15 kDa) formed micellar aggregates at critical micellar concentrations
of 1-2.4 µM at 25°C and micellisation was unusually enthalpy driven. There was a
positive correlation between ΔHmic and mole% quaternary groups (Q): ΔHmic = 3.8 Q-
159 (r2 = 0.93) and a negative correlation between ΔHmic and molecular weight (Mw):
ΔHmic = -13.5 Mw-26.3 (r2 = 0.99).
Conclusion:
These findings provide insights into the positive drivers of stable selfassemblies,
namely hydrophobicity and molecular weight, as both hydrophobicity and molecular
weight are associated with an increased enthalpy contribution to micellisation.
Publisher
Bentham Science Publishers Ltd.
Subject
Biomedical Engineering,Pharmaceutical Science
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