Kinetic studies of a composite carbon nanotube-hydrogel for tissue engineering by rheological methods

被引:0
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作者
Fan Xie
Pierre Weiss
Olivier Chauvet
Jean Le Bideau
Jean François Tassin
机构
[1] Université de Nantes,INSERM, U791, Laboratoire d’Ingénierie Ostéo
[2] IMN,Articulaire et Dentaire, Faculté de chirurgie dentaire
[3] UMR 6502 CNRS Université de Nantes,Institut des Matériaux de Nantes
[4] Université du Maine,CNRS, UMR 6120, Laboratoire Polymères, Colloïdes, Interfaces
关键词
Storage Modulus; Apparent Activation Energy; Gelation Process; Gelation Time; Biphasic Calcium Phosphate;
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摘要
Here we used rheological methods to study the gelation kinetics of silanized hydroxypropylmethylcellulose (HPMC-Si) hydrogel for tissue engineering. Firstly, the gelation time was determined from the independence of tan δ on frequency, and the Arrhenius law was applied to obtain the apparent activation energy of gelation, which was found to be about 109.0 kJ/mol. Secondly, the gelation process was monitored by measuring the sample storage modulus. The results showed that the gelation process could be well classified as a second-order reaction. In addition, a composite HPMC-Si/MWNTs hydrogel system for potential cartilage tissue engineering was investigated. The comparison of pure HPMC-Si hydrogel and composite HPMC-Si/MWNTs systems indicated that the addition of MWNTs could increase the mechanical strength of hydrogel without changing the gelation mechanism of the system.
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页码:1163 / 1168
页数:5
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