TY - JOUR
T1 - Biodegradable and electrically conducting polymers for biomedical applications
AU - Guo, Baolin
AU - Glavas, Lidija
AU - Albertsson, Ann Christine
PY - 2013/9
Y1 - 2013/9
N2 - Conducting polymers have been widely used in biomedical applications such as biosensors and tissue engineering but their non-degradability still poses a limitation. Therefore, great attention has been directed toward the recently developed degradable and electrically conductive polymers (DECPs). The different strategies for synthesis of degradable and conducting polymers containing conducting oligomers are summarized and discussed here as well as the influence of different macromolecular architectures such as linear, star-shaped, hyperbranched and cross-linked DECPs. Blends and composites of biodegradable and conductive polymers are also discussed. The developing trends and challenges with the design of DECPs are also presented.
AB - Conducting polymers have been widely used in biomedical applications such as biosensors and tissue engineering but their non-degradability still poses a limitation. Therefore, great attention has been directed toward the recently developed degradable and electrically conductive polymers (DECPs). The different strategies for synthesis of degradable and conducting polymers containing conducting oligomers are summarized and discussed here as well as the influence of different macromolecular architectures such as linear, star-shaped, hyperbranched and cross-linked DECPs. Blends and composites of biodegradable and conductive polymers are also discussed. The developing trends and challenges with the design of DECPs are also presented.
KW - Aliphatic polyesters
KW - Aniline oligomers
KW - Degradable conducting copolymers
KW - Macromolecular architecture
KW - Tissue regeneration
UR - https://www.scopus.com/pages/publications/84882264696
U2 - 10.1016/j.progpolymsci.2013.06.003
DO - 10.1016/j.progpolymsci.2013.06.003
M3 - 文献综述
AN - SCOPUS:84882264696
SN - 0079-6700
VL - 38
SP - 1263
EP - 1286
JO - Progress in Polymer Science
JF - Progress in Polymer Science
IS - 9
ER -