HUMPOLÍČEK, Petr, Katarzyna Anna RADASZKIEWICZ, Zdenka CAPÁKOVÁ, Jiří PACHERNÍK, Patrycja BOBER, Věra KAŠPÁRKOVÁ, Petra REJMONTOVÁ, Marián LEHOCKÝ, Petr PONÍŽIL a Jaroslav STEJSKAL. Polyaniline cryogels: Biocompatibility of novel conducting macroporous material. Scientific Reports. Nature Publishing Group, 2018, roč. 8, č. 135, s. 1-12. ISSN 2045-2322. Dostupné z: https://dx.doi.org/10.1038/s41598-017-18290-1. |
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@article{1409694, author = {Humpolíček, Petr and Radaszkiewicz, Katarzyna Anna and Capáková, Zdenka and Pacherník, Jiří and Bober, Patrycja and Kašpárková, Věra and Rejmontová, Petra and Lehocký, Marián and Ponížil, Petr and Stejskal, Jaroslav}, article_number = {135}, doi = {http://dx.doi.org/10.1038/s41598-017-18290-1}, keywords = {Biomaterials cells}, language = {eng}, issn = {2045-2322}, journal = {Scientific Reports}, title = {Polyaniline cryogels: Biocompatibility of novel conducting macroporous material}, url = {https://www.nature.com/articles/s41598-017-18290-1#author-information}, volume = {8}, year = {2018} }
TY - JOUR ID - 1409694 AU - Humpolíček, Petr - Radaszkiewicz, Katarzyna Anna - Capáková, Zdenka - Pacherník, Jiří - Bober, Patrycja - Kašpárková, Věra - Rejmontová, Petra - Lehocký, Marián - Ponížil, Petr - Stejskal, Jaroslav PY - 2018 TI - Polyaniline cryogels: Biocompatibility of novel conducting macroporous material JF - Scientific Reports VL - 8 IS - 135 SP - 1-12 EP - 1-12 PB - Nature Publishing Group SN - 20452322 KW - Biomaterials cells UR - https://www.nature.com/articles/s41598-017-18290-1#author-information N2 - Polyaniline cryogel is a new unique form of polyaniline combining intrinsic electrical conductivity and the material properties of hydrogels. It is prepared by the polymerization of aniline in frozen poly(vinyl alcohol) solutions. The biocompatibility of macroporous polyaniline cryogel was demonstrated by testing its cytotoxicity on mouse embryonic fibroblasts and via the test of embryotoxicity based on the formation of beating foci within spontaneous differentiating embryonic stem cells. Good biocompatibility was related to low contents of low-molecular-weight impurities in polyaniline cryogel, which was confirmed by liquid chromatography. The adhesion and growth of embryonic stem cells, embryoid bodies, cardiomyocytes, and neural progenitors prove that polyaniline cryogel has the potential to be used as a carrier for cells in tissue engineering or bio-sensing. The surface energy as well as the elasticity and porosity of cryogel mimic tissue properties. Polyaniline cryogel can therefore be applied in bio-sensing or regenerative medicine in general, and mainly in the tissue engineering of electrically excitable tissues. ER -
HUMPOLÍČEK, Petr, Katarzyna Anna RADASZKIEWICZ, Zdenka CAPÁKOVÁ, Jiří PACHERNÍK, Patrycja BOBER, Věra KAŠPÁRKOVÁ, Petra REJMONTOVÁ, Marián LEHOCKÝ, Petr PONÍŽIL a Jaroslav STEJSKAL. Polyaniline cryogels: Biocompatibility of novel conducting macroporous material. \textit{Scientific Reports}. Nature Publishing Group, 2018, roč.~8, č.~135, s.~1-12. ISSN~2045-2322. Dostupné z: https://dx.doi.org/10.1038/s41598-017-18290-1.
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