Evaluation of in vitro and in vivo biocompatibility of a myo-inositol hexakisphosphate gelated polyaniline hydrogel in a rat model

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作者
Kwang-Hsiao Sun
Zhao Liu
Changjian Liu
Tong Yu
Tao Shang
Chen Huang
Min Zhou
Cheng Liu
Feng Ran
Yun Li
Yi Shi
Lijia Pan
机构
[1] Nanjing Drum Tower Hospital,Department of Vascular Surgery
[2] the Affiliated Hospital of Nanjing University Medical School,undefined
[3] Jiangsu Provincial Key Laboratory of Photonic and Electronic Materials,undefined
[4] Collaborative Innovation Center of Advanced Microstructures,undefined
[5] School of Electronic Science and Engineering,undefined
[6] Nanjing University,undefined
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摘要
Recent advances in understanding the interaction between electricity and cells/biomolecules have generated great interest in developing biocompatible electrically conductive materials. In this study, we investigated the biocompatibility of a myo-inositol hexakisphosphate gelated polyaniline hydrogel using in vitro and in vivo experiments in a rat model. The polyaniline hydrogel was used to coat a polycaprolactone scaffold and was cultured with rat endothelial progenitor cells differentiated from rat adipose-derived stem cells. Compared with the control sample on a pristine polycaprolactone scaffold, the treated polyaniline hydrogel had the same non-poisonous/cytotoxicity grade, enhanced cell adhesion, and a higher cell proliferation/growth rate. In implant studies, the polyaniline hydrogel sample induced milder inflammatory responses than did the control at the same time points. Combining the advantages of a biocompatible hydrogel and an organic conductor, the inositol phosphate-gelated polyaniline hydrogel could be used in bioelectronics applications such as biosensors, neural probes, cell stimulators, medical electrodes, tissue engineering, and electro-controlled drug delivery.
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