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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Biofunctionalization of PAMAM-montmorillonite decorated poly (epsilon-caprolactone)-chitosan electrospun nanofibers for cell adhesion and electrochemical cytosensing
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Biofunctionalization of PAMAM-montmorillonite decorated poly (epsilon-caprolactone)-chitosan electrospun nanofibers for cell adhesion and electrochemical cytosensing

机译:PAMAM-MONTMORILLONITE的生物官能化装饰聚(ε-己内酯)-CHITOSAN Electropum纳米纤维用于细胞粘附和电化学胞嘧化

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摘要

The construction and biofunctionalization of the poly (C-caprolactone) (PCL)-chitosan (CHIT) nanofibrous mats, which included Polyamidoamine (PAMAM) dendrimer modified montmorillonite (Mt), for the cell adhesion and electrochemical cytosensing were accomplished in this report. After the intercalation of the PAMAM generation zero dendrimer into the Mt, PAMAM-Mt decorated PCL-CHIT electrospun nanofibers were formed. The addition of PAMAM caused the decrease of contact angle of PCL-CHIT nanofibers. The covalent immobilization of a tripeptide namely Arginylglycylaspartate (RGD) on both the PCL-CHIT/Mt and PCL-CHIT/PAMAM-Mt surface was carried out. U87-MG and HaCaT (negative control) cell lines were incubated on the PCL-CHIT/Mt/RGD and PCL-CHIT/PAMAM-Mt/RGD. The proliferation studies and imaging of the cells were carried out on these fibers. Finally, electrochemical measurements were performed after each modification step by differential pulse/cyclic voltammetry and electrochemical impedance spectroscopy. U87-MG cells were grown better than HaCaT cells on the PCL-CHIT/PAMAM-Mt/RGD surfaces. To the best of our knowledge, there is no study that developed electrochemical cytosensor using electrospun nanofibers as a cell adhesion platform.
机译:在本报告中完成了包括聚酰胺胺(PCL)(PCL)-CHITOSAN(PCL)-CHITOSAN(PCL)-CHITOSAN(CHIT)纳米纤维改性蒙脱石(MT)的纳米纤维(MT)的构建和生物官能化。在将PAMAM生成零树枝状聚合物的插入到MT中之后,形成PAMAM-MT装饰的PCL-CHIT电纺纳米纤维。添加PAMAM导致PCL-CHOT纳米纤维的接触角减少。进行三肽的共价固定,即在PCL-CHOT / MT和PCL-CHOT / PAMAM-MT表面上进行氨基氨基齐乙酸盐(RGD)。将U87-Mg和HaCAT(阴性对照)细胞系在PCL-CHIT / MT / RGD和PCL-CHOT / PAMAM-MT / RGD上温育。在这些纤维上进行细胞的增殖研究和成像。最后,在通过差分脉冲/循环伏安法和电化学阻抗光谱的每个修改步骤之后进行电化学测量。在PCL-Chit / PAMAM-MT / RGD表面上比HACAT细胞更好地生长U87-MG细胞。据我们所知,没有研究使用Electur纺纳米纤维作为电池粘附平台的电化学胞嘧度。

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