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Electric-field assisted alignment of carbon nanotubes as a template for tissue engineering.

机译:电场辅助排列的碳纳米管作为组织工程的模板。

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Tissue engineering is a field that is rapidly developing to create tissue replacements for people suffering from diseases. This area of research consists of methods to create tissue of random or defined dimensions that is suitable for implantation into the body. A tissue of defined dimensions first requires a template for cells to infiltrate and then produce tissue. This thesis aims to explore operating variables to create an organized carbon nanotube (CNT) template and the effects of this oriented template on cellular growth and alignment. To create a CNT template, dielectrophoresis (DEP) was used to align multi-walled carbon nanotubes (MWNT). DEP is a technique that uses non-uniform electric fields to manipulate nano- and micron-sized particles suspended in solution. Dimethylsulfoxide (DMSO) was able to suspend the MWNT, but failed to lead to a qualitatively aligned MWNT template using DEP. Aqueous solutions of Pluronic F-127 were able to suspend MWNT and lead to an aligned MWNT template using DEP. The effects of Pluronic concentration and surface chemistry were statistically significant in the percent coverage of the surface. Cell morphology was found to be affected from the significant effects of surface chemistry, Pluronic concentration and DEP. Cell size decreased due to the above effects. Silanization of the surface was found to overshadow the effects of Pluronic concentration and DEP. Cells grown on the MWNT template did not orient in the direction of the aligned MWNTs.
机译:组织工程学是一个快速发展的领域,可以为患有疾病的人们提供组织替代物。该研究领域包括创建随机或定义尺寸的组织的方法,这些组织适合植入人体。定义尺寸的组织首先需要细胞浸润然后产生组织的模板。本文旨在探索操作变量以创建有组织的碳纳米管(CNT)模板,以及该定向模板对细胞生长和排列的影响。为了创建CNT模板,介电电泳(DEP)用于对齐多壁碳纳米管(MWNT)。 DEP是一种使用非均匀电场来处理悬浮在溶液中的纳米级和微米级颗粒的技术。二甲基亚砜(DMSO)能够悬浮MWNT,但使用DEP无法导致定性对齐的MWNT模板。 Pluronic F-127的水溶液能够悬浮MWNT,并使用DEP生成对齐的MWNT模板。 Pluronic浓度和表面化学的影响在表面覆盖百分比上具有统计学意义。发现细胞形态受到表面化学,Pluronic浓度和DEP的显着影响。由于上述效果,细胞尺寸减小。发现表面的硅烷化掩盖了Pluronic浓度和DEP的影响。在MWNT模板上生长的细胞没有朝着对齐的MWNT方向定向。

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