首页> 外文会议>Micro-NanoMechatronics and Human Science,MHS, 2008 International Symposium on >Cells adhesion/detachment control onto temperature-responsive glass coverslips modified with ultra thin poly(N-isopropylacrylamide) layer and its application of cell detachment process observed by TIRF microscopy
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Cells adhesion/detachment control onto temperature-responsive glass coverslips modified with ultra thin poly(N-isopropylacrylamide) layer and its application of cell detachment process observed by TIRF microscopy

机译:用超薄聚(N-异丙基丙烯酰胺)层修饰的温度响应性玻璃盖玻片上的细胞粘附/脱离控制,并通过TIRF显微镜观察其在细胞脱离过程中的应用

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Poly(N-isopropylacrylamide) (PIPAAm) was covalently grafted on glass coverslips (PIPAAm-CSs) by electron beam irradiation. Thickness and amount of the grafted polymer amount were increased with the initial monomer concentration. PIPAAm-CSs with thicker and larger amount of the grafted polymer exhibited more hydrophilic surfaces. When the monomer concentration was 5 wt%, the grafted polymer density was 0.84 ??g/cm2, and cells adhered, spread on the surface at 37?°C, but detached at 20?°C. In contrast, when the monomer concentration was 35 wt%, the polymer density was 1.28 ??g/cm2, and the surfaces were cell repellent even at 37?°C. These results showed a remarkable contrast to those with temperature-responsive polymer-grafted tissue culture polystyrene dishes, since various types of cells showed temperature-dependent cell adhesion/detachment when the grafted density was around 2 ??g/cm2 on these surfaces. We discuss the possible molecular mechanisms underlying this discrepancy. Furthermore, we applied PIPAAm-CS surfaces to observation of cell detachment process by using total internal reflectance fluorescence (TIRF) microscopy.
机译:通过电子束照射将聚(N-异丙基丙烯酰胺)(PIPAAm)共价接枝到玻璃盖玻片(PIPAAm-CSs)上。接枝聚合物的厚度和数量随初始单体浓度的增加而增加。具有更厚和更大量的接枝聚合物的PIPAAm-CSs表现出更多的亲水性表面。当单体浓度为5wt%时,接枝聚合物的密度为0.84Ω·g / cm 2 ,并且细胞粘附,在37℃下散布在表面上,但在20℃下脱落。 。相反,当单体浓度为35wt%时,聚合物密度为1.28Δgg/ cm 2 ,甚至在37℃下表面仍具有细胞排斥性。这些结果显示出与具有温度响应性的聚合物移植的组织培养聚苯乙烯培养皿的显着对比,这是因为当移植的密度为约2≤g / cm 2 <时,各种类型的细胞均显示出温度依赖性的细胞粘附/脱离。 / sup>在这些表面上。我们讨论了这种差异的潜在分子机制。此外,我们通过使用全内反射荧光(TIRF)显微镜将PIPAAm-CS表面应用于细胞分离过程的观察。

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