Cho Eun Chul, Kim Yong Deuk, Cho Kilwon
Department of Chemical Engineering, Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, South Korea.
J Colloid Interface Sci. 2005 Jun 15;286(2):479-86. doi: 10.1016/j.jcis.2004.11.001.
We have investigated the temperature dependence of the intermolecular force between poly(N-isopropylacrylamide) (PNiPAM) grafted surface and bovine serum albumin (BSA) in phosphate buffer (pH 7.4) using atomic force microscopy at the nanonewton scale. These observations show that the interaction force is nearly zero below the phase transition temperature of PNiPAM and that it increases steeply during the phase transition. Since the PNiPAM chains are grafted onto the aminosilane (gamma-aminopropyltriethoxysilane)-treated silicon wafer, we measured the force-distance curve of BSA-immobilized tips for the bare and the aminosilane-treated silicon wafer. These surfaces show no temperature dependence and their values are different from those of the PNiPAM-grafted surfaces at 30 degrees C. The results indicate that the measured adhesion force is between the PNiPAM-grafted surface and the BSA-immobilized tip. Our studies on the intermolecular force between other surfaces (CH(3)- and COOH-terminated self-assembled monolayers) and the BSA-immobilized tip indicate that the variation in the intermolecular force between the PNiPAM surface and BSA with temperature can be attributed to the changes in the properties of the PNiPAM chains. From consideration of the PNiPAM phase transition mechanism, it is speculated that the intermolecular force between the PNiPAM-grafted surface and BSA would be affected by changes in the arrangement of the bound water molecules around the PNiPAM chain and by changes in the conformation (i.e., in the chain mobility) of the PNiPAM chain during the phase transition.
我们使用纳米牛顿尺度的原子力显微镜,研究了磷酸盐缓冲液(pH 7.4)中聚(N-异丙基丙烯酰胺)(PNiPAM)接枝表面与牛血清白蛋白(BSA)之间分子间力的温度依赖性。这些观察结果表明,在PNiPAM的相变温度以下,相互作用力几乎为零,并且在相变过程中急剧增加。由于PNiPAM链接枝到氨基硅烷(γ-氨丙基三乙氧基硅烷)处理过的硅片上,我们测量了固定有BSA的探针与裸露的和氨基硅烷处理过的硅片之间的力-距离曲线。这些表面没有温度依赖性,并且它们的值与30℃时PNiPAM接枝表面的值不同。结果表明,测得的粘附力是在PNiPAM接枝表面和固定有BSA的探针之间。我们对其他表面(CH₃-和COOH-末端自组装单分子层)与固定有BSA的探针之间分子间力的研究表明,PNiPAM表面与BSA之间分子间力随温度的变化可归因于PNiPAM链性质的变化。从PNiPAM相变机制的角度考虑,推测PNiPAM接枝表面与BSA之间的分子间力会受到PNiPAM链周围结合水分子排列变化以及相变过程中PNiPAM链构象(即链流动性)变化的影响。