Laboratory of Pharmaceutical Engineering, Gifu Pharmaceutical University, Gifu, Japan.
Eur J Pharm Biopharm. 2010 Jun;75(2):277-83. doi: 10.1016/j.ejpb.2010.02.013. Epub 2010 Feb 25.
A new method for modifying atomic force microscope (AFM) probe with polymer was proposed to estimate the interaction between Chitosan (CS)-coated poly (lactic-co-glycolic acid) (PLGA) polymer and mucin film. In this method, the mixture of polymers and its suitable volatile dissolvent were deposited on the AFM probe tip through a micropipette controlled by micromanipulator. After being dried, the polymer film forms on the probe tip. Several evaluation experiments show that using the new method, the AFM probe tip can be smoothly and uniformly coated with PLGA and CS with approximately same curvature radius as that of probe tip less than 500 nm. As a preliminary application of the proposed method, the interaction force between PLGA/CS and mucin film in air was investigated. It was revealed that when a PLGA probe is retracting from the mucin film, a repulsive force appeared; however, after the PLGA probe was further overcoated with CS, the force became attractive if the amount of CS was enough, such as at CS concentrations of 0.2% W/V. The observed force can be interpreted by the surface hydrophilic/hydrophobic characteristics of PLGA/CS and mucin film.
提出了一种用聚合物修饰原子力显微镜(AFM)探针的新方法,以估计壳聚糖(CS)涂层的聚(乳酸-共-乙醇酸)(PLGA)聚合物与粘蛋白膜之间的相互作用。在该方法中,通过微操作器控制的微量移液器将聚合物混合物及其合适的挥发性溶剂沉积在 AFM 探针尖端上。干燥后,聚合物膜在探针尖端上形成。多项评估实验表明,使用新方法,AFM 探针尖端可以平滑且均匀地涂覆具有与探针尖端相近曲率半径(小于 500nm)的 PLGA 和 CS。作为该方法的初步应用,研究了空气中 PLGA/CS 与粘蛋白膜之间的相互作用力。结果表明,当 PLGA 探针从粘蛋白膜缩回时,会出现排斥力;然而,当 PLGA 探针进一步用 CS 过度覆盖后,如果 CS 的量足够,例如 CS 浓度为 0.2% W/V,力就会变为吸引力。观察到的力可以通过 PLGA/CS 和粘蛋白膜的表面亲水/疏水特性来解释。