Vikulina A S, Aleed S T, Paulraj T, Vladimirov Yu A, Duschl C, von Klitzing R, Volodkin D
Fraunhofer Institute for Cell Therapy and Immunology, Am Mühlenberg 13, 14476 Potsdam-Golm, Germany.
Phys Chem Chem Phys. 2015 May 21;17(19):12771-7. doi: 10.1039/c5cp01213a.
Polyelectrolyte multilayers serve as effective reservoirs for bioactive molecules which are stored and released from the multilayers for cellular applications. However, control over the release without significantly affecting the multilayers and biomolecules is still a challenge. On the other hand, externally stimulated release would make the multilayers promising for the development of stimuli-sensitive planar carriers with release performance switched on demand. In this study soft composite films are designed by coating hyaluronic acid/poly-l-lysine (HA/PLL) multilayers with temperature responsive poly(N-isopropylacrylamide) (PNIPAM) microgels. Microgels are flattened and immersed into the multilayers to maximize the number of contacts with the surrounding polyelectrolytes (HA and PLL). The microgel coating serves as an efficient switchable barrier for the PLL transport into the multilayers. PLL diffusion into the film is significantly hindered at room temperature but is dramatically enhanced at 40 °C above the volume phase transition temperature (VPTT) of PNIPAM at 32 °C associated with microgel shrinkage. Scanning force microscopy micrographs show that the mechanism of volume phase transition on soft surfaces cannot be directly deduced from the processes taking place at solid substrates.
聚电解质多层膜可作为生物活性分子的有效储存库,这些生物活性分子可从多层膜中储存和释放以用于细胞应用。然而,在不显著影响多层膜和生物分子的情况下控制释放仍然是一个挑战。另一方面,外部刺激释放将使多层膜有望用于开发具有按需切换释放性能的刺激敏感平面载体。在本研究中,通过用温度响应性聚(N-异丙基丙烯酰胺)(PNIPAM)微凝胶涂覆透明质酸/聚-L-赖氨酸(HA/PLL)多层膜来设计软复合膜。微凝胶被压扁并浸入多层膜中,以最大化与周围聚电解质(HA和PLL)的接触数量。微凝胶涂层作为PLL向多层膜中传输的有效可切换屏障。在室温下,PLL向膜中的扩散受到显著阻碍,但在40°C(高于PNIPAM在32°C时的体积相变温度(VPTT),与微凝胶收缩相关)时显著增强。扫描力显微镜图像表明,软表面上的体积相变机制不能直接从固体基质上发生的过程推导出来。