Departament d'Enginyeria Electrònica, Elèctrica i Automàtica, Universitat Rovira i Virgili, Avinguda dels Països Catalans, 26, 43007 Tarragona, Spain.
J Colloid Interface Sci. 2021 Feb 15;584:236-245. doi: 10.1016/j.jcis.2020.09.109. Epub 2020 Oct 6.
In this work, we present the process to provide anodic alumina nanotubes with magnetic responsivity based on magnetic nanoparticles. We demonstrate the possibility to cause the motion of these composite nanotubes under magnetic field, providing them with guided mobility. The obtained magnetic anodic alumina nanotubes are completely characterized and their potential to undergo selective and effective functionalization, and stimuli-responsive load release is demonstrated. For this purpose, protease-triggered release of fluorescent molecules loaded inside the magnetic anodic alumina nanotubes (MAANTs) by selective functionalization is performed. The inner walls of the MAANTs were selectively covered with protein padding of albumin-fluorescein isothiocyanate conjugate (FITC-BSA) through means of silanization. Protein functionalization was designed to undergo proteolytic hydrolysis in presence of cathepsin B- protease highly expressed during growth and initial stages of tumor metastasis - in order to cleave peptide bond of albumin and release fluorescent fragments of the protein. Proteolytic reaction with the enzyme is performed under acidic conditions. Presented arrangement is an exemplary combination of functionalities - which are vast - and of value for applications like drug delivery and biosensing applications.
在这项工作中,我们提出了一种基于磁性纳米粒子使阳极氧化铝纳米管具有磁响应性的方法。我们证明了在磁场下引起这些复合纳米管运动的可能性,为它们提供了导向迁移能力。对获得的磁性阳极氧化铝纳米管进行了全面的表征,并证明了它们具有进行选择性和有效功能化以及响应性负载释放的潜力。为此,通过选择性功能化,实现了负载在磁性阳极氧化铝纳米管(MAANTs)内部的荧光分子的蛋白酶触发释放。通过硅烷化,MAANTs 的内壁被白蛋白-异硫氰酸荧光素缀合物(FITC-BSA)的蛋白质垫选择性地覆盖。蛋白质功能化的设计是为了在组织蛋白酶 B-蛋白酶的存在下经历蛋白水解水解,该蛋白酶在肿瘤转移的生长和初始阶段高度表达-以切割白蛋白的肽键并释放蛋白质的荧光片段。在酸性条件下进行酶促反应。所提出的排列是功能的典范组合-具有广泛的应用价值,例如药物输送和生物传感应用。