Nian Fuyu, Huang Yafan, Song Meiru, Chen Juan-Juan, Xue Jinping
College of Chemistry, Institution Fujian Engineering Research Center for Drug and Diagnoses-Treat of Photodynamic Therapy, State Key Laboratory of Photocatalysis on Energy and Environment Fuzhou University, Fuzhou, China.
J Mater Chem B. 2017 Aug 21;5(31):6227-6232. doi: 10.1039/c7tb01295k. Epub 2017 Jul 31.
A unique zirconium-based framework named N-UiO-66-NH, which can be used as a fabricated material to achieve the dual functional chemical modification of UiO-66, was synthesized and demonstrated. This work offers a facile and selective covalent post-synthetic modification of UiO-66 by different chemical reactions related to azide- and amino-groups, respectively. Using N-UiO-66-NH as a fabricated material, a newly dual functionalized MOF named E-UiO-66-Pc, in which a carboxyl substituted zinc phthalocyanine (Pc) and Erlotinib (E) were employed as a photosensitizer and targeting moiety, was designed and synthesized via amidation and click chemistry, respectively. The photochemical properties, tumor specificity and anticancer activity of E-UiO-66-Pc were investigated. We further demonstrated that it is viable to achieve facile and selective covalent post-synthetic modification of N-UiO-66-NH with Pc and E and obtained a series of functionalized UiO-66 nanomaterials. The Pc-containing UiO-66 nanomaterials exhibit high photodynamic activity, and the Erlotinib-containing UiO-66 nanomaterials show obvious dark cytotoxicity and high selective affinity to cancer cells. E-UiO-66-Pc reveals cooperative photodynamic and targeted anticancer activity. To the best of our knowledge, this is the only example of UiO-66 with two different chemical handles (-NH and -N) anchoring to different functional molecules via amidation and click chemistry, respectively.
合成并展示了一种名为N-UiO-66-NH的独特锆基框架,它可用作一种制备材料,以实现UiO-66的双功能化学修饰。这项工作通过分别与叠氮基和氨基相关的不同化学反应,提供了一种对UiO-66进行简便且选择性的共价后合成修饰方法。以N-UiO-66-NH作为制备材料,设计并合成了一种新的双功能化金属有机框架(MOF),即E-UiO-66-Pc,其中羧基取代的锌酞菁(Pc)和厄洛替尼(E)分别用作光敏剂和靶向部分,分别通过酰胺化反应和点击化学合成。研究了E-UiO-66-Pc的光化学性质、肿瘤特异性和抗癌活性。我们进一步证明,用Pc和E对N-UiO-66-NH进行简便且选择性的共价后合成修饰是可行的,并获得了一系列功能化的UiO-66纳米材料。含Pc的UiO-66纳米材料表现出高光动力活性,含厄洛替尼的UiO-66纳米材料表现出明显的暗细胞毒性和对癌细胞的高选择性亲和力。E-UiO-66-Pc显示出协同的光动力和靶向抗癌活性。据我们所知,这是UiO-66通过酰胺化反应和点击化学分别将两种不同的化学基团(-NH和-N)锚定到不同功能分子上的唯一例子。