Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory for Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, College of Biology, Hunan Provincial Key Laboratory of Biomacromolecular Chemical Biology, and Aptamer Engineering Center of Hunan Province, Hunan University, Changsha 410082, P. R. China.
The Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital), Institute of Basic Medicine and Cancer (IBMC), Chinese Academy of Sciences, Hangzhou, Zhejiang 310022, China.
J Am Chem Soc. 2021 Jun 16;143(23):8559-8564. doi: 10.1021/jacs.1c03013. Epub 2021 Jun 7.
The unique merits of aptamers, including specificity, high binding affinity, easy cell internalization, and rapid tissue accumulation abilities, have led aptamer-drug conjugates to evolve into one of the most attractive strategies for targeted drug delivery purposes. Nevertheless, the critical role of linkers in regulating anticancer efficacy of these conjugates, especially those engineered by automated modular synthesis techniques, has been rarely explored. In this work, we utilized Sgc8c aptamer and combretastatin A4 to develop three conjugates with either a phosphodiester bond linker, a disulfide bond linker, or a carbamate linker to study their payload release mechanisms and the influence on anticancer efficacy. These investigations allowed us to identify the unique activation pathway of the phosphodiester bond linker that is activated by both nucleophilic attack of glutathione and degradation caused by phosphodiesterase, which is highly associated with the higher cytotoxicity of the conjugate. Importantly, the understanding of the chemistry of phosphodiester bond linker activation allowed us to further design another XQ-2d-CA4 conjugate that can induce pancreatic cancer cells apoptosis in a more efficient manner.
适体的独特优势,包括特异性、高亲和力、易于细胞内化和快速组织积累能力,使得适体-药物偶联物成为靶向药物递送最有吸引力的策略之一。然而,连接子在调节这些偶联物的抗癌疗效中的关键作用,特别是那些通过自动化模块化合成技术设计的连接子,很少被探索。在这项工作中,我们利用 Sgc8c 适体和康普瑞汀 A4 开发了三种带有磷酸二酯键连接子、二硫键连接子或氨基甲酸酯连接子的缀合物,以研究它们的有效载荷释放机制和对抗癌疗效的影响。这些研究使我们能够确定磷酸二酯键连接子的独特激活途径,该途径通过谷胱甘肽的亲核攻击和磷酸二酯酶引起的降解来激活,这与缀合物的更高细胞毒性高度相关。重要的是,对磷酸二酯键连接子激活化学的理解使我们能够进一步设计另一种 XQ-2d-CA4 缀合物,以更有效的方式诱导胰腺癌细胞凋亡。