Structure-Based Design of Dual-Acting Compounds Targeting Adenosine A 2A Receptor and Histone Deacetylase as Novel Tumor Immunotherapeutic Agents
作者:Wenzhong Yan, Lijun Ling, Yiran Wu, Kexin Yang, Ruiquan Liu, Jinfeng Zhang, Simeng Zhao, Guisheng Zhong, Suwen Zhao, Hualiang Jiang, Chengying Xie, Jianjun Cheng · 发表于:Journal of Medicinal Chemistry · 年份:2021 · DOI:10.1021/acs.jmedchem.1c01155 · 被引用次数:29 · 研究领域:Adenosine and Purinergic Signaling、Peptidase Inhibition and Analysis、Pharmacological Receptor Mechanisms and Effects
Adenosine is an immunosuppressive factor in the tumor microenvironment mainly through activation of the A 2A adenosine receptor (A 2A R), which is a mechanism hijacked by tumors to escape immune surveillance. Small-molecule A 2A R antagonists are being evaluated in clinical trials as immunotherapeutic agents, but their efficacy is limited as standalone therapies. To enhance the antitumor effects of A 2A R antagonists, dual-acting compounds incorporating A 2A R antagonism and histone deacetylase (HDAC) inhibitory actions were designed and synthesized, based on co-crystal structures of A 2A R. Compound 24e (IHCH-3064) exhibited potent binding to A 2A R ( K i = 2.2 nM) and selective inhibition of HDAC1 (IC 50 = 80.2 nM), with good antiproliferative activity against tumor cell lines in vitro. Intraperitoneal administration of 24e (60 mg/kg, bid) inhibited mouse MC38 tumor growth with a tumor growth inhibition rate of 95.3%. These results showed that dual-acting compounds targeting A 2A R and HDAC are potentially immunotherapeutic agents that are worth further exploring.