Engineering Center of Catalysis and Synthesis for Chiral Molecules, Department of Chemistry, Fudan University, Shanghai 200433, China.
Shanghai Engineering Center of Industrial Asymmetric Catalysis for Chiral Drugs, Shanghai 200433, China.
J Med Chem. 2024 Nov 14;67(21):19889-19904. doi: 10.1021/acs.jmedchem.4c02413. Epub 2024 Nov 5.
Considering the nonideal antiresistance efficacy of our previously reported non-nucleoside reverse transcriptase inhibitor , a series of novel piperidine-diarylpyrimidine derivatives were designed through expanding solvent/protein region occupation. The representative compound proved to be exceptionally potent against Y188L (EC = 23 nM), F227L + V106A (EC = 15 nM) and RES056 (EC = 45 nM), significantly better than . This analog exerted strong inhibition against wild-type HIV-1 (EC = 3 nM) and single mutant strains (L100I, K103N, Y181C, E138 K). Notably, its cytotoxicity and selectivity (CC = 18.23 μM, SI = 6537) were 4-fold better than etravirine and rilpivirine. Additionally, it exhibited minimal suppression of CYP isoenzymes and hERG, indicating low potential for drug-drug interactions and cardiotoxicity. No significant acute toxicity and tissue damage at a dose of 2 g/kg were revealed. These findings lay the groundwork for the advancement of as a highly potent, safe, and broad-spectrum NNRTI for HIV therapy.
考虑到我们之前报道的非核苷类逆转录酶抑制剂的非理想抗耐药效果,通过扩展溶剂/蛋白区域占据,设计了一系列新型哌啶-二芳基嘧啶衍生物。代表性化合物 对 Y188L(EC = 23 nM)、F227L + V106A(EC = 15 nM)和 RES056(EC = 45 nM)表现出异常的效力,明显优于 。该类似物对野生型 HIV-1(EC = 3 nM)和单突变株(L100I、K103N、Y181C、E138 K)也具有强烈的抑制作用。值得注意的是,其细胞毒性和选择性(CC = 18.23 μM,SI = 6537)比依曲韦林和利匹韦林分别高出 4 倍。此外,它对 CYP 同工酶和 hERG 的抑制作用最小,表明药物相互作用和心脏毒性的潜在风险较低。在 2 g/kg 的剂量下,没有发现明显的急性毒性和组织损伤。这些发现为将 作为一种高效、安全、广谱的 HIV 治疗 NNRTI 奠定了基础。