PO.CH01.03 · 化学
开发亲水性且代谢稳定的杂环AOH1996类似物用于儿科AML口服液体制剂
Development of hydrophilic and metabolically stable heterocyclic AOH1996 analogues for pediatric AML oral liquid formulations
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
增殖细胞核抗原(PCNA)是至少11种关键细胞过程的重要调控因子,包括DNA复制与修复、转录、细胞周期进程、凋亡诱导、转录-复制冲突的解决、能量代谢、染色体维持、有丝分裂以及免疫监视。在肿瘤细胞中,PCNA以一种癌症相关的酸性异构体(caPCNA)存在,而非恶性细胞仅表达一种碱性异构体(nmPCNA)。正常细胞中不存在caPCNA使其成为选择性癌症治疗的一个有吸引力的靶点。我们此前开发了AOH1996,一种同类首创的小分子,可选择性抑制caPCNA,在癌细胞中诱导凋亡而对非恶性细胞无可检测的毒性。AOH1996与caPCNA结合,稳定其三聚体结构,减少染色质结合,并抑制肿瘤细胞增殖。AOH1996具有口服生物利用度,目前正在两项首次人体I期临床试验中进行评估:一项针对难治性实体瘤(NCT05227326),另一项针对急性髓系白血病(NCT06763341)。迄今为止未观察到剂量限制性毒性,当前正在进行的剂量递增已达到1110 mg PO BID(口服,每日两次)。在本研究中,我们旨在通过策略性的单点杂原子取代来增强AOH1996的水溶性和药代动力学性质。通过用氮原子替换选定的芳香碳原子,我们生成了一系列针对液体口服制剂优化的喹啉、异喹啉和吡啶类似物,这些制剂最终将适用于儿科AML给药。对这三种杂环骨架进行的构效关系(SAR)分析鉴定出了若干与临床先导化合物相比在溶解度、效力、选择性和代谢稳定性方面均有改善的类似物。例如,在一种类似物的芳香区域引入两个氮原子,将CLogP降低至3.35(相比之下AOH1996为4.46),同时维持了与母体化合物相当的IC₅₀值。这种亲脂性的降低对应于水溶性约13倍的估计增加,使该类似物更适合口服给药的液体制剂。共合成了30余种新型AOH类似物,并在八种肿瘤细胞系(包括Molm-13、THP-1、HTB-0225、SK-N-AS、HCT116、U251和MDA-MB-468)以及AML小鼠模型中评估了其抗增殖活性。本文将介绍合成路线、生物学数据及初步的体内结果。总之,这些发现为开发具有更优理化和药理学性质、适用于儿科肿瘤应用的新一代AOH类治疗药物奠定了基础。
查看英文原文 English abstract
Proliferating cell nuclear antigen (PCNA) is a key regulator of at least 11 essential cellular processes, including DNA replication and repair, transcription, cell cycle progression, apoptosis induction, transcription-replication conflict resolution, energy metabolism, chromosome maintenance, mitosis, and immune surveillance. In tumor cells, PCNA exists as a cancer-associated acidic isoform (caPCNA), while non-malignant cells express only a basic isoform (nmPCNA). The absence of caPCNA in normal cells makes it an attractive target for selective cancer therapy. We previously developed AOH1996, a first-in-class small molecule that selectively inhibits caPCNA, inducing apoptosis in cancer cells without detectable toxicity in non-malignant cells. AOH1996 binds to caPCNA, stabilizes its trimeric structure, decreases chromatin association, and suppresses tumor cell proliferation. AOH1996 is orally bioavailable and is currently being evaluated in two first-in-human Phase I clinical trials: one for treatment refractory solid tumors (NCT05227326) and the other for acute myeloid leukemia (NCT06763341). No dose-limiting toxicities have been observed to date, with ongoing dose escalation currently reaching 1110 mg PO BID. In this study, we aimed to enhance the aqueous solubility and pharmacokinetic properties of AOH1996 through strategic single-point heteroatom substitutions. By replacing selected aromatic carbons with nitrogen atoms, we generated a series of quinoline, isoquinoline, and pyridine analogues optimized for liquid oral formulations that will be ultimately compatible with pediatric administration for AML. Structure-activity relationship (SAR) analyses across these three heterocyclic scaffolds identified several analogues with improved solubility, potency, selectivity, and metabolic stability when compared to the clinical lead. For example, introducing two nitrogen atoms into the aromatic regions of one analogue reduced the CLogP to 3.35 (vs. 4.46 for AOH1996) while maintaining IC₅₀ values comparable to the parent compound. This reduction in lipophilicity corresponds to an estimated ~13-fold increase in aqueous solubility, making this analogue more amenable to liquid formulation for oral administration. Over 30 novel AOH analogues were synthesized and evaluated for antiproliferative activity across eight tumor cell lines (including Molm-13, THP-1, HTB-0225, SK-N-AS, HCT116, U251, and MDA-MB-468), as well as in AML mouse models. Synthetic routes, biological data, and preliminary in vivo results will be presented. Together, these findings lay the groundwork for the next generation of AOH-based therapeutics with improved physicochemical and pharmacological properties suitable for pediatric oncology applications.
利益披露 Disclosure
P. Haratipour,
RLL Stock Option.
M. Valerio, None..
M. R. Jacobs, None..
M. Zangi, None.
L. Gu,
RLL Stock Option.
C. Li, None..
R. Lingeman, None.
J. Jossart,
RLL Stock Option.
J. J. Perry,
RLL Stock Option.
L. T. Nguyen, None.
L. H. Malkas,
RLL Stock Option.
R. J. Hickey,
RLL Stock Option.