PO.ET03.03 · 实验与分子治疗
大规模药物筛选鉴定出克服边缘区淋巴瘤中BTK/PI3K抑制剂耐药的临床可操作联合方案
Large-scale drug screening identifies clinically actionable combinations to overcome BTK/PI3K inhibitor resistance in marginal zone lymphoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:BTK抑制剂(i),以及近来的BTK降解剂,已成为B细胞恶性肿瘤(包括边缘区淋巴瘤,MZL)患者临床相关的药物。PI3Ki也是有效药物,尽管第一代和第二代分子由于毒性现已较少使用。在此,我们呈现一项大规模药理学筛选的数据,涉及2个对BTK/PI3Ki继发性耐药的MZL模型中的3500余种化合物,这两个模型通过长期暴露于idelalisib(Arribas 2022)或ibrutinib(Arribas 2025)而建立。
方法:亲本VL51及其耐药衍生系暴露于DMSO或3527种化合物文库(Mariotto 2023),作为单药(5µM)或与PI3Ki idelalisib(1µM)或BTKi ibrutinib(500nM)联合使用72小时。校正了空间以及板内和板间效应。随后对稳健Z值进行DMSO归一化。在亲本和耐药系中高活性的化合物,以及在idelalisib耐药或ibrutinib耐药系中反应改善的化合物,被选出通过与idelalisib或ibrutinib联合进行进一步验证(MTT法,72小时)。根据Chou-Talalay联合指数(CI)以及MuSyC、HSA和ZIP算法评估联合的协同作用。
结果:我们鉴定出127种在亲本和2个耐药系中均作为单药高活性的化合物(Z<0.5),10种在两个耐药系中活性更高的化合物(Z<0.3),以及分别有27种和54种在BTKi和PI3Ki耐药系中反应较亲本对应系增强的化合物(Z<0.3)。所鉴定的分子靶向凋亡、细胞周期、PI3K/AKT/mTOR、染色质/表观遗传学、GPCR、DNA损伤与修复以及免疫信号。在这些化合物中,我们选出临床阶段更靠前者,进一步与BTKi和PI3Ki联合测试。AChE/细胞色素P450抑制剂acetylshikonin在与idelalisib或ibrutinib联合时于六种细胞系中具有协同作用。加入PAK4/NAMPTi KPT-0247或抗生素diclazuril可恢复对BTKi的敏感性并提高BTKi在耐药细胞中的效力,但在亲本细胞中则否。加入alisertib(AURKAi)、rigosertib(PLKi)、fimepinostat(PI3K/HDACi)、lanatoside-C(Na+K+ATPase)、astragalin(凋亡)、astragaloside-I(WNT)和oridonin(AKT)在亲本和耐药细胞中均有益(相加或协同)。
结论:这项大规模筛选鉴定出BTKi和PI3Ki耐药MZL中多个可操作的脆弱点。若干临床阶段靠前的药物——尤其是PAK4/NAMPT、AURKA、WNT和Na⁺/K⁺-ATPase抑制剂——增强或恢复了BTKi/PI3Ki的活性。这些发现凸显了复发/难治性MZL的新治疗策略,并支持对靶向联合方案进行临床评估以克服获得性耐药。
查看英文原文 English abstract
Background. BTK inhibitors (i), and, more recently, BTK degraders have become clinically relevant drugs for patients with B-cell malignancies, including marginal zone lymphoma (MZL). PI3Ki are also active drugs, although the first- and second-generation molecules are now less used due to toxicity. Here, we present data from a large pharmacological screen involving over 3,500 compounds in 2 MZL models with secondary resistance to BTK/PI3Ki, developed through prolonged exposure to idelalisib (Arribas 2022) or ibrutinib (Arribas 2025).
Methods. Parental VL51 and resistant derivatives were exposed to DMSO or a library of 3,527 compounds (Mariotto 2023) as single agents (5µM) or in combination with either PI3Ki idelalisib (1µM) or BTKi ibrutinib (500nM) for 72 hours. Spatial and intra- and inter-plate effects were corrected. Robust Z-values were then DMSO-normalized. Highly active compounds across parental and resistant lines, as well as those with improved responses in either idelalisib-resistant or ibrutinib-resistant lines, were selected for further validation by combination with idelalisib or ibrutinib (MTT assay, 72 hours). Synergy of combinations was evaluated according to the Chou-Talalay combination index (CI) and to the MuSyC, HSA and ZIP algorithms.
Results. We identified 127 highly active compounds as single agents in both parental and the 2 resistant (Z<0.5), 10 compounds with higher activity in both resistant lines (Z<0.3), and 27 and 54 with increased response in BTKi and PI3Ki resistant (Z<0.3), compared to the parental counterpart, respectively. The identified molecules targeted apoptosis, cell cycle, PI3K/AKT/mTOR, chromatin/epigenetics, GPCR, DNA damage and repair, and immune signaling. Among these compounds, we selected those more advanced in the clinical setting for further testing in combination with BTKi and PI3Ki. The AChE/cytochrome-P450-i acetylshikonin was synergistic when combined with idelalisib or ibrutinib in six cell lines. The addition of the PAK4/NAMPTi KPT-0247 or the antibiotic diclazuril restored sensitivity to BTKi and improved the potency of BTKi in resistant cells, but not in the parental cells. Adding the alisertib (AURKAi), rigosertib (PLKi), fimepinostat (PI3K/HDACi), lanatoside-C (Na+K+ATPase), astragalin (apoptosis), astragaloside-I (WNT) and oridonin (AKT) was of benefit (additivity or synergism) in both parental and resistant cells.
Conclusions. This large-scale screen identifies multiple actionable vulnerabilities in BTKi- and PI3Ki-resistant MZL. Several clinically advanced agents-particularly PAK4/NAMPT, AURKA, WNT, and Na⁺/K⁺-ATPase inhibitors-enhanced or restored the activity of BTKi/PI3Ki. These findings highlight new therapeutic strategies for relapsed/refractory MZL and support clinical evaluation of targeted combinations to overcome acquired resistance.
利益披露 Disclosure
A. J. Arribas, None..
E. Mariotto, None..
E. Cannas, None..
G. Viola, None..
F. Bertoni, None.