PO.ET02.09 · 实验与分子治疗

具有优越脑摄取的下一代ERbeta激动剂抑制胶质母细胞瘤并增强替莫唑胺反应

Next-generation ERbeta agonists with superior brain uptake suppress glioblastoma and enhance temozolomide response

海报缩略图:具有优越脑摄取的下一代ERbeta激动剂抑制胶质母细胞瘤并增强替莫唑胺反应
编号 461 展板 4 时间 4/19 02:00–05:00 区域 Section 19 主讲 Uday Pratap, PhD
分会场 RNA, Gene and Cell Therapies, and Enabling Assay Technologies
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作者与单位 Authors & Affiliations

Uday Pratap1, Karinel Nieves-Merced2, Sridharan Jayamohan3, Michael Tidwell4, Annabel Maciolek5, Khaled Mohamed Nassar3, Henriette U. Balinda6, Nicholas Clanton7, Suryavathi Viswanadhapalli1, Gangadhara R. Sareddy3, Stanton McHardy2, Andrew J. Brenner3, Ratna K. Vadlamudi1

1UTHSA, San Antonio, TX,2Chemistry, UTSA, San Antonio, TX,3UT Health Science Center at San Antonio, San Antonio, TX,4Chemistry, UTSA, San ANtonio, TX,5Chemistry, UTSA, ntonio, TX,6Mays Cancer Center, UTHSA, San Antonio, TX,7Pharmacology, UTSA, San Antonio, TX

摘要 Abstract

中文摘要
背景:胶质母细胞瘤(GBM)是成人中最常见且最具侵袭性的原发性脑恶性肿瘤,5年总生存率极低。流行病学研究提示雌激素受体β(ERbeta)在脑内发挥肿瘤抑制作用,支持其作为治疗靶点的潜力。然而,缺乏强效、选择性和脑穿透性的ERbeta配体阻碍了转化进展。我们最近鉴定出茚酮类和四氢萘酮酮/羟基肟衍生物(CIDD-0149897)作为有前景的ERbeta激动剂。在此,我们报告下一代ERbeta激动剂的结构导向设计、合成和临床前验证,这些激动剂在效力、选择性、安全性和血脑屏障通透性方面显著改善,可用于GBM治疗。 方法:为优化CIDD-0149897骨架并确定关键药效团,我们采用基于结构的药物设计、结合跨多种化学型的ERbeta-LBD X射线数据,设计并合成了177个类似物。使用双荧光素酶报告实验定量ERbeta相对ERalpha的选择性。通过CellTiter-Glo和Annexin-V实验在患者来源和小鼠胶质母细胞瘤干细胞(GSC)中评估细胞毒性和凋亡。机制研究采用Western blotting、RT-qPCR、彗星实验、RNA-seq和质谱。体外ADME和PK通过UTSA创新药物发现中心进行。在原位同基因和患者来源异种移植GBM模型中评估先导ERbeta激动剂的治疗疗效。 结果:五种优化的ERbeta激动剂显示出显著改善的效力和选择性。ADME分析表明,相对于CIDD-0149897,水溶性提高20-50倍,且血浆稳定性优异。两个类似物CIDD-0169124和CIDD-0166596显示出比CIDD-0149897高≥10倍的脑暴露,在15分钟时峰值脑/血浆比为3.12±0.84,表明快速脑摄取。两种先导分子均以低微摩尔IC₅₀值降低人和小鼠GSC活力,并显著增强替莫唑胺(TMZ)反应,增加DNA损伤并抑制神经球形成。彗星实验显示,与单药治疗相比,联合治疗的橄榄尾矩显著增加。在体内,CIDD-0169124和CIDD-0166596在原位异种移植GBM模型中显著减轻肿瘤负荷并延长生存。与TMZ联合进一步延长生存。肿瘤切片免疫组化显示联合治疗肿瘤中Ki-67减少、cleaved caspase-3增加。 结论:两种改良的ERbeta激动剂在效力、选择性、安全性和脑穿透性方面优于CIDD-0149897。这些化合物显示出强大的抗GBM作用并增强TMZ疗效,支持将其开发为针对GBM的下一代ERbeta靶向治疗剂。由NIH RO1 CA269866资助。
查看英文原文 English abstract
Background: Glioblastoma (GBM) is the most common and aggressive primary brain malignancy in adults, with a dismal 5-year overall survival rate. Epidemiologic studies suggest that estrogen receptor beta (ERbeta) exerts tumor-suppressive effects in the brain, supporting its potential as a therapeutic target. However, the lack of potent, selective, and brain-penetrant ERbeta ligands has hindered translational progress. We recently identified indanone- and tetralone-keto/hydroxyloxime derivatives (CIDD-0149897) as promising ERbeta agonist. Here, we report the structure-guided design, synthesis, and preclinical validation of next-generation ERbeta agonists with markedly improved potency, selectivity, safety, and blood-brain barrier permeability for GBM therapy. Methods: To optimize the CIDD-0149897 scaffold and define key pharmacophores, we designed and synthesized 177 analogues using structure-based drug design incorporating ERbeta-LBD X-ray data across multiple chemotypes. ERbeta versus ERalpha selectivity was quantified using dual-luciferase reporter assays. Cytotoxicity and apoptosis were assessed in patient-derived and mouse glioblastoma stem cells (GSCs) via CellTiter-Glo and Annexin-V assays. Mechanistic studies employed Western blotting, RT-qPCR, comet assays, RNA-seq, and mass spectrometry. In vitro ADME and PK were performed through the UTSA Center for Innovative Drug Discovery. Therapeutic efficacy of lead ERbeta agonists was evaluated in orthotopic syngeneic and patient-derived xenograft GBM models. Results: Five optimized ERbeta agonists displayed substantially improved potency and selectivity. ADME analyses demonstrated 20-50-fold higher aqueous solubility and excellent plasma stability relative to CIDD-0149897. Two analogues CIDD-0169124 and CIDD-0166596 showed ≥10-fold higher brain exposure than CIDD-0149897, with a peak brain/plasma ratio of 3.12 ± 0.84 at 15 minutes, indicating rapid brain uptake. Both lead molecules reduced human and mouse GSC viability with low-micromolar IC₅₀ values and significantly enhanced temozolomide (TMZ) response, increasing DNA damage and suppressing neurosphere formation. Comet assays revealed marked increases in olive tail moment with combination treatment compared to monotherapy. In vivo, CIDD-0169124 and CIDD-0166596 significantly reduced tumor burden and prolonged survival in orthotopic xenograft GBM models. Combination with TMZ further extended survival. Immunohistochemistry of tumor sections showed decreased Ki-67 and increased cleaved caspase-3 in combination-treated tumors. Conclusion: Two improved ERbeta agonists outperformed CIDD-0149897 in potency, selectivity, safety, and brain penetration. These compounds show strong anti-GBM action and enhance TMZ efficacy, supporting their development as next-generation ERbeta-targeted therapeutics for GBM. Supported by NIH RO1 CA269866.
利益披露 Disclosure
U. Pratap, None.. K. Nieves-Merced, None.. M. Tidwell, None.. A. Maciolek, None.. H. U. Balinda, None.. N. Clanton, None.. S. McHardy, None.. R. K. Vadlamudi, None.

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