LBPO.CH01 · 化学 · Late-Breaking
一种强效三氟甲基苯乙酰胺衍生物抗癌作用的转录组学评价
Transcriptomic evaluation of a potent trifluoromethyl phenyl acetamide derivative for its anticancer effect
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
癌症是一场全球性健康危机,是全世界主要死亡原因之一。由于肿瘤生物学的复杂性、快速突变、耐药性以及许多现有治疗方案疗效有限,其发病率持续上升。这些挑战凸显了对机制明确的小分子疗法的需求,这类疗法能够选择性地靶向肿瘤脆弱性,同时不损害正常组织。含氟骨架因其能够增强代谢稳定性、生物利用度和类药性质,具有转化研究价值。在本研究中,我们通过一系列化学反应合成并表征了一个聚焦的s-三氟甲基苯乙酰胺衍生物库(N3-N6和V1-V8)。通过熔点测定、质子核磁共振(1H NMR)、碳-13核磁共振(13C NMR)和红外(IR)光谱等多种分析技术相结合,验证了这些化合物的结构完整性。s-三氟甲基苯乙酰胺骨架因其良好的药理学性质,包括增强的稳定性、亲脂性和代谢抗性,在药物化学中尤为受关注。这些化合物在一系列广泛的人源和鼠源癌症模型中进行了抗癌活性评价,包括结直肠癌(HT-29、MC38、CT26和COLO 205)、肝癌(C3a和PLC/PRF5)、胰腺癌(Suit-2、MiaPaca2、As-PC1和Panc 02.03)、乳腺癌(MDA-MB-468、MDA-MB-231、BT20、MCF7、4T1、4T1紫杉醇耐药株、JIMT-1、ZR-75-1、E0771、T47D和HCC1806)以及卵巢癌(OVCAR-5)细胞系。纳入正常乳腺上皮细胞(MCF10A)以评估先导化合物的治疗选择性和毒性。基于SRB实验,这12种化合物在各种癌细胞系中表现出不同但显著的细胞毒性作用。先导化合物V2在多种肿瘤类型中显示出最高的效力,同时对正常上皮细胞的毒性降低。为阐明V2活性背后的作用机制,我们对以IC50浓度的V2处理的BT20细胞与未处理对照组进行了RNA测序。结果显示出显著的转录重编程,V2处理后有420个基因上调、336个基因下调。基因本体(GO)富集分析显示,V2启动了一种类似整合应激反应(ISR)的程序,该程序迅速降低整体蛋白质合成,同时允许应激反应mRNA的选择性翻译。此外,V2处理影响了BT20细胞中的蛋白酶体机制。这种对蛋白质合成和降解的双重破坏代表了侵袭性乳腺癌模型(包括BT20细胞)中一个此前尚未充分探索的脆弱性。目前正在开展进一步实验,以验证V2对RNA结合蛋白、翻译因子的影响,并鉴定靶点及确立其在乳腺癌中的机制。
查看英文原文 English abstract
Cancer is a global health crisis, ranking as one of the leading causes of mortality worldwide. Its persistent increase in incidence is driven by the intricate nature of tumor biology, rapid mutations, drug resistance, and limited efficacy of many current treatment options. These challenges highlight the need for mechanistically defined small-molecule therapeutics that selectively target tumor vulnerabilities while sparing normal tissues. Fluorinated scaffolds are of translational interest due to their ability to enhance metabolic stability, bioavailability, and drug-like properties. In this study, we synthesized and characterized a focused library of s-trifluoromethyl phenyl acetamide derivatives (N3-N6 and V1-V8) via a series of chemical reactions. The structural integrity of these compounds was verified through a combination of analytical techniques, including melting point determination, Proton Nuclear Magnetic Resonance ( 1 H NMR), Carbon-13 Nuclear Magnetic Resonance ( 13 C NMR), and Infrared (IR) spectroscopy. The s-trifluoromethyl phenyl acetamide scaffold is of particular interest in medicinal chemistry due to its favorable pharmacological properties, including enhanced stability, lipophilicity, and metabolic resistance. These compounds were evaluated for anticancer activity across a broad panel of human and murine cancer models, including colorectal cancer (HT-29, MC38, CT26and COLO 205), hepatic (C3a and PLC/PRF5), pancreatic (Suit-2, MiaPaca2, As-PC1 and Panc 02.03), breast (MDA-MB-468, MDA-MB-231, BT20, MCF7, 4T1, 4T1 paclitaxel resistant, JIMT-1, ZR-75-1, E0771, T47D, and HCC1806) and ovarian (OVCAR-5) cell lines. Normal mammary epithelial cells (MCF10A) were included to assess therapeutic selectivity & toxicity of the lead compound. Based on the SRB assay the 12 compounds exhibited variable but significant cytotoxic effects in various cancer cell lines. Lead compound V2 showed the highest potency across multiple tumor types while exhibiting reduced toxicity toward normal epithelial cells. To elucidate the mechanism of action underlying V2 activity, RNA-sequencing was performed on BT20 cells treated with V2 at IC 50 compared to untreated control group. Results revealed significant transcriptional reprogramming, with 420 genes upregulated and 336 genes downregulated following treatment with V2. Gene ontology (GO) enrichment, V2 initiated an integrated-stress-response (ISR)-like programme that rapidly lowers global protein synthesis while allowing selective translation of stress-response mRNAs. In addition, V2 treatment affected the proteasome machinery in BT20 cells. This dual disruption of protein synthesis and degradation represents a previously underexplored vulnerability in aggressive breast cancer models, including BT20 cells. Further experiments are in progress to validate the effects of V2 on RNA-binding proteins, translation factors and to identify the target and establish the mechanism in breast cancer.
利益披露 Disclosure
M. A. Eltokhy, None..
A. Ragab, None..
E. A. Fayed, None..
M. S. Abusaif, None..
A. Thabet, None..
Y. A. Ammar, None..
S. Radwan, None..
S. Srivastava, None.