Department of Pharmaceutical Sciences, University of Nebraska Medical Center, Omaha, NE, 68198, USA.
Department of Chemistry, University of Nebraska at Omaha, 6001 Dodge Street, Omaha, NE, 68182, USA.
Sci Rep. 2017 May 10;7(1):1665. doi: 10.1038/s41598-017-01942-7.
Hedgehog (Hh) pathway is involved in epithelial-mesenchymal transition (EMT) and cancer stem cell (CSC) maintenance resulting in tumor progression. GDC-0449, an inhibitor of Hh pathway component smoothened (Smo) has shown promise in the treatment of various cancers including pancreatic cancer. However, the emergence of resistance during GDC-0449 treatment with numerous side effects limits its use. Therefore, here we report the design, synthesis and evaluation of novel GDC-0449 analogs using N-[3-(2-pyridinyl) phenyl] benzamide scaffold. Cell-based screening followed by molecular simulation revealed 2-chloro-N -[4-chloro-3-(2-pyridinyl)phenyl]-N ,N -bis(2-pyridinylmethyl)-1,4-benzenedicarboxamide (MDB5) as most potent analog, binding with an extra interactions in seven-transmembrane (7-TM) domain of Smo due to an additional 2-pyridylmethyl group than GDC-0449. Moreover, MDB5 was more efficient in inhibiting Hh pathway components as measured by Gli-1 and Shh at transcriptional and translational levels. Additionally, a significant reduction of ALDH1, CD44 and Oct-3/4, key markers of pancreatic CSC was observed when MIA PaCa-2 cells were treated with MDB5 compared to GDC-0449. In a pancreatic tumor mouse model, MDB5 containing nanoparticles treated group showed significant inhibition of tumor growth without loss in body weight. These evidence highlight the enhanced Hh pathway inhibition and anticancer properties of MDB5 leaving a platform for mono and/or combination therapy.
刺猬 (Hh) 途径参与上皮-间充质转化 (EMT) 和癌症干细胞 (CSC) 的维持,导致肿瘤进展。Hh 途径成分 smoothened (Smo) 的抑制剂 GDC-0449 在治疗各种癌症方面显示出了希望,包括胰腺癌。然而,在 GDC-0449 治疗中出现了耐药性,且有许多副作用,限制了它的使用。因此,我们在此报告了使用 N-[3-(2-吡啶基)苯基]苯甲酰胺支架设计、合成和评估新型 GDC-0449 类似物。基于细胞的筛选,随后进行分子模拟,揭示了 2-氯-N-[4-氯-3-(2-吡啶基)苯基]-N,N-双(2-吡啶基甲基)-1,4-苯二甲酰胺 (MDB5) 是最有效的类似物,由于比 GDC-0449 多一个 2-吡啶基甲基基团,它与 Smo 的七个跨膜 (7-TM) 结构域有额外的相互作用。此外,与 GDC-0449 相比,MDB5 更有效地抑制了 Hh 途径成分,通过 Gli-1 和 Shh 在转录和翻译水平上进行测量。此外,当 MIA PaCa-2 细胞用 MDB5 处理时,与 GDC-0449 相比,观察到胰腺 CSC 的关键标志物 ALDH1、CD44 和 Oct-3/4 的显著减少。在胰腺肿瘤小鼠模型中,含有 MDB5 的纳米颗粒处理组显示出对肿瘤生长的显著抑制,而体重没有下降。这些证据突出了 MDB5 增强的 Hh 途径抑制和抗癌特性,为单药和/或联合治疗提供了一个平台。