Nayak Anmada, Satapathy Shakti Ranjan, Das Dipon, Siddharth Sumit, Tripathi Neha, Bharatam Prasad V, Kundu ChanakyaNath
Cancer Biology Division, KIIT School of Biotechnology, KIIT University, Campus-11, Patia, Bhubaneswar, Orissa, 751024, India.
Department of Pharmacoinformatics, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S.A.S. Nagar, Mohali, Punjab 160062, India.
Sci Rep. 2016 Feb 5;6:20600. doi: 10.1038/srep20600.
To improve the pharmacokinetics and to study the anti-cervical cancer and anti-stem cells (CSCs) mechanism of Quinacrine (QC), a spherical nano particle of QC (i.e. NQC) was prepared and characterized. QC and NQC showed higher cytotoxicity in multiple cancer cells than the normal epithelial cells. NQC exhibited more toxicity in cervical cancer cells and its CSCs than QC. A dose-dependent decreased expression of Hedgehog-GLI (HH-GLI) components were noted in NQC treated HeLa cells and its CSCs. NQC increased the expressions of negatively regulated HH-GLI components (GSK3β, PTEN) and caused apoptosis in CSCs. Reduction of GLI1 at mRNA and promoter level were noted after NQC exposure. The expressions of HH-GLI components, GLI1 promoter activity and apoptosis were unaltered in NQC treated GLI1-knockdown cells. In silico, cell based and in vitro reconstitution assay revealed that NQC inhibit HH-GLI cascade by binding to the consensus sequence (5'GACCACCCA3') of GLI1 in GLI-DNA complex through destabilizing DNA-GLI1 complex. NQC reduced the tumors size and proliferation marker Ki-67 in an in vivo xenograft mice model. Thus, NQC induced apoptosis in cancers through inhibition of HH-GLI cascade by GLI1. Detail interaction of QC-DNA-GLI complex can pave path for anticancer drug design.
为改善喹吖因(QC)的药代动力学并研究其抗宫颈癌及抗干细胞(CSCs)机制,制备并表征了QC的球形纳米颗粒(即NQC)。QC和NQC在多种癌细胞中比正常上皮细胞表现出更高的细胞毒性。NQC在宫颈癌细胞及其CSCs中比QC表现出更强的毒性。在经NQC处理的HeLa细胞及其CSCs中,观察到Hedgehog-GLI(HH-GLI)成分的表达呈剂量依赖性降低。NQC增加了负调控的HH-GLI成分(GSK3β、PTEN)的表达,并导致CSCs凋亡。NQC处理后,在mRNA和启动子水平上观察到GLI1的减少。在经NQC处理的GLI1敲低细胞中,HH-GLI成分的表达、GLI1启动子活性和凋亡均未改变。在计算机模拟、基于细胞和体外重组试验中发现,NQC通过破坏DNA-GLI1复合物,与GLI-DNA复合物中GLI1的共有序列(5'GACCACCCA3')结合,从而抑制HH-GLI级联反应。在体内异种移植小鼠模型中,NQC减小了肿瘤大小并降低了增殖标志物Ki-67。因此,NQC通过抑制GLI1的HH-GLI级联反应诱导癌细胞凋亡。QC-DNA-GLI复合物的详细相互作用可为抗癌药物设计铺平道路。