Department of Genetics, Aziz Sancar Institute of Experimental Medicine, Istanbul University, Vakif Gureba Caddesi, Capa, 34093, Istanbul, Turkey.
Graduate School of Health Sciences, Istanbul University, Istanbul, Turkey.
Med Oncol. 2021 Aug 6;38(9):109. doi: 10.1007/s12032-021-01560-4.
Pancreatic ductal adenocarcinoma (PDAC) is among the most deadly cancers. Since most patients develop resistance to conventional treatments, new approaches are in urgency. Valproic acid (VPA) was shown to induce apoptosis and reduce proliferation in PANC-1 cells. Wnt signaling pathway is known to be involved in apoptosis and PDAC onset. However, VPA-induced apoptosis and its impact on Wnt signaling in PDACs are not linked, yet. We aimed to calculate IC of VPA-induced PANC-1 cells by combined analyses of proliferation and apoptosis, while assessing its effect on Wnt signaling pathway. PANC-1 was induced with increased VPA doses and time points. Three independent proliferation and apoptosis assays were performed utilizing carboxyfluorescein succinimidyl ester and Annexin V/PI staining, respectively. Flow cytometry measurements were analyzed by CellQuest and NovoExpress. Taqman hydrolysis probes and SYBR Green PCR Mastermix were assessed in expression analyses of Wnt components utilizing 2 method. Cell proliferation was inhibited by 50% at 2.5 mM VPA that evoked a significant apoptotic response. Among the screened Wnt components and target genes, only LEF1 exhibited significant four-fold upregulation at this concentration. In conclusion, cancer studies mostly utilize MTT or BrdU assays in estimating cell proliferation and calculating IC of drugs, which provided conflicting VPA dosages utilizing PANC-1 cells. Our novel combined approach enabled specific, accurate and reproducible IC calculation at single cell basis with no apparent effect on Wnt signaling components. Future studies are needed to clarify the role of LEF1 in this model.
胰腺导管腺癌 (PDAC) 是最致命的癌症之一。由于大多数患者对传统治疗产生耐药性,因此急需新的治疗方法。丙戊酸 (VPA) 已被证明可诱导 PANC-1 细胞凋亡并减少增殖。Wnt 信号通路已知参与细胞凋亡和 PDAC 的发生。然而,VPA 诱导的细胞凋亡及其对 PDAC 中 Wnt 信号通路的影响尚未联系起来。我们旨在通过联合分析增殖和凋亡来计算 VPA 诱导的 PANC-1 细胞的 IC,同时评估其对 Wnt 信号通路的影响。用增加的 VPA 剂量和时间点诱导 PANC-1。分别利用羧基荧光素琥珀酰亚胺酯和 Annexin V/PI 染色进行了三项独立的增殖和凋亡测定。使用 CellQuest 和 NovoExpress 分析流式细胞术测量结果。利用 2 种方法评估 Wnt 成分的 Taqman 水解探针和 SYBR Green PCR Mastermix 进行表达分析。细胞增殖在 2.5 mM VPA 下被抑制 50%,这引发了显著的凋亡反应。在筛选的 Wnt 成分和靶基因中,只有 LEF1 在该浓度下表现出明显的四倍上调。总之,癌症研究主要利用 MTT 或 BrdU 测定法来估计细胞增殖并计算药物的 IC,这为使用 PANC-1 细胞提供了相互矛盾的 VPA 剂量。我们的新联合方法能够在单细胞基础上进行特异性、准确性和可重复性的 IC 计算,对 Wnt 信号成分没有明显影响。需要进一步的研究来阐明 LEF1 在该模型中的作用。