Tomatidine, a Steroidal Alkaloid, Synergizes with Cisplatin to Inhibit Cell Viability and Induce Cell Death Selectively on FLT3-ITD+ Acute Myeloid Leukemia Cells.

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell Biochemistry and Biophysics Pub Date : 2024-07-11 DOI:10.1007/s12013-024-01406-6
Havva Berre Ayvaz, Münevver Yenigül, Emel Başak Gencer Akçok
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引用次数: 0

Abstract

Background: Acute Myeloid Leukemia (AML) is a hematological cancer that frequently presents with a range of side effects and drug resistance during anticancer drug treatment. The current study aims to achieve increased efficacy by combining lower doses of cisplatin with increasing concentrations of tomatidine in AML cells to increase efficacy.

Methods: Anti-proliferative effects of single and combination of cisplatin and tomatidine were assessed via MTT cell viability assay. The Annexin V/Propidium Iodide Double Staining method was used to measure the apoptotic effects of combined tomatidine and cisplatin treatment. Then, Western Blot analysis was performed to measure Poly (ADP-ribose) polymerase (PARP) and Caspase-3 protein expression levels.

Results: Cisplatin treatment with lower concentrations displayed high cytotoxic effects on AML cells, compared with tomatidine. The combination of the Inhibitory Concentration (IC) 20 value of cisplatin and increasing doses of tomatidine exhibited a significant decrease in cell viability relative to single treatments. The combination index analysis revealed a mild synergistic effect of cisplatin IC20 and varying tomatidine doses. The apoptosis induced when cisplatin was combined with 500 µM tomatidine by almost 20%, while the percentage of apoptosis in combination with 1 mM tomatidine was measured by 50% for both cell lines. The upregulation of proapoptotic cleaved-PARP (3.2 and 1.08-fold for THP-1 and MOLM-13, respectively) and downregulation in Caspase-3 (0.23 and 0.13-fold for THP-1 and MOLM-13, respectively) was detected.

Conclusions: Together, the study indicated that when tomatidine combined with cisplatin on AML cell lines, a combinatorial anti-proliferative and apoptotic effect is observed. The combination of cisplatin with tomatidine may be a promising approach.

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一种类固醇生物碱 Tomatidine 与顺铂协同抑制 FLT3-ITD+ 急性髓性白血病细胞的活力并有选择性地诱导细胞死亡。
背景:急性髓性白血病(AML)是一种血液肿瘤,在抗癌药物治疗过程中经常出现一系列副作用和耐药性。目前的研究旨在通过将较低剂量的顺铂与浓度越来越高的托马替丁联合应用于急性髓性白血病细胞以提高疗效:方法:通过 MTT 细胞活力检测法评估顺铂和托马替丁单药及联合用药的抗增殖作用。采用Annexin V/Propidium Iodide双重染色法检测托马替丁和顺铂联合治疗的细胞凋亡效应。然后,进行 Western 印迹分析,检测聚(ADP-核糖)聚合酶(PARP)和 Caspase-3 蛋白表达水平:结果:与托马替丁相比,较低浓度的顺铂处理对急性髓细胞白血病细胞具有较高的细胞毒性作用。顺铂的抑制浓度(IC)20 值与剂量不断增加的番茄红素联合使用时,细胞存活率比单独使用时显著降低。组合指数分析表明,顺铂 IC20 值和不同剂量的番茄红素具有轻微的协同作用。顺铂与 500 µM 托马替丁联合使用时,诱导的细胞凋亡率几乎降低了 20%,而与 1 mM 托马替丁联合使用时,两种细胞系的细胞凋亡率均降低了 50%。研究发现,促凋亡的裂解 PARP 上调(THP-1 和 MOLM-13 分别为 3.2 倍和 1.08 倍),Caspase-3 下调(THP-1 和 MOLM-13 分别为 0.23 倍和 0.13 倍):总之,该研究表明,当托马西汀与顺铂联合应用于急性髓性白血病细胞系时,可观察到抗增殖和凋亡的组合效应。顺铂与托马替丁联用可能是一种很有前景的方法。
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来源期刊
Cell Biochemistry and Biophysics
Cell Biochemistry and Biophysics 生物-生化与分子生物学
CiteScore
4.40
自引率
0.00%
发文量
72
审稿时长
7.5 months
期刊介绍: Cell Biochemistry and Biophysics (CBB) aims to publish papers on the nature of the biochemical and biophysical mechanisms underlying the structure, control and function of cellular systems The reports should be within the framework of modern biochemistry and chemistry, biophysics and cell physiology, physics and engineering, molecular and structural biology. The relationship between molecular structure and function under investigation is emphasized. Examples of subject areas that CBB publishes are: · biochemical and biophysical aspects of cell structure and function; · interactions of cells and their molecular/macromolecular constituents; · innovative developments in genetic and biomolecular engineering; · computer-based analysis of tissues, cells, cell networks, organelles, and molecular/macromolecular assemblies; · photometric, spectroscopic, microscopic, mechanical, and electrical methodologies/techniques in analytical cytology, cytometry and innovative instrument design For articles that focus on computational aspects, authors should be clear about which docking and molecular dynamics algorithms or software packages are being used as well as details on the system parameterization, simulations conditions etc. In addition, docking calculations (virtual screening, QSAR, etc.) should be validated either by experimental studies or one or more reliable theoretical cross-validation methods.
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