| Literature DB >> 31130824 |
Dehui Xu1, Ning Ning2, Yujing Xu1, Bingchuan Wang1, Qingjie Cui2, Zhijie Liu1, Xiaohua Wang1, Dingxin Liu1, Hailan Chen3, Michael G Kong1,3,4.
Abstract
BACKGROUND: Acute myeloid leukemia (AML) is a typically fatal malignancy and new drug and treatment need to be developed for a better survival outcome. Cold atmospheric plasma (CAP) is a novel technology, which has been widely applied in biomedicine, especially in various of cancer treatment. However, the changes in cell metabolism after CAP treatment of leukemia cells have been rarely studied.Entities:
Keywords: Acute myeloid leukemia; Alanine, aspartate and glutamate metabolism; Cold atmospheric plasma; Metabolite profiling; d-Glutamine and d-glutamate metabolism
Year: 2019 PMID: 31130824 PMCID: PMC6525389 DOI: 10.1186/s12935-019-0856-4
Source DB: PubMed Journal: Cancer Cell Int ISSN: 1475-2867 Impact factor: 5.722
Fig. 1a Schematic diagram; b physical map and discharge photograph of the surface plasma; c discharge parameters; d V–Q Lissajous figure of the discharge powers; e emission spectra of the Surface plasma
Fig. 2Cell viability of normal bone marrow stromal cells and MOLM-13 cells by plasma treatment
Fig. 3a GC-TOFMS total ion chromatogram; b score scatter plot of OPLS-DA model; c permutation test of OPLS-DA model
Statistical model parameters table of OPLS-DA model
| Model | Type | A | N | R2X (cum) | R2Y (cum) | Q2 (cum) |
|---|---|---|---|---|---|---|
| Model 1 | OPLS-DA | 1 + 1 + 0 | 10 | 0.426 | 0.999 | 0.875 |
Fig. 4Volcano plot of differential metabolites in plasma treatment group and control group. Red represented up-regulated metabolites; Blue represented down-regulated metabolites; Gray represented metabolites that have no significant change
Fig. 5A heatmap was drawn to show the differential expressed metabolites. Up-regulated expressed metabolites were shown in red; Down-regulated expressed metabolites were shown in blue. *P < 0.05
Fig. 6KEGG pathway map with bright red/blue dots representing the differentially expressed metabolites. Bright red dots represented up-regulated metabolites; Bright blue dots represented down-regulated metabolites
Fig. 7Bubble diagram of differential metabolic pathways. One bubble represented one metabolic pathway; Differentially expressed metabolic pathways have been labeled
Fig. 8Relative glutaminase activity of a leukemia cells after plasma treatment and b leukemia cells with 20 µM/L and 40 µM/L BPTES; Relative cell viability of c leukemia cells with 20 µM/L and 40 µM/L BPTES and d leukemia cells with 20 µM/L BPTES vs. 20 µM/L BPTES adding glutamate. *P < 0.05