1.Expression and significance of ferroptosis marker 4-HNE in in vitro model of systemic sclerosis.
Kelin ZHAO ; Xue XIA ; Naixu SHI ; Han ZHOU ; Jingwen GAI ; Ping LI
Journal of Peking University(Health Sciences) 2024;56(6):950-955
OBJECTIVE:
To investigate the expression and physiological significance of the ferroptosis marker 4-hydroxynonenal (4-HNE) in myofibroblasts induced by transforming growth factor-β1 (TGF-β1), providing theoretical evidence for its potential role in the diagnosis and treatment of fibrosis in systemic sclerosis (SSc).
METHODS:
Mouse embryonic fibroblasts (NIH3t3) were cultured and divided into two groups after 12 h of starvation: the control group (cultured in 1% serum-containing medium) and the TGF-β1 group (cultured in 10 μg/L TGF-β1 with 1% serum-containing medium). Cell morphology changes in both groups were observed under a microscope. To confirm successful establishment of the SSc cell model, fibrosis markers were analyzed using reverse transcription quantitative real-time PCR (RT-qPCR) and Western blot. Next, flow cytometry was employed to assess the intracellular levels of reactive oxygen species (ROS) in both groups. Finally, Western blot and immunofluorescence staining were used to measure the expression of 4-HNE in the TGF-β1-treated cells.
RESULTS:
Microscopic observations revealed that TGF-β1 treatment caused the NIH3t3 cells to transition from a typical spindle shape to a flat, polygonal shape with multiple protrusions, indicating fibroblast activation. The RT-qPCR and Western blot analyses showed that the expression of the fibrosis marker Vimentin was significantly upregulated in the TGF-β1 group compared with the control group (P < 0.01), confirming that TGF-β1 effectively promoted fibrosis-related gene and protein expression. Flow cytometry results indicated that TGF-β1 significantly elevated intracellular ROS levels, suggesting the induction of oxidative stress. Furthermore, both Western blot and immuno-fluorescence staining demonstrated a significant increase in 4-HNE expression in the TGF-β1-treated cells (immunofluorescence intensity P < 0.05).
CONCLUSION
TGF-β1 promotes fibroblast activation and fibrosis while inducing ROS production, leading to a marked increase in 4-HNE expression. Given the role of 4-HNE as a marker of lipid peroxidation and its elevated levels in the SSc cell model, this study suggests that 4-HNE could serve as a potential biomarker for fibrosis in SSc. The findings highlight the importance of investigating the mechanisms of 4-HNE in fibrosis and suggest that targeting this pathway could offer new therapeutic opportunities for treating SSc.
Animals
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Mice
;
Scleroderma, Systemic/pathology*
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Aldehydes/pharmacology*
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Transforming Growth Factor beta1/metabolism*
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NIH 3T3 Cells
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Ferroptosis
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Reactive Oxygen Species/metabolism*
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Fibrosis
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Fibroblasts/metabolism*
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Biomarkers/metabolism*
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Myofibroblasts/metabolism*
2.Mechanisms of tanshinone Ⅱ_A in reducing 4-HNE-induced hepatocyte damage by activating PPARα.
Qian-Yu QIAN ; Na YING ; Zhen YANG ; Li ZHOU ; Qing-Sheng LIU ; Zi-Yi HU ; Chun-Lei FAN ; Song-Tao LI ; Xiao-Bing DOU
China Journal of Chinese Materia Medica 2019;44(9):1862-1868
Tanshinone Ⅱ_A( Tan Ⅱ_A),the liposoluble constituents of Salvia miltiorrhiza,can not only ameliorate the lipidic metabolism and decrease the concentration of lipid peroxidation,but also resist oxidation damage,scavenge free radicals and control inflammation,with a protective effect on prognosis after liver function impairment. Therefore,the studies on the exact mechanism of Tan Ⅱ_A in protecting the liver can provide important theoretical and experimental basis for the prevention and treatment effect of Tan Ⅱ_A for liver injury. In the present study,the protective effects and mechanism of Tan Ⅱ_A on 4-hydroxynonenal( 4-HNE)-induced liver injury were investigated in vitro. Normal liver tissues NCTC 1469 cells were used to induce hepatocytes oxidative damages by 4-HNE treatment. The protective effect of Tan Ⅱ_A on hepatocytes oxidative damages was detected by release amount of lactate dehydrogenase( LDH) analysis and hoechst staining. The protein expression changes of peroxisome proliferator-activated receptor α( PPARα) and peroxisome proliferator response element( PPRE) were analyzed by Western blot analysis in NCTC 1469 cells before and after Tan Ⅱ_A treatment. The gene expression changes of fatty aldehyde dehydrogenase( FALDH) were analyzed by Real-time polymerase chain reaction( PCR) analysis. The results showed that 4-HNE increased the release amount of LDH,lowered the cell viability of NCTC 1469 cells,and Tan Ⅱ_A reversed 4-HNE-induced hepatocyte damage. Western blot analysis and RT-PCR analysis results showed that 4-HNE decreased the expression of PPARα and FALDH and increased the expression of 4-HNE. However,the expression of PPARα and FALDH were increased significantly and the expression of 4-HNE was decreased obviously after Tan Ⅱ_A treatment. This study confirmed that the curative effect of Tan Ⅱ_A was obvious on hepatocytes damage,and the mechanism may be associated with activating PPARα and FALDH expression as well as scavenging 4-HNE.
Aldehyde Oxidoreductases
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metabolism
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Aldehydes
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Animals
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Cell Line
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Diterpenes, Abietane
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pharmacology
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Hepatocytes
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drug effects
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Lipid Peroxidation
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Mice
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Oxidative Stress
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PPAR alpha
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metabolism
3.A new naphthaldehyde derivative from Comastoma pulmonarium and its anti-tobacco mosaic virus (anti-TMV) activity.
Xiao-Long WANG ; Ping LI ; Jing LI ; Jian-Hua CHEN ; Guang-Yu YANG ; Qiu-Fen HU ; Cheng-Ming ZHANG ; Gan-Peng LI
China Journal of Chinese Materia Medica 2018;43(19):3884-3886
A new naphthaldehyde derivative has been isolated from Comastoma pulmonarium by using various chromatographic techniques, including silica gel, Sephadex LH-20, MCI-gel resin and RP-HPLC. This compounds was determined as 5-methoxy-2-methyl-7-(2-oxopropyl)naphthalene-1-carbaldehyde(1) by NMR, MS, IR and UV spectra. This compound was also evaluated for its anti-tobacco mosaic virus (anti-TMV) activity. The result showed that it showed high anti-TMV activity with inhibition rate of 32.8%. The inhibition rate is close to that of positive control (ningnanmycin).
Aldehydes
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isolation & purification
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pharmacology
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Antiviral Agents
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isolation & purification
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pharmacology
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Chromatography, High Pressure Liquid
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Gentianaceae
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chemistry
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Naphthalenes
;
isolation & purification
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pharmacology
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Phytochemicals
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isolation & purification
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pharmacology
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Tobacco
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Tobacco Mosaic Virus
;
drug effects
4.Expression of the 4-hydroxynonenal in lung tissue in rats with paraquat poisoned and the effect of ulinastatin.
Cong-yan ZHOU ; Shu XIE ; Ya-juan LUO ; Xu-hui TANG ; Fan LI
Chinese Journal of Industrial Hygiene and Occupational Diseases 2012;30(6):457-459
OBJECTIVETo investigate the 4-hydroxynonenal (4-HNE) expression changes and the impact of ulinastatin (UTI) METHODS: Seventy-two healthy Sprague-Dawley rats were randomly divided into three groups: the control group, poisoning group and treatment group, with 24 rats in each group. The model of lung injury was established by intragastric PQ (80 mg/kg) administration in poisoning group and treatment group, and 1 mL saline was administered intragastrically in the control group. The rats in treatment group were injected intraperitoneally with UTI (100 000 U/kg) 30 minutes after PQ administration, and the rats in the control group and poisoning group were intraperitoneally injected with the same volume of saline. After different treatments, the pathological changes and the expression of 4-HNE in lung tissue was detected in 12, 24, and 72 h in three groups.
RESULTSIn the poisoning group and treatment group, the expression of 4-HNE in lung tissue of rats were increased in 12 h after poisoning and reached the peak in 48 h; in 72 h after poisoning, the expression of 4-HNE in lung tissue were decreased, but they were still high. Compared with the control group, the expression of 4-HNE in lung tissue of rats were significantly increased in the poisoning group and treatment group (P < 0.05). And compared with the poisoning group, the expression of 4-HNE in lung tissue of rats were significantly decreased in the treatment group (P < 0.01). The pathological changes were observed, including alveolar capillary expansion, diffuse alveolar hemorrhage and alveolar inflammation cell infiltration, were found in lungs of rats in poisoning group and treatment group. There is no significant change in the control group. Compared with the control group, the expression of 4-HNE in lung tissue significantly increased in poisoning group and treatment group (P < 0.01), but the expression in treatment group was lower than in poisoning group (P < 0.01).
CONCLUSIONThe expression of 4-HNE increased in PQ intoxicated rats. UTI may reduce the expression of 4-HNE and reduce lung injury in PQ intoxicated rats.
Aldehydes ; metabolism ; Animals ; Glycoproteins ; pharmacology ; Lung ; drug effects ; metabolism ; pathology ; Lung Injury ; metabolism ; pathology ; Paraquat ; poisoning ; Rats ; Rats, Sprague-Dawley
6.Effects of ternary complexes of copper with salicylaldehyde-amino acid Schiff base coordination compounds on the proliferation of BGC823 cells.
Ai-Juan GUO ; Xiao-Shan XU ; Ying-Hui HU ; Ming-Zhao WANG ; Xin TAN
Chinese Journal of Cancer 2010;29(3):277-282
BACKGROUND AND OBJECTIVEThe basic structure of salicylaldehyde-amino acid Schiff base compounds includes a C=N chemical bond. These compounds show significant antitumor activities in vitro when combined with a metal ion. This study investigated the effects and possible mechanisms of four salicylaldehyde-amino acid Schiff base copper ternary coordination compounds on the proliferation of human gastric cancer cell line BGC823.
METHODSThe BGC823 cells were treated with the four compounds (6B, 7B, 6P, and 7P). Cell proliferation was detected by MTT assay. Apoptosis and changes in the cell cycle were analyzed by flow cytometry. DNA damage was observed using a DNA ladder assay. The expression of p53 protein was determined by immunocytochemistry.
RESULTSThe proliferation of BGC823 cells was significantly inhibited by the four compounds and the effect was concentration-dependent. The half maximal inhibitory concentration (IC50) of 6B, 7B, 6P, and 7P for BGC823 cells were 18.10, 27.50, 3.61, and 3.45 micromol/L, respectively. Flow cytometry showed the four drugs induced apoptosis in BGC823 cells, which was confirmed by DNA ladder experiments. Flow cytometry also detected changed phases in the cell cycle from treatment with the compounds. The percent of cells in the G(0)/G(1) phase decreased and that of cells in the G1/S and G(2)/M phases increased, indicating that S-and G2-phase blockages exist. As shown by immunocytochemistry, the expression of p53 decreased in BGC823 cells treated with the four drugs, indicating the involvement of the p53 pathway to BGC823 cell apoptosis.
CONCLUSIONSThe four compounds showed significant activities on restraining proliferation of BGC823 cells in vitro, induced apoptosis, and caused changes in the cell cycle. This may be related to the downregulation of p53.
Aldehydes ; chemistry ; Amino Acids ; chemistry ; Antineoplastic Agents ; chemical synthesis ; pharmacology ; Apoptosis ; drug effects ; Cell Cycle ; drug effects ; Cell Line, Tumor ; Cell Proliferation ; drug effects ; Coordination Complexes ; chemical synthesis ; pharmacology ; Copper ; chemistry ; Humans ; Inhibitory Concentration 50 ; Schiff Bases ; chemistry ; Stomach Neoplasms ; metabolism ; pathology ; Tumor Suppressor Protein p53 ; metabolism
7.Protection of carbon monoxide intraperitoneal administration from rat intestine injury induced by lipopolysaccharide.
Shao-hua LIU ; Ke MA ; Bing XU ; Xin-rong XU
Chinese Medical Journal 2010;123(8):1039-1046
BACKGROUNDTreatment with inhaled carbon monoxide (CO) has been shown to ameliorate intestinal injury in experimental animals induced by lipopolysaccharide (LPS) or ischemia-reperfusion. We hypothesized that CO intraperitoneal administration (i.p.) might provide similar protection to inhaled gas. This study aimed to investigate the effects of continuous 2 L/min of 250 ppm CO i.p. on rat intestine injury induced by LPS and to try to develop a more practical means of delivering the gas.
METHODSA total of 72 male Sprague-Dawley rats were randomly assigned to 4 groups: control group, CO i.p. group, LPS group and LPS+CO i.p. group. One hour after intravenously received 5 mg/kg LPS, the rats in LPS group and LPS+CO i.p. group were exposed to room air and 2 L/min of 250 ppm CO i.p., respectively, and the rats of control group and CO i.p. group intravenously received an equal volume of 0.9% NaCl and 1 hour later, were exposed to room air and 2 L/min of 250 ppm CO i.p., respectively. One, 3 and 6 hour of each group after treated with room air or CO i.p., the animals (n = 6 for each time point) were sacrificed and intestinal tissues were collected for determinating the levels of platelet activator factor (PAF) and intercellular adhesion molecule-1 (ICAM-1) with enzyme-lined immunosorbent assays. The maleic dialdehyde (MDA) content and the myeloperoxidase (MPO) activity were determined with a chemical method. The phosphorylated p38 mitogen activated protein kinase (MAPK) expression was assayed with Western blotting and the cell apoptotic rate with flow cytometery. The arterial oxygenation was measured by blood gas analysis, and the pathology determined by light microscope.
RESULTSAfter treatment with 2 L/min of 250 ppm CO i.p., the increase of PAF, ICAM-1, MDA, MPO, and cell apoptotic rate induced by LPS was markedly reduced (P < 0.05 or 0.01), and accompanied by ameliorating intestine injury. Western blotting showed that these effects of CO i.p. were mediated by p38 MAPK pathway. There were no significant differences in all observed parameters between control group and CO i.p. group.
CONCLUSIONThe injury to the intestine via anti-oxidant, anti-inflammation and anti-apoptosis, which may involve the p38 MAPK pathway, was induced by 2 L/min of 250 ppm CO i.p. exerting potent protection against LPS.
Aldehydes ; metabolism ; Animals ; Blotting, Western ; Carbon Monoxide ; administration & dosage ; pharmacology ; therapeutic use ; Flow Cytometry ; Intercellular Adhesion Molecule-1 ; metabolism ; Intestines ; drug effects ; metabolism ; pathology ; Lipopolysaccharides ; toxicity ; Male ; Microscopy ; Peroxidase ; metabolism ; Platelet Activating Factor ; metabolism ; Random Allocation ; Rats ; Rats, Sprague-Dawley ; Reperfusion Injury ; chemically induced ; drug therapy ; p38 Mitogen-Activated Protein Kinases ; metabolism
9.Lyophilization for platelet preservation.
Wei CAO ; Yan WANG ; Peng JING ; An LIU ; Hai-Yun PEI ; Rui-Quan ZHU ; Chu-Yan YE ; Ying HAN
Journal of Experimental Hematology 2005;13(5):883-888
To explore a new lyophilized preservation methods for human platelets, platelets were pre-treated with aldehyde, human albumin or trehalose was added to the system of condensed cooling as protectant to stabilize the structure of platelets. The optimal resuspending buffer was also selected in the study. The morphological changes of platelets were observed by using electron microscopy after lyophilization, and the expression of membrane proteins on platelets was detected also after lyophilization. The results indicated that the recovery rate of platelets treated with aldehyde was generally more than 60%. Aggregative ability was reduced a little than the platelet untreated. 5% of human albumin had an advantage over 40 mmol/L of trehalose in respect of the preservation effect. In the way of keeping aggregative ability, PPP was obviously better than PBS. The results of electron microscopy displayed that organelles including mitochondria and excreted granules could be observed distinctly. Whereas, expression of membrane proteins of platelet treated with aldehyde was evidently dropped as compared with those of the fresh platelet. In conclusion, aldehyde as a novel protective agent, has excellent effects on lyophilization of platelets and is worthy to be further studied.
Albumins
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pharmacology
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Aldehydes
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pharmacology
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Blood Platelets
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cytology
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drug effects
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Blood Preservation
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methods
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Freeze Drying
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Humans
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Reproducibility of Results
;
Trehalose
;
pharmacology

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