1.Effects of ozone sub-chronic exposure on lncRNA expression profiles in rat heart.
Yue ZHAO ; Lei TIAN ; Jun YAN ; Kang LI ; Ben-Cheng LIN ; Zhu-Ge XI ; Xiao-Hua LIU
Chinese Journal of Applied Physiology 2022;38(3):258-263
Objective: This article aims to observe the changes in long noncoding RNA (lncRNA) expression profiles in rat hearts after ozone sub-chronic exposure. To provide scientific data to explore the role and mechanism of differentially expressed lncRNA in damaged hearts caused by ozone sub-chronic exposure. Methods: Eighteen Wistar rats were randomly divided into filtered air and ozone exposure groups, with nine rats in each group. The rats in filtered air group were exposed to filtered air, while the rats in ozone exposure group were exposed to ozone at 0.5 ppm(0.980 mg/m3)for 90 days at a frequency of 6 hours per day. After ozone exposure, cardiac tissues were collected and the total RNA was extracted. The expression level of lncRNA in the hearts of two groups was detected by microarray and qRT-PCR method and the potential functions of the differentially expressed lncRNA were analyzed by bioinformatics. Results: Compared with the filtered air group, lncRNA's expression profile was significantly altered in the rat hearts of ozone exposure group. A total of 167 lncRNA were up-regulated significantly and 64 lncRNA were down-regulated significantly. GO analysis indicated that the up-regulated lncRNA might involve in the process of regulating growth and development, and the down-regulated lncRNA might participate in nutrient catabolic. KEGG results showed that the up-regulated lncRNA might be involved in regulating the PI3K-Akt signaling pathway. The down-regulated lncRNA might regulate the metabolic processes of various vitamins and main energy-supplying substances. Conclusion: Ozone sub-chronic exposure can cause changes in the expression profile of lncRNA in rat hearts, which may regulate the effects of ozone sub-chronic exposure on the heart through the metabolism of energy and nutrients.
Animals
;
Computational Biology
;
Ozone/adverse effects*
;
Phosphatidylinositol 3-Kinases
;
RNA, Long Noncoding/genetics*
;
Rats
;
Rats, Wistar
2.Angiotensin-converting enzyme 2 particapates in ozone-induced lung inflammation and airway remodeling in mice.
Yue Xia WANG ; Yu ZHANG ; Liang ZHANG ; Meng Yaun LI ; Pei Yu ZHU ; Wang Quan JI ; Ruo Nan LIANG ; Lu Wei QIN ; Wei Dong WU ; Fei Fei FENG ; Yue Fei JIN
Journal of Southern Medical University 2022;42(6):860-867
OBJECTIVE:
To investigate the roles of angiotensin-converting enzyme 2 (ACE2) in ozone-induced pulmonary inflammation and airway remodeling in mice.
METHODS:
Sixteen wild-type (WT) C57BL/6J mice and 16 ACE2 knock-out (KO) mice were exposed to either filtered air or ozone (0.8 ppm) for 3 h per day for 5 consecutive days. Masson's staining and HE staining were used to observe lung pathologies. Bronchoalveolar lavage fluid (BALF) was collected and the total cell count was determined. The total proteins and cytokines in BALF were determined by BCA and ELISA method. The transcription levels of airway remodeling-related indicators in the lung tissues were detected using real-time quantitative PCR. The airway resistance of the mice was measured using a small animal ventilator with methacholine stimulation.
RESULTS:
Following ozoneexposure ACE2 KO mice had significantly higher lung pathological scores than WT mice (P < 0.05). Masson staining results showed that compared with ozone-exposed WT mice, ozone-exposed ACE2 KO mice presented with significantly larger area of collagen deposition in the bronchi [(19.62±3.16)% vs (6.49±1.34)%, P < 0.05] and alveoli [(21.63±3.78)% vs (4.44±0.99)%, P < 0.05]. The total cell count and total protein contents in the BALF were both higher in ozone-exposed ACE2 KO mice than in WT mice, but these differences were not statistically significant (P > 0.05). The concentrations of IL-6, IL-1β, TNF-α, CXCL1/KC and MCP-1 in the BALF were all higher in ozone-exposed ACE2 KO mice than in ozone-exposed WT mice, but only the difference in IL-1β was statistically significant (P < 0.05). The transcription levels of MMP-9, MMP-13, TIMP 4, COL1A1, and TGF-β in the lung tissues were all significantly higher in ozone-exposed ACE2 KO mice (P < 0.01). No significant difference was found in airway resistance between ozone-exposed ACE KO mice and WT mice after challenge with 0, 10, 25, or 100 mg/mL of methacholine.
CONCLUSION
ACE2 participates in ozone-induced lung inflammation and airway remodeling in mice.
Airway Remodeling
;
Angiotensin-Converting Enzyme 2
;
Animals
;
Methacholine Chloride
;
Mice
;
Mice, Inbred C57BL
;
Mice, Knockout
;
Ozone/adverse effects*
;
Pneumonia
3.Effect of ozone oil for prevention and treatment of sorafenib-induced hand-foot skin reactions: a randomized controlled trial.
Xiaowei CHEN ; Yiyue JIANG ; Ying ZHANG ; Wencong DAI ; Rong FAN ; Xie WENG ; Peng HE ; Feifei YAN ; Yabing GUO
Journal of Southern Medical University 2020;40(10):1488-1492
OBJECTIVE:
To compare the effects of medical ozone oil and urea ointment for prevention and treatment of hand-foot skin reaction (HFSR) caused by sorafenib in patients with hepatocellular carcinoma (HCC).
METHODS:
A total of 99 patients diagnosed with advanced HCC according to National Comprehensive Cancer Network (NCCN) who were scheduled to receive sorafenib treatment for the first time were enrolled in this study between April, 2018 and January, 2020. The patients were randomized into medical ozone oil group (
RESULTS:
Eight patients were excluded for poor compliance or protocol violations, leaving a total of 91 patients for analysis, including 44 in medical ozone oil group and 47 in urea ointment group. Sixteen (36.4%) of patients in ozone oil group developed HFSR, a rate significantly lower than that in urea ointment group (57.4%;
CONCLUSIONS
Medical ozone oil can significantly reduce the incidence and severity of HFSR to improve the quality of life of HCC patients receiving sorafenib treatment.
Antineoplastic Agents/therapeutic use*
;
Carcinoma, Hepatocellular/drug therapy*
;
Hand-Foot Syndrome/prevention & control*
;
Humans
;
Liver Neoplasms/drug therapy*
;
Niacinamide/therapeutic use*
;
Ozone/therapeutic use*
;
Phenylurea Compounds/adverse effects*
;
Quality of Life
;
Sorafenib/therapeutic use*
4.Effects of acute ozone exposure on genotoxicity of lung cells in rats.
Ning LI ; Hu YANG ; Zhen FANG ; Ping Yu WANG ; Jie HAN ; Lei TIAN ; Jun YAN ; Zhu Ge XI ; Xiao Hua LIU
Chinese Journal of Applied Physiology 2019;35(2):97-100
OBJECTIVE:
To clarify the genotoxicity induced by acute exposure of ozone with different concentrations on pulmonary cells in rats.
METHODS:
Thirty-six Wistar rats were randomly divided into control group (filtered air exposure) and ozone exposure group (0.12 ppm, 0.5 ppm, 1.0 ppm, 2.0 ppm, 4.0 ppm) with 6 in each group. After rats were exposed to different concentrations of ozone for 4 h, lung tissues were taken and single cells were isolated. Then, 8-hydroxydeoxyguanosine (8-OHdG) was quantitatively detected by enzyme-linked immunosorbent assay. Comet assay, micronucleus test and DNA- protein cross-linking assay were used to analyze DNA and chromosome damages.
RESULTS:
Compared with the control group, the content of 8-OHdG in lung tissue was increased significantly from the ozone exposure concentration of 0.12 ppm, reaching the highest value at 0.5 ppm. With the increase of ozone exposure concentration, the tail rate of comets was increased gradually, and there was a significant dose-effect relationship. The cross-linking rate of DNA- protein was increased first and then was decreased with a maximum value at 2.0 ppm group. Although the micronucleus rate of lung cells showed an upward trend, there was no significant difference compared with the control group.
CONCLUSION
Acute exposure of ozone at low concentrations (0.12 ppm) could lead to DNA damage in the pulmonary cells of rats, while no significant chromosome damage was found even in the group with ozone concentration reached to 4 ppm.
Animals
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Comet Assay
;
DNA Damage
;
Lung
;
cytology
;
pathology
;
Micronucleus Tests
;
Ozone
;
adverse effects
;
Random Allocation
;
Rats
;
Rats, Wistar
5.Ambient ozone pollution is associated with decreased semen quality: longitudinal analysis of 8945 semen samples from 2015 to 2018 and during pollution-control period in Beijing, China.
Hai-Tao ZHANG ; Zhe ZHANG ; Jia CAO ; Wen-Hao TANG ; Hong-Liang ZHANG ; Kai HONG ; Hao-Cheng LIN ; Han WU ; Qing CHEN ; Hui JIANG
Asian Journal of Andrology 2019;21(5):501-507
Previous studies suggest that air pollution has a negative effect on semen quality. However, most studies are cross-sectional and the results are controversial. This study investigated the associations between air pollutants (PM2.5, PM10, SO2, NO2, CO, and O3) and semen quality among sperm donation candidates, especially when the air pollution was artificially controlled in Beijing, China. We analyzed 8945 semen samples in the human sperm bank of Peking University Third Hospital (Beijing, China) from October 2015 to May 2018. Air pollution data during the entire period (0-90 days prior) and key stages (0-9, 10-14, and 70-90 days prior) of sperm development were collected from the China National Environmental Monitoring Centre. The association between air pollutants and semen parameters (sperm concentration and progressive motility) was analyzed by a mixed model adjusted for age, abstinence duration, month, and average ambient temperature. Only O3during key stages of 0-9 days and 10-14 days and the entire period was negatively associated with sperm concentration between 2015 and 2018 (P < 0.01). During the period of air pollution control from November 2017 to January 2018, except for the increase in O3concentration, other five pollutants' concentrations decreased compared to those in previous years. In this period, the sperm concentration decreased (P < 0.001). During the pollution-control period, O3exposure 10-14 days prior was negatively associated with sperm concentration (95% CI: -0.399--0.111; P < 0.001). No significant association was found between the other five pollutants and semen quality during that period. Our study suggested that only O3exposure was harmful to semen quality. Therefore, O3should not be neglected during pollution control operation.
Adolescent
;
Adult
;
Air Pollutants/analysis*
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Air Pollution/adverse effects*
;
Beijing
;
Cross-Sectional Studies
;
Environmental Monitoring
;
Humans
;
Longitudinal Studies
;
Middle Aged
;
Oxidants, Photochemical/adverse effects*
;
Ozone/adverse effects*
;
Particulate Matter/analysis*
;
Semen Analysis
;
Sperm Count
;
Sperm Motility
;
Young Adult
7.Proteomic differences with and without ozone-exposure in a smoking-induced emphysema lung model.
Soo Taek UH ; So My KOO ; An Soo JANG ; Sung Woo PARK ; Jae Sung CHOI ; Yong Hoon KIM ; Choon Sik PARK
The Korean Journal of Internal Medicine 2015;30(1):62-72
BACKGROUND/AIMS: Acute exacerbations in chronic obstructive pulmonary disease may be related to air pollution, of which ozone is an important constituent. In this study, we investigated the protein profiles associated with ozone-induced exacerbations in a smoking-induced emphysema model. METHODS: Mice were divided into the following groups: group I, no smoking and no ozone (NS + NO); group II, no smoking and ozone (NS + O); group III, smoking and no ozone (S + NO); and group IV, smoking and ozone (S + O). Bronchoalveolar lavage, the mean linear intercept (MLI) on hematoxylin and eosin staining, nano-liquid chromatography-tandem mass spectrometry (LC-MS/MS), and Western blotting analyses were performed. RESULTS: The MLIs of groups III (S + NO) and IV (S + O) (45 +/- 2 and 44 +/- 3 microm, respectively) were significantly higher than those of groups I (NS + NO) and II (NS + O) (26 +/- 2 and 23 +/- 2 microm, respectively; p < 0.05). Fourteen spots that showed significantly different intensities on image analyses of two-dimensional (2D) protein electrophoresis in group I (NS + NO) were identified by LC-MS/MS. The levels of six proteins were higher in group IV (S + O). The levels of vimentin, lactate dehydrogenase A, and triose phosphate isomerase were decreased by both smoking and ozone treatment in Western blotting and proteomic analyses. In contrast, TBC1 domain family 5 (TBC1D5) and lamin A were increased by both smoking and ozone treatment. CONCLUSIONS: TBC1D5 could be a biomarker of ozone-induced lung injury in emphysema.
Animals
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Biological Markers/metabolism
;
Blotting, Western
;
Bronchoalveolar Lavage Fluid/chemistry/cytology
;
Chromatography, Liquid
;
Disease Models, Animal
;
Electrophoresis, Gel, Two-Dimensional
;
Lung/*metabolism/pathology
;
Male
;
Mice, Inbred C57BL
;
*Ozone
;
Proteins/*metabolism
;
*Proteomics/methods
;
Pulmonary Disease, Chronic Obstructive/etiology/*metabolism/pathology
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Pulmonary Emphysema/etiology/*metabolism/pathology
;
Smoking/*adverse effects
;
Tandem Mass Spectrometry
8.Expression of transient receptor potential canonical 1 in ozone-induced inflammatory lung tissues in mice.
Zhaodi FU ; Lifen ZHOU ; Jianrong HUANG ; Shuyi GUO ; Jiechun ZHANG ; Yongbiao FANG ; Xiaoai LIU ; Qingzi CHNE ; Jianhua LI
Journal of Southern Medical University 2015;35(2):284-291
OBJECTIVETo detect the expression of transient receptor potential canonical 1 (TRPC1) in a mouse model of ozone-induced lung inflammation and explore its role in lung inflammation.
METHODSIn a mouse model of lung inflammation established by ozone exposure, the expression of TRPC1 in the inflammatory lung tissues was detected by RT-PCR, Wstern blotting and immunohistochemistry.
RESULTSCompared to the control mice, the mice exposed to ozone showed significantly increased expression level of TRPC1 mRNA and protein in the inflammatory lung tissues (P<0.05). Immunohistochemistry showed increased TRPC1 protein expressions in the alveolar epithelial cells, bronchial epithelial cells, and inflammatory cells in the inflammatory lung tissues (P<0.05). The mRNA and protein expression levels of TRPC1 were positively correlated with the counts of white blood cells, macrophages, neutrophils and lymphocytes in the bronchoalveolar lavage fluid of the exposed mice (P<0.01).
CONCLUSIONTRPC1 may play a role in ozone-induced lung inflammation in mice.
Animals ; Bronchoalveolar Lavage Fluid ; Disease Models, Animal ; Gene Expression ; Inflammation ; pathology ; Lung ; metabolism ; pathology ; Mice ; Ozone ; adverse effects ; Pneumonia ; metabolism ; pathology ; RNA, Messenger ; TRPC Cation Channels ; metabolism
9.Effects of ozone exposure on percentage of CD4(+)CD25(high)Foxp(3+) regulatory T cells and mRNA expression of Foxp3 in asthmatic rats.
Ming WEI ; Ling TU ; Ying-hong LIANG ; Jia LIU ; Yan-jie GONG ; Jun-hua ZHANG ; Yi-hua ZHANG
Chinese Journal of Industrial Hygiene and Occupational Diseases 2013;31(9):693-696
OBJECTIVETo investigate the effects of low-concentration ozone exposure on the percentage of CD4(+)CD25(high)Foxp(3+) regulatory T cells and the mRNA expression of transcription factor Foxp3 in asthmatic rats.
METHODSSixty male Wistar rats were randomly divided into 4 groups (n = 15 for each): normal control group, ovalbumin (OVA) exposure group, ozone exposure group, and OVA+ozone exposure group. The OVA exposure group was sensitized and challenged with OVA to establish an asthma model; the normal control group inhaled aerosolized saline; the ozone exposure group inhaled low-concentration ozone; the OVA+ozone exposure group inhaled low-concentration ozone before being challenged with aerosolized OVA every day. The percentage of CD4(+)CD25(high)Foxp(3+) regulatory T cells in CD4(+) T cells was determined by flow cytometry. The levels of interferon-γ (INF-γ) and interleukin 4 (IL-4) in peripheral blood and lung tissue were measured by enzyme-linked immunosorbent assay. The mRNA expression of Foxp3 in lung tissue was measured by PCR.
RESULTSThe percentages of CD4(+)CD25(high)Foxp(3+) regulatory T cells in OVA exposure group (6.12±1.03%) and ozone exposure group (5.87±1.26%) were significantly lower than that in normal control group (9.85±1.34%), and the percentage of CD4(+)CD25(high)Foxp(3+) regulatory T cells in OVA+ozone exposure group (3.31±0.85%) was significantly lower than those in normal control group and OVA exposure group (P < 0.01). The levels of IL-4 in plasma and lung tissue in OVA exposure group (plasma: 21.83±5.12 ng/L; lung tissue: 0.89±0.13 ng/L) were significantly higher than those in normal control group (plasma: 10.58±2.73 ng/L; lung tissue: 0.32±0.11 ng/L) (P < 0.01). The levels of IL-4 in plasma and lung tissue in OVA+ozone exposure group (plasma: 35.47±7.24 ng/L; lung tissue: 1.50±0.42 ng/L) were significantly higher than those in normal control group and OVA exposure group (P < 0.01). The levels of INF-γ in plasma and lung tissue in OVA exposure group (plasma: 61.78±23.45 ng/L; lung tissue: 0.69±0.21 ng/L] were significantly lower than those in normal control group [plasma: 158.89±60.23 ng/L; lung tissue: 1.86±0.29) (P < 0.01). The levels of INF-γ in plasma and lung tissue in OVA+ozone exposure group (plasma: 10.28±2.63 ng/L; lung tissue: 0.41±0.12 ng/L) were significantly lower than those in normal control group and OVA exposure group (P < 0.01). The mRNA expression of Foxp3 was significantly lower in the OVA+ ozone exposure group than in the normal control group (P < 0.05).
CONCLUSIONLow-concentration ozone exposure may decrease the number of CD4(+)CD25(high)Foxp(3+) regulatory T cells and inhibit the mRNA expression of Foxp3 to promote Th1/Th2 imbalance in asthmatic rats, suggesting that ozone exposure may be one of factors that induce asthma attack.
Animals ; Asthma ; metabolism ; Environmental Exposure ; Flow Cytometry ; Forkhead Transcription Factors ; genetics ; metabolism ; Interferon-gamma ; metabolism ; Interleukin-4 ; metabolism ; Lung ; metabolism ; pathology ; Male ; Ozone ; adverse effects ; RNA, Messenger ; genetics ; Rats ; Rats, Wistar ; T-Lymphocytes, Regulatory ; drug effects ; metabolism ; Th1-Th2 Balance
10.Relevance of vasoactive intestinal peptide and total bronchial mucin in rat lung..
Xiang LI ; Xiao-Mei WANG ; Jian-Song ZHANG
Acta Physiologica Sinica 2009;61(6):539-543
Vasoactive intestinal peptide (VIP) is a neuropeptide with potent bronchodilator, immunomodulator, and anti-inflammatory properties, and thus has biological properties capable of counteracting all major features of the asthmatic response. However, the effect of VIP on bronchial mucin secretion remains unclear. In order to observe the influence of VIP on bronchial mucin, the present study was designed to observe the correlation between VIP and total bronchial mucin changes under different time of ozone stress in rat lung. Sixty-four Sprague-Dawley rats were used in the experiment. Under different time of ozone stress, VIP content in lung homogenate was analyzed by radioimmunoassay, and changes in total bronchial mucin in the lung were analyzed by calculating the goblet cell hyperplasia ratio and the epithelial cell mucus occupying ratio from the periodic acid-Schiff reaction (PAS) staining. The results showed that, at early stage of respiratory tract injury, VIP did not change significantly, while the total bronchial mucin secretion increased; with the development of damage, the secretion of VIP increased by compensation, followed by a decrease in total bronchial mucin; with further injury, the numbers of pulmonary endocrine VIP positive nerve fibers and endocrine cells decreased, but bronchial mucin volume gradually increased. It is concluded that the secretion of VIP is negatively correlated with the secretion of bronchial mucin during the development of inflammation.
Animals
;
Inflammation
;
pathology
;
Lung
;
physiology
;
physiopathology
;
Mucins
;
physiology
;
Ozone
;
adverse effects
;
Rats, Sprague-Dawley
;
Vasoactive Intestinal Peptide
;
physiology

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