1.Simultaneous Determination of Eleven Ulta-violet Absorbents in Cosmetics by High Performance Liquid Chromatography
Xiongfeng HUANG ; Lye LIU ; Qun XU ; Guoshun ZHUANG ; Junwei DU
Chinese Journal of Analytical Chemistry 2014;(12):1846-1850
An accurate, fast and sensitive method based on high performance liquid chromatography was established for the simultaneous determination of eleven ultra-violet absorbents in cosmetics. Eleven ultra-violet absorbents were baseline separated on an Acclaim C18 column within 11. 5 min using acetonitrile-0. 1%formic acid in water ( V/V) mobile phase, and detected at 361 nm with UV detection. Under the optimized conditions, the relative standard derivations ( RSDs) of the eleven ultra-violet absorbents were all less than 0. 1% for retention time, and less than 1. 2% for peak area; good linearity was obtained from 5 to and 500 mg/L with the correlation coefficients of above 0 . 9990 for these analytes; the recoveries spiked in a cosmetic sample were in the range of 77% -116%. Benzophenone-3, butylmethoxydibenzoylmethane, ethylhexylsalicylatec and homosalate were found in the detected cosmetic samples, and the concentration of homosalate was the highest. The results indicated that this method had potential for applications due to its convenience, accuracy and sensitivity. Oxybenzone, butylmethoxydibenzoylmethane, 2-ethylhexyl salicylatec and homosalate were found in the detected cosmetic samples, and the concentration of homosalate was the highest.
2.Airborne fine particle decreases the cell viability and induces inflammation in human bronchial epithelial cells
Zhicong HONG ; Xianyang LUO ; Chengfu CAI ; Jian XU ; Guoshun ZHUANG
Journal of Central South University(Medical Sciences) 2017;42(9):1042-1047
Objective:To investigate the effects of airborne fine particle on cell viability and inflammation in human bronchial epithelial cells.Methods:Atmospheric PM2.5 samples were collected by PM2.5 sampler.PM2.5 morphology was observed by scanning electron microscope (SEM).Human bronchial epithelial cells (BEAS-2B) were treated with PM2.5 at different concentrations (0,50,100,200,400,800 μg/mL) for 12,24 or 48 hours,and the cell activity were evaluated by cell counting kit-8 (CCK-8).The mRNA expression levels of (granulocyte-macrophage colony stimulating factor,GM-CSF) and TNF-α were detected by quantitative real-time PCR (qRT-PCR).Western blot was used to detect the protein expressions of GM-CSF and TNF-α.Results:According to SEM,the shape of PM2.5 varied,and the diameter was different and mostly equal to or less than 2.5 μm.CCK-8 assay showed that different concentrations of PM2.5 exposure for 12 hours,24 hours and 48 hours resulted in loss of cell viability of BEAS-2B cells (P<0.05).Different concentrations of PM2.5 increased the mRNA and protein expression of GM-CSF and TNF-α,and the higher concentration of PM2.5 induced higher expression,which have statistical significant difference between the groups (P<0.05).Conclusion:Atmospheric PM2.5 can cause inflammatory response in human bronchial epithelial cells.They can reduce cell viability,which may be related to the PM2.5 trigger and aggravation of bronchopulmonary inflammatory diseases.
3. Effect of PM2.5 on inflammatory factors and pathology of nasal mucosa in a rat model of allergic rhinitis
Zhiqiang GUO ; Renwu ZHAO ; Ruxin ZHANG ; Congrui DENG ; Weiyang DONG ; Guoshun ZHUANG
Chinese Journal of Otorhinolaryngology Head and Neck Surgery 2019;54(5):362-366
Objective:
To investigate the effect of PM2.5 exposure on nasal inflammatory cytokines and nasal mucosal pathology in a rat model of allergic rhinitis (AR).
Methods:
Twenty-four healthy female SD rats were randomly divided into 3 groups by random number table method, with 8 rats in each group: normal control group (NC group), ovalbumin (OVA) induced AR model (AR group), and AR model group inhaled to PM2.5 at 200 μg/m3, 3 h/d, for 30 d (ARE group). Nasal symptoms including sneezing, nasal rubs and nasal secretion were recorded. Levels of OVA specific IgE in serum, interleukin 6 (IL-6) and tumor necrosis factor-ɑ (TNF-ɑ) in nasal irrigating solution were measured by enzyme-linked immunosorbent assay (ELISA). The histopathological changes of nasal mucosa were observed by HE staining. SPSS 17.0 software was used to analyze the data.
Results:
The number of sneezing, nasal rubs and the amount of nasal secretion in the ARE group were significantly higher than that in the AR group and the NC group (number of sneezing (15.38±1.68) times/15 min
4. The role of autophagy in PM2.5-induced inflammation in human nasal epithelial cells
Renwu ZHAO ; Zhiqiang GUO ; Ruxin ZHANG ; Congrui DENG ; Weiyang DONG ; Guoshun ZHUANG
Chinese Journal of Otorhinolaryngology Head and Neck Surgery 2019;54(7):510-516
Objective:
To explore the role of autophagy in PM2.5-induced inflammation in human nasal epithelial cells and related mechanism.
Methods:
Human nasal epithelial cells were exposed to different concentration of PM2.5 for different times, and the expression levels of microtubule-associated protein-1 light chain-3 Ⅱ (LC3 Ⅱ) and Beclin1 proteins were measured by Western blot. The typical autophagosome and autolysosome were observed by using transmission electron microscopy (TEM). To observe autophagic flux, mRFP-GFP-LC3 plasmid was transfected to nasal epithelial cells and the punctate staining of mRFP-GFP-LC3 were determined by confocal laser scanning microscope. The expression of inflammatory cytokines interleukin 6 (IL-6) and tumor necrosis factor-α (TNF-α) in cell culture supernatant were assessed by enzyme-linked immunosorbent assay (ELISA). To assess the role of autophagy in PM2.5-mediated inflammation, autophagy related gene Atg5 and Beclin-1 were silenced by siRNA knockdown, and inflammatory cytokines were analyzed.GraphPad Prism 6.0 was used for statistical analysis.
Results:
PM2.5 exposure increased the expression of LC3 Ⅱ and Beclin-1 proteins in a dose- (in PM2.5 group with concentration of 0, 15, 30, 60, 120 μg/ml, the expression of LC3 Ⅱ was 0.021±0.001(