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        Thermal decomposition kinetics of 5-fluorouracil from thermogravimetric analysis

        Yi-ling Bei,Qing-yang Liu,Gui-bin Qi,Yuan-jun Ding 한국화학공학회 2008 Korean Journal of Chemical Engineering Vol.25 No.5

        The thermal decomposition kinetics of 5-fluorouracil was studied by thermogravimetric analysis methodology. The decomposition activation energy was calculated by using Ozawa method by means of TGA in nitrogen atmosphere. Moreover, the decomposition mechanism and pre-factor were obtained by Coats-Redfern and Achar methods, respectively. It is found that the decomposition activation energy of fluorouracil is 105 kJ·mol−1. The decomposition mechanisms obtained by Coats-Redfern and Achar methods are G( α)=[−ln(1− α)]2/3 and f( α)=1.5(1− α)[−ln(1−α)]1/3 respectively, lnA is 21.40 min−1.

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        Reaction mechanisms for dithiothreitol as a measure of particulate matter induced oxidative potential activity by density functional theory

        Yi-ling Bei,Qingyang Liu 한국화학공학회 2014 Korean Journal of Chemical Engineering Vol.31 No.7

        The measurement of particulate matter induced oxidative potential activity by dithiothreitol (DTT) as analternative quantitative method has been of recent interest. The mechanism of this process is not well understood. Proposedmechanisms often involve formation of the hydrogen peroxide as the final step. Evidence suggests that this maynot be the dominant route. We applied computational methods to determine a possible alternative mechanism in thepresence of •OH radical production. An energetically favored mechanism was found for DTT-chemical reactivity reactionwhich is consistent with previously reported experimental results.

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        Inflammatory Endotypes and Tissue Remodeling Features in Antrochoanal Polyps

        Chen Cai-Ling,Wang Yu-Ting,Yao Yin,Pan Li,Guo Bei,Zhu Ke-Zhang,Ma Jin,Wang Nan,Li Xue-Li,Deng Yi-Ke,Liu Zheng 대한천식알레르기학회 2021 Allergy, Asthma & Immunology Research Vol.13 No.6

        Purpose: The pathogenic mechanisms of antrochoanal polyps (ACPs) remain largely unknown. This study aimed to characterize inflammatory patterns and tissue remodeling features in ACPs. Methods: Inflammatory cell infiltration and tissue edema severity as well as fibrin deposition in ACPs and bilateral eosinophilic and noneosinophilic nasal polyps (NPs) were studied with immunohistochemical and immunofluorescence staining. Cytokine levels in sinonasal tissues were detected with the Bio-Plex assay. The expression of coagulation and fibrinolytic markers was measured using reverse-transcription polymerase chain reaction and enzyme-linked immunosorbent assays. Results: Compared to control tissues and bilateral eosinophilic and noneosinophilic NPs, ACPs had higher levels of neutrophil infiltration and expression of myeloperoxidase (MPO), interleukin (IL)-8 and interferon (IFN)-γ. In total, 94.4% of ACPs demonstrated an eosinophil cationic protein/MPO ratio of < 1, compared to 79.0% of noneosinophilic and 26% of eosinophilic NPs. Principle component and multiple correspondence analyses revealed a neutrophilic and type 1 inflammation pattern in ACPs. Compared to control tissues, edema scores and fibrin deposition were increased, whereas d-dimer and tissue plasminogen activator (tPA) levels were decreased in ACPs and bilateral NPs, with more prominent changes in ACPs even than in eosinophilic NPs. The tPA levels were negatively correlated with IFN-γ, IL-8, and MPO levels in ACPs. Neutrophils were the major cellular source of IFN-γ in ACPs, and the number of IFN-γ+ neutrophils was elevated in ACPs than in control tissues and bilateral eosinophilic and noneosinophilic NPs. Conclusions: ACPs are characterized by the neutrophilic and type 1 inflammation endotype. Neutrophil-derived IFN-γ is associated with reduced tPA production in ACPs.

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        Berberine Inhibits HEp-2 Cell Invasion Induced by Chlamydophila pneumoniae Infection

        Li Jun Zhang,Wei Quan,Bei Bei Wang,Bing Ling Shen,Teng Teng Zhang,Yi Kang 한국미생물학회 2011 The journal of microbiology Vol.49 No.5

        This study investigated the inhibitory effects of berberine on Chlamydophila (Chlamydia) pneumoniae infection-induced HEp-2 cell invasion and explored the possible mechanisms involved in this process. C. pneumoniae infection resulted in a significant increase in HEp-2 cell invasion when compared with the control cells (P<0.01) in a Matrigel invasion assay. This enhanced cell invasion was strongly suppressed by berberine (50 μM) (P<0.01). In a cell adhesion assay, the infection-induced HEp-2 cell adhesion to Matrigel was also significantly inhibited by berberine (P<0.01). C. pneumoniae infection was found to promote HEp-2 cell migration remarkably (P<0.01), which was markedly suppressed by berberine (P<0.01) in the cell migration assays. There were no statistically significant differences in the expression of matrix metalloproteinase-1 (MMP-1) and MMP-9 in the infected cells and berberine did not change the expression of MMP-1 and MMP-9. These data suggest that berberine inhibits C. pneumoniae infection-induced HEp-2 cell invasion through suppressing HEp-2 cell adhesion and migration, but not through changing the expression of MMP-1 and MMP-9.

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