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      • Urban particulate matter in air pollution penetrates into the barrier-disrupted skin and produces ROS-dependent cutaneous inflammatory response <i>in vivo</i>

        Jin, Seon-Pil,Li, Zhenyu,Choi, Eun Kyung,Lee, Serah,Kim, Yoen Kyung,Seo, Eun Young,Chung, Jin Ho,Cho, Soyun Elsevier 2018 Journal of dermatological science Vol.91 No.2

        <P><B>Abstract</B></P> <P><B>Background</B></P> <P>Particulate matter (PM) is an integral part of air pollution, which is a mixture of particles suspended in the air. Recently, it has been reported that PM is associated with increased risks of skin diseases, especially atopic dermatitis in children. However, it is unclear if PM directly goes into the skin and what mechanisms are involved in response to PM.</P> <P><B>Objective</B></P> <P>To see whether PM could penetrate into the barrier-disrupted skin, produce reactive oxygen species (ROS), and elicit an inflammatory response.</P> <P><B>Methods</B></P> <P>We collected PMs during a winter in Seoul and used cultured keratinocytes for <I>in vitro</I> study and tape-stripped BALB/c mice for <I>in vivo</I> study.</P> <P><B>Results</B></P> <P>Keratinocyte cytotoxicity increased in a dose-dependent manner by PM treatment. IL-8 and MMP-1 mRNA expression and protein levels were significantly increased compared to control by qPCR and ELISA, respectively. Cellular ROS production was increased by PM treatment, and antioxidant N-acetyl cysteine pretreatment prevented induction of inflammatory cytokines IL-8 and MMP-1. In PM-treated keratinocytes, electron-dense subcellular particles were observed by transmission electron microscopy. PM was observed inside hair follicles in both intact and barrier-disrupted skin <I>in vivo</I>. Additionally, intercellular penetration of PM was seen in the barrier-disrupted skin. Repeated PM application induced epidermal thickening and dermal inflammation with neutrophil infiltration. Finally, N-acetyl cysteine could ameliorate skin inflammation induced by PM application.</P> <P><B>Conclusion</B></P> <P>PM penetrates into the barrier-disrupted skin, causing inflammation, demonstrating detrimental effects in the skin.</P> <P><B>Highlights</B></P> <P> <UL> <LI> It is unclear if particulate matter (PM) directly goes into the skin. </LI> <LI> We provide visual images of PM penetrating into epidermis in the barrier-disrupted skin. </LI> <LI> Repeated PM application leads to cutaneous inflammation via ROS-dependent manner. </LI> <LI> It may have clinical implications especially for patients with deficient skin barrier including atopic dermatitis, diabetics. </LI> </UL> </P>

      • KCI등재

        Comparison between Craniospinal Irradiation and Limited-Field Radiation in Patients with Non-metastatic Bifocal Germinoma

        Bo Li,Wenyi Lv,Chunde Li,Jiongxian Yang,Jiajia Chen,Jin Feng,Li Chen,Zhenyu Ma,Youqi Li,Jiayi Wang,Yanwei Liu,Yanong Li,Shuai Liu,Shiqi Luo,Xiaoguang Qiu 대한암학회 2020 Cancer Research and Treatment Vol.52 No.4

        Purpose Whether craniospinal irradiation (CSI) could be replaced by limited-field radiation in non-metastatic bifocal germinoma remains controversial. We addressed the issue based on the data from our series and the literature. Materials and Methods Data from 49 patients diagnosed with non-metastatic bifocal germinoma at our hospital during the last 10 years were collected. The Pediatric Quality of Life Inventory 4.0 was used to evaluate health-related quality of life (HRQOL). Additionally, 81 patients identified from the literature were also analyzed independently. Results In our cohort, 34 patients had tumors in the sellar/suprasellar (S/SS) plus pineal gland (PG) regions and 15 in the S/SS plus basal ganglia/thalamus (BG/T) regions. The median follow-up period was 52 months (range, 10 to 134 months). Our survival analysis showed that patients treated with CSI (n=12) or whole-brain radiotherapy (WBRT; n=34) had comparable disease-free survival (DFS; p=0.540), but better DFS than those treated with focal radiotherapy (FR; n=3, p=0.016). All 81 patients from the literature had tumors in the S/SS+PG regions. Relapses were documented in 4/45 patients treated with FR, 2/17 treated with whole-ventricle irradiation, 0/4 treated with WBRT, and 1/15 treated with CSI. Survival analysis did not reveal DFS differences between the types of radiation field (p=0.785). HRQOL analysis (n=44) in our cohort found that, compared with S/SS+PG germinoma, patients with BG/T involvement had significantly lower scores in social and school domains. However, HRQOL difference between patients treated with CSI and those not treated with CSI was not significant. Conclusion In patients with non-metastatic bifocal germinoma, it is rational that CSI could be replaced by limited-field radiation. HRQOL in patients with BG/T involvement was poorer.

      • KCI등재

        3D Printing Silk Fibroin/Hydroxyapatite/Sodium Alginate Composite Scaffolds for Bone Tissue Engineering

        Zhenyu Xu,Ke Li,Kui Zhou,Shuiyuan Li,Hongwei Chen,Jiaqi Zeng,Rugang Hu 한국섬유공학회 2023 Fibers and polymers Vol.24 No.1

        Silk Fibroin (SF) is a protein polymer with great biocompatibility, which can promote cell proliferation and differentiation,and enhance bone repair. In this paper, the effects of distinctive concentrations of SF solutions on the physicochemical andbiological properties of the SF-HA-SA scaffolds were investigated. The SF-HA-SA porous scaffolds were prepared utilizingthe pneumatic extrusion 3D printing technique, composed of hydroxyapatite (HA) and different concentrations of SF solution,and sodium alginate (SA) as a binder. The results shown the SF-HA-SA scaffolds can promote cell proliferation withthe increase of SF concentration in scaffolds, and the strength meets the necessities of trabecular bone defects of bone andcartilage repair. It provides an important reference for the application of SF in bone tissue engineering.

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        Exercise-mediated macrophage polarization modulates the targeted therapeutic effect of NAFLD: a review

        Li Zhenyu,Wang Ying,Tian Zhuang,Xie Yongchao,김재철 한국운동영양학회 2023 Physical Activity and Nutrition (Phys Act Nutr) Vol.27 No.3

        [Purpose] This review aims to explore the exercise-mediated hepatic macrophage polarization mechanism and its effect on improving and regulating non-alcoholic fatty liver disease (NAFLD) by analyzing the pathogenesis of NAFLD and the cause of the influence of hepatic macrophage polarization. In addition to exploring the varied effects of different exercise types on macrophage polarization regulation in NAFLD, to provide a direction and basis for the treatment of NA- FLD. [Methods] The research methodology involved a comprehensive search of the PubMed database using specific keywords such as “NAFLD”, “macrophage polarization”, and “exercise”, to retrieve relevant literature published. [Results] (1) The main factors inducing NAFLD were high-fat diet, obesity, insulin resistance (IR), changes in gut microbiota, and genetic variation in susceptibility. (2) Drug treatment, nutrient induction, microfactor induction, physiological environment induction, and other factors can induce the polarization of hepatic macrophages and affect NAFLD. (3) Different intensities, types, and frequencies of exercise have different effects on polarization macrophages, and may also differently effects improving liver inflammation, fibrosis, and NAFLD. Curently, regular moderate-intensity aerobic exercise is the most effective therapy for treating NAFLD. [Conclusion] Approaches to ameliorate NAFLD with exercise involve strategies to alter macrophage polarization by inhibiting M1 or driving M2 activation. However, research on the different types of exercise-mediated macrophage polarization mechanisms and differences in therapeutic effects is not yet sufficient. Future research is necessary to explore the exact mechanisms and differences in the effects of different exercises on the treatment of NAFLD.

      • KCI등재

        Optimal of black anti-static AZO/Al2O3-SiO2-VxOy coatings for spacecraft stray light on high silicon aluminum alloys

        Li Zhenyu,Zhou Zhihua,Wang Qun,Lu Songtao 한국물리학회 2023 Current Applied Physics Vol.55 No.-

        It is still challenging to prepare an anti-static and anti-stray astigmatism coating on the high silicon aluminum alloy (>50 wt% Si, Al-50Si) for space material under extreme environments. To address these issues, the black anti-stray light coating with enhanced conductivity on the chemical etching surface of high-silicon Al-70Si alloy were successfully fabricated by the combination of plasma electrolytic oxidation (PEO) technology and deposited aluminum doped zinc oxide (AZO) transparent conductive film by magnetron sputtering technology. The microstructures, phase, elemental compositions, light absorption performance and electrical resistivity of coatings were tested and analyzed by SEM, EDS, XRD and XPS spectroscopy. The effects of process parameters including current density and AZO sputtering times on the structure, optical and electrical properties of the film layer were systematically studied. Convection through the fixation effect in the etched Al-70Si alloy porous layer promoted the internal heat and mass transfer during PEO process which is similar to previous reported mechanism of filling of cracks and pores by nanoparticles leading to the layer densification. The PEO coating had the highest absorptivity of 0.946 and it only decreased to 0.939 after AZO sputtering, at the same time the coating has the lowest resistivity of 1.04 × 107 Ω/sq, indicating excellent anti-stray light and antistatic ability. This two-step route pave the way to improve the conductivity without compromising optical properties of PEO coating on the high silicon aluminum alloy (>50 wt% Si, Al-50Si) for space material.

      • KCI등재

        The Flexural Capacity of 7A04-T6 Aluminum Alloy Rectangular Hollow Section Beams

        Li Zhenyu,Zhou Yangfeng,Rong Bin 한국강구조학회 2022 International Journal of Steel Structures Vol.22 No.1

        This paper presents a particular experimental research on rectangular hollow section (RHS) and square hollow section (SHS) beams made of 7A04-T6 aluminum alloys. A total of 18 in-plane bending specimens four-point confi gurations have been investigated. The infl uence of length, cross-section slenderness was investigated. Full load–rotation and load–displacement histories were derived, containing into the post-ultimate stage. Material parameters of each member was acquired from tensile experiments. The experimental results were duplicated by means of non-linear numerical modelling. Based on careful validation of the models, a total of 96 parametric studies were performed to assess the structural response of RHS/SHS over a wider range of cross-section slenderness. Following analysis of the data, the correctness of the fl exural capacity provisions in the present design specifi cations EN 1999-1-1 (Europe) and GB 50429 (China) was assessed. The results showed that the design rules provided conservative predictions of the ultimate fl exural capacities. In this study, modifi ed design rules based on Eurocode 9 (Europe) are proposed, which are shown to improve the accuracy of these design rules in a reliable manner.

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