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| 1 | MATRIEX imaging:multiarea two-photon real-time in vivo explorer显示文摘Two-photon laser scanning microscopy has been extensively applied to study in vivo neuronal activity at cellular and subcellular resolutions in mammalian brains.However,the extent of such studies is typically confined to a single functional region of the brain.Here,we demonstrate a novel technique,termed the multiarea two-photon real-time in vivo explorer(MATRIEX),that allows the user to target multiple functional brain regions distributed within a zone of up to 12mm in diameter,each with a field of view(FOV)of ~200μm in diameter,thus performing two-photon Ca2+imaging with single-cell resolution in all of the regions simultaneously.For example,we demonstrate real-time functional imaging of single-neuron activities in the primary visual cortex,primary motor cortex and hippocampal CA1 region of mice in both anesthetized and awake states.A unique advantage of the MATRIEX technique is the configuration of multiple microscopic FOVs that are distributed in three-dimensional space over macroscopic distances(>1 mm)both laterally and axially but that are imaged by a single conventional laser scanning device.In particular,the MATRIEX technique can be effectively implemented as an add-on optical module for an existing conventional single-beam-scanning two-photon microscope without requiring any modification to the microscope itself.Thus,the MATRIEX technique can be readily applied to substantially facilitate the exploration of multiarea neuronal activity in vivo for studies of brain-wide neural circuit function with single-cell resolution. | Mengke Yang Zhenqiao Zhou Jianxiong Zhang Shanshan Jia Tong Li Jiangheng Guan Xiang Liao Bing Leng Jing Lyu Kuan Zhang Min Li Yan Gong Zhiming Zhu Junan Yan Yi Zhou Jian K Liu Zsuzsanna Varga Arthur Konnerth Yuguo Tang Jinsong Gao Xiaowei Chen Hongbo Jia | 2019 | Light(Science & Applications)2019,8,1: | 4 |
| 2 | Preliminary investigation on cytotoxicity of fluorinated polymer nanoparticles显示文摘As well-known persistent organic pollutants(POPs), organofluorine pollutants such as perfluorooctane sulfonate(PFOS) have been proven to be bioaccumulated and harmful to health. However, toxicological assessment of organofluorinated nanoparticles, which have emerged as a novel tool for biomedical and industrial applications, is lacking, to the best of our knowledge. To assess the biological effects and health risk of fluorinated nanoparticles,trifluoroethyl aryl ether-based fluorinated poly(methyl methacrylate) nanoparticles(PTFEPMMA NPs) were synthesized with various fluorine contents(PTFE-PMMA-1 NPs 12.0 wt.%,PTFE-PMMA-2 NPs 6.1 wt.% and PTFE-PMMA-3 NPs 5.0 wt.%), and their cytotoxicity was investigated in this study. The in vitro experimental results indicated that the cytotoxicity of PTFE-PMMA NPs was mild, and was closely related to their fluorine(F) contents and Fcontaining side chains. Specifically, the cytotoxicity of PTFE-PMMA NPs decreased with increasing F content and F-containing side chains. After exposure to PTFE-PMMA NPs at a sublethal dose(50 μg/m L) for 24 hr, the phospholipid bilayer was damaged, accompanied by increasing permeability of the cell membrane. Meanwhile, the intracellular accumulation of reactive oxygen species(ROS) occurred, resulting in the increase of DNA damage, cell cycle arrest and cell death. Overall, the PTFE-PMMA NPs were found to be relatively safe compared with typical engineered nanomaterials(ENMs), such as silver nanoparticles and graphene oxide, for biomedical and industrial applications. | Xue Wang Wenge Cheng Qiuyuan Yang Hongyun Niu Qian Liu Yun Liu Ming Gao Ming Xu An Xu Sijin Liu Xiaoyu Huang Yuguo Du | 2018 | Journal of Environmental Sciences2018,30,7: | 2 |
| 3 | Solid-liquid equilibria of the 1,2-cyclohexanediol-ethyl acetate-water ternary system显示文摘 | GAO Yuguo ZHOU Cairong SHI Xiaohua at al | 2006 | Journal of Chemical & Engineering Data2006,51,2: | 1 |
| 4 | Trends in point-of-care ultrasound protocols in the emergency department and intensive care unit:a review显示文摘Together with the development of the focused assessment with sonography for trauma protocol for ultrasound in trauma patients,point-of-care ultrasound is widely used in the field of emergency and critical care medicine.Researchers have established several classic operating protocols for different diseases,such as acute respiratory failure,shock,and cardiac arrest,in the emergency department and intensive care unit.With further development in the portability and popularity of ultrasonic equipment,it is expected to be used as a new type of technology for physical examination,including inspection,palpation,percussion,auscultation,and insonation,which will improve the clinical medicine practice in the future. | Xinhui Fan Yuan Bian Guoying Wang Weikang Liu Luyao Gao Yuhui Pan Shengchuan Cao Qiuhuan Yuan Shujian Wei Feng Xu Yuguo Chen | 2023 | Emergency and Critical Care Medicine2023,3,2: | 0 |
| 5 | The 2009 pandemic A/Wenshan/01/2009 H1N1 induces apoptotic cell death in human airway epithelial cells显示文摘In 2009,a novel swine-origin H1N1 influenza virus emerged in Mexico and quickly spread to other countries,including China.This 2009 pandemic H1N1 can cause human respiratory disease,but its pathogenesis remains poorly understood.Here,we studied the infection and pathogenesis of a new 2009 pandemic strain,A/Wenshan/01/2009 H1N1,in China in human airway epithelial cell lines compared with contemporary seasonal H1N1 influenza virus.Our results showed that viral infection by the A/Wenshan H1N1 induced significant apoptotic cell death in both the human nasopharyngeal carcinoma cell line CNE-2Z and the human lung adenocarcinoma cell line A549.The A/Wenshan H1N1 virus enters both of these cell types more efficiently than the seasonal influenza virus.Viral entry in both cell lines was shown to be mediated by clathrin-and dynamin-dependent endocytosis.Therefore,we discovered that the 2009 pandemic H1N1 strain,A/Wenshan/01/2009,can induce apoptotic cell death in epithelial cells of the human respiratory tract,suggesting a molecular pathogenesis for the 2009 pandemic H1N1. | Ning Yang Xiaoxu Hong Penghui Yang Xiangwu Ju Yuguo Wang Jun Tang Chenggang Li Quanshui Fan Fuqiang Zhang Zhongwei Chen Li Xing Zhongpeng Zhao Xiao Gao Guoyang Liao Qihan Li Xiliang Wang Dangsheng Li Chengyu Jiang | 2011 | Journal of Molecular Cell Biology2011,3,4: | 0 |
| 6 | A laboratory method to simulate seismic waves induced by underground explosions显示文摘The seismic waves induced by underground explosions generate geological hazards affecting deep buried tunnels such as rockbursts and engineering-induced earthquakes. This issue is difficult to study through full-scale testing due to the expense and unpredictable danger. To solve this problem, the authors developed experimental apparatus and presented a laboratory method to simulate seismic waves induced by underground explosions. In this apparatus, a combined structure of a diffusive-shaped water capsule and a special-shaped oil capsule was designed. This structure can provide an applied confining stress and freely transmit the stress wave generated by external impact. Therefore, the coupled loading of in situ stress and seismic waves induced by underground explosions in the deep rock mass was simulated. The positive pressure time and peak value of the stress wave could be adjusted by changing the pulse-shaper and the initial impact energy. The obtained stress waves in the experiments correspond to that generated by 0.15-120 kt of TNT equivalent explosion at a scaled distance of 89.9-207.44 m/kt. | Yuguo Ji Mingyang Wang Jie Li Shuxin Deng Zhihao Li Tianhan Xu Fei Gao | 2022 | Journal of Rock Mechanics and Geotechnical Engineering2022,14,5: | 0 |
| 7 | Strong interface interaction and internal electric field promote electron transfer of Bi_(2)O_(2)S/NiFe_(2)O_(4) heterojunction for photocatalytic antibiotic degradation显示文摘Heterojunction photocatalysts have shown considerable activities for organic pollutants degradation.However,the faint connection interface and inferior charge shift efficiency critically block the property of heterojunction photocatalysis.Herein,Bi_(2)O_(2)S/NiFe_(2)O_(4) nanosheets heterojunction with ultrastrong inter-face interaction and high internal electric field are designed by an in-situ growth method.Tentative and theoretical consequences prove that the interfacial interaction and internal electric field not only act as the electron flow bridge but also decrease the electrons shift energy obstacle,thus speeding up electrons transfer and achieving effective spatial electron-hole separation.Therefore,a large amount of·O_(2)^(-)and holes as active species were generated.Remarkably,Bi_(2)O_(2) S/NiFe_(2)O_(4) establishes a considerably boosted photocatalytic performance for tetracycline degradation(0.032 min^(-1)),which is about 14.2-fold and 7.8-fold of the pristine BOS and NFO,respectively.This work provides a promising motivation for modulating charge transfer by interface control and internal electric field to boost photocatalytic performance. | Shaoxuan Pang Yilin Dong Dongyu Xu Qiuwen Wang Weihong Gao Lijun Zhang Kang Wang Guangming Zhang Longyi Lv Yuguo Xia Zhijun Ren Pengfei Wang | 2023 | Journal of Materials Science & Technology2023,,27: | 0 |
| 8 | Piceatannol attenuates streptozotocin-induced type 1 diabetes inmice显示文摘As a natural analog of resveratrol,piceatannol(Pic)exhibits good antioxidant and anti-inflammatory activities in different disease models.However,the role of Pic in type 1 diabetes mousemodel has not been reported yet.In this study,we investigated the in vivo effect of Pic in streptozotocin(STZ)-induced type 1 diabetic mice.Mice were injected with STZ to establish the type 1 diabetesmellitus(T1DM)model.After stable hyperglycemia was achieved,mice were then orally treated with Pic(40 mg/kg b.w.,i.g.)for 30 days.The results indicated that Pic supplementation efficiently alleviated the typical symptoms associated with T1DM,including body weight loss,polydipsia,hyperglycemia,and hypoinsulinemia.Pic treatment also improved the glucose tolerance of STZ-induced diabetic mice.In addition,Pic supplementation markedly decreased the expression of pro-inflammatory molecules TNF-αand IL-6,the expression of endoplasmic reticulum(ER)stress markers GRP78 and CHOP,and the level of oxidative stress in T1DM mice.Moreover,Pic administration also partly reversed the metabolic profiles of STZ-treated mice as detected by 1H Nuclear Magnetic Resonance(NMR)-based metabolomics.Our study suggested that the therapeutic potential of Pic in type 1 diabetes and the anti-diabetic effects of Pic may be associated with its activities to suppress oxidative stress,inflammation,and ER stress. | MENGSHU ZHAO PINGSHI GAO LIANG TAO JINGJING WEN LEI WANG YUGUO YI YUXIN CHEN JUNSONG WANG XI XU JIANFA ZHANG DAN WENG | 2020 | BIOCELL2020,44,3: | 0 |