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| 1 | CD147 antibody specifically and effectively inhibits infection and cytokine storm of SARS-CoV-2 and its variants delta,alpha,beta,and gamma显示文摘SARS-CoV-2 mutations contribute to increased viral transmissibility and immune escape,compromising the effectiveness of existing vaccines and neutralizing antibodies.An in-depth investigation on COVID-19 pathogenesis is urgently needed to develop a strategy against SARS-CoV-2 variants.Here,we identified CD147 as a universal receptor for SARS-CoV-2 and its variants.Meanwhile,Meplazeumab,a humanized anti-CD147 antibody,could block cellular entry of SARS-CoV-2 and its variants-alpha,beta,gamma,and delta,with inhibition rates of 68.7,75.7,52.1,52.1,and 62.3%at 60μg/ml,respectively.Furthermore,humanized CD147 transgenic mice were susceptible to SARS-CoV-2 and its two variants,alpha and beta.When infected,these mice developed exudative alveolar pneumonia,featured by immune responses involving alveoli-infiltrated macrophages,neutrophils,and lymphocytes and activation of IL-17 signaling pathway.Mechanistically,we proposed that severe COVID-19-related cytokine storm is induced by a'spike protein-CD147-CyPA signaling axis':Infection of SARS-CoV-2 through CD147 initiated the JAK-STAT pathway,which further induced expression of cyclophilin A(CyPA);CyPA reciprocally bound to CD147 and triggered MAPK pathway.Consequently,the MAPK pathway regulated the expression of cytokines and chemokines,which promoted the development of cytokine storm.Importantly,Meplazumab could effectively inhibit viral entry and inflammation caused by SARS-CoV-2 and its variants.Therefore,our findings provided a new perspective for severe COVID-19-related pathogenesis.Furthermore,the validated universal receptor for SARS-CoV-2 and its variants can be targeted for COVID-19 treatment. | Jiejie Geng Liang Chen Yufeng Yuan Ke Wang Youchun Wang Chuan Qin Guizhen Wu Ruo Chen Zheng Zhang Ding Wei Peng Du Jun Zhang Peng Lin Kui Zhang Yongqiang Deng Ke Xu Jiangning Liu Xiuxuan Sun Ting Guo Xu Yang Jiao Wu Jianli Jiang Ling Li Kun Zhang Zhe Wang Jing Zhang Qingguo Yan Hua Zhu Zhaohui Zheng Jinlin Miao Xianghui Fu Fengfan Yang Xiaochun Chen Hao Tang Yang Zhang Ying Shi Yumeng Zhu Zhuo Pei Fei Huo Xue Liang Yatao Wang Qingyi Wang Wen Xie Yirong Li Mingyan Shi Huijie Bian Ping Zhu Zhi-Nan Chen | 2021 | Signal Transduction and Targeted Therapy2021,6,10: | 6 |
| 2 | Removal of p-Nitrophenol Using Persulfate Activated by Biochars Prepared from Different Biomass Materials显示文摘 | SHI Chenfei LI Yumeng FENG Haiyao JIA Shumin XUE Ruijie LI Gang WANG Guoxiang | 2018 | Chemical Research in Chinese Universities2018,34,1: | 4 |
| 3 | Visible-light stimulated synaptic plasticity in amorphous indium−gallium−zinc oxide enabled by monocrystalline double perovskite for high-performance neuromorphic applications显示文摘Photoelectric synaptic devices have been considered as one of the key components in artificial neuromorphic systems due to their excellent capability to emulate the functions of visual neurons,such as light perception and image processing.Herein,we demonstrate an optically-stimulated artificial synapse with a clear photoresponse from ultraviolet to visible light,which is established on a novel heterostructure consisting of monocrystalline Cs2AgBiBr6 perovskite and indium–gallium–zinc oxide(IGZO)thin film.As compared with pure IGZO,the heterostructure significantly enhances the photoresponse and corresponding synaptic plasticity of the devices,which originate from the superior visible absorption of single-crystal Cs2AgBiBr6 and effective interfacial charge transfer from Cs2AgBiBr6 to IGZO.A variety of synaptic behaviors are realized on the fabricated thin-film transistors,including excitatory postsynaptic current,paired pulse facilitation,short-term,and long-term plasticity.Furthermore,an artificial neural network is simulated based on the photonic potentiation and electrical depression effects of synaptic devices,and an accuracy rate up to 83.8%±1.2%for pattern recognition is achieved.This finding promises a simple and efficient way to construct photoelectric synaptic devices with tunable spectrum for future neuromorphic applications. | Fu Huang Feier Fang Yue Zheng Qi You Henan Li Shaofan Fang Xiangna Cong Ke Jiang Ye Wang Cheng Han Wei Chen Yumeng Shi | 2023 | Nano Research2023,16,1: | 2 |
| 4 | Extra low friction coefficient caused by the formation of a solid-like layer:A new lubrication mechanism found through molecular simulation of the lubrication of MoS_2 nanoslits显示文摘Monolayer molybdenum disulfide(MoS2) is a novel two-dimensional material that exhibits potential application in lubrication technology. In this work, molecular dynamics was used to investigate the lubrication behaviour of different polar fluid molecules(i.e., water, methanol and decane) confined in monolayer Mo S2 nanoslits. The pore width effect(i.e., 1.2, 1.6 and 2.0 nm) was also evaluated. Results revealed that decane molecules exhibited good lubricating performance compared to the other two kinds of molecules. The friction coefficient followed the order of decane b methanol b water, and decreased evidently as the slit width increased, except for decane. Analysis of the spatial distribution and mobility of different confined fluid molecules showed that a solid-like layer was formed near the slit wall. This phenomenon led to the extra low friction coefficient of confined decane molecules. | Jiahui Li Yudan Zhu Yumeng Zhang Qingwei Gao Wei Zhu Xiaohua Lu Yijun Shi | 2018 | Chinese Journal of Chemical Engineering2018,26,12: | 2 |
| 5 | CoO nanoflowers woven by CNT network for high energy density flexible micro-supercapacitor显示文摘 | Yun Guang Zhu Ye Wang Yumeng Shi Jen It Wong Hui Ying Yang | 2014 | Nano Energy2014,,: | 2 |
| 6 | Work func- tion engineering of graphene electrode via chemical do- ping显示文摘 | Shi Yumeng Kang K K Alfonso R | 2010 | ACS Nano2010,4,5: | 1 |
| 7 | Enhancing the conductivity of transparent graphene films via doping 显示文摘 | Ki Kang Kim Alfonso Reina Yumeng Shi | 2010 | Nanotechnology2010,21,28: | 1 |
| 8 | Herbal medicine in the treatment of COVID-19 based on the gut-lung axis显示文摘Respiratory symptoms are most commonly experienced by patients in the early stages of novel coronavirus disease 2019 (COVID-19). However, with a better understanding of COVID-19, gastrointestinal symptoms such as diarrhea, nausea, and vomiting haveattracted increasing attention. The gastrointestinal tract may be a target organ of severe acute respiratory syndrome coronavirus2 (SARS-CoV-2) infection. The intestinal microecological balance is a crucial factor for homeostasis, including immunity andinflammation, which are closely related to COVID-19. Herbal medicine can restore intestinal function and regulate the gut florastructure. Herbal medicine has a long history of treating lung diseases from the perspective of the intestine, which is called thegut-lung axis. The physiological activities of guts and lungs influence each other through intestinal flora, microflora metabolites,and mucosal immunity. Microecological modulators are included in the diagnosis and treatment protocols for COVID-19. Inthis review, we demonstrate the relationship between COVID-19 and the gut, gut-lung axis, and the role of herbal medicine intreating respiratory diseases originating from the intestinal tract. It is expected that the significance of herbal medicine in treatingrespiratory diseases from the perspective of the intestinal tract could lead to new ideas and methods for treatment. | Qiaoyu He Yumeng Shi Qian Tang Hong Xing Han Zhang Mei Wang Xiaopeng Chen | 2022 | Acupuncture and Herbal Medicine2022,2,3: | 1 |
| 9 | Electrical detection of DNA hybridization with single-base specificity using transistors based on CVD-grown graphene sheets显示文摘 | Dong Xiaochen Shi Yumeng Huang Wei | 2010 | Advanced Materials2010,22,14: | 1 |
| 10 | 显示文摘 | Huang Yinxi Dong Xiaochen Shi Yumeng | 2010 | Nanoscale2010,2,8: | 1 |
| 11 | Rechargeable Aqueous Zinc-Ion Batteries in MgSO4/ZnSO4 Hybrid Electrolytes显示文摘MgSO4 is chosen as an additive to address the capacity fading issue in the rechargeable zinc-ion battery system of MgxV2O5·nH2O//ZnSO4//zinc.Electrolytes with different concentration ratios of ZnSO4 and MgSO4 are investigated.The batteries measured in the 1 M ZnSO4^-1 M MgSO4 electrolyte outplay other competitors,which deliver a high specific capacity of 374 mAh g^-1 at a current density of 100 mA g^-1 and exhibit a competitive rate performance with the reversible capacity of 175 mAh g^-1 at 5 A g^-1.This study provides a promising route to improve the performance of vanadium-based cathodes for aqueous zinc-ion batteries with electrolyte optimization in cost-effective electrolytes. | Yingmeng Zhang Henan Li Shaozhuan Huang Shuang Fan Lingna Sun Bingbing Tian Fuming Chen Ye Wang Yumeng Shi Hui Ying Yang | 2020 | Nano-Micro Letters2020,12,5: | 1 |
| 12 | Anti-DLBCL efficacy of DCZ0825 in vitro and in vivo:involvement of the PI3K‒AKT‒mTOR/JNK pathway显示文摘Diffuse large B-cell lymphoma(DLBCL)is the most common type of non-Hodgkin lymphoma,characterized by high heterogeneity.The poor outcome of a portion of patients who suffer relapsing or resistant to conventional treatment impels the development of novel agents for DLBCL.DCZ0825 is a novel compound derived from pterostilbene and osalmide,whose antitumor activities have drawn our attention.In this study,we found that DCZ0825 exhibited high cytotoxicity toward DLBCL cell lines in a dose-and time-dependent manner,as revealed by cell counting kit-8 assay.Flow cytometry and western blot analysis results showed that DCZ0825 also promoted cell apoptosis via both extrinsic and intrinsic apoptosis pathways mediated by caspase.In addition,DCZ0825 induced cell cycle arrest in the G2/M phase by downregulating Cdc25C,CDK1,and Cyclin B1,thus interfering with cell proliferation.Further investigation showed the involvement of the phosphatidylinositol 3-kinase(PI3K)‒AKT‒mTOR/JNK pathway in the efficacy of DCZ0825 against DLBCL.Remarkably,DCZ0825 also exerted notable cytotoxic effects in vivo as well,with low toxicity to important internal organs such as the liver and kidney.Our results suggest that DCZ0825 may have the potential to become a novel anti-DLBCL agent or to replenish the conventional therapeutic scheme of DLBCL. | Ke Hu Bo Li Ruye Ma Hongfei Yi Zhijian Xu Yu Peng Dandan Yu Huiqun Wu Taofang Cheng Yumeng Lu Yong Zhang Rong Wei Guang Yang Xiaosong Wu Weiliang Zhu Jumei Shi | 2021 | Acta Biochimica et Biophysica Sinica2021,53,5: | 1 |
| 13 | Phase Transformation Induced Capacitance Activation for 3D Graphene‐CoO Nanorod Pseudocapacitor显示文摘 | Yun Guang Zhu Ye Wang Yumeng Shi Zhi Xiang Huang Lin Fu Hui Ying Yang | 2014 | Adv. Energy Mater2014,,9: | 1 |
| 14 | Work function engineering of graphene electrode via chemical doping显示文摘 | Yumeng Shi Ki Kang Kim Alfonso Reina | 2010 | ACS nano2010,4,5: | 1 |
| 15 | Ultrafast growth of high-quality large-sized GaSe crystals by liquid metal promoter显示文摘Growth of high-quality large-sized crystals using the traditional chemical vapor transport(CVT)or vertical Bridgman(VB)technique is costly and time-consuming,limiting its practical industrial application.Here,we propose an ultrafast crystal growth process with low energy consumption and capability of producing crystals of excellent quality,and demonstrate that large-sized GaSe crystals with a lateral size of 0.5 to 1 cm can be obtained within a short period of 5 min.X-ray diffraction(XRD)and scanning transmission electron microscopy(STEM)studies clearly indicate that the as-grown crystals have a good crystallinity.To further show the potential application of the resulting GaSe crystals,we fabricate the few-layer GaSe-based photodetector,which exhibits low dark current of 21 pA and fast response of 34 ms under 405 nm illumination.Our proposed technique for rapid crystal growth could be further extended to other metallenes with low-melting point,such as Bi-,Sn-,In-,Pb-based crystals,opening up a new avenue in fulfilling diverse potential optoelectronics applications of two-dimensional(2D)crystals. | Zuxin Chen Quan Chen Zebing Chai Bin Wei Jun Wang Yanping Liu Yumeng Shi Zhongchang Wang Jingbo Li | 2022 | Nano Research2022,15,5: | 1 |
| 16 | Identification of lipid droplets in gut bacteria显示文摘Dear Editor,The field of gut microbiota is progressing rapidly and thus,appellations like the last human organ,a separate organ,a forgotten organ,and a new organ have been applied to gut microbiota to emphasize its vital functions in our body(Chang and Kao,2019).Gut microbiota has been shown to play a central role in the regulation of human lipid metabolism and be associated with lipid metabolism disorders when aberrant,through composition and microbial metabolites. | Kai Zhang Chang Zhou Zemin Li Xuehan Li Ziyun Zhou Linjia Cheng Ahmed Hammad Mirza Yumeng Shi Bingbing Chen Mengwei Zhang Liujuan Cui Congyan Zhang Taotao Wei Xuelin Zhang Shuyan Zhang Pingsheng Liu | 2023 | Protein & Cell2023,14,2: | 0 |
| 17 | In-depth understanding of ionic liquid assisted perovskite film formation mechanism for two-step perovskite photovoltaics显示文摘Ionic liquids(ILs)have been widely applied in the one-step fabrication of perovskite with noticeable enhancement in the device performance.However,in-depth mechanism of ionic-liquid-assisted perovskite film formation is not well understood for also important two-step perovskite fabrication method,with better control of crystallization behavior.In this work,we introduced ionic liquid methylammonium formate(MAFa)into organic salt to produce perovskite film via a two-step method.Systematic investigations on the influence of MAFa on the perovskite thin film formation mechanism were performed.Ionic liquid is shown to assist lowering the perovskite formation enthalpy upon the density functional theory(DFT)calculation,leading to an accelerated crystallization process evidenced by in-situ UV-Vis absorption measurement.A gradient up-down distribution of ionic liquid has been confirmed by timeof-flight SIMS.Importantly,besides the surface passivation,we found the HCOO-can diffuse into the perovskite crystals to fill up the halide vacancies,resulting in significant reduction of trap states.Uniform perovskite films with significantly larger grains and less defect density were prepared with the help of MAFa IL,and the corresponding device efficiency over 23%was obtained by two-step process with remarkably improved stability.This research work provides an efficient strategy to tune the morphology and opto-electronic properties of perovskite materials via ionic-liquid-assisted two-step fabrication method,which is beneficial for upscaling and application of perovskite photovoltaics. | Fei Wang Patrick Wai-Keung Fong Zhiwei Ren Hai-Lun Xia Kang Zhou Kai Wang Jiajie Zhu Xiaoxi Huang Xiao-Yuan Liu Hao Wang Yumeng Shi Haoran Lin Quanyao Zhu Gang Li Hanlin Hu | 2022 | Journal of Energy Chemistry2022,31,10: | 0 |
| 18 | LilrB3 is a putative cell surface receptor of APOE4显示文摘The three isoforms of apolipoprotein E(APOE2,APOE3,and APOE4)only differ in two amino acid positions but exert quite different immunomodulatory effects.The underlying mechanism of such APOE isoform dependence remains enigmatic.Here we demonstrate that APOE4,but not APOE2,specifically interacts with the leukocyte immunoglobulin-like receptor B3(LilrB3).Two discrete immunoglobin-like domains of the LilrB3 extracellular domain(ECD)recognize a positively charged surface patch on the N-terminal domain(NTD)of APOE4.The atomic structure reveals how two APOE4 molecules specifically engage two LilrB3 molecules,bringing their intracellular signaling motifs into close proximity through formation of a hetero-tetrameric complex.Consistent with our biochemical and structural analyses,APOE4,but not APOE2,activates human microglia cells(HMC3)into a pro-inflammatory state in a LilrB3-dependent manner.Together,our study identifies LilrB3 as a putative immune cell surface receptor for APOE4,but not APOE2,and may have implications for understanding the biological functions as well as disease relevance of the APOE isoforms. | Jiayao Zhou Yumeng Wang Gaoxingyu Huang Min Yang Yumin Zhu Chen Jin Dan Jing Kai Ji Yigong Shi | 2023 | Cell Research2023,33,2: | 0 |
| 19 | Interlayer exciton dynamics of transition metal dichalcogenide heterostructures under electric fields显示文摘Stacking single layers of atoms on top of each other provides a fundamental way to achieve novel material systems and engineer their physical properties,which offers opportunities for exploring fundamental physics and realizing next-generation optoelectronic devices.Among the two-dimensional(2D)-stacked systems,transition metal dichalcogenide(TMDC)heterostructures are particularly attractive because they host tightly-bonded interlayer excitons which possess various novel and appealing properties.These interlayer excitons have drawn significant research attention and hold high potential for the application in unique optoelectronic devices,such as polarization-and wavelength-tunable single photon emitters,valley Hall transistors,and possible high-temperature superconductors.The development of these devices requires a comprehensive understanding of the fundamental properties of these interlayer excitons and the impact of electric fields on their behaviors.In this review,we summarize the recent advances on the understanding of interlayer exciton dynamics under electric fields in TMDC heterostructures.We put emphasis on the electrical modulation of interlayer excitons’emission,the valley Hall transport of charge carriers after the separation of interlayer excitons by an electric field,and the correlation physics of interlayer excitons and charges under electrical doping and tuning.Challenges and perspectives are finally discussed for the application of TMDC heterostructures in future optoelectronics. | Jian Tang Yue Zheng Ke Jiang Qi You Zhentian Yin Zihao Xie Henan Li Cheng Han Xiaoxian Zhang Yumeng Shi | 2024 | Nano Research2024,17,5: | 0 |
| 20 | Synthesis of Tetrathiophosphates from White Phosphorus显示文摘Comprehensive Summary,A transition-metal-free one-pot direct synthesis of tetrathiophosphates(R^(1)S)_(2)P(S)SR^(2) from white phosphorus(P_(4)),through intermediate sodium alkyltetrathiophosphates(R^(1)S)_(2)P(S)SNa,is presented.In the presence of NaSH,various disulfides such as diaryl disulfidbges and dialkyl disulfides are easily coupled with P_(4) to give sodium alkyltetrathiophosphates(R^(1)S)_(2)P(S)SNa in almost quantitative yield,which react with alkyl halides in one pot to generate(R^(1)S)_(2)P(S)SR2.Furthermore,S-(2-cyanoethyl)-substituted tetrathiophosphates(R^(1)S)_(2)P(S)SCH_(2)CH_(2)CN are successfully designed as a kind of tetrathiophosphorylation reagent to react with diaryl iodonium salts involving deprotection-dealkylation process. | Jiali He Shanshan Shi Yumeng Zhang Yang Zhang Pengxiang Xu Guo Tang Yufen Zhao | 2023 | Chinese Journal of Chemistry2023,41,18: | 0 |