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| 1 | N_2O Emission from Paddy Field under Different Rice Planting Modes显示文摘Measurements of N2O emissions from conventional rice cultivation (CRC), CRC with straw mulching, system of rice intensification (SRI) and SRI with plastic film mulching were conducted through static chamber/gas-chromatography techniques. The results show that daily fluctuation of N2O emissions in jointing stage are much higher than in others. A type peak of N2O seasonal emission presented between jointing and bearing stages companying with high daily average temperature and low precipitation. Biomass and leaf stomatal conductance were observed. Total quantities of N2O emission were budgeted. The results showed that after jointing stage the average N2O emission flux of SRI with plastic film mulching increased significantly than CRC with straw mulching and SRI, the leaf stomatal conductance of those showed the same trend (p< 0.05 ). Yield and total quantity of N2O emission in CRC with straw mulching enhanced 13.7% and 10.7% compared with those of CRC, respectively. The total quantity of N2O emissions reduced 3.6% in SRI with plastic film mulching compared with CRC, however, the yield increase of that was not significant. | WANG Yuying ZHU Bo WANG Yanqiang GAO Meirong MA Xiumei | 2006 | Wuhan University Journal of Natural Sciences2006,11,4: | 7 |
| 2 | Visualization of perforin/gasdermin/complement-formed pores in real cell membranes using atomic force microscopy显示文摘Different types of pores ubiquitously form in cell membranes,leading to various types of cell death that profoundly influence the fate of inflammation and the disease status.However,these pores have never truly been visualized to date.Atomic force microscopy(AFM),which is emerging as a powerful tool to analyze the mechanical properties of biomolecules and cells,is actually an excellent imaging platform that allows biological samples to be visualized by probing surface roughness at the level of atomic resolution.Here,membrane pore structures were clearly visualized using AFM.This visualization not only describes the aperture and depth of the pore complexes but also highlights differences among the pores formed by perforin and gasdermins in tumor cell membranes and by complement in immune cell membranes.Additionally,this type of visualization also reveals the dynamic process of pore formation,fusion,and repair. | Yuying Liu Tianzhen Zhang Yabo Zhou Jiping Li Xiaoyu Liang Nannan Zhou Jiadi Lv Jing Xie Feiran Cheng Yiliang Fang Yunfeng Gao Ning Wang Bo Huang | 2019 | Cellular & Molecular Immunology2019,16,6: | 6 |
| 3 | Mucus production stimulated by IFN-AhR signaling triggers hypoxia of COVID-19显示文摘Silent hypoxia has emerged as a unique feature of coronavirus disease 2019(COVID-19).In this study,we show that mucins are accumulated in the bronchoalveolar lavage fluid(BALF)of COVID-19 patients and are upregulated in the lungs of severe respiratory syndrome coronavirus 2(SARS-CoV-2)-infected mice and macaques.We find that induction of either interferon(IFN)-P or IFN-y upon SARS-CoV-2 infection results in activation of aryl hydrocarbon receptor(AhR)signaling through an IDO-Kyn-dependent pathway,leading to transcriptional upregulation of the expression of mucins,both the secreted and membrane-bound,in alveolar epithelial cells.Consequently,accumulated alveolar mucus affects the blood-gas barrier,thus inducing hypoxia and diminishing lung capacity,which can be reversed by blocking AhR activity.These findings potentially explain the silent hypoxia formation in COVID-19 patients,and suggest a possible intervention strategy by targeting the AhR pathway. | Yuying Liu Jiadi Lv Jiangning Liu Man Li Jing Xie Qi Lv Wei Deng Nannan Zhou Yabo Zhou Jiangping Song Peng Wang Chuan Qin Wei-Min Tong Bo Huang | 2020 | Cell Research2020,30,12: | 5 |
| 4 | ASAF: altered spontaneous activity fingerprinting in Alzheimer’s disease based on multisite fMRI显示文摘Several monocentric studies have noted alterations in spontaneous brain activity in Alzheimer's disease (AD), although there is no consensus on the altered amplitude of low-frequency fluctuations in AD patients. The main aim of the present study was to identify a reliable and reproducible abnormal brain activity pattern in AD. The amplitude of local brain activity (AM), which can provide fast mapping of spontaneous brain activity across the whole brain, was evaluated based on multisite rs-fMRI data for 688 subjects (215 normal controls (NCs), 221 amnestic mild cognitive impairment (aMCI) 252 AD). Two-sample t-tests were used to detect group differences between AD patients and NCs from the same site. Differences in the AM maps were statistically analyzed via the Stouffer's meta-analysis. Consistent regions of lower spontaneous brain activity in the default mode network and increased activity in the bilateral hippocampus/parahippocampus, thalamus, caudate nucleus, orbital part of the middle frontal gyrus and left fusiform were observed in the AD patients compared with those in NCs. Significant correlations (P?0.05, Bonferroni corrected) between the normalized amplitude index and Mini-Mental State Examination scores were found in the identified brain regions, which indicates that the altered brain activity was associated with cognitive decline in the patients. Multivariate analysis and leave-one-site-out cross-validation led to a 78.49% prediction accuracy for single-patient classification. The altered activity patterns of the identified brain regions were largely correlated with the FDG-PET results from another independent study. These results emphasized the impaired brain activity to provide a robust and reproducible imaging signature of AD. | Jiachen Li Dan Jin Ang Li Bing Liu Chengyuan Song Pan Wang Dawei Wang Kaibin Xu Hongwei Yang Hongxiang Yao Bo Zhou Alexandre Bejanin Gael Chetelat Tong Han Jie Lu Qing Wang Chunshui Yu Xinqing Zhang Yuying Zhou Xi Zhang Tianzi Jiang Yong Liu Ying Han | 2019 | Science Bulletin2019,64,14: | 3 |
| 5 | A Novel Design of Thermoelectric Generator for Automotive Waste Heat Recovery显示文摘With progressively stringent fuel consumption regulations,many researchers and engineers are focusing on the employment of waste heat recovery technologies for automotive applications.Regarded as a promising method of waste heat recovery,the thermoelectric generator(TEG)has been given increasing attention over the whole automotive industry for the last decade.In this study,we first give a brief review of improvements in thermoelectric materials and heat exchangers for TEG systems.We then present a novel design for a concentric cylindrical TEG system that addresses the existing weaknesses of the heat exchanger.In place of the typical square-shaped thermoelectric module,our proposed concentric cylindrical TEG system uses an annular thermoelectric module and employs the advantages of the heat pipe to enhance the heat transfer in the radial direction.The simulations we carried out to verify the performance of the proposed system showed better power output among the existing TEG system,and a comparison of water-inside and gas-inside arrangements showed that the water-inside concentric cylindrical TEG system produced a higher power output. | Kuo Huang Yuying Yan Bo Li Yong Li Kai Li Jun Li | 2018 | Automotive Innovation2018,1,1: | 2 |
| 6 | SNObase,a database for S-nitrosation modification显示文摘S-Nitros(yl)ation is a ubiquitous redox-based post-translational modification of protein cysteine thiols by nitric oxide or its derivatives,which transduces the bioactivity of nitric oxide(NO)by regulation of protein conformation,activity,stability,localization and pro-tein-protein interactions.These years,more and more S-nitrosated proteins were identified in physiological and pathological processes and the number is still growing.Here we developed a database named SNO-base(http://www.nitrosation.org),which collected S-nitrosation targets extracted from literatures up to June 1st,2012.SNObase contained 2561 instances,and provided information about S-nitrosation targets,sites,biological model,related diseases,trends of S-nitrosation level and effects of S-nitrosation on protein function.With SNObase,we did functional analysis for all the SNO targets:In the gene ontology(GO)biological process category,some processes were discovered to be related to S-nitrosation(“response to drug”,“regulation of cell motion”)besides the previously reported related processes.In the GO cellular component category,cytosol and mitochondrion were both enriched.From the KEGG pathway enrichment results,we found SNO targets were enriched in different diseases,which suggests possible significant roles of S-nitrosation in the progress of these diseases.This SNObase means to be a database with precise,comprehensive and easily accessible information,an environment to help researchers integrate data with comparison and relevancy analysis between different groups or works,and also an SNO knowledgebase offering feasibility for systemic and global analysis of S-nitrosation in interdisciplinary studies. | Xu Zhang Bo Huang Lunfeng Zhang Yuying Zhang Yingying Zhao Xiaofei Guo Xinhua Qiao Chang Chen | 2012 | Protein & Cell2012,3,12: | 2 |
| 7 | Numerical Modelling of Electroosmotic Driven Flow in Nanoporous Media by Lattice Boltzmann Method显示文摘 | Bo Li Wenning Zhou Yuying Yan Zhiwu Han Luquan Ren | 2013 | Journal of Bionic Engineering2013,10,1: | 2 |
| 8 | ACE2 expression is regulated by AhR in SARS-CoV-2-infected macaques显示文摘During the current outbreak of coronavirus disease 2019(COVID-19)caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),more than 115 million people have been infected,and 2.5 million have died.1,2 Despite such great harm to human health,the pathogenesis of COVID-19 remains unclear.As the first step in the pathogenetic process,viral entry is mediated by the binding of the SARS-CoV-2 surface spike(S)protein to angiotensin-converting enzyme 2(ACE2)on host cells,such as lung epithelial cells.As an alternative to S protein-blocking strategies,manipulating host cell ACE2 expression may exert an inhibitory effect on SARS-CoV-2 infection.However,the molecular mechanism regulating ACE2 expression remains unclear. | Jiadi Lv Pin Yu Zhenfeng Wang Wei Deng Linlin Bao Jiangning Liu Fengli Li Qiangqiang Zhu Nannan Zhou Qi Lv Guanpeng Wang Shunyi Wang Yabo Zhou Jiangping Song Wei-Min Tong Yuying Liu Chuan Qin Bo Huang | 2021 | Cellular & Molecular Immunology2021,18,5: | 1 |
| 9 | Effects of nitrogen fertiliza- tion on upland rice based on pot experiments显示文摘 | WANG Yuying ZHU Bo SHI Yah | 2008 | Communications in Soil Science and Plant Analysis2008,39,1112: | 1 |
| 10 | Applications of atomic force microscopy in immunology显示文摘Cellular mechanics,a major regulating factor of cellular architecture and biological functions,responds to intrinsic stresses and extrinsic forces exerted by other cells and the extracellular matrix in the microenvironment.Cellular mechanics also acts as a fundamental mediator in complicated immune responses,such as cell migration,immune cell activation,and pathogen clearance.The principle of atomic force microscopy(AFM)and its three running modes are introduced for the mechanical characterization of living cells.The peak force tapping mode provides the most delicate and desirable virtues to collect high-resolution images of morphology and force curves.For a concrete description of AFM capabilities,three AFM applications are discussed.These applications include the dynamic progress of a neutrophil-extracellular-trap release by neutrophils,the immunological functions of macrophages,and the membrane pore formation mediated by perforin,streptolysin O,gasdermin D,or membrane attack complex. | Jiping Li Yuying Liu Yidong Yuan Bo Huang | 2021 | Frontiers of Medicine2021,15,1: | 1 |
| 11 | SARS-CoV-2 treatment effects induced by ACE2-expressing microparticles are explained by the oxidized cholesterolincreased endosomal pH of alveolar macrophages显示文摘Exploring the cross-talk between the immune system and advanced biomaterials to treat SARS-CoV-2 infection is a promising strategy.Here,we show that ACE2-overexpressing A549 cell-derived microparticles(AO-MPs)are a potential therapeutic agent against SARS-CoV-2 infection.Intranasally administered AO-MPs dexterously navigate the anatomical and biological features of the lungs to enter the alveoli and are taken up by alveolar macrophages(AMs).Then,AO-MPs increase the endosomal pH but decrease the lysosomal pH in AMs,thus escorting bound SARS-CoV-2 from phago-endosomes to lysosomes for degradation.This pH regulation is attributable to oxidized cholesterol,which is enriched in AO-MPs and translocated to endosomal membranes,thus interfering with proton pumps and impairing endosomal acidification.In addition to promoting viral degradation,AO-MPs also inhibit the proinflammatory phenotype of AMs,leading to increased treatment efficacy in a SARS-CoV-2-infected mouse model without side effects.These findings highlight the potential use of AO-MPs to treat SARS-CoV-2-infected patients and showcase the feasibility of MP therapies for combatting emerging respiratory viruses in the future. | Zhenfeng Wang Jiadi Lv Pin Yu Yajin Qu Yabo Zhou Li Zhou Qiangqiang Zhu Shunshun Li Jiangping Song Wei Deng Ran Gao Yuying Liu Jiangning Liu Wei-Min Tong Chuan Qin Bo Huang | 2022 | Cellular & Molecular Immunology2022,19,2: | 1 |
| 12 | Regulation of immune-related diseases by multiple factors: a meeting report of 2017 International Workshop of the Chinese Academy of Medical Sciences Initiative for Innovative Medicine on Tumor Immunology显示文摘Immune cells play key roles in cancer and chronic inflammatory disease. A better understanding of the mechanisms and risks will help develop novel target therapies. At the 2017 International Workshop of the Chinese Academy of Medical Sciences Initiative for Innovative Medicine on Tumor Immunology held in Beijing, China, on May 12, 2017, a number of speakers reported new findings and ongoing studies on immune-related diseases such as cancer, fibrotic disease, diabetes, and others. A considerably insightful overview was provided on cancer immunity, tumor microenvironments,and new immunotherapy for cancer. In addition, chronic inflammatory diseases were discussed. These findings may offer new insights into targeted immunotherapy. | Bing Cui Xuetao Cao Weiping Zou Yonghong Wan Ning Wang Yaohe Wang Pingping Li Fang Hua Yuying Liu Xiaowei Zhang Ke Li Xiaoxi Lv Bo Huang Zhuowei Hu | 2017 | Acta Pharmaceutica Sinica B2017,7,4: | 1 |
| 13 | Thermal Management of Electrified Propulsion System for Low-Carbon Vehicles显示文摘An overview of current thermal challenges in transport electrification is introduced in order to underpin the research developments and trends of recent thermal management techniques.Currently,explorations of intelligent thermal management and control strategies prevail among car manufacturers in the context of climate change and global warming impacts.Therefore,major cutting-edge systematic approaches in electrified powertrain are summarized in the first place.In particular,the important role of heating,ventilation and air-condition system(HVAC)is emphasised.The trends in developing efficient HVAC system for future electrified powertrain are analysed.Then electric machine efficiency is under spotlight which could be improved by introducing new thermal management techniques and strengthening the efforts of driveline integrations.The demanded integration efforts are expected to provide better value per volume,or more power output/torque per unit with smaller form factor.Driven by demands,major thermal issues of high-power density machines are raised including the comprehensive understanding of thermal path,and multiphysics challenges are addressed whilst embedding power electronic semiconductors,non-isotropic electromagnetic materials and thermal insulation materials.Last but not least,the present review has listed several typical cooling techniques such as liquid cooling jacket,impingement/spray cooling and immersion cooling that could be applied to facilitate the development of integrated electric machine,and a mechanic-electric-thermal holistic approach is suggested at early design phase.Conclusively,a brief summary of the emerging new cooling techniques is presented and the keys to a successful integration are concluded. | Bo Li Huang Kuo Xuehui Wang Yiyi Chen Yangang Wang David Gerada Sean Worall Ian Stone Yuying Yan | 2020 | Automotive Innovation2020,3,4: | 1 |
| 14 | Human umbilical cord mesenchymal stem cell transfusion in immune non-responders with AIDS:a multicenter randomized controlled trial显示文摘We examined the safety and efficacy of human umbilical cord mesenchymal stem cell(hUC-MSC)infusion for immune nonresponder(INR)patients with chronic HIV-1 infection,who represent an unmet medical need even in the era of efficient antiretroviral therapy(ART).Seventy-two INR patients with HIV were enrolled in this phase II randomized,double-blinded,multicenter,placebo-controlled,dose-determination trial(NCT01213186)from May 2013 to March 2016.They were assigned to receive high-dose(1.5 x 106/kg body weight)or low-dose(0.5 x 106/kg body weight)hUC-MSC,or placebo.Their clinical and immunological parameters were monitored during the 96-week follow-up study.We found that hUC-MSC treatment was safe and well-tolerated.Compared with baseline,there was a statistical increase in CD4+T counts in the high-dose(P<0.001)and low-dose(P<0.001)groups after 48-week treatment,but no change was observed in the control group.Kaplan-Meier analysis revealed a higher cumulative probability of achieving an immunological response in the low-dose group compared with the control group(95.8%vs.70.8%,P=0.00A).However,no significant changes in CD4/CD84-T counts and CD4/CD8 ratios were observed among the three groups.In summary,hUC-MSC treatment is safe.However,the therapeutic efficacy of hUC-MSC treatment to improve the immune reconstitution in INR patients still needs to be further investigated in a large cohort study. | Lifeng Wang Zheng Zhang Ruonan Xu Xicheng Wang Zhanjun Shu Xiejie Chen Siyu Wang Jiaye Liu Yuanyuan Li Li Wang Mi Zhang Wei Yang Ying Wang Huihuang Huang Bo Tu Zhiwei Liang Linghua Li Jingxin Li Yuying Hou Ming Shi Fu-Sheng Wang | 2021 | Signal Transduction and Targeted Therapy2021,6,7: | 0 |
| 15 | Reproducible Abnormalities and Diagnostic Generalizability of White Matter in Alzheimer’s Disease显示文摘Alzheimer’s disease(AD)is associated with the impairment of white matter(WM)tracts.The current study aimed to verify the utility of WM as the neuroimaging marker of AD with multisite diffusion tensor imaging datasets[321 patients with AD,265 patients with mild cognitive impairment(MCI),279 normal controls(NC)],a unified pipeline,and independent site cross-validation.Automated fiber quantification was used to extract diffusion profiles along tracts.Random-effects meta-analyses showed a reproducible degeneration pattern in which fractional anisotropy significantly decreased in the AD and MCI groups compared with NC.Machine learning models using tract-based features showed good generalizability among independent site cross-validation.The diffusion metrics of the altered regions and the AD probability predicted by the models were highly correlated with cognitive ability in the AD and MCI groups.We highlighted the reproducibility and generalizability of the degeneration pattern of WM tracts in AD. | Yida Qu Pan Wang Hongxiang Yao Dawei Wang Chengyuan Song Hongwei Yang Zengqiang Zhang Pindong Chen Xiaopeng Kang Kai Du Lingzhong Fan Bo Zhou Tong Han Chunshui Yu Xi Zhang Nianming Zuo Tianzi Jiang Yuying Zhou Bing Liu Ying Han Jie Lu Yong Liu Multi-Center Alzheimer’s Disease Imaging(MCADI)Consortium | 2023 | Neuroscience Bulletin2023,39,10: | 0 |
| 16 | Synthesis and characterization of superhydrophobic magnesium oxysulfate whiskers显示文摘Superhydrophobic materials have attracted much attention for their special wettability.In this study.magnesium oxysulfate(MOS)whiskers were surface modified by vinyltrimethoxysilane(VTMS)and prepared as superhydrophobic materials,which are expected to be widely used in self-cleaning,corro-sion prevention,and oil-water separation.The factors of silane concentration,hydrolysis time,reaction temperature,and reaction time were investigated.The superhydrophobic Mos whiskers were synthe-sized.SEM and XRD turned out that there were no apparent changes in the morphology and crystalli-zation behavior of whiskers before and after modification,while the surface was uniformly coated with a layer of non-crystal material,and the surface of the whiskers employed a chemical bond Si-O-Mg covalently connected.The thermogravimetric analysis ultimately demonstrated that surface modification was beneficial to the improvement of the thermal stability of MoS whiskers.Superhydrophobic MoS whiskers showed good compatibility with organic solvents through oil-water separation experiments,and demonstrated excellent self-cleaning performance.The methodology for the surface treatment of Mos whiskers to prepare superhydrophobic whiskers in this work may be extended for other whiskers or fillers,which may be promising for the preparation of superhydrophobic materials. | Zhenying Yao Lu Gong Chunmei Zhu Xin Lian Bai He Shenghui Tian Bo Yui | 2023 | Particuology2023,,7: | 0 |
| 17 | Optimal Allocation of Public Transport Hub Based on Load Loss Value and the Economy of Distribution Network显示文摘The rapid development of electric buses has brought a surge in the number of bus hubs and their charging and discharging capacities.Therefore,the location and construction scale of bus hubs will greatly affect the operation costs and benefits of an urban distribution network in the future.Through the scientific and reasonable planning of public transport hubs on the premise of meeting the needs of basic public transport services,it can reduce the negative impact of electric bus charging loads upon the power grids.Furthermore,it can use its flexible operation characteristics to provide flexible support for the distribution network.In this paper,taking the impact of public transport hub on the reliability of distribution network as the starting point,a three-level programming optimization model based on the value and economy of distribution network load loss is proposed.Through the upper model,several planning schemes can be generated,which provides boundary conditions for the expansion of middle-level optimization.The normal operation dispatching scheme of public transport hub obtained from the middle-level optimization results provides boundary conditions for the development of lower level optimization.Through the lower level optimization,the expected load loss of the whole distribution system including bus hub under the planning scheme given by the upper level can be obtained.The effectiveness of the model is verified by an IEEE-33 bus example. | Yuying Zhang Chen Liang Bo Sun QiangChen Mingyang Lei | 2022 | Energy Engineering2022,119,6: | 0 |
| 18 | On the thermodynamics of plasticity during quasi-isentropic compression of metallic glass显示文摘Entropy production in quasi-isentropic compression (QIC) is critically important for understanding the properties of materials under extremeconditions. However, the origin and accurate quantification of entropy in this situation remain long-standing challenges. In this work, a framework is established for the quantification of entropy production and partition, and their relation to microstructural change in QIC. Cu50Zr50is taken as a model material, and its compression is simulated by molecular dynamics. On the basis of atomistic simulation-informed physicalproperties and free energy, the thermodynamic path is recovered, and the entropy production and its relation to microstructural change aresuccessfully quantified by the proposed framework. Contrary to intuition, entropy production during QIC of metallic glasses is relativelyinsensitive to the strain rate ˙γ when ˙γ ranges from 7.5 × 10^(8) to 2 × 10^(9)/s, which are values reachable in QIC experiments, with a magnitudeof the order of 10^(−2)kB/atom per GPa. However, when ˙γ is extremely high (>2 × 10^(9)/s), a notable increase in entropy production rate with˙γ is observed. The Taylor–Quinney factor is found to vary with strain but not with strain rate in the simulated regime. It is demonstrated thatentropy production is dominated by the configurational part, compared with the vibrational part. In the rate-insensitive regime, the increase inconfigurational entropy exhibits a linear relation to the Shannon-entropic quantification of microstructural change, and a stretched exponential relation to the Taylor–Quinney factor. The quantification of entropy is expected to provide thermodynamic insights into the fundamentalrelation between microstructure evolution and plastic dissipation. | Kaiguo Chen Bo Chen Yinan Cui Yuying YuJidong Yu Huayun Geng Dongdong Kang Jianhua Wu Yao Shen Jiayu Dai | 2024 | Matter and Radiation at Extremes2024,9,2: | 0 |
| 19 | Mechanism of activation and biased signaling in complement receptor C5aR1显示文摘The complement system plays an important role in the innate immune response to invading pathogens.The complement fragment C5a is one of its important effector components and exerts diverse physiological functions through activation of the C5a receptor 1(C5aR1)and associated downstream G protein andβ-arrestin signaling pathways.Dysfunction of the C5a-C5aR1 axis is linked to numerous inflammatory and immune-mediated diseases,but the structural basis for activation and biased signaling of C5aR1 remains elusive.Here,we present cryo-electron microscopy structures of the activated wild-type C5aR1–Gi protein complex bound to each of the following:C5a,the hexapeptidic agonist C5apep,and the G protein-biased agonist BM213.The structures reveal the landscape of the C5a–C5aR1 interaction as well as a common motif for the recognition of diverse orthosteric ligands.Moreover,combined with mutagenesis studies and cell-based pharmacological assays,we deciphered a framework for biased signaling using different peptide analogs and provided insight into the activation mechanism of C5aR1 by solving the structure of C5aR1I116A mutant–Gi signaling activation complex induced by C089,which exerts antagonism on wild-type C5aR1.In addition,unusual conformational changes in the intracellular end of transmembrane domain 7 and helix 8 upon agonist binding suggest a differential signal transduction process.Collectively,our study provides mechanistic understanding into the ligand recognition,biased signaling modulation,activation,and Gi protein coupling of C5aR1,which may facilitate the future design of therapeutic agents. | Yuying Feng Chang Zhao Yue Deng Heli Wang Liang Ma Sicen Liu Xiaowen Tian Bo Wang Yan Bin Peipei Chen Wei Yan Ping Fu Zhenhua Shao | 2023 | Cell Research2023,33,4: | 0 |
| 20 | Isolation and Growth Characteristics of SARS-CoV-2 in Vero Cell显示文摘Dear Editors,The coronavirus disease 2019(COVID-19),caused by SARS-CoV-2,broke out in early December 2019 has escalated into a global pandemic(Lai et al.2020).Till the May 20 th 2020,more than 4,700,000 people were infected and the number is still increasing especially in Europe,North America and Asia(https://covid19.who.int/). | Pingping Yao Yachun Zhang Yisheng Sun Yulin Gu Fang Xu Bo Su Chen Chen Hangjing Lu Dehui Wang Zhangnv Yang Biao Niu Jiancai Chen Lixia Xie Lei Chen Yajing Zhang Hui Wang Yuying Zhao Yue Guo Juncheng Ruan Zhiyong Zhu Zhenfang Fu Dayong Tian Qi An Jianmin Jiang Hanping Zhu | 2020 | Virologica Sinica2020,35,3: | 0 |