维普中文期刊产品整合服务
18篇 您的检索式:作者名="Zhao Mengli"
    题名 作者 年代 出处 被引量
1Elevated plasma levels of selective cytokines in COVID-19 patients reflect viral load and lung injury显示文摘A recent outbreak of pneumonia in Wuhan,China was found to be caused by a 2019 novel coronavirus(2019-nCoV or SARS-CoV-2 or HCoV-19).We previously reported the clinical features of 12 patients with2019-n Co V infections in Shenzhen,China.To further understand the pathogenesis of COVID-19 and find better ways to monitor and treat the disease caused by 2019-n Co V,we measured the levels of 48 cytokines in the blood plasma of those 12 COVID-19 patients.Thirty-eight out of the 48 measured cytokines in the plasma of 2019-n Co V-infected patients were significantly elevated compared to healthy individuals.Seventeen cytokines were linked to 2019-nCoV loads.Fifteen cytokines,namely M-CSF,IL-10,IFN-α2,IL-17,IL-4,IP-10,IL-7,IL-1 ra,G-CSF,IL-12,IFN-γ,IL-1α,IL-2,HGF and PDGF-BB,were strongly associated with the lung-injury Murray score and could be used to predict the disease severity of2019-n Co V infections by calculating the area under the curve of the receiver-operating characteristics.Our results suggest that 2019-nCoV infections trigger extensive changes in a wide array of cytokines,some of which could be potential biomarkers of disease severity of 2019-n Co V infections.These findings will likely improve our understanding of the immunopathologic mechanisms of this emerging disease.Our results also suggest that modulators of cytokine responses may play a therapeutic role in combating the disease once the functions of these elevated cytokines have been characterized.Yingxia Liu Cong Zhang Fengming Huang Yang Yang Fuxiang Wang Jing Yuan Zheng Zhang Yuhao Qin Xiaoyun Li Dandan Zhao Shunwang Li Shuguang Tan Zhaoqin Wang Jinxiu Li Chenguang Shen Jianming Li Ling Peng Weibo Wu Mengli Cao Li Xing Zhixiang Xu Li Chen Congzhao Zhou William J Liu Lei Liu Chengyu Jiang 2020National Science Review2020,7,6:6
2Distribution and removal of antibiotic resistance genes during anaerobic sludge digestion with alkaline, thermal hydrolysis and ultrasonic pretreatments显示文摘Sewage sludge in the wastewater treatment plants contains considerable amount of antibiotic resistance genes (ARGs). A few studies have reported that anaerobic digestion (AD) could successfully remove some ARGs from sewage sludge, but information on the fate of ARGs in sludge pretreatment-AD process is still very limited. In this study, three sludge pretreatment methods, including alkaline, thermal hydrolysis and ultrasonic pretreatments, were compared to investigate the distribution and removal of ARGs in the sludge pretreatment-AD process. Results showed that the ARGs removal efficiency of AD itself was approximately 50.77%, and if these three sludge pretreatments were applied, the total ARGs removal efficiency of the whole pretreatment-AD process could be improved up to 52.50%-75.07%. The ultrasonic pretreatment was more efficient than alkaline and thermal hydrolysis pretreatments. Although thermal hydrolysis reduced ARGs obviously, the total ARGs rebounded considerably after inoculation and were only removed slightly in the subsequent AD process. Furthermore, it was found that the total ARGs concentration significantly correlated with the amount of 16S rRNA gene during the pretreatment and AD processes, and the bacteria carrying ARGs could be mainly affiliated with Proteobacteria.Mengli Wang Ruying Li Qing Zhao 2019Frontiers of Environmental Science & Engineering2019,13,3:5
3Comparison of nonhuman primates identified the suitable model for COVID-19显示文摘Identification of a suitable nonhuman primate(NHP)model of COVID-19 remains challenging.Here,we characterized severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)infection in three NHP species:Old World monkeys Macaca mulatta(M.mulatta)and Macaca fascicularis(M.fascicularis)and New World monkey Callithrix jacchus(C.jacchus).Infected M.mulatta and M.fascicularis showed abnormal chest radiographs,an increased body temperature and a decreased body weight.Viral genomes were detected in swab and blood samples from all animals.Viral load was detected in the pulmonary tissues of M.mulatta and M.fascicularis but not C.jacchus.Furthermore,among the three animal species,M.mulatta showed the strongest response to SARS-CoV-2,including increased inflammatory cytokine expression and pathological changes in the pulmonary tissues.Collectively,these data revealed the different susceptibilities of Old World and New World monkeys to SARS-CoV-2 and identified M.mulatta as the most suitable for modeling COVID-19.Shuaiyao Lu Yuan Zhao Wenhai Yu Yun Yang Jiahong Gao Junbin Wang Dexuan Kuang Mengli Yang Jing Yang Chunxia Ma Jingwen Xu Xingli Qian Haiyan Li Siwen Zhao Jingmei Li Haixuan Wang Haiting Long Jingxian Zhou Fangyu Luo Kaiyun Ding Daoju Wu Yong Zhang Yinliang Dong Yuqin Liu Yinqiu Zheng Xiaochen Lin Li Jiao Huanying Zheng Qing Dai Qiangming Sun Yunzhang Hu Changwen Ke Hongqi Liu Xiaozhong Peng 2020Signal Transduction and Targeted Therapy2020,5,1:5
4In vitro comparison of the hemocompatibility of diamond-like carbon and carbon nitride coatings with different atomic percentages of N显示文摘Carbon nitride (CNx) and diamond-like carbon (DLC) coatings were prepared by dc magnetron sputtering at room temperature. Different partial pressures of N2 were used to synthesize CNx to evaluate the relationship between the atomic percentage of nitrogen and hemocompatibility. Auger electron spectroscopy and atomic force microscopy indicated atomic percentages of N of 0.12 and 0.22 and that the CNx coatings were smooth. An in vitro study of the hemocompatibility of the coatings revealed that both CNx coatings had better anticoagulant properties and lower platelet adhesion than DLC. Compared with CN0.12, the CN0.22 coating showed longer dynamic clotting time (about 42 min), static clotting time (23.6 min) and recalcification time (45.6 s), as well as lower platelet adhesion (102 cells μm 2), aggregation, and activation. The presence of nitrogen in the CNx coatings induced their enhanced hemocompatibility compared with DLC.ZHAO MengLi LI DeJun ZHANG YiTeng GUO MeiXian DENG XiangYun GU HanQing WAN RongXin 2012Science China(Life Sciences)2012,55,4:3
5Histones released by NETosis enhance the infectivity of SARS-CoV-2 by bridging the spike protein subunit 2 and sialic acid on host cells显示文摘Neutrophil extracellular traps(NETs)can capture and kill viruses,such as influenza viruses,human immunodeficiency virus(HIV),and respiratory syncytial virus(RSV),thus contributing to host defense.Contrary to our expectation,we show here that the histones released by NETosis enhance the infectivity of SARS-CoV-2,as found by using live SARS-CoV-2 and two pseudovirus systems as well as a mouse model.The histone H3 or H4 selectively binds to subunit 2 of the spike(S)protein,as shown by a biochemical binding assay,surface plasmon resonance and binding energy calculation as well as the construction of a mutant S protein by replacing four acidic amino acids.Sialic acid on the host cell surface is the key molecule to which histones bridge subunit 2 of the S protein.Moreover,histones enhance cell-cell fusion.Finally,treatment with an inhibitor of NETosis,histone H3 or H4,or sialic acid notably affected the levels of sgRNA copies and the number of apoptotic cells in a mouse model.These findings suggest that SARS-CoV-2 could hijack histones from neutrophil NETosis to promote its host cell attachment and entry process and may be important in exploring pathogenesis and possible strategies to develop new effective therapies for COVID-19.Weiqi Hong Jingyun Yang Jun Zou Zhenfei Bi Cai He Hong Lei Xuemei He Xue Li Aqu Alu Wenyan Ren Zeng Wang Xiaohua Jiang Kunhong Zhong Guowen Jia Yun Yang Wenhai Yu Qing Huang Mengli Yang Yanan Zhou Yuan Zhao Dexuan Kuang Junbin Wang Haixuan Wang Siyuan Chen Min Luo Ziqi Zhang Tiangi Lu Li Chen Haiying Que Zhiyao He Qiu Sun Wei Wang Guobo Shen Guangwen Lu Zhiwei Zhao Li Yang Jinliang Yang Zhenling Wang Jiong Li Xiangrong Song Lunzhi Dai Chong Chen Jia Geng Maling Gou Lu Chen Haohao Dong Yong Peng Canhua Huang Zhiyong Qian Wei Cheng Changfa Fan Yuquan Wei Zhaoming Su Aiping Tong Shuaiyao Lu Xiaozhong Peng Xiawei Wei 2022Cellular & Molecular Immunology2022,19,5:2
6Root exudates mediate plant defense against foliar pathogens by recruiting beneficial microbes显示文摘Plants are capable of releasing specific root exudates to recruit beneficial rhizosphere microbes upon foliar pathogen invasion attack,including long-chain fatty acids,amino acids,short-chain organic acids and sugars.Although long-chain fatty acids and amino acids application have been linked to soil legacy effects that improve future plant performance in the presence of the pathogen,the precise mechanisms involved are to a large extent still unknown.Here,we conditioned soils with long-chain fatty acids and amino acids application(L+A)or short-chain organic acids and sugars(S+S)to examine the direct role of such exudates on soil microbiome structure and function.The L+A treatment recruited higher abundances of Proteobacteria which were further identified as members of the genera Sphingomonas,Pseudomonas,Roseiflexus,and Flavitalea.We then isolated the enriched bacterial strains from these groups,identifying ten Pseudomonas strains that were able to help host plant to resist foliar pathogen infection.Further investigation showed that the L+A treatment resulted in growth promotion of these Pseudomonas strains.Collectively,our data suggest that long-chain fatty acids and amino acids stimulated by foliar pathogen infection can recruit specific Pseudomonas populations that can help protect the host plant or future plant generations.Tao Wen Mengli Zhao Jun Yuan George A.Kowalchuk Qirong Shen 2021Soil Ecology Letters2021,3,1:1
7Effect of grazing intensity on carbon and nitrogen in soil and vegetation in a meadow steppe in Inner Mongolia显示文摘Han Guodong Hao Xiying Zhao Mengli 2007Agriculture Eco- systems & Environment2007,125,1:1
8Effect of grazing intensity on carbon and nitrogen in soil and vegetation in a meadow steppe in Inner Mongolia 显示文摘Guodong Han Xiying Hao Mengli Zhao 2008Agriculture Ecosystems and Environment2008,,125:1
9Characterization of microbial diversity and community in water flooding oil reservoirs in China显示文摘Lingxia Zhao Ting Ma Mengli Gao Peike Gao Meina Cao Xudong Zhu Guoqiang Li 2012World Journal of Microbiology and Biotechnology2012,,10:1
10Highly stable hybrid single-micelle:A universal nanocarrier for hydrophobic bioimaging agents显示文摘As the first-line technology,micelles play a pivotal role in in vivo delivery of theranostic agents because of their high biocompatibility and universality.However,in complex physiological environments(extreme dilution,pH,and oxidation or reduction,etc.),they generally suffer from structural instability and insufficient protection for encapsulated cargos.It is urgent to reinforce the structural stability of the micelles at the single-micelle level.By using the FDA-approved Pluronic F127 surfactants and indocyanine green(ICG)bioimaging agents as model,herein,we propose the silane-crosslinking assisted strategy to reinforce the structural stability of the single-micelle.Different from the traditional silane hydrolysis under the harsh experimental conditions(acidic,alkaline,and high temperature hydrothermal,etc.),the ICG loaded F127@SiO_(2) hybrid single-micelles(ICG@H-micelles)with controllable sizes(15-35 nm)are synthesized at neutral pH and room temperature,which is crucial for the maintenance of the physicochemical properties of the encapsulated cargos.With the ultra-thin SiO_(2)(<5 nm)at hydrophilic layer of the single-micelle,the structural and fluorescence stability of ICG@H-micelles are much higher than the conventional micelle(ICG@micelles)in the simulated physiological environments of dilution,oxidation or reduction,and low pH.Because of the high structural and fluorescence stability,the ICG@H-micelles also exhibit longer duration time in the tumor and gastrointestinal tract bioimaging.Qiaoyu Zhou Tiancong Zhao Mengli Liu Dongrui Yin Minchao Liu Ahmed AElzatahry Fan Zhang Dongyuan Zhao Xiaomin Li 2022Nano Research2022,15,5:1
11Effect of grazing intensity on carbon and nitrogen in soil and vegetation in a meadow steppe in Inner Mongolia显示文摘Guodong Han Xiying Hao Mengli Zhao Mingjun Wang Ben H. Ellert Walter Willms Mingjiu Wang 2007Agriculture Ecosystems and Environment2007,,1:1
12Growth substrates alter aboveground plant microbial and metabolic properties thereby influencing insect herbivore performance显示文摘The gut microbiome of plant-eaters is affected by the food they eat,but it is currently unclear how the plant metabolome and microbiome are influenced by the substrate the plant grows in and how this subsequently impacts the feeding behavior and gut microbiomes of insect herbivores.Here,we use Plutella xylostella caterpillars and show that the larvae prefer leaves of cabbage plants growing in a vermiculite substrate to those from plants growing in conventional soil systems.From a plant metabolomics analysis,we identified 20 plant metabolites that were related to caterpillar feeding performance.In a bioassay,the effects of these plant metabolites on insects'feeding were tested.Nitrate and compounds enriched with leaves of soilless cultivation promoted the feeding of insects,while compounds enriched with leaves of plants growing in natural soil decreased feeding.Several microbial groups(e.g.,Sporolactobacillus,Haliangium)detected inside the plant correlated with caterpillar feeding performance and other microbial groups,such as Ramlibacter and Methylophilus,correlated with the gut microbiome.Our results highlight the role of growth substrates on the food metabolome and microbiome and on the feeding performance and the gut microbiome of plant feeders.It illustrates how belowground factors can influence the aboveground properties of plant-animal systems,which has important implications for plant growth and pest control.Jun Yuan Tao Wen Shengdie Yang Chao Zhang Mengli Zhao Guoqing Niu Penghao Xie Xiaoyu Liu Xinyuan Zhao Qirong Shen T.Martijn Bezemer 2023Science China(Life Sciences)2023,66,8:0
13Proteome-wide epitope mapping identifies a resource of antibodies for SARS-CoV-2 detection and neutralization显示文摘Dear Editor,Since December 2019,the coronavirus disease 2019(COVID-19)caused by the severe acute respiratory syndrome coronavirus-2(SARS-CoV-2)has become a worldwide pandemic.1 Significant efforts have been made to generate antibodies to help study COVID-19 pathogenesis,perform diagnostic testing,and develop treatment to neutralize SARS-CoV-2 activity.However,the specific sequence of amino acids recognized and bound by an antibody,the'epitope'is unknown for most antibodies.In this study,we developed a high-throughput epitope mapping platform using a peptide-based SARS-CoV-2 proteome microarray.2 to detect the binding epitopes of 57 commercial antibodies to ORFlab,nudeocapsid(N);spike(S),envelop(E),membrane(M),ORF3a,ORF6,ORF7a,and ORF8 proteins(Supplementary Table S1).Te Liang Mengli Cheng Fei Teng Hongye Wang Yongqiang Deng Jiahui Zhang Chengfeng Qin Shubin Guo Hui Zhao Xiaobo Yu 2021Signal Transduction and Targeted Therapy2021,6,5:0
14The olfactory route is a potential way for SARS-CoV-2 to invade the central nervous system of rhesus monkeys显示文摘Neurological manifestations are frequently reported in the COVID-19 patients.Neuromechanism of SARS-CoV-2 remains to be elucidated.In this study,we explored the mechanisms of SARS-CoV-2 neurotropism via our established non-human primate model of COVID-19.In rhesus monkey,SARS-CoV-2 invades the CNS primarily via the olfactory bulb.Thereafter,viruses rapidly spread to functional areas of the central nervous system,such as hippocampus,thalamus,and medulla oblongata.The infection of SARS-CoV-2 induces the inflammation possibly by targeting neurons,microglia,and astrocytes in the CNS.Consistently,SARS-CoV-2 infects neuro-derived SK-N-SH,glial-derived U251,and brain microvascular endothelial cells in vitro.To our knowledge,this is the first experimental evidence of SARS-CoV-2 neuroinvasion in the NHP model,which provides important insights into the CNS-related pathogenesis of SARS-CoV-2.Li Jiao Yun Yang Wenhai Yu Yuan Zhao Haiting Long Jiahong Gao Kaiyun Ding Chunxia Ma Jingmei Li Siwen Zhao Haixuan Wang Haiyan Li Mengli Yang Jingwen Xu Junbin Wang Jing Yang Dexuan Kuang Fangyu Luo Xingli Qian Longjiang Xu Bin Yin Wei Liu Hongqi Liu Shuaiyao Lu Xiaozhong Peng 2021Signal Transduction and Targeted Therapy2021,6,5:0
15Effect of La_(2)Sn_(2)O_(7)content on Ag-La_(2)Sn_(2)O_(7)/SnO_(2)arc erosion behavior and mechanism显示文摘La_(2)Sn_(2)O_(7)/SnO_(2)powder was synthesized by chemical co-precipitation method,and Ag-La_(2)Sn_(2)O_(7)/SnO_(2)composites were prepared by hot-pressing sintering.The electrical resistivity,density,Brinell hardness and flexural strength of Ag-La_(2)Sn_(2)O_(7)/SnO_(2)composites were measured.Moreover,the effect of La_(2)Sn_(2)O_(7)content on the arc erosion behavior of Ag-La_(2)Sn_(2)O_(7)/SnO_(2)composites at 7 kV voltage was studied.With the increase of La_(2)Sn_(2)O_(7)content,the arc duration and arc energy decrease,and the breakdown strength increases.The surface morphology of Ag-La_(2)Sn_(2)O_(2)/SnO_(2)composites after arc erosion was investigated using scanning electron microscopy and three-dimensio nal laser confocal scanning microscopy.With the increase of La_(2)Sn_(2)O_(7)content,the smaller the erosion damage,the better the anti-arc erosion performance.However,too much La_(2)Sn_(2)O_(7)results in the decrease of Ag-La_(2)Sn_(2)O_(7)/SnO_(2)properties and severe arc erosion.X-ray photoelectron spectroscopy was used to determine the composition of the erosion region.The effect of La_(2)Sn_(2)O_(7)on wettability between Ag and SnO_(2)was investigated,and the erosion mechanism of Ag-La_(2)Sn_(2)O_(7)/SnO_(2)composites was discussed systematically.This study can provide a reference for the application of Ag matrix electrical contact materials in high-voltage electrical appliances.Mengli Cao Yi Feng Lili Wang Ting Zhao Hao Zhao Zijue Zhou 2022Journal of Rare Earths2022,40,9:0
16Sound management may sequester methane in grazed rangeland ecosystems显示文摘Chengjie Wang Guodong Han Shiping Wang Xiajie Zhai Joel Brown Kris M. Havstad Xiuzhi Ma Andreas Wilkes Mengli Zhao Shiming Tang Pei Zhou Yuanyuan Jiang Tingting Lu Zhongwu Wang Zhiguo Li 2014内蒙古农业大学学报(自然科学版)2014,35,4:0
17Predicting Illness Severity and Short-Term Outcomes of COVID-19:A Retrospective Cohort Study in China显示文摘Introduction COVID-19,caused by SARS-CoV-2,is a highly contagious disease.1 By April 8,2020,more than 1,350,000 patients were diagnosed with COVID-19 globally,with more than 79,000 deaths worldwide attributable to the disease.2 Recent clinical data reported that mild and critical patients manifested different symptoms.Most of the mild patients with COVID-19 had symptoms such as fever,cough,and mild pneumonia,whereas the critical cases presented dyspnea,respiratory failure,sepsis,organ dysfunction,and even eventual death.Chuming Chen Haihui Wang Zhichao Liang Ling Peng Fang Zhao Liuqing Yang Mengli Cao Weibo Wu Xiao Jiang Peiyan Zhang Yinfeng Li Li Chen Shiyan Feng Jianming Li Lingxiang Meng Huishan Wu Fuxiang Wang Quanying Liu Yingxia Liu 2020The Innovation2020,1,1:0
18Spatially asymmetric cascade nanocatalysts for enhanced chemodynamic therapy显示文摘Chemodynamic therapy(CDT)based on cascade catalytic nanomedicine has emerged as a promising cancer treatment strategy.However,most of the reported cascade catalytic systems are designed based on symmetric-or co-assembly of multiple catalytic active sites,in which their functions are difficult to perform independently and may interfere with each other.Especially in cascade catalytic system that involves fragile natural-enzymes,the strong oxidation of free-radicals toward natural-enzymes should be carefully considered,and the spatial distribution of the multiple catalytic active sites should be carefully organized to avoid the degradation of the enzyme catalytic activity.Herein,a spatially-asymmetric cascade nanocatalyst is developed for enhanced CDT,which is composed by a Fe_(3)O_(4)head and a closely connected mesoporous silica nanorod immobilized with glucose oxidase(mSiO_(2)-GOx).The mSiO_(2)-GOx subunit could effectively deplete glucose in tumor cells,and meanwhile produce a considerable amount of H_(2)O_(2)for subsequent Fenton reaction under the catalysis of Fe_(3)O_(4)subunit in the tumor microenvironment.Taking the advantage of the spatial isolation of mSiO_(2)-GOx and Fe_(3)O_(4)subunits,the catalysis of GOx and freeradicals generation occur at different domains of the asymmetric nanocomposite,minimizing the strong oxidation of free-radicals toward the activity of GOx at the other side.In addition,direct exposure of Fe_(3)O_(4)subunit without any shelter could further enhance the strong oxidation of free-radicals toward objectives.So,compared with traditional core@shell structure,the long-term stability and efficiency of the asymmetric cascade catalytic for CDT is greatly increased by 138%,thus realizing improved cancer cell killing and tumor restrain efficiency.Minchao Liu Hongyue Yu Liang Chen Tiancong Zhao Meng Fang Mengli Liu Qiaoyu Zhou Fatemah Farraj AlHarbi Ahmed Mohamed El-Toni Fan Zhang Dongyuan Zhao Xiaomin Li 2023Nano Research2023,16,7:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费