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| 1 | Multi-Layered CPG for Adaptive Walking of Quadruped Robots显示文摘 | Chengju Liu Li Xia Changzhu Zhang Qijun Chen | 2018 | Journal of Bionic Engineering2018,15,2: | 7 |
| 2 | New materials of the steppe mammoth, Mammuthus trogontherii, with discussion on the origin and evolutionary patterns of mammoths显示文摘Recently found materials indicate that the steppe mammoth, Mammuthus trogontherii, survived in northern China into the late Pleistocene. East Asia is the key area of mammoth evolution after the initial radiation of early forms out of Africa and into Eurasia at the beginning of the late Pliocene (c. 3.5–3.0 Ma). M. rumanus, M. meridionalis, M. trogontherii, and M. primige- nius probably formed a continuous and transitional evolutionary lineage within the pan-Eurasian mammoth radiation in East Asia. Each speciation event of the Eurasian mammoths was followed by a rapid and large-scale dispersal event: out of East Asia. Allopatric speciation is the main speciation pattern of Mammuthus. The climatic vacillation was severe and frequent in East Asia from the early part of early Pleistocene (c. 2.6 Ma) onward, which probably brought about successive speciation in East Asia and the subsequent dispersal of the mammoths. | WEI GuangBiao HU SongMei YU KeFu HOU YaMei LI Xin JIN ChangZhu WANG Yuan ZHAO JianXin WANG WenHua | 2010 | Science China Earth Sciences2010,53,7: | 4 |
| 3 | A comprehensive insight into the combined effects of Fenton’s reagent and skeleton builders on sludge deep dewatering performance显示文摘 | Huan Liu Jiakuan Yang Nairuo Zhu Hao Zhang Ye Li Shu He Changzhu Yang Hong Yao | 2013 | Journal of Hazardous Materials2013,,: | 2 |
| 4 | Conditioning of sewage sludge by Fenton’s reagent combined with skeleton builders显示文摘 | Huan Liu Jiakuan Yang Yafei Shi Ye Li Shu He Changzhu Yang Hong Yao | 2012 | Chemosphere2012,,2: | 2 |
| 5 | LILRB4 ITIMs mediate the T cell suppression and infiltration of acute myeloid leukemia cells显示文摘We recently demonstrated that leukocyte Ig-like receptor 4(LILRB4)expressed by monocytic acute myeloid leukemia(AML)cells mediates T-cell inhibition and leukemia cell infiltration via its intracellular domain.The cytoplasmic domain of LILRB4 contains three immunoreceptor tyrosine-based inhibitory motifs(ITIMs);the tyrosines at positions 360,412,and 442 are phosphorylation sites.Here,we analyzed how the ITIMs of LILRB4 in AML cells mediate its function.Our in vitro and in vivo data show that Y412 and Y442,but not Y360,of LILRB4 are required for T-cell inhibition,and all three ITIMs are needed for leukemia cell infiltration.We constructed chimeric proteins containing the extracellular domain of LILRB4 and the intracellular domain of LILRB1 and vice versa.The intracellular domain of LILRB4,but not that of LILRB1,mediates T-cell suppression and AML cell migration.Our studies thus defined the unique signaling roles of LILRB4 ITIMs in AML cells. | Zunling Li Mi Deng Fangfang Huang Changzhu Jin Shuang Sun Heyu Chen Xiaoye Liu Licai He Ali HSadek Cheng Cheng Zhang | 2020 | Cellular & Molecular Immunology2020,17,3: | 1 |
| 6 | Conditioning of sewage sludge by Fenton’s reagent combined with skeleton builders显示文摘 | Huan Liu Jiakuan Yang Yafei Shi Ye Li Shu He Changzhu Yang Hong Yao | 2012 | Chemosphere2012,,2: | 1 |
| 7 | Soil Respiration Characteristics and Its Relationship with Environmental Factors of Different Vegetation Types during Growing Season in Dongting Lake显示文摘In order to ascertain the soil carbon flux characteristics of poplar plantations and crop communities in the Dongting Lake area during the growing season and their correlation with hydrothermal conditions,soil respiration rate was monitored at fixed sites and time points with an LI-8100 A automated soil flux system.Meanwhile,the surface temperature and soil temperature and humidity were measured. The soil respiration variation in the two different vegetation types and its correlation with environmental factors were analyzed. The results showed that in the growing season,the diurnal variation curves of soil respiration rate in the two different vegetation types showed a single peak variation,but there was certain difference in the appearance time of the peak. The peak of the crop appeared around11: 00 am,while the peak of soil respiration in the poplar appeared around 13: 00. The soil respiration rate of the poplar was also significantly higher than that of the crop,and the average difference of soil respiration rate between the two was 3. 09 and 3. 55 μmol/( m^2·s) in April and August,respectively. Temperature and soil moisture were the main factors affecting soil respiration of the poplar plantation and crop community. Temperature had a greater effect on the soil respiration of the crop community,and soil humidity had a greater impact on soil respiration in the poplar plantation,showing a correlation coefficient reaching 0. 952. | Yan YANG Jie TANG Yongjin LI Yuxi TANG Changzhu LI Lijuan JIANG | 2019 | Agricultural Biotechnology2019,8,1: | 1 |
| 8 | Stable aerobic granules in continuous-flow bioreactor with self-forming dynamic membrane 显示文摘 | Liu Hongbo Li Yajie Yang Changzhu | 2012 | Bioresource Technology2012,121,: | 1 |
| 9 | Study on fabrication of the superhydrophobic sol–gel films based on copper wafer and its anti-corrosive properties显示文摘 | Youhua Fan Changzhu Li Zejun Chen Hong Chen | 2012 | Applied Surface Science2012,,17: | 1 |
| 10 | Controlled release and antibacterial activity of nanofibers loaded with basil essential oil-encapsulated cationic liposomes against Listeria monocytogenes显示文摘In recent years,the development of functional packaging from natural active compounds has been a promising strategy for microbial control in foods.In this study,the basil essential oil(BEO)was applied as the principal antibacterial agent,and a controlled-release nanofibrous system was engineered with responsiveness to bacterial phospholipase.It indicated that encapsulation by cationic liposome significantly improved the dispersity and stability of BEO during the electrospinning process,and the prepared BEO-loaded cationic liposomes(BCLs)could maintain structural integrity in polymer nanofibers.The resulting BCLs-loaded nanofibers showed an effective antibacterial activity against L.monocytogenes.Additionally,it is worth noting that incorporation of soybean lecithin in nanofiber substrate could accelerate the release of loaded antibacterial agents when exposed to L.monocytogenes,thus obtaining an enhanced antibacterial activity.This could be attributed to the increased sensitivity of nanofibers to the degradation by bacterial phospholipases after incorporation with soybean lecithin.Finally,the application test showed that the prepared antibacterial nanofibrous mats could help maintain the quality of chilled pork during 4-days storage,which indicated their promising potential as active packaging.Given the serious threat of L.monocytogenes to food safety,the present antibacterial nanofibers have wide application prospect for improving microbial safety of chilled meat. | Changzhu Li Mei Bai Xiaochen Chen Wei Hu Haiying Cui Lin Lin | 2022 | Food Bioscience2022,46,2: | 1 |
| 11 | Study on fabrica- tion of the superhydrophobic sol-gel films based on copper wafer and its anti-corrosive properties 显示文摘 | Fan Youhua Li Changzhu Chen Zejun | 2012 | Applied Surface Science2012,258,17: | 1 |
| 12 | Selective preparation for biofuels and high value chemicals based on biochar catalysts显示文摘The reuse of biomass wastes is crucial toward today’s energy and environmental crisis,among which,biomass-based biochar as catalysts for biofuel and high value chemical production is one of the most clean and economical solutions.In this paper,the recent advances in biofuels and high chemicals for selective production based on biochar catalysts from different biomass wastes are critically summarized.The topics mainly include the modification of biochar catalysts,the preparation of energy products,and the mechanisms of other high-value products.Suitable biochar catalysts can enhance the yield of biofuels and higher-value chemicals.Especially,the feedstock and reaction conditions of biochar catalyst,which affect the efficiency of energy products,have been the focus of recent attentions.Mechanism studies based on biochar catalysts will be helpful to the controlled products.Therefore,the design and advancement of the biochar catalyst based on mechanism research will be beneficial to increase biofuels and the conversion efficiency of chemicals into biomass.The advanced design of biochar catalysts and optimization of operational conditions based on the biomass properties are vital for the selective production of high-value chemicals and biofuels.This paper identifies the latest preparation for energy products and other high-value chemicals based on biochar catalysts progresses and offers insights into improving the yield of high selectivity for products as well as the high recyclability and low toxicity to the environment in future applications. | Hui LI Changlan HOU Yunbo ZHAI Mengjiao TAN Zhongliang HUANG Zhiwei WANG Lijian LENG Peng LIU Tingzhou LEI Changzhu LI | 2023 | Frontiers in Energy2023,17,5: | 0 |
| 13 | A chromosome-level genome assembly provides insights into Cornus wilsoniana evolution, oil biosynthesis, and floral bud development显示文摘Cornus wilsoniana W.is a woody oil plant with high oil content and strong hypolipidemic effects,making it a valuable species for medicinal,landscaping,and ecological purposes in China.To advance genetic research on this species,we employed PacBio together with Hi-C data to create a draft genome assembly for C.wilsoniana.Based on an 11-chromosome anchored chromosome-level assembly,the estimated genome size was determined to be 843.51 Mb.The N50 contig size and N50 scaffold size were calculated to be 4.49 and 78.00 Mb,respectively.Furthermore,30474 protein-coding genes were annotated.Comparative genomics analysis revealed that C.wilsoniana diverged from its closest species∼12.46 million years ago(Mya).Furthermore,the divergence between Cornaceae and Nyssaceae occurred>62.22 Mya.We also found evidence of whole-genome duplication events and whole-genome triplicationγ,occurring at∼44.90 and 115.86 Mya.We further inferred the origins of chromosomes,which sheds light on the complex evolutionary history of the karyotype of C.wilsoniana.Through transcriptional and metabolic analysis,we identified two FAD2 homologous genes that may play a crucial role in controlling the oleic to linoleic acid ratio.We further investigated the correlation between metabolites and genes and identified 33 MADS-TF homologous genes that may affect f lower morphology in C.wilsoniana.Overall,this study lays the groundwork for future research aimed at identifying the genetic basis of crucial traits in C.wilsoniana. | Zhenxiang He Haoyu Chao Xinkai Zhou Qingyang Ni Yueming Hu Ranran Yu Minghuai Wang Changzhu Li Jingzhen Chen Yunzhu Chen Yong Chen Chunyi Cui Liangbo Zhang Ming Chen Dijun Chen | 2023 | Horticulture Research2023,10,11: | 0 |
| 14 | Correction to: LILRB4 ITIMs mediate the T cell suppression and infiltration of acute myeloid leukemia cells显示文摘In this article,published online on 7 November 2019,there was an unintended error during image processing of Fig.1a and Fig.6c leading to wrong pictures to appear.These pictures have now been replaced with the appropriate pictures that were generated for this experiment.The corrected Fig.1 and Fig.6 are shown here.The conclusion made from the experiments remains unaltered.The inconvenience caused by this error is deeply regretted. | Zunling Li Mi Deng Fangfang Huang Changzhu Jin Shuang Sun Heyu Chen Xiaoye Liu Licai He Ali H.Sadek Cheng Cheng Zhang | 2020 | Cellular & Molecular Immunology2020,17,3: | 0 |
| 15 | Somatic Embrygenesis of Symplocos paniculata显示文摘[Objectives]This study was conducted to provide a new way for the rapid reproduction of Symplocos paniculata.[Methods]With mature embryos of S.paniculata as explants,through the study of somatic embryogenesis,the effects of different media on the induction and differentiation of S.paniculata somatic embryos were discussed,and the somatic embryogenesis system for S.paniculata was preliminarily established.[Results]Calli suitable for somatic embryogenesis could be induced using modified MS(referred to as GMS)as the basic medium with the addition of 0.2 mg/L 6-BA and 0.1 mg/L NAA;the best medium combination for somatic embryo differentiation was GMS+0.25 mg/L 6-BA+0.15 mg/L NAA,and the differentiation rate could reach 71.99%;and plant regeneration needed to be carried out at low sugar concentrations.[Conclusions]This study provides a technical basis for resources protection,genetic transformation,artificial seed production,and large-scale development and utilization of S.paniculata. | Yan YANG Lijuan JIANG Changzhu LI Beilei XIE Wenjun LI Qiang LIU Simeng LI | 2022 | Agricultural Biotechnology2022,11,4: | 0 |
| 16 | An aqueous BiI_(3)-Zn battery with dual mechanisms of Zn^(2+)(de)intercalation and I^(-)/I_(2)redox显示文摘The development of aqueous battery with dual mechanisms is now arousing more and more interest.The dual mechanisms of Zn^(2+)(de)intercalation and I^(-)/I_(2)redox bring unexpected effects.Herein,differing from previous studies using Zn I_(2)additive,this work designs an aqueous Bi I_(3)-Zn battery with selfsupplied I^(-).Ex situ tests reveal the conversion of Bi I_(3)into Bi(discharge)and Bi OI(charge)at the 1st cycle and the dissolved I^(-)in electrolyte.The active I^(-)species enhances the specific capacity and discharge medium voltage of electrode as well as improves the generation of Zn dendrite and by-product.Furthermore,the porous hard carbon is introduced to enhance the electronic/ionic conductivity and adsorb iodine species,proven by experimental and theoretical studies.Accordingly,the well-designed Bi I_(3)-Zn battery delivers a high reversible capacity of 182 m A h g^(-1)at 0.2 A g^(-1),an excellent rate capability with 88 m A h g^(-1)at 10 A g^(-1),and an impressive cyclability with 63%capacity retention over 20 K cycles at 10 A g^(-1).An excellent electrochemical performance is obtained even at a high mass loading of 6 mg cm^(-2).Moreover,a flexible quasi-solid-state Bi I_(3)-Zn battery exhibits satisfactory battery performances.This work provides a new idea for designing high-performance aqueous battery with dual mechanisms. | Qi Deng Fangzhong Liu Xiongwei Wu Changzhu Li Weibin Zhou Bei Long | 2024 | Journal of Energy Chemistry2024,89,2: | 0 |
| 17 | Biological properties of essential oil emphasized on the feasibility as antibiotic substitute in feedstuff显示文摘The discovery and application of antibiotics in animal feeds have boomed the development of intensive animal husbandry in the last century,until the emergence of antibiotics-resistant bacteria.To alleviate the risks aroused by antibiotics-resistant bacteria,effective antibiotic substitutes are urgently needed to replace antibiotics.Essential oils(EOs)derived from plants are illustrated as the promising antibiotic substitutes used in animal feeds,as same as their current views for poultry and livestock industries in the future.It has been widely demonstrated that the phytochemicals in EOs show multiple biofunctionability and are less likely to induce resistance in bacteria.The beneficial effects of EOs feed supplementation on the intestinal inflammation,intestinal flora,immunity,digestion,and growth performances have been already extensively examined.However,the cost-effectiveness,odor,volatility,instability and bioavailability are the challenges in effectively utilizing EOs in animal intestines.Based on previous researches,and these challenges can partially be resolved by microencapsulation and nanotechnology are promising techniques to deal with these challenges.This article presents the feasibility and foundation of EOs application as antibiotic substitutes in animal feeds,and illustrates the mechanisms,functional performances and superiority of EOs compared with antibiotics. | Jingfu Pan Yulin Zhu Mohamed A.Abdel-Samie Changzhu Li Haiying Cui Lin Lin | 2023 | Grain & Oil Science and Technology2023,6,1: | 0 |
| 18 | Valorization of Camellia oleifera oil processing byproducts to value-added chemicals and biobased materials: A critical review显示文摘The C.oleifera oil processing industry generates large amounts of solid wastes,including C.oleifera shell(COS)and C.oleifera cake(COC).Distinct from generally acknowledged lignocellulosic biomass(corn stover,bamboo,birch,etc.),Camellia wastes contain diverse bioactive substances in addition to the abundant lignocellulosic components,and thus,the biorefinery utilization of C.oleifera processing byproducts involves complicated processing technologies.This reviewfirst summarizes various technologies for extracting and converting the main components in C.oleifera oil processing byproducts into value-added chemicals and biobased materials,as well as their potential applications.Microwave,ultrasound,and Soxhlet extractions are compared for the extraction of functional bioactive components(tannin,flavonoid,saponin,etc.),while solvothermal conversion and pyrolysis are discussed for the conversion of lignocellulosic components into value-added chemicals.The application areas of these chemicals according to their properties are introduced in detail,including utilizing antioxidant and anti-in-flammatory properties of the bioactive substances for the specific application,as well as drop-in chemicals for the substitution of unrenewable fossil fuel-derived products.In addition to chemical production,biochar fabricated from COS and its applications in thefields of adsorption,supercapacitor,soil remediation and wood composites are comprehensively reviewed and discussed.Finally,based on the compositions and structural characteristics of C.oleifera byproducts,the development of full-component valorization strategies and the expansion of the appli-cationfields are proposed. | Xudong Liu Yiying Wu Yang Gao Zhicheng Jiang Zicheng Zhao Wenquan Zeng Mingyu Xie Sisi Liu Rukuan Liu Yan Chao Suli Nie Aihua Zhang Changzhu Li Zhihong Xiao | 2024 | Green Energy & Environment2024,9,1: | 0 |