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| 1 | Repurposing vitamin D for treatment of human malignancies via targeting tumor microenvironment显示文摘Tumor cells along with a small proportion of cancer stem cells exist in a stromal microenvironment consisting of vasculature, cancer-associated fibroblasts, immune cells and extracellular components.Recent epidemiological and clinical studies strongly support that vitamin D supplementation is associated with reduced cancer risk and favorable prognosis. Experimental results suggest that vitamin D not only suppresses cancer cells, but also regulates tumor microenvironment to facilitate tumor repression. In this review, we have outlined the current knowledge on epidemiological studies and clinical trials of vitamin D. Notably, wesummarized and discussed the anticancer action of vitamin D in cancer cells, cancer stem cells and stroma cells in tumor microenvironment, providing a better understanding of the role of vitamin D in cancer. We presently re-propose vitamin D to be a novel and economical anticancer agent. | Xu Wu Wei Hu Lan Lu Yueshui Zhao Yejiang Zhou Zhangang Xiao Lin Zhang Hanyu Zhang Xiaobing Li Wanping Li Shengpeng Wang Chi Hin Cho Jing Shen Mingxing Li | 2019 | Acta Pharmaceutica Sinica B2019,9,2: | 20 |
| 2 | The Influence of Transgenic cry1Ab/cry1Ac,cry1C and cry2A Rice on Non-Target Planthoppers and Their Main Predators Under Field Conditions显示文摘Transgenic Bt rice has been shown to be an effective means of controlling Lepidoptera pests of rice.However,the potential roles of transgenic rice on planthoppers and their predators need to be investigated before its commercialization.Population density,species dominance and population dynamics are important parameters of arthropods populations in field.So the impacts of three transgenic Bt rice strains expressing cry1Ab/cry1Ac,cry1C and cry2A on population density,species dominance and population dynamics of three species of planthoppers(Nilaparvata lugens,Sogatella furcifera and Laodelphax striatellus) and their three main predators(Cyrtorhinus lividipennis,Pirata subpiraticus and Theridium octomaculatum) were evaluated at three sites in Hubei Province,China,in the current study.The results showed that among three species of planthoppers,both in transgenic and non-transgenic rice field,the predominant species of planthoppers within phytophagous guild was S.furcifera at any site either growing season(46-50%).Significantly higher population density of N.lugens was observed in T2A-1 field relative to Minghui 63 field at Wuxue in 2010.The species dominance of predator,P.subpiraticus,in TT51 field was significantly higher than that in T1C-19 and T2A-1 fields in 2009 at Xiaogan site.Sampling date significantly influenced six arthropods except for P.subpiraticus in 2010.The interaction between rice strain×sampling date had no significant adverse effects on the population dynamics of three species of planthoppers and their predators,except for several individual species in 2009.The interaction among rice strain×sampling date×sampling site also had no significant effect on six arthropods except for S.furcifera in 2009.The results indicated that transgenic Bt rice expressing cry1Ab/cry1Ac,cry2A and cry1C had no significant adverse effects on the population dynamics of three planthoppers and their predators in most investigated data and sampling site. | HANYu XU Xue-liang MA Wei-hua YUAN Ben-qi WANG Hui LIU Fang-zhou WANG Man-qun WU Gang HUA Hong-xia | 2011 | Agricultural Sciences in China2011,10,11: | 14 |
| 3 | Value of diffusion-weighted imaging in distinguishing pancreatic carcinoma from mass-forming chronic pancreatitis: a meta-analysis显示文摘 | Niu Xiangke Sushant Kumar Das Anup Bhetuwal Xiao Yingquan Sun Feng Zeng Lichuan Wang Wenxuan Yang Hanfeng Yang Hanyu | 2014 | Chinese Medical Journal2014,,19: | 11 |
| 4 | Nonlinear optical selection rule based on valley-exciton locking in monolayer ws2显示文摘Optical selection rules fundamentally determine the optical transitions between energy states in a variety of physical systems,from hydrogen atoms to bulk crystals such as gallium arsenide.These rules are important for optoelectronic applications such as lasers,energy-dispersive X-ray spectroscopy,and quantum computation.Recently,single-layer transition metal dichalcogenides have been found to exhibit valleys in momentum space with nontrivial Berry curvature and excitons with large binding energy.However,there has been little study of how the unique valley degree of freedom combined with the strong excitonic effect influences the nonlinear optical excitation.Here,we report the discovery of nonlinear optical selection rules in monolayer WS2,an important candidate for visible 2D optoelectronics because of its high quantum yield and large direct bandgap.We experimentally demonstrated this principle for second-harmonic generation and two-photon luminescence(TPL).Moreover,the circularly polarized TPL and the study of its dynamics evince a sub-ps interexciton relaxation(2p R 1s).The discovery of this new optical selection rule in a valleytronic 2D system not only considerably enhances knowledge in this area but also establishes a foundation for the control of optical transitions that will be crucial for valley optoelectronic device applications such as 2D valley-polarized THz sources with 2p–1s transitions,optical switches,and coherent control for quantum computing. | Jun Xiao Ziliang Ye Ying Wang Hanyu Zhu Yuan Wang Xiang Zhang | 2015 | Light(Science & Applications)2015,4,1: | 8 |
| 5 | Umbilical cord-derived mesenchymal stem cells regulate thymic epithelial cell development and function in Foxn 1^-/- mice显示文摘 | Guangyang Liu Lihua Wang Tianxiang Pang Delin Zhu Yi Xu Hanyu Wang Xiuli Cong Yongjun Liu | 2014 | Cellular & Molecular Immunology2014,11,3: | 6 |
| 6 | Functional assembly of root-associated microbial consortia improves nutrient efficiency and yield in soybean显示文摘Root-associated microbes are critical for plant growth and nutrient acquisition. However, scant information exists on optimizing communities of beneficial root-associated microbes or the mechanisms underlying their interactions with host plants. In this report, we demonstrate that rootassociated microbes are critical influencers of host plant growth and nutrient acquisition. Three synthetic communities(SynComs) were constructed based on functional screening of 1,893 microbial strains isolated from root-associated compartments of soybean plants. Functional assemblage of SynComs promoted significant plant growth and nutrient acquisition under both N/P nutrient deficiency and sufficiency conditions.Field trials further revealed that application of SynComs stably and significantly promoted plant growth, facilitated N and P acquisition, and subsequently increased soybean yield. Among the tested communities, SynCom1 exhibited the greatest promotion effect, with yield increases of up to 36.1% observed in two field sites. Further RNA-seq implied that SynCom application systemically regulates N and P signaling networks at the transcriptional level, which leads to increased representation of important growth pathways, especially those related to auxin responses. Overall,this study details a promising strategy for constructing SynComs based on functional screening,which are capable of enhancing nutrient acquisition and crop yield through the activities of beneficial root-associated microbes. | Cunhu Wang Yanjun Li Mingjia Li Kefei Zhang Wenjing Ma Lei Zheng Hanyu Xu Baofeng Cui Ran Liu Yongqing Yang Yongjia Zhong Hong Liao | 2021 | Journal of Integrative Plant Biology2021,63,6: | 5 |
| 7 | Multifunctional metaoptics based on bilayer metasurfaces显示文摘Optical metasurfaces have become versatile platforms for manipulating the phase,amplitude,and polarization of light.A platform for achieving independent control over each of these properties,however,remains elusive due to the limited engineering space available when using a single-layer metasurface.For instance,multiwavelength metasurfaces suffer from performance limitations due to space filling constraints,while control over phase and amplitude can be achieved,but only for a single polarization.Here,we explore bilayer dielectric metasurfaces to expand the design space for metaoptics.The ability to independently control the geometry and function of each layer enables the development of multifunctional metaoptics in which two or more optical properties are independently designed.As a proof of concept,we demonstrate multiwavelength holograms,multiwavelength waveplates,and polarization-insensitive 3D holograms based on phase and amplitude masks.The proposed architecture opens a new avenue for designing complex flat optics with a wide variety of functionalities. | You Zhou Ivan I.Kravchenko Hao Wang Hanyu Zheng Gong Gu Jason Valentine | 2019 | Light(Science & Applications)2019,8,1: | 4 |
| 8 | Liensinine attenuates inflammation and oxidative stress in spleen tissue in an LPS-induced mouse sepsis model显示文摘Sepsis is a complex syndrome caused by multiple pathogens and involves multiple organ failure,particularly spleen dysfunction.In 2017,the worldwide incidence was 48.9 million sepsis cases and 1l million sepsis-related deaths were reported(Rudd et al.,2020).Inflammation,oxidative stress,and apoptosis are the most common pathologies seen in sepsis.Liensinine(LIE)is a bisbenzylisoquinoline-type alkaloid extracted from the seed embryo of Nelumbo nucifera.Lotus seed hearts have high content of LIE which mainly has antihypertensive and antiarrhythmic pharmacological effects.It can exert anti-carcinogenicactivityby regulating cell. | HANYU WANG YUANHAO YANG XIAO ZHANG YAN WANG HUI FAN JINFENG SHI XUELIAN TAN BAOSHI XU JINGCHAO QIANG ENZHUANG PAN MINGYI CHU ZIBO DONG JINGQUAN DONG | 2023 | Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2023,24,2: | 4 |
| 9 | Magnetostrictive and Kinematic Model Considering the Dynamic Hysteresis and Energy Loss for GMA显示文摘Due to the influence of magnetic hysteresis and energy loss inherent in giant magnetostrictive materials(GMM), output displacement accuracy of giant magnetostrictive actuator(GMA) can not meet the precision and ultra precision machining. Using a GMM rod as the core driving element, a GMA which may be used in the field of precision and ultra precision drive engineering is designed through modular design method. Based on the Armstrong theory and elastic Gibbs free energy theory, a nonlinear magnetostriction model which considers magnetic hysteresis and energy loss characteristics is established.Moreover, the mechanical system differential equation model for GMA is established by utilizing D'Alembert's principle. Experimental results show that the model can preferably predict magnetization property, magnetic potential orientation, energy loss for GMM. It is also able to describe magnetostrictive elongation and output displacement of GMA. Research results will provide a theoretical basis for solving the dynamic magnetic hysteresis,energy loss and working precision for GMA fundamentally. | Huifang LIU Xingwei SUN Yifei GAO Hanyu WANG Zijin GAO | 2017 | Chinese Journal of Mechanical Engineering2017,30,2: | 3 |
| 10 | In-cell infection: a novel pathway for Epstein-Barr virus infection mediated by cell-in-cell structures显示文摘 | Chao Ni Yuhui Chen Musheng Zeng Rongjuan Pei Yong Du Linquan Tang Mengyi Wang Yazhuo Hu Hanyu Zhu Meifang He Xiawei Wei Shan Wang Xiangkai Ning Manna Wang Jufang Wang Li Ma Xinwen Chen Qiang Sun Hong Tang Ying Wang Xiaoning Wang | 2015 | Cell Research2015,25,7: | 3 |
| 11 | Current status of anticoagulant treatments and improvements for hemodialysis patients in northern Chinese cities: a five-year comparative study显示文摘 | Huang Qi Sun Xuefeng Lin Hongli Zhang Zhimin Hao Lirong Yao Li Li Jijun Zhao Delong Wang Yong Zhu Hanyu Chen Xiangmei | 2014 | Chinese Medical Journal2014,,16: | 3 |
| 12 | Nonvolatile waveguide transmission tuning with electrically-driven ultra-small GST phase-change material显示文摘Low-power reconfigurable optical circuits are highly demanded to satisfy a variety of different applications. Conventional electro-optic and thermo-optic refractive index tuning methods in silicon photonics are not suitable for reconfiguration of optical circuits due to their high static power consumption and volatility. We propose and demonstrate a nonvolatile tuning method by utilizing the reversible phase change property of GST integrated on top of the silicon waveguide. The phase change is enabled by applying electrical pulses to the lm-sized GST active region in a sandwich structure. The experimental results show that the optical transmission of the silicon waveguide can be tuned by controlling the phase state of GST. | Hanyu Zhang Linjie Zhou Jian Xu Ningning Wang Hao Hu Liangjun Lu B. M. A. Rahman Jianping Chen | 2019 | Science Bulletin2019,64,11: | 2 |
| 13 | Sediment Compaction and Pore Pressure Prediction in Deepwater Basin of the South China Sea: Estimation from ODP and IODP Drilling Well Data显示文摘Overpressure in deepwater basins not only causes serious soft sediment deformation, but also significantly affects the safety of drilling operations. Therefore, prediction of overpressure in sediments has become an important task in deepwater oil exploration and development. In this study, we analyze the drilling data from ODP Leg 184 Sites 1144, 1146, and 1148, and IODP Leg 349 Sites U1431, U1432, U1433, and U1435 to study the sediment compaction and controls in the northern South China Sea. Sedimentation rate, sediment content, distribution area, and buried depth are the factors that influence sediment compaction in the deepwater basin of the South China Sea. Among these factors, the sediment content is the most important. The fitted normal compacted coefficients and mudline porosity for an interval of 50 m shows disciplinary variation versus depth. The pore pressure predicted from different fitted results shows varying overpressure situations. The normal compaction trend from Site 1144 reflects the porosity variation trend in stable deposition basins in the northern South China Sea. The predicted pore pressure shows overpressure at Site 1144, which is attributed to compaction disequilibrium. Nevertheless, the mixed lithology column may influence the predicted overpressure at Site 1148, which is responsible for the confusing result. Above all, we find that sediment compaction should serve as a proxy for pore pressure in the deepwater basin of the South China Sea. | XIE Yangbing WU Tuoyu SUN Jin ZHANG Hanyu WANG Jiliang GAO Jinwei CHEN Chuanxu | 2018 | Journal of Ocean University of China2018,17,1: | 2 |
| 14 | Atomically phase-matched second-harmonic generation in a 2D crystal显示文摘Second-harmonic generation(SHG)has found extensive applications from hand-held laser pointers to spectroscopic and microscopic techniques.Recently,some cleavable van der Waals(vdW)crystals have shown SHG arising from a single atomic layer,where the SH light elucidated important information such as the grain boundaries and electronic structure in these ultra-thin materials.However,despite the inversion asymmetry of the single layer,the typical crystal stacking restores inversion symmetry for even numbers of layers leading to an oscillatory SH response,drastically reducing the applicability of vdW crystals such as molybdenum disulfide(MoS_(2)).Here,we probe the SHG generated from the noncentrosymmetric 3R crystal phase of MoS_(2).We experimentally observed quadratic dependence of second-harmonic intensity on layer number as a result of atomically phase-matched nonlinear dipoles in layers of the 3R crystal that constructively interfere.By studying the layer evolution of the A and B excitonic transitions in 3R-MoS_(2) using SHG spectroscopy,we also found distinct electronic structure differences arising from the crystal structure and the dramatic effect of symmetry and layer stacking on the nonlinear properties of these atomic crystals.The constructive nature of the SHG in this 2D crystal provides a platform to reliably develop atomically flat and controllably thin nonlinear media. | Mervin Zhao Ziliang Ye Ryuji Suzuki Yu Ye Hanyu Zhu Jun Xiao Yuan Wang Yoshihiro Iwasa Xiang Zhang | 2016 | Light(Science & Applications)2016,5,1: | 2 |
| 15 | Progress in Research on Infection Factors in Hemodialysis Patients显示文摘Patients with uremic diseases and in the stage of chronic renal failure are mainly treated with hemodialysis,which can extend the life and improve the quality of life of patients.Nevertheless,hemodialysis causes numerous adverse reactions,such as infection.Infection aft er hemodialysis treatment not only increases the suffering of patients but also increases treatment costs and risks.Therefore,hemodialysis complications are a serious global problem and have received extensive att ention from clinicians and researchers.This paper provides a comprehensive description of the infection factors of hemodialysis patients.This review aims to provide the basis and guidance for controlling and preventing infection in hemodialysis patients. | Hanyu Wang | 2016 | 国际感染病学(电子版)2016,5,2: | 2 |
| 16 | Preparation of Calcium Cross-linked Nano-Fe3O4 Modified Zeolite Microspheres for Cu^2+ Adsorption from Wastewater显示文摘Artificial zeolite was modified by nano-Fe3O4 for development of functional adsorbents.Subsequently,adsorbents such as calcium cross-linked nano-Fe3O4 microspheres (Ca-MS),calcium cross-linked nano-Fe3O4 modified zeolite microspheres (Ca-MZS) and iron cross-linked nano-Fe3O4 modified zeolite microspheres (Fe-MZS) were prepared and compared for their adsorption performance.The effects of adsorbent dosage,solution pH,initial concentration and ion content on the removal of Cu^2+ from wastewater are investigated,and the adsorption kinetics and isotherms for the adsorbent materials were analyzed.The experimental results indicate that for the initial concentration of Cu^2+ of 30 mg/L,the adsorption is noted to be most stable.The optimal initial pH for adsorbing Cu^2+ is observed to be 5.5.At an optimal dosage of Ca-MZS of 900 mg/L,the adsorption capacity is measured to be 28.25 mg/g,along with the removal rate of 72.49%.The addition of Na+ and K+ affects the adsorption of Cu^2+.For the Na^+ and K^+ concentration of 0.2 mmol/L,the Cu^2+ removal rate by Ca-MZS drops to 11.94% and 22.12%,respectively.As compared with the adsorbents such as Natural Zeolite (NZ),Ca-MS and Fe-MZS,Ca-MZS demonstrates the best removal effect in solution,where the removal rate reaches 84.27%,with the maximum adsorption capacity of 28.09 mg/g.The Cu^2+ adsorption kinetics of Ca-MZS is observed to follow the Elovich kinetic model,with the adsorption isotherm data fitting the Freundlich isotherm model by using the non-linear method. | WEI Junchong 龙学军 王佳 TANG Zheng WANG Tingting KANG Hanyu LIANG Shuang | 2020 | Journal of Wuhan University of Technology(Materials Science)2020,35,6: | 2 |
| 17 | Comparative analysis of membranous and other nephropathy subtypes and establishment of a diagnostic model显示文摘This study aimed to compare clinical features between membranous nephropathy (MN) and nonmembranous nephropathy (non-MN), to explore the clinically difTerential diagnosis of these two types, and to establish a diagnostic model of MN. After renal biopsy was obtained, 798 patients were divided into two groups based on their examination results: primary MN group (n = 248) and non-MN group (n = 550). Their data were statistically analyzed. Logistic regression analysis indicated that anti-PLA2R antibodies, IgG, and Cr were independently correlated with MN, and these three parameters were then used to establish the MN diagnostic model. A receiver operating characteristic (ROC) curve confirmed that our diagnostic model could distinguish between patients with and without MN, and their corresponding sensitivity, specificity, and AUC were 79.9%, 89.4%, and 0.917, respectively. The cutoff value for this combination in MN diagnosis was 0.34. The established diagnostic model that combined multiple factors shows a potential for broad clinical applications in differentiating primary MN from other kidney diseases and provides reliable evidence supporting the feasibility of noninvasive diagnosis of kidney diseases. | Hanyu Zhu Bo Fu Yong Wang Jing Gao Qiuxia Han Wenjia Geng Xiaoli Yang Guangyan Cai Xiangmei Chen Dong Zhang | 2019 | Frontiers of Medicine2019,13,5: | 2 |
| 18 | Profiles of immune status and related pathways in sepsis: evidencebased on GEO and bioinformatics显示文摘Sepsis,characterized as life-threatening sequential organ failure,is caused by a dysregulated host immune response to a pathogen.Conventional practice for sepsis is to control the inflammation source and administer highgrade antibiotics.However,the mortality rate of sepsis varies from 25–30%and can reach 50%if a septic shock occurs.In our current study,we used bioinformatics technology to detect immune status profiles in sepsis at the genomic level.We downloaded and analyzed gene expression profiles of GSE28750 from the Gene Expression Omnibus(GEO)database to determine differential gene expression and immune status between sepsis and normal samples.Next,we used the CIBERSORT method to quantify the proportions of immune cells in the sepsis samples.Then we explored the differentially expressed genes(DEGs)related to sepsis.Furthermore,gene ontology(GO)function and the Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analysis were used to present potential signaling pathways in sepsis.We found that in the sepsis samples,the CD8+T cell fraction was consistently lower,based on the CIBERSORT method,whereas the neutrophil fraction was significantly higher in the sepsis samples.The GO function and KEGG pathway enrichment analysis identified 1573 DEGs that were significantly associated with neutrophil activation,neutrophil degranulation,neutrophil activation involved in the immune response,neutrophil-mediated immunity,and T cell activation in the biological processes group.In our study,we provided a first glance of associations between immune status and sepsis.Furthermore,our data regarding the reciprocal interaction between immune cells(neutrophils and CD8+T cells)could improve our understanding of immune status profiles in sepsis.However,additional investigations should be performed to verify their clinical value. | HANYU SHEN SHIQI REN WEI WANG CHENLIN ZHANG HAIYAN HAO QIUYAN SHEN YINONG DUAN ZIHENG WANG WENLIANG GE | 2020 | BIOCELL2020,44,4: | 1 |
| 19 | SeSoa: Security Enhancement System with Online Authentication for Android APK显示文摘Android OS provides such security mechanisms as application signature,,privilege limit and sandbox to protect the security of operational system.However,these methods are unable to protect the applications of Android against anti‘reverse engineering and the codes of such applications face the risk of being obtained or modified,which are always the first step for further attacks.In this paper;a security enhancement system with online authentication(SeSoa)for Android APK is proposed,in which the code of Android application package(APK)can be automatically encrypted.The encrypted code is loaded and run in the Android system after being successfully decrypted.Compared with the exiting software protecting systems,SeSoa uses online authentication mechanism to ensure the improvementof the APK security and good balance between security and | DONG Zhenjiang WANG Wei LI Hui ZHANG Yateng ZHANG Hongrui ZHAO Hanyu | 2016 | ZTE Communications2016,14,B06: | 1 |
| 20 | Preparation and electro chemical performance of sulfur-alumina cathode materialfor lithium-sulfur batteries显示文摘 | Dong Kang Wang Shengping Zhang Hanyu | 2013 | Materials Research Bulletin2013,48,: | 1 |