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| 1 | Discovery of a high-altitude ecotype and ancient lineage of Arabidopsis thaliana from Tibet显示文摘Arabidopsis thaliana(A.thaliana)has long been a model species for dicotyledon study,and was the first flowering plant to get its genome completed sequenced[1].Although most wild A.thaliana are collected in Europe,several studies have found a rapid A.thaliana west-east expansion from Central Asia[2].The Qinghai-Tibet Plateau(QTP)is close to Central Asia and known for its high alti- | Liyan Zeng Zhuoya Gu Min Xu Ning Zhao Weidong Zhu Takahiro Yonezawa Tianmeng Liu Lha Qiong Tashi Tersing Lingli Xu Yang Zhang Rongyan Xu Ningyu Sun Yanyan Huang Jiankun Lei Liang Zhang Feng Xie Fang Zhang Hongya Gu Yupeng Geng Masami Hasegawa Ziheng Yang M. James C. Crabbe Fan Chen Yang Zhong | 2017 | Science Bulletin2017,62,24: | 3 |
| 2 | A multifunctional nano device as non-viral vector for gene delivery:in vitro characteristics and transfection显示文摘 | Yu Gao Wangwen Gu Lingli Chen | 2007 | Journal of Controlled Release2007,118,3: | 1 |
| 3 | The role of daidzeinloaded sterically stabilized solid lipid nanoparticles in therapy for cardiocerebrovascular diseases显示文摘 | Gao Yu Gu Wangwen Chen Lingli | 2008 | Biomaterials2008,29,30: | 1 |
| 4 | Effect of friction coefficients on the dynamic response of gear systems显示文摘 | Lingli JIANG Zhenyong DENG Fengshou GU Andrew D. BALL Xuejun LI | 2017 | Frontiers of Mechanical Engineering2017,12,3: | 1 |
| 5 | The role of daidzein-loadedsterically stabilized stabilized solid lipid nanoparticles in therapy for cardio-cerebrovascular diseases 显示文摘 | Gao Yu Gu Wangwen Chen Lingli | 2010 | Biomaterials2010,29,30: | 1 |
| 6 | Effeet of curing con- ditions on property of high performance concrete with composite mineral admixture显示文摘 | GONG Lingli JIN Nanguo GU Xianglin | 2009 | Key Engineering Materials2009,,400402: | 1 |
| 7 | The effects of Eu^(3+) doping on the epitaxial growth and photovoltaic properties of BiFeO_(3) thin films显示文摘Nowadays,photovoltaic effect has been widely studied in various ferroelectric materials due to its ap-plications as optoelectronic devices.In this work,with BiFeO_(3)(BFO)films as the photovoltaic materials,we report the effects of Eu^(3+)doping content on the phase structure,ferroelectric and optical properties of BFO films grown on Ca_(0.96) Ce_(0.04) MnO_(3)/YAlO_(3)(001)substrate.We found that a small doping level of 0.05 could induce a phase change of BFO from tetragonal to rhombohedral,due to the shrinking of the lattice upon Eu^(3+)doping and the breaking of surface terrace structure induced by Ca_(0.96) Ce_(0.04) MnO_(3) layer.This results in a sharp band gap reduction from 3.30 eV to 2.60 eV,and a decrease in the coercivity of ferroelectric polarization switching.Based on these findings,we investigate the photovoltaic effects of ITO/Eu_(x) Bi_(1-x) FeO_(3)/Ca_(0.96) Ce_(0.04) MnO_(3) vertical capacitors.It is found that the short-circuit current density(J_(sc))decreases with increasing Eu^(3+)doping,whereas the open-circuit voltage(V_(oc))first increases to a level of 0.1 V and then decreases with further Eu^(3+)doping.This could be explained by the combined ef-fect of Schottky-junction and depolarization field on the photovoltaic process.Our research suggests that a moderate Eu^(3+)doping is helpful for enhancing the photovoltaic effect of BFO thin film devices. | Dingshuai Feng Biaohong Huang Lingli Li Xiaoqi Li Youdi Gu Weijin Hu Zhidong Zhang | 2022 | Journal of Materials Science & Technology2022,,11: | 0 |
| 8 | Macrophage-derived exosomes modulate wear particle-induced osteolysis via miR-3470b targeting TAB3/NF-κB signaling显示文摘Aseptic prosthesis loosening(APL)is one of the most prevalent complications associated with arthroplasty.The main cause is the periprosthetic osteolysis induced by wear particles.However,the specific mechanisms of crosstalk between immune cells and osteoclasts/osteoblasts during osteolysis are unclear.In this study,we report the role and mechanism of macrophage-derived exosomes in wear particle-induced osteolysis.The results of exosomes up-taken experiments revealed that osteoblast and mature osteoclasts capture macrophage-derived exosomes(M-Exo).Next-generation sequencing and RT-qPCR on M-Exo revealed that exosomal microRNA miR-3470b was downregulated in wear particle-induced osteolysis.The results of analysis on Luciferase reporter assays/fluorescence in situ hybridization(FISH)/immunofluorescence(IF)/immunohistochemistry(IHC)and co-culture experiments demonstrated that wear particles induced osteoclast differentiation by increasing the expression of NFatc1 via M-Exo miR-3470b targeting TAB3/NF-κB signaling.We also illustrate that engineered exosomes enriching miR-3470b facilitated to suppressed the osteolysis;the microenvironment enriching with miR-3470b could suppress wear particle-induced osteolysis via inhibition of TAB3/NF-κB in vivo.In summary,our findings indicate that macrophage-derived exosomes transfer to osteoclasts to induce osteolysis in wear particle-induced APL.Engineering exosomes enriching with miR-3470b might be a novel strategy for the targeting treatment of bone resorption-related diseases. | Baiqi Pan Ziji Zhang Xiaoyu Wu Guoyan Xian Xuantao Hu Minghui Gu Linli Zheng Xiang Li Lingli Long Weishen Chen Puyi Sheng | 2023 | Bioactive Materials2023,,8: | 0 |
| 9 | Core-shell structured Ru-Ni@SiO_2: Active for partial oxidation of methane with tunable H_2/CO ratio显示文摘This study demonstrated that a Ru-Ni bimetallic core-shell catalyst(0.6%Ru-Ni)@Si O_2with a proper surface Ru concentration is superior in achieving better catalytic activity and tunable H_2/CO ratio at a comparatively lower reaction temperature(700°C).Compared to the impregnation method,the hydrothermal approach leads to a highly uniform Ru distribution throughout the core particles.Uniform Ru distribution would result in a proper surface Ru concentration as well as more direct Ru-Ni interaction,accounting for better catalyst performance.Enriched surface Ru species hinders surface carbon deposition,but also declines overall activity and H_2/CO ratio,meanwhile likely enhances Ni oxidation to certain degree under the applied reaction conditions.Over the current(m%Ru-Ni)@Si O_2catalyst,the formation of fibrous carbon species is suppressed,which accounts for good stability of catalyst within a TOS of 10 h. | Yixuan Dou Yijun Pang Lingli Gu Yifan Ding Wu Jiang Xinzhen Feng Weijie Ji Chak-Tong Au | 2018 | Journal of Energy Chemistry2018,27,3: | 0 |