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| 1 | High current density M-type cathodes for vacuum electron devices显示文摘 | Ji Li Zhiqiang Yu Wensheng Shao Ke Zhang Yujuan Gao Haiqing Yuan Hui Wang Kaizhi Huang Qilue Chen Suqiu Yan Shaolun Cai | 2005 | Applied Surface Science2005,,1: | 1 |
| 2 | High prevalence of a novel porcine bocavirus in weanling piglets with respiratory tract symptoms in China 显示文摘 | Zhai Shaolun Yue Cheng Wei Zuzhang | 2010 | Arch Virol2010,155,: | 1 |
| 3 | A decision support system for luggage typesetting显示文摘 | Lee Shaolun | 2008 | Expert Systems with Applications2008,35,4: | 1 |
| 4 | Cyclically thermomechanical plasticity analysis for a broken fiber in ductile matrix composites using shear lag model 显示文摘 | JUNQIAN ZHANG JIAN WU SHAOLUN LIU | 2002 | Composites Science and Technology2002,62,: | 1 |
| 5 | Message from the Managing Editor显示文摘Once again Christmas is coming to us and anotheryear is about to depart. On behalf of all the members ofthe Editorial Office, I'd like to express our appreciationsto authors, readers and others concerned for EcologicalEconomy for your great support and encouragement. Withthe coming of the New Year, please accept our sinceregreetings and best wishes. In the past year, whether youread and contributed or made criticism and proposals forus, we are grateful for your active participation. Specially,I would like to take this opportunity to thank interna-tional friends: | Zeng Shaolun | 2007 | Ecological Economy2007,3,1: | 0 |
| 6 | Eco-economic research and construction of harmonious society in China:a survey of the 7^(th)Biennial Conference of Chinese Ecological Economics Society,2006显示文摘The 7th Biennial Conference of Chinese Ecological Economics Society (CEES) was held from 5th to 7th, Nov.2006 in Qingdao University. The paper summarizes the major viewpoint presented at the conference: eco-economicresearch and construction of a harmonious society in China. The conference put forward that it is an objectivity andinevitability for human being to enter the harmonious society, that eco-economics is one of the theoretical bases for theconstruction of the harmonious society, and that the research of eco-economics in China should reflect new contentsdeveloped in the process of modernization in China and make proper contributions to the construction of the harmonioussociety. | Zeng Shaolun | 2007 | Ecological Economy2007,3,1: | 0 |
| 7 | Membrane vesicles derived from Streptococcus suis serotype 2 induce cell pyroptosis in endothelial cells via the NLRP3/Caspase-1/GSDMD pathway显示文摘Streptococcus suis serotype 2(S.suis 2)is a zoonotic pathogen that clinically causes severe swine and human infections(such as meningitis,endocarditis,and septicemia).In order to cause widespread diseases in different organs,S.suis 2 must colonize the host,break the blood barrier,and cause exaggerated inflammation.In the last few years,most studies have focused on a single virulence factor and its influences on the host.Membrane vesicles(MVs)can be actively secreted into the extracellular environment contributing to bacteria-host interactions.Gram-negative bacteria-derived outer membrane vesicles(OMVs)were recently shown to activate host Caspase-11-mediated non-canonical inflammasome pathway via deliverance of OMV-bound lipopolysaccharide(LPS),causing host cell pyroptosis.However,little is known about the effect of the MVs from S.suis 2(Gram-positive bacteria without LPS)on cell pyroptosis.Thus,we investigated the molecular mechanism by which S.suis 2 MVs participate in endothelial cell pyroptosis.In this study,we used proteomics,electron scanning microscopy,fluorescence microscope,Western blotting,and bioassays,to investigate the MVs secreted by S.suis 2.First,we demonstrated that S.suis 2 secreted MVs with an average diameter of 72.04 nm,and 200 proteins in MVs were identified.Then,we showed that MVs were transported to cells via mainly dynamin-dependent endocytosis.The S.suis 2 MVs activated NLRP3/Caspase-1/GSDMD canonical inflammasome signaling pathway,resulting in cell pyroptosis,but it did not activate the Caspase-4/-5 pathway.More importantly,endothelial cells produce large amounts of reactive oxygen species(ROS)and lost their mitochondrial membrane potential under induction by S.suis 2 MVs.The results in this study suggest for the first time that MVs from S.suis 2 were internalized by endothelial cells via mainly dynamin-dependent endocytosis and might promote NLRP3/Caspase-1/GSDMD pathway by mitochondrial damage,which produced mtDNA and ROS under induction,leading to the pyroptosis of endothelial cells. | Keda Shi Yan Li Minsheng Xu Kunli Zhang Hongchao Gou Chunling Li Shaolun Zhai | 2024 | Journal of Integrative Agriculture2024,23,4: | 0 |
| 8 | Inverse-opal structured TiO_(2) regulating electrodeposition behavior to enable stable lithium metal electrodes显示文摘Lithium metal anode is almost the ultimate choice for high-energy density rechargeable batteries, but its uneven electrochemical dissolution-deposition characteristics lead to poor cycle stability and lithium dendrites safety problems. The fundamental solution to the problems is to interfere electrodeposition process of lithium metal so that it can be carried out reversibly and stably. In this work, an inverse-opal structured TiO2membrane with a thickness of only ~1 μm is designed to regulate the electrodeposition behavior of lithium metal, in which the ordered channels homogenize mass transfer process, the anatase TiO_(2)walls of the ion channels reduce desolvation barrier of solvated lithium-ions, and the spherical cavities with a diameter of ~300 nm confine migration of the adsorbed lithium atoms during electrocrystallization to diminish overpotential of lithium. These systematic effects cover and essentially change the whole process of electrodeposition of lithium metal and eliminate the possibility of lithium dendrite formation. The as-obtained lithium metal electrode delivers a Coulombic efficiency of 99.86% in the 100th cycle, and maintains a low deposition overpotential of 0.01 V for 800 h. | Xuewen Wu Shaolun Cui Minfei Fei Sheng Liu Xueping Gao Guoran Li | 2023 | Green Energy & Environment2023,8,6: | 0 |