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| 1 | Therapeutic effect of artemisinin on lupus nephritis mice and its mechanisms显示文摘在这研究,我们由比较豺狼座肾炎(行) 之间的差别在豺狼座肾炎老鼠和它的机制上调查了 artemisinin (艺术) 的治疗学的效果在分子的生物学, immunohistochemistry,和组织病理学说给艺术和控制老鼠的老鼠。结果证明艺术能显著地减轻症状,减少尿 protein/24 h 的水平,并且减轻病理学的肾的损害。在在 NF-Bp65 蛋白质的表示的四个组之中的差别,原子 factor-B ( NF-B )活动,并且在肾的织物转变生长 factor-1 ( TGF-1 ) mRNA 的表达式建议那个艺术罐头降低肿瘤坏死因素的浆液层次--(TNF-)并且 interleukin-6 ( IL-6 )并且在行鼠标的肾的纸巾禁止 NF-Bp65 蛋白质和 NF-B 和 TGF-1 mRNA 的表达式。这些结果证明使用艺术对待行老鼠可靠、有效,并且它的治疗学的机制应该仔细与艺术能显然减少的事实有关是 TNF-6 和 IL-6 和下面调整的浆液层次在肾的纸巾的 NF-Bp65 蛋白质和 NF-B 和 TGF-1 mRNA 的表示。 | Xili Wu Wanggang Zhang Xingmin Shi Peng An Wansen Sun Zhu Wang | 2010 | Acta Biochimica et Biophysica Sinica2010,42,12: | 17 |
| 2 | Effects of emodin on the proliferation of the glomerular mesangial cell and correlative cytokines in rats显示文摘客观: 在老鼠在房间增长和 glomerular mesangial 的关联词 cytokines 分泌物上调查 emodin (EMD ) 的效果。方法: 房间增长和 IL-6 上的 EMD 的效果, TGF- β在老鼠的 glomerular mesangial 的 1 分泌物被观察。房间增长被 MTT 方法测量。IL-6 和 TGF- β 1 分泌物与 ELISA 被检测。结果: EMD 能禁止房间增长和下面调整 IL-6 和 TGF- β glomerular mesangial 的 1 分泌物,作为与在老鼠的模型组相比(P < 0.05 ) 。结论: EMD 能显著地禁止房间增长,并且减少细胞外的矩阵(ECM ) 的创造,这显示它能在 glomerular 的缓和和预防起一个重要作用硬化。机制可以是 EMD 能减少 IL-6 和 TGF- β在老鼠的 glomerular mesangial 房间的 1 分泌物。 | Xili Wu Wanggang Zhang Wansen Sun Chenglin Qiao | 2007 | Journal of Nanjing Medical University2007,21,5: | 5 |
| 3 | Li2FeSiO4/C hollow nanospheres as cathode materials for lithium-ion batteries显示文摘Undoubtedly, it is imperative to figure out two stubborn issues concerning low electronic conductivity and sluggish lithium ion diffusion to promote the practical application of Li2FeSiO4 materials in lithium-ion battery (LIB) cathode. Herein, we report an innovative and simple strategy that combines a hydrothermal process with subsequent annealing to synthesize highly uniform Li2FeSiO/C hollow nanospheres. During the hydrothermal process, polystyrenen anospheres are employed not only as the template but also, more tactfully, as carb on source to form amorphous carbon layers, which will function to enhance the electronic conductivity and restrict particle aggregations. The use of the LIB Li2FeSiO4/C hollow nano spheres as a LIB cathode delivers a desired stable capacity at each rate stage, and eve n at a high rate of 10 C, the hollow nano sphere cathode can prese nt a specific discharge capacity as high as 50.5 mAh·g^-1. After 100 cycles, the capacity rete ntions at 1 and 10 C remain as high as 93% and 72%, respectively. The superior electrochemical performance is believed to be related to special architectures of the Li2FeSiO4/C hollow nano sphere cathode. | Shuiyun Shen Yao Zhang Guanghua Wei Wansen Zhang Xiaohui Yan Guofeng Xia Aiming Wu Changchun Ke Junliang Zhang | 2019 | Nano Research2019,12,2: | 3 |
| 4 | Rnenium sulfide nanotubes显示文摘 | Brorson M Wansen T Jacobsen H J C | 2002 | J Am Chem Soc2002,124,11: | 1 |
| 5 | Constructing heterostructures of ZIF-67 derived C,N doped Co_(2)P and Ti_(2)VC_(2)T_(x)MXene for enhanced OER显示文摘Oxygen evolution reaction(OER)is central to technologies such as electrochemical water splitting,and developing efficient and low-cost non-precious metal electrocatalysts for OER is of great significance to reducing cell voltage and developing hydrogen production by electrochemical water splitting.Herein,we prepared a carbon,nitrogen co-doped porous Co_(2)P derived from the metal-organic framework(ZIF-67),which is anchored on bimetallic MXene nanosheets(named MX@MOF-Co_(2)P).It was used as the OER catalyst and exhibited great electrocatalytic performance with very small overpotentials(246 mV at 10 mA^(-2)and 407 mV at 200 mA cm^(-2))as well as ultralow Tafel slope(28.18 mV dec^(-1)).Combining charac-terizations and theoretical calculations,it was found that the remarkable performance was from follows:the obtained MX@MOF-Co_(2)P inherited the porous structure of the pristine MOF with a large number of open active sites;carbon and nitrogen doping also modulated the electronic structure of the active center;the synergistic effect between cobalt phosphide and MXenes booted the electronic transfer.This work represents a promising strategy for the development of non-precious metal catalysts derived from metal-organic frameworks to achieve efficient energy conversion. | Jinzhou Li Chao Chen Zepeng Lv Wansen Ma Meng Wang Qian Li Jie Dang | 2023 | Journal of Materials Science & Technology2023,,14: | 1 |
| 6 | Effects of asiaticoside on levels of podocyte cytoskeletal proteins and renal slit diaphragm proteins in adriamycin-induced rat nephropathy显示文摘 | Zhu Wang Juntian Liu Wansen Sun | 2013 | Life Sciences2013,,: | 1 |
| 7 | Effects of asiaticoside on levels of podocyte cytoskeletal proteins and renal slit diaphragm proteins in adriamycin-induced rat nephropathy显示文摘 | Zhu Wang Juntian Liu Wansen Sun | 2013 | Life Sciences2013,,: | 1 |
| 8 | The Relationship between Recent Stressful Life Events, Personality Traits, Perceived Family Functioning and Internet Addiction among College Students显示文摘 | Wansen Yan Yonghui Li Nan Sui | 2014 | Stress Health2014,,1: | 1 |
| 9 | Interfacial electronic coupling of V-doped Co_(2)P with high-entropy MXene reduces kinetic energy barrier for efficient overall water splitting显示文摘Developing efficient,low-cost non-noble metal-based bifunctional catalysts to achieve excellent hydrogen evolution reaction(HER)and oxygen evolution reaction(OER)kinetics in alkaline media is challenging but very meaningful.However,improving the electronic structure of the catalyst to optimize the adsorption of intermediates and reduce the reaction energy barrier is the key to improve the reaction efficiency.Herein,a V-doped Co_(2)P coupled with high-entropy MXene heterostructure catalyst(V-Co_(2)P@HE)was prepared by a two-step electrodeposition and controlled phosphorization process.The analyses of X-ray absorption spectroscopy,X-ray photoelectron spectroscopy and theoretical calculations jointly show that the introduction of V and the strong electron coupling between the two components optimize the adsorption energy of water molecules and reaction intermediates.Benefiting from the abundant active sites and optimizing intermediate adsorption energy and heterogeneous interface electronic structure,V-Co_(2)P@HE has excellent HER and OER activity and long-term stability under alkaline condition.In particular,when assembled as cathode and anode,the bifunctional V-Co_(2)P@HE catalyst can drive a current density of 10 mA cm^(-2)with only 1.53 V.This work provides new strategies for the application of highentropy MXene and the design of novel non-noble metal-based bifunctional electrolytic water catalysts. | Wansen Ma Zeming Qiu Jinzhou Li Liwen Hu Qian Li Xuewei Lv Jie Dang | 2023 | Journal of Energy Chemistry2023,,10: | 0 |