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| 1 | Effects of intermedinl-53 on myocardial fibrosis显示文摘Intermedin (IMD ) 是 calcitonin/calcitonin 的一个成员基因相关的肽(CGRP ) 家庭并且类似或更多的有势力心血管的行动比 adrenomedullin (ADM ) 和任何另外的 CGRP。现在的工作的目的是在 vivo 并且在 vitro 在心脏的成纤维细胞纤维变性上学习 IMD1-53 的效果。心肌的梗塞模型被绑扎准备老鼠左前面的下降冠的动脉。在左室的间充质的骨胶原内容被天狼星红污点存取。心功能被血液动力学的变化探索。表示我和 III 打骨胶原, IMD1-53,受体修改活动的蛋白质(斜面) 1/2/3,和 calcitonin 在左室的像受体的受体(CRLR ) 被西方的污点分析检测。心脏的成纤维细胞(CFbs ) 纤维变性被与醛固酮(ALD ) 对待房间导致。在上层清液的 CFbs 增长和 hydroxyproline 内容被 3- 决定[4,5-dimehyl-2-thiazolyl ]-2,5-diphenyl-2H-tetrazolium 溴化物试金和连接酶的 immunosorbent 试金。心功能在心肌的梗塞模型老鼠被减少。类型的表示我和在在心肌的老鼠的 infarcted 地区的类型 III 骨胶原是比在假冒操作组的那些高级的。在左室的 IMD1-53,斜面,和 CRLR 也是起来调整的。在 vitro,实验证明 ALD 是 CFbs 激活的一个强大的激发器。IMD1-53 减少了以一种剂量依赖者方式的导致 ALD 的 CFbs 增长。而且, CGRP8-37 和 ADM22-52 显著地在导致 ALD 的心肌的房间纤维变性上堵住了 IMD1-53 的效果。IMD 能涉及心脏的纤维变性的发作。象 ADM 一样, IMD1-53 在 CFbs 上施加 antifibrotic 效果,它可能被 CRLR/RAMP 建筑群和 ADM 受体调停。 | Xiaoling Yang Huiping Zhang Yuexia Jia Lan Ni Guizhong Li Lihua Xue Yideng Jiang | 2013 | Acta Biochimica et Biophysica Sinica2013,45,2: | 4 |
| 2 | Five Independent Cases of Human Infection with Avian Influenza H5N6—Sichuan Province,China,2021显示文摘Summary What is known about this topic?The emerging H5Ny lineages of the avian influenza virus(AIV)with genomic reassortments have posed a continuous threat to animals and human beings.Since the first case of avian influenza A(H5N6)virus infection in 2014,the World Health Organization has reported a total of 38 cases by August 6,2021. | Chongkun Xiao Jianan Xu Yu Lan Zhongping Huang Lijun Zhou Yaxin Guo Xiyan Li Lei Yang George F.Gao Dayan Wang William J.Liu Xingyu Zhou Huiping Yang | 2021 | China CDC weekly2021,3,36: | 2 |
| 3 | Synthesis of a novel silica-supported dithiocarbamate adsorbent and its properties for the removal of heavy metal ions 显示文摘 | Bai Lan Hu Huiping Fu Weng | 2011 | Journal of Hazardous Materials2011,195,: | 1 |
| 4 | Solvent extraction of zinc from ammoniacal/ammonium chloride solutions by a sterically hindered β-diketone and its mixture with tri-n-octylphosphine oxide显示文摘 | Weng Fu Qiyuan Chen Qian Wu Huiping Hu Lan Bai | 2009 | Hydrometallurgy2009,,3: | 1 |
| 5 | Synthesis of a novel silica-supported dithiocarbamate adsorbent and its properties for the removal of heavy metal ions显示文摘 | Bai Lan Hu Huiping Fu Weng | 2011 | Journal of Hazardous Materials2011,195,: | 1 |
| 6 | The Effect of Magnesium on Accumulations of Primary Metabolites and Yield of Blumea balsamifera显示文摘[Objectives]This study was conducted to investigate the effects of magnesium on the yield of Blumea balsamifera(L.)DC.and the accumulation of primary metabolites that affect yield of the medicinal material.[Methods]The annual seedlings of B.balsamifera were selected as experimental materials.The treatment concentrations of magnesium(Mg)were set as 0,1.5,15 and 150 mg/ml supplied by MgSO4·7H2O.The yield of the medicinal material was measured dynamically.And the content of total sugar was determined by 3,5-dinitrosalicylic acid colorimetry;the content of crude protein was determined by the Kjeldahl method;the ash content was determined by the high-temperature burning method;the crude fat content was determined with a crude fat instrument;and the crude fiber content was determined by the acid-base washing and weighing method.[Results]Mg significantly increased the yield of B.balsamifera medicinal material,especially 15 mg/ml Mg.It was found that in September,October and November,1.5 mg/ml and 15 mg/ml Mg significantly increased the contents of primary metabolites including total sugar,ash,crude protein,crude fat and crude fiber,and 150 mg/ml of Mg increased the accumulation of total sugar,ash,crude protein and crude fiber to different degrees,but had certain inhibitory effect on the accumulation of crude fat.In December,the application of Mg inhibited the accumulation of total sugar,ash and crude protein to different degrees,but significantly promoted the accumulation of crude fat and fiber.[Conclusions]This study provides a theoretical basis for clarifying the effects of different concentrations of magnesium on plant growth. | Dan WANG Huiping LAN Yingbo ZHANG Xuan HU Xiaolu CHEN Yuxin PANG Fulai YU | 2020 | Agricultural Biotechnology2020,9,4: | 0 |