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4篇 您的检索式:作者名="Xiangping Qu"
    题名 作者 年代 出处 被引量
1Brief Study on Application of New Indoor Lawn in Northern Areas of China显示文摘At present,the development and function research of lawn has become diversified,and the application of lawn has been extended from outdoor to indoor environment. The indoor lawn has functions of absorbing toxic and harmful gases,releasing oxygen,increasing air humidity and regulating temperature. It can effectively improve the indoor air quality of northern areas,purify and beautify the home environment.This paper elaborated the purpose and significance of the application of new indoor lawn,the establishment methods of the indoor lawn,and the application design of the indoor lawn landscape.Yinghua LUO Shanmin QU Xiangping LIU Chenghao JIN 2019Asian Agricultural Research2019,11,4:1
2Activation of extracellular signal-regulated kinase mediates bombesin-induced mitogenic responses in prostate cancer cells显示文摘Dongmei Xiao Xiangping Qu H Christian Weber 2003Cellular Signalling2003,15,10:1
3CTNNAL1 deficiency suppresses CFTR expression in HDM-induced asthma mouse model through ROCK1-CAL signaling pathway显示文摘The downregulation of adhesion molecule catenin alpha-like 1(CTNNAL1)in airway epithelial cells of asthma patients and house dust mite(HDM)-induced asthma animal models was illustrated in our previous study.It is assumed to contribute to airway inflammation and mucus hypersecretion.In this work,we further explore the underlying mechanism of CTNNAL1 in asthma.CTNNAL1-silenced female mice exhibit a decreased level of cystic fibrosis transmembrane conductance regulator(CFTR),a cAMP-activated and ATP-gated Cl–channel that correlates with mucus hypersecretion.Our previous study demonstrated that ROCK1 expression decreases but ROCK2 expression increases in the lungs of a CTNNAL1-silenced mouse model.Inhibition of ROCK1 leads to a reduction in CFTR expression in CTNNAL1-overexpressing and CTNNAL1-silenced human bronchial epithelial(HBE)cells.It has been reported that ROCK1 is a downstream target of RhoA and that activation of RhoA increases CFTR expression after CTNNAL1 deficiency in vitro and in vivo.The above results indicate that CTNNAL1 regulates CFTR expression through the ROCK1 pathway.In addition,the expression of CFTR-associated ligand(CAL)is increased after CTNNAL1 silencing,and immunoprecipitation results confirm the interaction between ROCK1 and CAL.Inhibition of CAL does not influence ROCK1 expression but increases CFTR expression in CTNNAL1-silenced HBE cells.These data suggest that CTNNAL1 deficiency decreases CFTR expression in the HDM-induced asthma mouse model through the ROCK1-CAL signaling pathway.Di Wu Jiahui Zhu Fang Yang Riwang Li Lexin Liu Dahai Liu Chi Liu Xiangping Qu Huijun Liu Ming Ji Xiaoqun Qin Lan Hua Yang Xiang 2023Acta Biochimica et Biophysica Sinica2023,55,10:0
4Plant Community Survey of National Photovoltaic and Energy Storage Empirical Experiment Platform(Daqing Base)显示文摘[Objectives] This study was conducted to explore the characteristics of natural grassland plant communities in the National Photovoltaic and Energy Storage Empirical Experiment Platform(Daqing Base), so as to provide data reference for local grassland resources. [Methods] June to July, 2022, standard plot site investigation was carried out to investigate vegetation species, relative height, relative coverage, relative abundance, relative frequency and dominance in the National Photovoltaic and Energy Storage Empirical Experiment Platform in Datong District, Daqing City of Heilongjiang Province, and to analyze plant community structures in the photovoltaic DC field. [Results] The photovoltaic DC field contained 22 species of plants, of which Suaeda salsa was the common species. The dominant species in photovoltaic DC field were Leymus chinensis, Eleocharis intersita, Carex duriuscula and Carex rugurosa. [Conclusions] The dominant vegetation types were Poaceae and Cyperaceae in the natural grassland of the National Photovoltaic and Energy Storage Empirical Experiment Platform(Daqing Base).Yang WANG Naipeng REN Siyu LI Xiangping LIU Shanmin QU 2023Agricultural Biotechnology2023,12,3:0
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