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      • KCI등재

        Rice OsAS2 Gene, a Member of LOB Domain Family, Functions in the Regulation of Shoot Differentiation and Leaf Development

        Yan Ma,Fang Wang,Jing Guo,Xian Sheng Zhang 한국식물학회 2009 Journal of Plant Biology Vol.52 No.5

        LATERALORGAN BOUNDARIES DOMAIN (LBD) genes, a novel plant-specific family, play specific roles in plant development. Although function of ASYMMETRIC LEAVES2 (AS2), a LBD gene, was extensively studied in Arabidopsis of dicots, little is known on the role of its ortholog in rice of monocots. In this study, a LBD gene that shares higher homology with Arabidopsis AS2 gene was identified in rice and it was designated as OsAS2. Its transcripts were detected throughout predicted leaf primordia in shoot apical meristem (SAM), leaf primordia, and young leaves. Overexpression of the OsAS2 gene inhibited shoot differentiation, promoted cell division, and delayed cell differentiation in rice calli. Transgenic plants with OsAS2 gene showed the aberrant twisted leaves, which lack auricle, and leaf structure was abnormal. Furthermore, a few genes involved in shoot meristem development were upregulated in transgenic plants. Our results suggest that proper expression of the OsAS2 gene is required for shoot differentiation and leaf development in rice.

      • SCIESCOPUSKCI등재

        Control Strategy and Characteristic Analysis of Hybrid Active Power Filters with the Resonant Impedance Principle

        Fang, Lu,Xu, Xian-Yong,Luo, An,Li, Yan,Tu, Chun-Ming,Fang, Hou-Hui The Korean Institute of Power Electronics 2012 JOURNAL OF POWER ELECTRONICS Vol.12 No.6

        A new kind of resonant impedance type hybrid active filter (RITHAF) is proposed for dynamic harmonic current suppression and high capacity reactive compensation in medium and high voltage systems. This paper analyzed the different performance of the RITHAF when the active part of the RITHAF is controlled as a current source and as a voltage source, respectively. The harmonic suppression function is defined in this paper. The influences of the changes caused by the grid impedance and the detuning of the passive power filter on the compensating characteristics of the RITHAF are studied by analyzing the suppression function. Simulation and industrial application results show that the RITHAF has excellent performances in harmonic suppression and reactive compensation, which is suitable for medium and high voltage systems.

      • KCI등재

        Polarity-enhanced Gas-Sensing Performance of Au-Loaded ZnO Nanospindles Synthesized via Precipitation and Microwave Irradiation

        Yan Li,Tan Lv,Fang-Xian Zhao,Xiao-xue Lian,Yun-ling Zou,Qiong Wang 대한금속·재료학회 2016 ELECTRONIC MATERIALS LETTERS Vol.12 No.3

        Loading noble metal and exploring suitable morphology to achieveexcellent gas-sensing performance is very crucial for the fabrication ofgas sensors. We have successfully synthesized Au-loaded ZnO (Au/ZnO) nanospindles (NSs) through a really facile procedure involving aprecipitation and subsequent microwave irradiation. The as-preparedproducts have been characterized by X-ray diffraction (XRD), scanningelectron microscope (SEM). The formation and gas-sensing mechanismof Au/ZnO NSs were discussed. The SEM micrographs revealed aninteresting morphological evolution of the Au/ZnO NSs with Auloadingcontent ranging from 0 at. % to 7 at. %. The nanostructures wereemployed for gas-sensing measurement toward various gases. Itindicated that the Au/ZnO NSs based sensor showed a highly enhancedresponse (226.81) to 400 ppm acetone gas at a relatively low workingtemperature (270°C), and exhibited a fast response (1 s) and recoveryspeed (10 s). The highly enhanced acetone gas sensitivity of Au/ZnONSs based sensor could be attributed to its enhanced polarity owing tothe peculiar morphology, Schottcky barriers, as well as catalytic effect ofAu NPs.

      • KCI등재

        Modeling and Simulation of the Magnetic Method for High Voltage Direct Current Inspection Robot

        Xian-jin Xu,Cheng-hui Liu,Yu Yan,Hao-da Chen,Lei Fang,Yun-long Wang,Long-hui Wu 한국자기학회 2018 Journal of Magnetics Vol.23 No.3

        In order to solve the slipping problem of a two-arm-wheel combined inspection robot, a maglev system based on the magnetic field of a high voltage direct current (HVDC) is proposed. The magnetic system comprises of two parts: a magnetic levitation system and a magnetic drive system. The levitation component overcomes the gravity of the robot by the Ampere force generated by current-carrying coils in the magnetic field of HVDC. The drive component utilizes the Ampere force generated by current-carrying coils in the magnetic field of HVDC as the driving force. Simulation results of the model are compared with the calculated values. The results show that the magnetic levitation method and the magnetic drive method are theoretically feasible, and the model is accurate and effective, which is of great practical significance to the physical realization of the inspection robot.

      • KCI등재

        Control Strategy and Characteristic Analysis of Hybrid Active Power Filters with the Resonant Impedance Principle

        Lu Fang,Xian-yong Xu,An Luo,Yan Li,Chun-ming Tu,Hou-hui Fang 전력전자학회 2012 JOURNAL OF POWER ELECTRONICS Vol.12 No.6

        A new kind of resonant impedance type hybrid active filter (RITHAF) is proposed for dynamic harmonic current suppression and high capacity reactive compensation in medium and high voltage systems. This paper analyzed the different performance of the RITHAF when the active part of the RITHAF is controlled as a current source and as a voltage source, respectively. The harmonic suppression function is defined in this paper. The influences of the changes caused by the grid impedance and the detuning of the passive power filter on the compensating characteristics of the RITHAF are studied by analyzing the suppression function. Simulation and industrial application results show that the RITHAF has excellent performances in harmonic suppression and reactive compensation, which is suitable for medium and high voltage systems.

      • Study on the pharmacological effects of Asini Corii Colla

        Rongshuai Dua,Xian Fang,Yan Zhang,Dongliang Wang 강원대학교 산림과학연구소 2019 강원대학교 산림과학연구소 학술대회 Vol.2019 No.09

        In this paper, 1H-NMR metabolomics technique was used to hydrolyse Asini Corii Colla acid from five different manufacturers, such as Asini Corii Colla, and the obtained 1H-NMR spectra were identified by chemical composition, and combined with relevant software for multivariate statistical analysis. Find the difference in chemical composition. It was found that 17 chemical components were identified from the Asini Corii Colla 1H-NMR spectrum; a comparison was made between Asini Corii Colla produced by A, B, C, and D manufacturers and Asini Corii Colla produced by Dong'e Ejiao manufacturer. The corresponding differential components mainly include isoleucine, hydroxyproline, arginine, leucine, phenylalanine, valine, lysine and clavulanic acid. The results showed that the nutritional composition of Asini Corii Colla products was higher, and 1H-NMR method has a good application prospect for the composition pharmacology and quality analysis of Asini Corii Colla.

      • KCI등재

        Determination of Protein, Fat, Starch, and Amino Acids in Foxtail Millet [Setaria italica (L.) Beauv.] by Fourier Transform Near-Infrared Reflectance Spectroscopy

        Xiu-Shi Yang,Li-Li Wang,Xian-Rong Zhou,Shaomin Shuang,Zhi-Hua Zhu,Nan Li,Yan Li,Fang Liu,San-Cai Liu,Ping Lu,Guixing Ren,Chuan Dong 한국식품과학회 2013 Food Science and Biotechnology Vol.22 No.6

        Quantitative detection of protein, fat, starch,and amino acids in foxtail millet using Fourier transformnear-infrared spectroscopy (NIRS) was investigated. Foxtail millet samples (n=259) were analyzed using NIRS. Spectral data were linearized with data from chemicalanalyses. Calibration models were established using apartial least-squares (PLS) algorithm with cross-validation. Optimized models were tested using external validation setsamples with coefficients of determination in the externalvalidation (R2val) of >0.90. Residual predictive deviation(RPD) values were nearly equal to or >2.5 for crudeprotein, alanine, aspartic acid, glutamic acid, isoleucine,leucine, and serine. However, for glycine, histidine,phenylalanine, proline, threonine, tyrosine, and valine, theR2val values were >0.83 and RPD values were nearly equalto or >2.0. For crude fat, total starch, arginine, and lysine,the R2val values were >0.70 and RPD values were >1.5. NIRS is a rapid determination tool for foxtail milletbreeding, and for quality control.

      • KCI등재

        Schisandrin B Improves the Hypothermic Preservation of Celsior Solution in Human Umbilical Cord Mesenchymal Stem Cells

        Zhang Ying,Wang Peng,Jin Mei-xian,Zhou Ying-qi,Ye Liang,Zhu Xiao-juan,Li Hui-fang,Zhou Ming,Li Yang,Li Shao,Liang Kang-yan,Wang Yi,Gao Yi,Pan Ming-xin,Zhou Shu-qin,Peng Qing 한국조직공학과 재생의학회 2023 조직공학과 재생의학 Vol.20 No.3

        BACKGROUND: Human umbilical cord mesenchymal stem cells (hUCMSCs) have emerged as promising therapy for immune and inflammatory diseases. However, how to maintain the activity and unique properties during cold storage and transportation is one of the key factors affecting the therapeutic efficiency of hUCMSCs. Schisandrin B (SchB) has many functions in cell protection as a natural medicine. In this study, we investigated the protective effects of SchB on the hypothermic preservation of hUCMSCs. METHODS: hUCMSCs were isolated from Wharton’s jelly. Subsequently, hUCMSCs were exposed to cold storage (4 C) and 24-h re-warming. After that, cells viability, surface markers, immunomodulatory effects, reactive oxygen species (ROS), mitochondrial integrity, apoptosis-related and antioxidant proteins expression level were evaluated. RESULTS: SchB significantly alleviated the cells injury and maintained unique properties such as differentiation potential, level of surface markers and immunomodulatory effects of hUCMSCs. The protective effects of SchB on hUCMSCs after hypothermic storage seemed associated with its inhibition of apoptosis and the anti-oxidative stress effect mediated by nuclear factor erythroid 2–related factor 2 signaling. CONCLUSION: These results demonstrate SchB could be used as an agent for hypothermic preservation of hUCMSCs.

      • KCI등재

        Atorvastatin Pretreatment Ameliorates Mesenchymal Stem Cell Migration through miR-146a/CXCR4 Signaling

        Li Na,Guo Xue-Yuan,Zhou Jian,Yan Xian-Liang,Yu Fang-Fang 한국조직공학과 재생의학회 2021 조직공학과 재생의학 Vol.18 No.5

        BACKGROUND: We previously found that atorvastatin (ATV) enhanced mesenchymal stem cells (MSCs) migration, by a yet unknown mechanism. CXC chemokine receptor 4 (CXCR4) is critical to cell migration and regulated by microRNA-146a (miR-146a). Therefore, this study aimed to assess whether ATV ameliorates MSCs migration through miR-146a/CXCR4 signaling. METHODS: Expression of CXCR4 was evaluated by flow cytometry. Expression of miR-146a was examined by reverse transcription-quantitative polymerase chain reaction. A transwell system was used to assess the migration ability of MSCs. Recruitment of systematically delivered MSCs to the infarcted heart was evaluated in Sprague–Dawley rats with acute myocardial infarction (AMI). Mimics of miR-146a were used in vitro, and miR-146a overexpression lentivirus was used in vivo, to assess the role of miR-146a in the migration ability of MSCs. RESULTS: The results showed that ATV pretreatment in vitro upregulated CXCR4 and induced MSCs migration. In addition, flow cytometry demonstrated that miR-146a mimics suppressed CXCR4, and ATV pretreatment no longer ameliorated MSCs migration because of decreased CXCR4. In the AMI model, miR-146a-overexpressing MSCs increased infarct size and fibrosis. CONCLUSION: The miR-146a/CXCR4 signaling pathway contributes to MSCs migration and homing induced by ATV pretreatment. miR-146a may be a novel therapeutic target for stimulating MSCs migration to the ischemic tissue for improved repair.

      • Gate-tunable phase transitions in thin flakes of 1T-TaS2.

        Yu, Yijun,Yang, Fangyuan,Lu, Xiu Fang,Yan, Ya Jun,Cho, Yong-Heum,Ma, Liguo,Niu, Xiaohai,Kim, Sejoong,Son, Young-Woo,Feng, Donglai,Li, Shiyan,Cheong, Sang-Wook,Chen, Xian Hui,Zhang, Yuanbo Nature Pub. Group 2015 Nature nanotechnology Vol.10 No.3

        <P>The ability to tune material properties using gating by electric fields is at the heart of modern electronic technology. It is also a driving force behind recent advances in two-dimensional systems, such as the observation of gate electric-field-induced superconductivity and metal-insulator transitions. Here, we describe an ionic field-effect transistor (termed an iFET), in which gate-controlled Li ion intercalation modulates the material properties of layered crystals of 1T-TaS2. The strong charge doping induced by the tunable ion intercalation alters the energetics of various charge-ordered states in 1T-TaS2 and produces a series of phase transitions in thin-flake samples with reduced dimensionality. We find that the charge-density wave states in 1T-TaS2 collapse in the two-dimensional limit at critical thicknesses. Meanwhile, at low temperatures, the ionic gating induces multiple phase transitions from Mott-insulator to metal in 1T-TaS2 thin flakes, with five orders of magnitude modulation in resistance, and superconductivity emerges in a textured charge-density wave state induced by ionic gating. Our method of gate-controlled intercalation opens up possibilities in searching for novel states of matter in the extreme charge-carrier-concentration limit.</P>

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