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Xianjin Tang

Biographic Data

ID7278532
NAMEXianjin Tang
GIVEN NAMESXianjin
FAMILY NAMETang
SIGNATURETANG X
AFFILIATIONSYunnan University
ORCID0000-0002-7515-2047
VERIFIEDYes
TOTAL WORKS4
TOTAL CITATIONS0
AUTHOR COUNT4
EDITOR COUNT0
FIRST PUBLICATION YEAR2014
LATEST PUBLICATION YEAR2024
H-INDEX0
  • Network pharmacology combined with experimental validation reveals the mechanism of action of cangerzisan on allergic rhinitis

    Open Access•Feifan Liu, Yuanmei Bai et al.•ARTICLE•Journal of Ethnopharmacology•2024

    The therapeutic mechanism of CEZS against AR involves rectifying TH1/TH2 immune imbalance and upregulating inflammatory and immune factors through modulating key proteins expression within TLR4 pathway. This targeted regulation effectively impedes AR progression

  • Network pharmacology combined with experimental validation reveals the mechanism of action of erpixing granules on functional dyspepsia

    Open Access•Yuanmei Bai, Feifan Liu et al.•ARTICLE•Journal of Ethnopharmacology•2024

    Suggesting EPX's anti-FD effect may involve the regulation of the SCF/C-kit signalling pathway and activation of downstream PI3K/AKT signalling pathway, thereby promoting gastrointestinal motility and improving FD symptoms

  • Arsenic biomineralization by iron oxidizing strain ( Ochrobactrum sp.) isolated from a paddy soil in Hunan, China

    Open Access•Xinghua Luo, Xingxing Jiang et al.•ARTICLE•Land Degradation and Development•2021

    The biogeochemistry of iron (Fe) could affect arsenic (As) fate and change its availability. Fe(II) oxidation mediated by Fe oxidizing bacteria (FeOB) has the potential for As contamination remediation due to the formation of biogenic minerals. However, microbial Fe(II) oxidation coupled with the immobilization of As and the effect of FeOB on As remediation in soils has not been thoroughly investigated. In this study, a FeOB was isolated from a p…

  • Influence of Heavy Metals and PCBs Pollution on the Enzyme Activity and Microbial Community of Paddy Soils around an E-Waste Recycling Workshop

    Open Access•Xianjin Tang, Muhammad Laeeq ur Rehman Hashmi et al.•ARTICLE•International Journal of…•2014

    Due to the emerging environmental issues related to e-waste there is concern about the quality of paddy soils near e-waste workshops. The levels of heavy metals and PCBs and their influence on the enzyme activity and microbial community of paddy soils obtained from the immediate vicinity of an e-waste workshop were investigated in the present study. The results indicated that the heavy metal and PCB pollution did not differ significantly with an …

No prominent works on this page.

  • Influence of Heavy Metals and PCBs Pollution on the Enzyme Activity and Microbial Community of Paddy Soils around an E-Waste Recycling Workshop

    Open Access•Xianjin Tang, Muhammad Laeeq ur Rehman Hashmi et al.•ARTICLE•International Journal of…•2014

    Due to the emerging environmental issues related to e-waste there is concern about the quality of paddy soils near e-waste workshops. The levels of heavy metals and PCBs and their influence on the enzyme activity and microbial community of paddy soils obtained from the immediate vicinity of an e-waste workshop were investigated in the present study. The results indicated that the heavy metal and PCB pollution did not differ significantly with an …

  • Arsenic biomineralization by iron oxidizing strain ( Ochrobactrum sp.) isolated from a paddy soil in Hunan, China

    Open Access•Xinghua Luo, Xingxing Jiang et al.•ARTICLE•Land Degradation and Development•2021

    The biogeochemistry of iron (Fe) could affect arsenic (As) fate and change its availability. Fe(II) oxidation mediated by Fe oxidizing bacteria (FeOB) has the potential for As contamination remediation due to the formation of biogenic minerals. However, microbial Fe(II) oxidation coupled with the immobilization of As and the effect of FeOB on As remediation in soils has not been thoroughly investigated. In this study, a FeOB was isolated from a p…

  • Network pharmacology combined with experimental validation reveals the mechanism of action of cangerzisan on allergic rhinitis

    Open Access•Feifan Liu, Yuanmei Bai et al.•ARTICLE•Journal of Ethnopharmacology•2024

    The therapeutic mechanism of CEZS against AR involves rectifying TH1/TH2 immune imbalance and upregulating inflammatory and immune factors through modulating key proteins expression within TLR4 pathway. This targeted regulation effectively impedes AR progression

  • Network pharmacology combined with experimental validation reveals the mechanism of action of erpixing granules on functional dyspepsia

    Open Access•Yuanmei Bai, Feifan Liu et al.•ARTICLE•Journal of Ethnopharmacology•2024

    Suggesting EPX's anti-FD effect may involve the regulation of the SCF/C-kit signalling pathway and activation of downstream PI3K/AKT signalling pathway, thereby promoting gastrointestinal motility and improving FD symptoms

Biology (3 works) · Chemistry (3 works) · Action (physics (2 works) · Bacteria (2 works) · Biochemistry (2 works) · Contamination (2 works) · Ecology (2 works) · Environmental Chemistry (2 works) · Mechanism (biology (2 works) · Mechanism of Action (2 works)

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