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Featured researches published by Wenying He.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2009

Molecular modeling and spectroscopic studies on binding of 2,6-bis[4-(4-amino-2-trifluoromethylphenoxy)benzoyl] pyridine to human serum albumin.

Wenying He; Hui-juan Chen; Fenling Sheng; Xiaojun Yao

BAFP (2,6-bis[4-(4-amino-2-trifluoromethylphenoxy)benzoyl] pyridine), a synthesized polyimide compound, was exploited for the first time to analyze its interaction with human serum albumin (HSA) by molecular modeling, fluorescence and Fourier transform infrared attenuated total reflection spectroscopy (FTIR ATR) with drug concentrations of 3.3 x 10(-6) to 3.0 x 10(-5) mol L(-1). Molecular docking was performed to reveal the possible binding mode. The results suggested that BAFP can strongly bind to human serum albumin (HSA) and the primary binding site of BAFP is located in site II of HSA, which is supported by the results from the competitive experiment. The binding constants for the interaction of BAFP with HSA have been evaluated from relevant fluorescence data at different temperatures (296, 303, 310 and 308 K). The alterations of the protein secondary structure in the presence of BAFP in aqueous solution were quantitatively calculated by the evidences from FTIR ATR spectroscopes. The binding process was exothermic and spontaneous, as indicated by the thermodynamic analyses, and the major part of the binding energy is hydrophobic interaction, which is also in good agreement with the results of molecule modeling study. The enthalpy change DeltaH(0), the free energy change DeltaG(0) and the entropy change DeltaS(0) of 296 K were calculated to be -7.75, -27.68 kJ mol(-1) and 67.33 J mol(-1) K(-1), respectively.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2015

Characterization of the binding of shikonin to human immunoglobulin using scanning electron microscope, molecular modeling and multi-spectroscopic methods.

Wenying He; Xinyu Ye; Xiaojun Yao; Xiuli Wu; Qiang Lin; Guolei Huang; Yingjie Hua; Yang Hui

Shikonin, one of the active components isolated from the root of Arnebia euchroma (Royle) Johnst, have anti-tumor, anti-bacterial and anti-inflammatory activities and has been used clinically in phlebitis and vascular purpura. In the present work, the interaction of human immunoglobulin (HIg) with shikonin has been investigated by using scanning electron microscope (SEM), Fourier transform infrared (FT-IR) spectroscopy, fluorescence polarization, synchronous and 3D fluorescence spectroscopy in combination with molecular modeling techniques under physiological conditions with drug concentrations of 3.33-36.67 μM. The results of SEM exhibited visually the special effect on aggregation behavior of the complex formed between HIg and shikonin. The fluorescence polarization values indicated that shikonin molecules were found in a motionally unrestricted environment introduced by HIg. Molecular docking showed the shikonin moiety bound to the hydrophobic cavity of HIg, and there are four hydrogen-bonding interactions between shikonin and the residues of protein. The synchronous and 3D fluorescence spectra confirmed that shikonin could quench the intrinsic fluorescence of HIg and has an effect on the microenvironment around HIg in aqueous solution. The changes in the secondary structure of HIg were estimated by qualitative and quantitative FT-IR spectroscopic analysis. The binding constants and thermodynamic parameters for shikonin-HIg systems were obtained under different temperatures (300 K, 310 K and 320 K). The above results revealed the binding mechanism of shikonin and HIg at the ultrastructure and molecular level.


Journal of Biochemical and Molecular Toxicology | 2017

The evaluation of acute toxicity, antimicrobial activity of 1-phenyl-5-p-tolyl-1H-1, 2, 3-triazole, and binding to human serum albumin

Hong-Ye Duan; Jianling Li; Luyong Wu; Huoming Shu; Yuxue Chen; Guohua Ding; Runcong Dong; Hongzong Si; Xia Zhong; Wenying He

1‐Phenyl‐5‐p‐tolyl‐1H‐1, 2, 3‐triazole (PPTA) was a synthesized compound. The result of acute toxicities to mice of PPTA by intragastric administration indicated that PPTA did not produce any significant acute toxic effect on Kunming strain mice. It exhibited the various potent inhibitory activities against two kinds of bananas pathogenic bacteria, black sigatoka and freckle, when compared with that of control drugs and the inhibitory rates were up to 64.14% and 43.46%, respectively, with the same concentration of 7.06 mM. The interaction of PPTA with human serum albumin (HSA) was studied using fluorescence polarization, absorption spectra, 3D fluorescence, and synchronous spectra in combination with quantum chemistry and molecular modeling. Multiple modes of interaction between PPTA and HSA were suggested to stabilize the PPTA–HSA complex, based on thermodynamic data and molecular modeling. Binding of PPTA to HSA induced perturbation in the microenvironment around HSA as well as secondary structural changes in the protein.


Journal of Photochemistry and Photobiology B-biology | 2016

The characterization of 1-(4-bromophenyl)-5-phenyl-1H-1,2,3-triazole on acute toxicity, antimicrobial activities, photophysical property, and binding to two globular proteins

He Liu; Qiang Lin; Yixian Xie; Huoming Shu; Bo Li; Ge Gao; Kai Xiao; Xiaojun Yao; Runcong Dong; Yanlin Liu; Mengxiong He; Luyong Wu; Zhenfan Sun; Wenying He

1-(4-Bromophenyl)-5-phenyl-1H-1,2,3-triazole (BPT) was a newly synthesized compound. The acute toxicities of BPT to mice by intragastric administration have been determined and the result indicates that the intragastric administration of BPT did not produce any significant toxic effect on Kunming strain mice. It is also evaluated for the antimicrobial activity of BPT against three kinds of plant mycoplasma, Fusarium Wilt (race 4), Colletotrichum gloeosporioides Penz. and Xanthomonas oryzae by different method in vitro. The compound exhibited distinct inhibitory activities against Fusarium Wilt (race 4) and Colletotrichum gloeosporioides Penz. by mycelium growth rate test and the values of EC50 were 29.34 and 12.53μg/mL respectively. And BPT had also the most potent inhibitory activities against Xanthomonas oryzae when compared with that of control drugs by the agar well diffusion method. In addition, the structural and photophysical properties of BPT including ionization energy, electron affinities, and theoretical spectrum was studied by quantum-chemical methods. Then the interaction of BPT with two kinds of globular proteins, human immunoglobulin (HIg) and bovine hemoglobin (BHg) was investigated by using UV-vis absorption spectra, synchronous fluorescence, 3D fluorescence spectra, and fluorescence titration in combination with molecular modeling. UV-vis absorption, 3D and synchronous fluorescence measurements show that BPT has influence on the microenvironment surrounding HIg or BHg in aqueous solution and the fluorescence experiments show that BPT quenches the fluorescence intensity of HIg or BHg through a static mechanism. The binding parameters including the binding constants, the number of binding site and average binding distance between BPT and HIg or BHg at different temperatures were calculated. The thermodynamic parameters suggest that the hydrophobic interaction is the predominant intermolecular forces in stabilizing the BPT-HIg or BPT-BHg complex. Molecular docking was performed to reveal that the BPT moiety binds to the hydrophobic cavity of HIg or BHg and they are in good agreement with the spectroscopic measurements.


Acta pharmaceutica Sinica | 2010

The characterization on the site of vindoline binding to human serum albumin

Wenying He; Zhenfan Sun; Xiaojun Yao; Guang-Ying Chen


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2018

The structural properties of 5-methyl-2-phenyl-2 H -1,2,3-triazole-4- carboxylic acid and chromogenic mechanism on its rhodamine B derivatives to Hg 2+ ions

Jianling Li; Guohua Ding; Yanyan Niu; Luyong Wu; Huajie Feng; Wenying He


Journal of Luminescence | 2018

The spectroscopic and computational investigation on interaction of a novel 1,2,3-triazole with three globular proteins

Jianling Li; Guohua Ding; Huajie Feng; Luyong Wu; Mengxiong He; Xiaojun Yao; Hongzong Si; Wenying He


Archive | 2016

Method for preparing 4-aryl-NH-1,2,3-triazole by aid of aldehyde and sodium bisulfite adduct

Yuxue Chen; Qinglan Huang; Wenying He; Luyong Wu; Xin-Ming Song


Archive | 2016

Method for determining content of main active components in Alpinia katsumadai by using ultraviolet spectrophotometry

Luyong Wu; Xiuli Wu; Yuxue Chen; Wenying He


Archive | 2016

Method for detecting differential protein produced by action between alpinetin or cardamonin and serum

Wenying He; Xiuli Wu; Yuxue Chen; Guohua Ding

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Luyong Wu

Hainan Normal University

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Guohua Ding

Hainan Normal University

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Yuxue Chen

Hainan Normal University

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Jianling Li

Hainan Normal University

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Huajie Feng

Hainan Normal University

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Mengxiong He

Hainan Normal University

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Qiang Lin

Hainan Normal University

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Zhenfan Sun

Hainan Normal University

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