Objective:To analyze breast cancer bone metastasis related gene-CXCR4.Methods:This research screened breast cancer bone metastasis related genes by high-flux gene chip.Results:It was found that the expressions of 396 ...Objective:To analyze breast cancer bone metastasis related gene-CXCR4.Methods:This research screened breast cancer bone metastasis related genes by high-flux gene chip.Results:It was found that the expressions of 396 genes were different including 165 up-regulations and 231 down-regulations.The expression of chemokine receptor CXCR4 was obviously upregulated in the tissue with breast cancer bone metastasis.Compared with the tissue without hone metastasis,there was significant difference,which indicated that CXCR4 played a vital role in breast cancer bone metastasis.Conclusions:The hioinformatics analysis of CXCR4 can provide a certain basis for the occurrence and diagnosis of breast cancer bone metastasis,target gene therapy and evaluation of prognosis.展开更多
The fluorescence mechanism of HBT-HBZ is investigated in this work. A fluorescent probe is used to detect HClO content in living cells and tap water, and its structure after oxidation by HCl O(HBT-ClO) is discussed ba...The fluorescence mechanism of HBT-HBZ is investigated in this work. A fluorescent probe is used to detect HClO content in living cells and tap water, and its structure after oxidation by HCl O(HBT-ClO) is discussed based on the density functional theory(DFT) and time-dependent density functional theory(TDDFT). At the same time, the influence of the probe conformation and the proton transfer site within the excited state molecule on the fluorescence mechanism are revealed. Combined with infrared vibrational spectra and atoms-in-molecules theory, the strength of intramolecular hydrogen bonds in HBT-HBZ and HBT-ClO and their isomers are demonstrated qualitatively. The relationship between the strength of intramolecular hydrogen bonds and dipole moments is discussed. The potential energy curves demonstrate the feasibility of intramolecular proton transfer. The weak fluorescence phenomenon of HBT-HBZ in solution is quantitatively explained by analyzing the frontier molecular orbital and hole electron caused by charge separation. Moreover, when strong cyan fluorescence occurs in solution, the corresponding molecular structure should be HBT-ClO(T). The influence of the intramolecular hydrogen bond formation site on the molecule as a whole is also investigated by electrostatic potential analysis.展开更多
基金supported by the Projeet of International Science and Technology Cooperation of Henan Province(094300510014)
文摘Objective:To analyze breast cancer bone metastasis related gene-CXCR4.Methods:This research screened breast cancer bone metastasis related genes by high-flux gene chip.Results:It was found that the expressions of 396 genes were different including 165 up-regulations and 231 down-regulations.The expression of chemokine receptor CXCR4 was obviously upregulated in the tissue with breast cancer bone metastasis.Compared with the tissue without hone metastasis,there was significant difference,which indicated that CXCR4 played a vital role in breast cancer bone metastasis.Conclusions:The hioinformatics analysis of CXCR4 can provide a certain basis for the occurrence and diagnosis of breast cancer bone metastasis,target gene therapy and evaluation of prognosis.
基金Project supported by the Open Project of State Key Laboratory of Molecular Reaction Dynamics in Dalian Institute of Chemical Physics (DICP), Chinese Academy of Sciences。
文摘The fluorescence mechanism of HBT-HBZ is investigated in this work. A fluorescent probe is used to detect HClO content in living cells and tap water, and its structure after oxidation by HCl O(HBT-ClO) is discussed based on the density functional theory(DFT) and time-dependent density functional theory(TDDFT). At the same time, the influence of the probe conformation and the proton transfer site within the excited state molecule on the fluorescence mechanism are revealed. Combined with infrared vibrational spectra and atoms-in-molecules theory, the strength of intramolecular hydrogen bonds in HBT-HBZ and HBT-ClO and their isomers are demonstrated qualitatively. The relationship between the strength of intramolecular hydrogen bonds and dipole moments is discussed. The potential energy curves demonstrate the feasibility of intramolecular proton transfer. The weak fluorescence phenomenon of HBT-HBZ in solution is quantitatively explained by analyzing the frontier molecular orbital and hole electron caused by charge separation. Moreover, when strong cyan fluorescence occurs in solution, the corresponding molecular structure should be HBT-ClO(T). The influence of the intramolecular hydrogen bond formation site on the molecule as a whole is also investigated by electrostatic potential analysis.