1.Application of E- learning in training of related knowledge about public health emergencies in Emergency department
Junhua CHEN ; Youzhen HU ; Hui XIONG ; Huijun HUANG
Chinese Journal of Practical Nursing 2015;(30):2331-2333
Objective To apply E- learning in training of related knowledge about public health emergencies in emergency department in order to improve the treatment level of medical staff in public health emergencies. Methods The medical staff was divided into the observation group and the control group with 50 persons in each group according to the odd and even grouping method. The control group was given conventional training method, while the observation group received E- learning based on conventional training method. The theoretical test results and training effect were compared between two groups. Results The scores of the observation group were obviously higher than that of the control group [ (90.88 ± 4.09) points vs. (84.36± 4.92) points ], Z= -5.895, P<0.01. Conclusions The application of E- learning in the training of public health emergencies is beneficial to help the medical staff to obtain and share information resources more conveniently, to enhance the ability of the clinic medical workers of understanding the condition of emergent public health affairs, to elevate the grades of theoretical learning of the relevant knowledge and to improve the management level of training, training effect and efficiency.
2.Experimental study on inhibitory effects of diallyl sulfide on growth and invasion of human osteosarcoma MG-63 cells.
Youzhen, HU ; Ling, CHEN ; Chengzhi, YI ; Fan, YANG ; Jige, CHEN
Journal of Huazhong University of Science and Technology (Medical Sciences) 2012;32(4):581-5
The inhibitory effects of diallyl sulfide (DAS) derived from allicin on in vitro and in vivo proliferation of human osteosarcoma MG-63 cells and the action mechanism, and the influence of DAS on invasive capability of MG-63 cells were investigated in order to search for the novel medicines for osteosarcoma. In the in vitro experiment, MG-63 cells were treated with different concentrations of DSA, and the morphological changes of MG-63 cells were observed under an inverted phase microscope. MTT method was used to assay the proliferation of MG-63 cells. Semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) was used to detect the VEGF mRNA expression level in MG-63 cells. By using Transwell invasion assay, the influence of DAS on invasive ability of MG-63 cells was tested. In the in vivo experiment, the nude mice MG-63 cells tumor-bearing model was established, and different concentrations of DAS were injected beside the tumor. Twenty-one days after treatment, the mice were killed, the tumor size and tumor inhibition rate were calculated. The microvessel density (MVD) was determined by using immunohistochemistry. In the in vitro experiment, different concentrations of DAS could obviously inhibit proliferation of MG-63 cells in a time- and concentration-dependent manner. RT-PCR revealed that the expression levels of VEGF mRNA in DSA groups (different concentrations) were significant reduced as compared with those in control group (all P<0.05). Transwell invasion assay indicated that in 20 and 40 μg/mL DAS groups, the number of migratory cells was 91.4±8.3 and 81.8±7.4 respectively, which was significantly declined as compared with that in control group (150.4±14.7, both P<0.05). In the in vivo experiment, DAS could significantly suppress the growth of MG-63 tumor-bearing tissue. Immunohistochemistry demonstrated that different concentrations (20 and 40 μg/mL) of DAS could significantly decrease MVD of MG-63 tumor-bearing tissue (all P<0.05). It was suggested that DAS could inhibit the growth of MG-63 cells probably by suppressing the expression of VEGF mRNA.
3.Experimental study on inhibitory effects of diallyl sulfide on growth and invasion of human osteosarcoma MG-63 cells.
Youzhen HU ; Ling CHEN ; Chengzhi YI ; Fan YANG ; Jige CHEN
Journal of Huazhong University of Science and Technology (Medical Sciences) 2012;32(4):581-585
The inhibitory effects of diallyl sulfide (DAS) derived from allicin on in vitro and in vivo proliferation of human osteosarcoma MG-63 cells and the action mechanism, and the influence of DAS on invasive capability of MG-63 cells were investigated in order to search for the novel medicines for osteosarcoma. In the in vitro experiment, MG-63 cells were treated with different concentrations of DSA, and the morphological changes of MG-63 cells were observed under an inverted phase microscope. MTT method was used to assay the proliferation of MG-63 cells. Semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) was used to detect the VEGF mRNA expression level in MG-63 cells. By using Transwell invasion assay, the influence of DAS on invasive ability of MG-63 cells was tested. In the in vivo experiment, the nude mice MG-63 cells tumor-bearing model was established, and different concentrations of DAS were injected beside the tumor. Twenty-one days after treatment, the mice were killed, the tumor size and tumor inhibition rate were calculated. The microvessel density (MVD) was determined by using immunohistochemistry. In the in vitro experiment, different concentrations of DAS could obviously inhibit proliferation of MG-63 cells in a time- and concentration-dependent manner. RT-PCR revealed that the expression levels of VEGF mRNA in DSA groups (different concentrations) were significant reduced as compared with those in control group (all P<0.05). Transwell invasion assay indicated that in 20 and 40 μg/mL DAS groups, the number of migratory cells was 91.4±8.3 and 81.8±7.4 respectively, which was significantly declined as compared with that in control group (150.4±14.7, both P<0.05). In the in vivo experiment, DAS could significantly suppress the growth of MG-63 tumor-bearing tissue. Immunohistochemistry demonstrated that different concentrations (20 and 40 μg/mL) of DAS could significantly decrease MVD of MG-63 tumor-bearing tissue (all P<0.05). It was suggested that DAS could inhibit the growth of MG-63 cells probably by suppressing the expression of VEGF mRNA.
Allyl Compounds
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pharmacology
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Cell Line, Tumor
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Cell Proliferation
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drug effects
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Humans
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Neoplasm Invasiveness
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prevention & control
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Osteosarcoma
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drug therapy
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Sulfides
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pharmacology