1.Update knowledge about the classification of lymphomas.
Chinese Journal of Pathology 2013;42(9):577-579
2.Volatile constituents in the flowers of Elsholtzia argyi and their variation: a possible utilization of plant resources after phytoremediation.
Journal of Zhejiang University. Science. B 2005;6(2):91-95
Phytoremediation effectiveness and remediation costs are driving factors of this project. Full utilization of plant resources after their being used for phytoremediation is an unsolved problem. GC/MS technique was used to investigate the volatiles of the flowers from Elsholtzia argyi (PFE1: Purple Flower Elsholtzia) and their variation (WFE: White Flower Elsholtzia), naturally growing in Pb/Zn mined area, and Elsholtzia argyi (PFE2: Purple Flower Elsholtzia), naturally growing in Jiuxi uncontaminated agriculture soil. Seventeen compounds constituting 86.88% of total essential oils were identified in PFE1, with 2,6-octadienoic acid,3,7-dimethyl-methyl ester being the main constituent (63.30%). Sixteen compounds accounting for 95.32% of total essential oils were identified in WFE, with caryophyllene being the main component (55.02%). Compared to PFE1, PFE2 contains lower level of 2,6-octadienoic acid,3,7-dimethyl-methyl ester (31.76%), which is the main constituent in the total essential oils of PFE2. Caryophyllene is the main ingredient of flavor. Elsholtzia ketone was identified in all the three Elsholtzia plants. It can be concluded that the selected Elsholtzia argyi plants can be exploited on their versatile uses as fragrances and antiseptics due to the perfume ingredient and antibacterial components existing in their essential oils.
Agriculture
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methods
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Biodegradation, Environmental
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Conservation of Natural Resources
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Flowers
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classification
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metabolism
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Lamiaceae
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classification
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metabolism
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Oils, Volatile
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analysis
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metabolism
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Plant Extracts
;
analysis
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metabolism
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Species Specificity
3.Adherence test of Staphylococcus epidermidis on the surface of different material intraocular lenses
Xiao-e, FAN ; Fang, TIAN ; Xiao-rong, LI
Chinese Journal of Experimental Ophthalmology 2011;29(4):346-349
Background Postoperative endophthalmitis following intraocular lens(IOL)implantation is still one of the most feared complications of cataract surgery.Bacterial adhesion to IOLs during their insertion is a prominent etiological factor.The adhesion characteristics of bacteria to IOL are very vital for the prevention of endophthalmitis after cataract surgery.Objective The present study was to observe the in vitro adherence ability of Staphylococcus epidermidis to different intraocular lenses(IOLs)and compare the results in bacterial counting between scanning electron microscopy(SEM)photographs and quantitative cultures. Methods Five types of IOLs,including hydrophobic acrylic IOL,polymethylmethaerylate(PMMA)IOL,heparin-surface-modified(HSM) PMMA IOL,silicone(SI)IOL and hydrophilic acrylic IOL,were put into S.epidermidis(ATCC 12228)suspension for 1 hour.The bacterial adhesion numbers on the IOL surfaces were counted by quantitative cultures and scanning electron microscopy(SEM) photographs. Results Quantitative culture counting of viable adherent bacteria released by sonication showed that hydrophobic acrylic IOL and PMMA IOL were more likely for bacteria to attach.The number of bacteria on the five types of IOL surfaces showed significant differences(F=100.084,P=0.000).No significant differences were found in the number of bacteria between hydrophilic acrylic IOL and HSM-PMMA IOL (t=2.285,P=0.052)with the quantitative culture method.Direct counting of adherent bacteria in SEM photographs revealed that there were significant differences in bacterial adhesion numbers among difierent IOL material groups,with the numbers from high to low as follows:Hydrophobic IOL>PMMA IOL>SI IOL>Hydrophilic IOL>HSM-PMMA IOL(F=118.065,P=0.000).The counting method by SEM method was superior to that by quantitative cultures (t=5.019,P=0.000). Conclusion The bacterial adhesion ability varies upon the difference of IOL materials.Less bacterial adhesion is found on hydrophilic acrylic IOL and HSM-PMMA IOL,implying that the use of IOLs made from these two materials during surgery could diminish the incidence of postoperative endophthalmitis and intraocular inflammation associated with IOLs implantation.
4.Study on oral absorption enhancers of astragalus polysaccharides.
Xiao-Yun CHEN ; Xiao-Bin TAN ; E SUN ; Dan LIU ; Xiao-Bin JIA ; Zhen-Hai ZHANG
China Journal of Chinese Materia Medica 2014;39(7):1243-1247
Astragalus polysaccharides was lounded to 4-(2-aminoethylphenol), followed by labeling the APS-Tyr with fluorescein-5-isothiocyanate (FITC) at the secondary amino group. The absorption enhancement effects of low molecular weight chitosan and protamine on astragalus polysaccharides were evaluated via Caco-2 cell culture model. The results show that the fluorecent labeling compound has good stability and high sensitivity. On the other hand low molecular weight chitosan and protamine also can promoted absorption of the astragalus polysaccharides without any cytotoxity, and the absorption increase was more significant with increasing the amount of low molecular weight chitosan and protamine. At the same time, the low molecular weight chitosan has slightly better effect. The transepithelial electric resistance (TEER) of Caco-2 cells show that absorption enhancers could improve its membrane transport permeability by opening tight junctions between cells and increasing the cell membrane fluidity.
Absorption
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Astragalus Plant
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chemistry
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Biological Transport
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Caco-2 Cells
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Fluorescein-5-isothiocyanate
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chemistry
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Fluorescent Dyes
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chemistry
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Humans
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Plant Extracts
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chemistry
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pharmacokinetics
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Polysaccharides
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chemistry
;
pharmacokinetics
5.Study on the regulation of autophagy against anticancer drugs' toxicity.
Xiao-e LOU ; Yi ZHU ; Qiao-jun HE
Acta Pharmaceutica Sinica 2016;51(1):29-32
Autophagy is a crucial biological process in eukaryotes, which is involved in cell growth, survival and energy metabolism. It has been confirmed that autophagy mediates toxicity of anticancer drugs, especially in heart, liver and neuron. It is important to understand the function and mechanism of autophagy in anticancer drugs-induced toxicity. Given that autophagy is a double-edged sword in the maintenance of the function of heart, liver and neuron, the autophagy-mediated toxicity are very complicated in the body. We provide a review on the concept of autophagy and current status about autophagy-mediated toxicity of anticancer drugs. The knowledge is crucial in the basic study of anticancer drugs-induced toxicity, and provides some strategies for the development of alleviating the toxicity of anticancer drugs.
Antineoplastic Agents
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pharmacology
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toxicity
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Autophagy
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Humans
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Neoplasms
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drug therapy
6.Introduction of 2010 WHO classification of pancreatic tumors.
Chinese Journal of Pathology 2013;42(6):423-425
Carcinoma, Pancreatic Ductal
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classification
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pathology
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Cystadenocarcinoma
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classification
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pathology
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Cystadenoma
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classification
;
pathology
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Humans
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Neuroendocrine Tumors
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classification
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pathology
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Pancreatic Neoplasms
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classification
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pathology
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Precancerous Conditions
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classification
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pathology
;
World Health Organization
8.Abdominal malignant melanoma complicating pregnancy: report of a case.
Chinese Journal of Pathology 2013;42(12):845-845
Abdominal Wall
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Adult
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Female
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Follow-Up Studies
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Humans
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Melanoma
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pathology
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surgery
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Pregnancy
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Pregnancy Complications, Neoplastic
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pathology
;
surgery
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Skin Neoplasms
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pathology
;
surgery
10.Clinicopathologic features of lymphoepithelioma-like gastric carcinoma and literature review.
Chinese Journal of Pathology 2013;42(11):758-759
Aged
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Carcinoma, Medullary
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metabolism
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pathology
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surgery
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Carcinoma, Squamous Cell
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metabolism
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pathology
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surgery
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Diagnosis, Differential
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Gastrectomy
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Humans
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Keratins
;
metabolism
;
Lymphoma
;
metabolism
;
pathology
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Melanoma
;
metabolism
;
pathology
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Middle Aged
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Neoplasm Staging
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RNA, Viral
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metabolism
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Retrospective Studies
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Stomach Neoplasms
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metabolism
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pathology
;
surgery