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1.
Chinese Journal of Experimental Ophthalmology ; (12): 744-748, 2013.
Article Dans Chinois | WPRIM | ID: wpr-636189

Résumé

Background Intravitreal injection with triamcinolone acetonide (TA) may cause complications,including increase of intraoculapressure (IOP),cataracand endophthalmitis.Ketorolatromethamine (Ketorolac) inew,lesadverse reactionof non-steroidal anti-inflammatory drug.The action mechanism of Ketorolaisimilato TA.Therefore,Ketorolamay be completely opartly replace Tin the treatmenof retinal edema.Objective The purpose of thistudy wato investigate the effectof Tand Ketorolaon the expressionof aquaporin-4 (AQP4) and vasculaendothelial growth facto(VEGF) in hypoxiretinal Müllecellin vitro and to explore the mechanism of treating retinal edemwith Tand Ketorolac.MethodThe propose of research and use of the animalwere approved by Animal ExperimenResearch Review Committee of Hubei University of Medicine.Twenty eyeof New Zealand albino rabbitwere extracted and the retinal tissue waisolated.The Müllecellwere cultured and passaged using the enzymatidigestion method and Müllecellwere identified using glial fibrillary acidiprotein (GFAP),vimentin and α-smooth muscle actin (α-SMA) by immunofluorescence staining.The hypoxicell modelwere established by culturing the cellin DMEM with 500 μmol/L CoCl2 fo0,6,12,24 hours.The cellof hypoxifo24 hourwere divided into normal control group,hypoxicontrol group,hypoxia+50,100,200 mg/L To50,100,200 mg/L Ketorolagroups.Corresponding drugwere added into the medium in the differengroups.The expressionof AQP4 mRNand VEGF mRNin Müllecellwere detected by semi-quantitative reverse transcription PC(RT-PCR).ResultThe cellgrew well and reached 80% confluence with the irregulashape and ovoid nuclei 14-15 dayaftecultured.More than 95% primary cellshowed positive reaction to GFAP,vimentin and α-SMA.The expressing levelof AQP4 mRNand VEGF mRNin Müllecell(values) were significantly differenin varioutime point(AQP4 mRNA:F=18.70,P<0.01 ; VEGF mRNA:F =53.20,P<0.01),and those of 6,12 and 24 houraftecultured with CoCl2were increased than those withouCoCl2 (P<0.05).The expressing levelof AQP4 mRNand VEGF mRNin Müllecell(values) were significandifferenamong the normal control group,hypoxicontrol group,hypoxia+50,100,200 mg/L ToKetorolagroup(AQP4 mRNA:F =27.98,P < 0.01 ; VEGF mRNA:F =10.03,P <0.01).Compared with the hypoxicontrol group,the expressing levelof AQP4 mRNand VEGF mRNin the Müllecellwere declined in the hypoxia+ 100,200 mg/L Tgroup and the hypoxia+100,200 mg/L Ketorolagroup (P<0.05).The expressing levelof AQP4 mRNand VEGF mRNwere found statistically insignificandifference between hypoxia+ 100 mg/L Tgroup and hypoxia+ 100 mg/L Ketorolagroup,obetween hypoxia+ 200 mg/L Tgroup and hypoxi+200 mg/L Ketorolagroup (P> 0.05).ConclusionTand Ketorolacan downregulate the expressionof AQP4 and VEGF in Müllecellundehypoxiconditions,inferring thathey have similamechanism in the impacon AQP4 function in retinal edematoueye.

2.
Chinese Journal of Hepatology ; (12): 599-602, 2009.
Article Dans Chinois | WPRIM | ID: wpr-310038

Résumé

<p><b>OBJECTIVE</b>To investigate the expression of Oct4, Sox2, Nanog, SMO, beta-Catenin and Wnt5b mRNA in four hepatocellular carcinoma cell lines of SMMC-7721, Bel-7402, HepG2, MHCC-97 and normal hepatocellular cell line of L02, and to compare the response of these cell lines to all-trans retinoic acid.</p><p><b>METHODS</b>RT-PCR was used to detect expression of Oct4, Sox2, Nanog, SMO, beta-Catenin and Wnt5b mRNA in four hepatocellular carcinoma cell lines and normal hepatocellular cell line. Real time-PCR was used to quantify the expression of the genes.</p><p><b>RESULTS</b>There are different levels of expression of the stem cell-related gene in hepatocellular carcinoma cell lines and control cell line (P less than 0.05). There are significant differences in HepG2 and L-02 for the response to all-trans retinoic acid (P less than 0.05).</p><p><b>CONCLUSIONS</b>The stem cell-related genes are differentially expressed in different hepatocellular carcinoma cell lines.</p>


Sujets)
Humains , Carcinome hépatocellulaire , Métabolisme , Anatomopathologie , Méthylation de l'ADN , Régulation de l'expression des gènes tumoraux , Cellules HepG2 , Protéines à homéodomaine , Génétique , Métabolisme , Tumeurs du foie , Métabolisme , Anatomopathologie , Protéine homéotique Nanog , Facteur de transcription Oct-3 , Génétique , Métabolisme , ARN messager , Génétique , Métabolisme , Récepteurs couplés aux protéines G , Génétique , Métabolisme , RT-PCR , Méthodes , Facteurs de transcription SOX-B1 , Génétique , Métabolisme , Transduction du signal , Récepteur Smoothened , Cellules souches , Métabolisme , Trétinoïne , Pharmacologie , Protéines de type Wingless , Génétique , Métabolisme , bêta-Caténine , Génétique , Métabolisme
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