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1.
Pakistan Journal of Medical Sciences. 2014; 30 (4): 804-808
in English | IMEMR | ID: emr-147007

ABSTRACT

The aim of study was to determine relationship between cagA and genetic characterization of metronidazole [MTZ] resistant H. pylori strains from a region at high risk of gastric cancer. 172 H. pylori strains were isolated from the patients with dyspeptic symptoms, and antimicrobial susceptibility testing for MTZ was assessed by E-test. rdxA and frxA genes were amplified using PCR among the MTZ resistant isolates. The status of the plasmid and classes 1-3 integrons were investigated in all isolates. MTZ was detected in 88 isolates [51.16%]. Variations in the rdxA gene leading to alterations of amino acids in RdxA proteins were identified in all MTZ resistant strains. FrxA contained missense alterations in 55 MTZ resistant isolates, while the premature truncation of FrxA was caused by frameshift mutations in 9 MTZ resistant strains. Plasmid was found in one MTZ sensitive strain [0.58%], and none of Class 1-3 integrases gene was detected in the studied isolates. The conservative cagA fragment was obtained from all clinical isolates of H. pylori. The sequence of cagA 3' variable region in 164 strains were obtained, including East Asian-type [122, 74.39%] and Western-type [42, 25.61%]. Prevalence of Western-type cagA 3' variable region was significantly higher in MTZ resistant [33.73%, 28/83] than those of MTZ-sensitive strains [17.28%, 14/81] [p=0.02]. A high prevalence of MTZ resistance was found in the region, and bacterial chromosome mutations in the rdxA and frxA gene still contribute to the high-level MTZ resistance. H. pylori strains characterized with West-type cagA 3' variable region tend to acquire MTZ resistance in the region

2.
Chinese Journal of Oncology ; (12): 4-8, 2007.
Article in Chinese | WPRIM | ID: wpr-316257

ABSTRACT

<p><b>OBJECTIVE</b>To study the effect of gastrin on the mRNA and protein expression of urokinase-type plasminogen activator (u-PA) in human colon cancer cells and detect the role of p38 MAPK in this process.</p><p><b>METHODS</b>Lipofectin method was used to transfect pCR3. 1/CCK2R vector expressing gastrin receptor into a colon cancer cell line colo320. Gastrin and gastrin antagonist were used to up-regulate and down-regulate the signaling pathway, respectively. Human colon cancer colo320 cells and colo320/ CCK2,R cells were cultured and then stimulated with gastrin for different time; SB203580 was added into culture medium to prevent p38 kinase pathway before incubating with gastrin; Western blot and RT-PCR were used to examine the u-PA expression. Western blot was employed to detect p38 kinase phosphorylation.</p><p><b>RESULTS</b>Gastrin increased evidently the mRNA and protein expressions of u-PA and induced p38 kinase phosphorylation in colo320/CCK,R cells time-dependently. However, the extent of enhancement of u-PA and p38 MAPK expression in colo320 cells was much less than that in colo320/CCK2R cells. The gastrin antagonist L-365, 260 showed an effect of competitive inhibition on gastrin-induced u-PA expression and p38 kinase phosphorylation. The inhibitor SB203580 could sufficiently suppress gastrin-induced p38 kinase phosphorylation and significantly attenuate gastrin-induced u-PA mRNA and protein expressions in colo320/ CCK2 R cells in a dose-dependent manner.</p><p><b>CONCLUSION</b>Gastrin-gastrin receptor signal transduction pathway can obviously induce u-PA expression in human colon cancer cells via activating the phosphorylation of p38 kinase.</p>


Subject(s)
Humans , Benzodiazepinones , Pharmacology , Blotting, Western , Cell Line, Tumor , Colonic Neoplasms , Genetics , Metabolism , Pathology , Gastrins , Pharmacology , Gene Expression Regulation, Neoplastic , Genetic Vectors , Imidazoles , Pharmacology , Phenylurea Compounds , Pharmacology , Phosphorylation , Pyridines , Pharmacology , RNA, Messenger , Genetics , Receptor, Cholecystokinin B , Genetics , Metabolism , Reverse Transcriptase Polymerase Chain Reaction , Signal Transduction , Transfection , Urokinase-Type Plasminogen Activator , Genetics , Metabolism , p38 Mitogen-Activated Protein Kinases , Metabolism
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