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Investigation of Helicobacter pylori cagE Locus Diversity on Interleukin-8 Induction in AGS Cell-line (Helicobacter pylori cagE 유전자 다형성이 위상피세포주에서 Interleukin-8 유도능에 미치는 영향)

  • Lee Su-Min;Lee Hak-Sung;Lee In-Suk;Co Yu-Kyung;Han Hae-Won;Oh Jung-Hwan;Park Jae-Myung;Choi Myung-Gyu;Chung In-Sik
    • Journal of Life Science
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    • 제14권6호
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    • pp.906-912
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    • 2004
  • Helicobacter pylori infection is highly prevalent, as high as 2/3 of whole population infected, in Korea. H. pylori infection initiates inflammation by induction of interleukin-8 through type IV secretion of CagA. It was recently suggested that induction failure of IL-8 is not associated with defect in cag PAI but associated with cagE locus diversity. This study was designed to investigate ability of 11-8 in-duction according to sequence variation within the cagE gene, cagA TP motifs and vacA m-types in vitro study using AGS cell-line, and to evaluate its association with different clinical outcome. Seventy-four H. pylori stains were isolated from 23 patients with gastric cancer (Ca), 24 subjects with gastritis (G) and 27 patients with duodenal ulcer (Du) in Kangnam St. Mary's Hospital, Seoul, Korea. cagE gene diversity was confirmed by the PCR-RFLP methods with MboI/NlaIII and tyrosine phosphate motifs (TPMs) of cagA was determined TPM-A and C by using DdeI/Tsp5091 restriction enzyme and TPM-B was determend by Real time PCR the method of Owen et al. and IL-8 was measured by ELISA assay. IL-8 activity was positively detected in 59 among 74 strains $(79.7\%)$. IL-8 secretion was significantly increased in MboI A and MboI B type compared to MboI C type and in MboI/NlaIII A-C and B-C type than C-C type. 1L-8 activity was not associated with either the number or composition of cagA tyrosine phosphorylation motifs and vacA m-type. There was no significant difference in IL-8 activity among patient groups. cagE gene diversity is thought to be mainly associated with the induction of IL-8 in H. pylori infection.

Time Series Analysis on Outcomes of Tuberculosis Control and Prevention Program between Small Areas in Korea - with Patient Registry Data of 234 City.County.District Public Health Centers - (소규모 지역간 결핵관리사업 성과에 대한 시계열분석 - 전국 234개 시.군.구 보건소의 환자등록자료를 중심으로 -)

  • Kim, Chun-Bae;Choe, Heon;Shin, Kye-Chul;Park, Jong-Ku;Ham, Soo-Keun;Kim, Eun-Mi
    • Tuberculosis and Respiratory Diseases
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    • 제48권6호
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    • pp.837-852
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    • 2000
  • Backgrounds : Today, tuberculosis cannot only be cured medically, but also controlled by public health. Despite the overall worldwide decline in tuberculosis, the disease continues to be a significant problem among developing countries and in the slums of large cities in some industrialized countries. Particularly, this communicable disease has come into the public health spotlight because of its resurgence in the 1990's. our country has been operating the Korean National Tuberculosis Control Program since 1962, focusing around public health centers. Therefore, this study aims to compare the effectiveness of tuberculosis control activities, one of the major public health activities in Korea, by producing indexes, such as the yearly registration rate per 100,000 population and treatment compliance of tuberculosis on in small areas (communities). Methods : This work was accomplished by constructing a time-series analytic model using data from "1980~2000: the Yearly Statistical Report" with patient registry data of 234 City. County. District public health centers and by identifying the factors influencing the tuberculosis indexes. Results : The trends of pulmonary tuberculosis positive point prevalence and pulmonary tuberculosis negative point prevalence on X-ray screening have declined steadily, beginning in 1981 and continuing to 1998 by region (city, county, district). Although the tuberculosis mortality rate steadily shows a declining trend by year and region, but Korea still ranks first among 29 OECD countries in 1998, with a tuberculosis mortality rate of 7.1 per 100,000 persons, according to the time-series analysis for fatal diseases. Conclusion : The results of the study will form the fundamental basis of future regional health care planning and the Korean Tuberculosis Surveillance System on 2000. Since the implementation of local autonomy through the Local Health Act of 1995, it has now become vita1 for each city, county, district public health centers to determine its own priorities for relevant health care management, including budget allocation and program goals.

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Neurochemical Profile Quantification of Regional Adult Mice Brain Using: ex vivo $^1H$ High-Resolution Magic Angle Spinning NMR Spectroscopy (생체 외 조직 고 분해능 Magic Angle Spinning을 이용한 정상 Adult Mice에서의 뇌 부위별 뇌 신경화학 대사물질 정량분석)

  • Lee, Do-Wan;Woo, Dong-Cheol;Lee, Sung-Ho;Kim, Sang-Young;Kim, Goo-Young;Rhim, Hyang-Shuk;Choi, Chi-Bong;Kim, Hwi-Yool;Lee, Chang-Wook;Choe, Bo-Young
    • Progress in Medical Physics
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    • 제21권1호
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    • pp.35-41
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    • 2010
  • The purpose of this study is to quantitate regional neurochemical profile of regional normal adult mice brain and assess regional metabolic differences by using ex vivo $^1H$ high-resolution magic angle spinning nuclear magnetic resonance spectroscopy ($^1H$ HR-MAS NMRS). The animals were matched in sex and age. The collected brain tissue included frontal cortex, temporal cortex, thalamus, and hippocampus. Quantitative 1D spectra were acquired on 40 samples with the CPMG pulse sequence (8 kHz spectral window, TR/TE = 5500/2.2 ms, NEX = 128, scan time: 17 min 20 sec). The mass of brain tissue and $D_2O$+TSP solvent were 8~14 mg and 7~13 mg. A total of 16 metabolites were quantified as follow: Acet, NAA, NAAG, tCr, Cr, tCho, Cho, GPC + PC, mIns, Lac, GABA, Glu, Gln, Tau and Ala. As a results, Acet, Cho, NAA, NAAG and mIns were showed significantly different aspects on frontal cortex, hippocampus, temporal cortex and thalamus respectively. The present study demonstrated that absolute metabolite concentrations were significantly different among four brain regions of adult mice. Our finding might be helpful to investigate brain metabolism of neuro-disease in animal model.