- INTRODUCTION
- MATERIALS AND METHODS
- RESULTS
- DISCUSSION
- REFERENCES
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https://www.riss.kr/link?id=A107209473
Kang-In Lee ; Seunga Choi ; Han-Gyu Choi ; Sintayehu Gurmessa Kebede (College of Medicine, Chungnam National University) ; Thi Binh Dang (College of Medicine, Chungnam National University) ; Yong Woo Back (College of Medicine, Chungnam National University) ; Hye-Soo Park ; Hwa-Jung Kim
2020
English
475
SCOPUS,KCI등재
학술저널
246-256(11쪽)
0
0
상세조회0
다운로드목차 (Table of Contents)
참고문헌 (Reference)
1 WHO guidelines on tuberculosis infection prevention, "WHO guidelines on tuberculosis infection prevention and control: 2019 update"
2 Butler RE, "The balance of apoptotic and necrotic cell death in Mycobacterium tuberculosis infected macrophages is not dependent on bacterial virulence" 7 : e47573-, 2012
3 Grover S, "The PGRS Domain of Mycobacterium tuberculosis PE_PGRS Protein Rv0297 Is Involved in Endoplasmic Reticulum Stress-Mediated Apoptosis through Toll-Like Receptor 4" 9 : e01017-8-, 2018
4 López M, "The 19-kDa Mycobacterium tuberculosis protein induces macrophage apoptosis through Toll-like receptor-2" 170 : 2409-2416, 2003
5 Sánchez A, "The 19 kDa Mycobacterium tuberculosis lipoprotein(LpqH)induces macrophage apoptosis through extrinsic and intrinsic pathways : a role for the mitochondrial apoptosis-inducing factor" 2012 : 950503-, 2012
6 Sohn H, "Targeting of Mycobacterium tuberculosis heparin-binding hemagglutinin to mitochondria in macrophages" 7 : e1002435-, 2011
7 Zhang J, "Survival of virulent Mycobacterium tuberculosis involves preventing apoptosis induced by Bcl-2 upregulation and release resulting from necrosis in J774 macrophages" 49 : 845-852, 2005
8 Azad N, "Superoxide-mediated proteasomal degradation of Bcl-2determines cell susceptibility to Cr(VI)-induced apoptosis" 29 : 1538-1545, 2008
9 Pathakumari B, "Rv2204c, Rv0753c and Rv0009 antigens specific T cell responses in latent and active TB-a flow cytometry-based analysis" 308 : 297-305, 2018
10 Lee KI, "Recombinant Rv3261 protein of Mycobacterium tuberculosis induces apoptosis through a mitochondrion-dependent pathway in macrophages and inhibits intracellular bacterial growth" 354 : 104145-, 2020
1 WHO guidelines on tuberculosis infection prevention, "WHO guidelines on tuberculosis infection prevention and control: 2019 update"
2 Butler RE, "The balance of apoptotic and necrotic cell death in Mycobacterium tuberculosis infected macrophages is not dependent on bacterial virulence" 7 : e47573-, 2012
3 Grover S, "The PGRS Domain of Mycobacterium tuberculosis PE_PGRS Protein Rv0297 Is Involved in Endoplasmic Reticulum Stress-Mediated Apoptosis through Toll-Like Receptor 4" 9 : e01017-8-, 2018
4 López M, "The 19-kDa Mycobacterium tuberculosis protein induces macrophage apoptosis through Toll-like receptor-2" 170 : 2409-2416, 2003
5 Sánchez A, "The 19 kDa Mycobacterium tuberculosis lipoprotein(LpqH)induces macrophage apoptosis through extrinsic and intrinsic pathways : a role for the mitochondrial apoptosis-inducing factor" 2012 : 950503-, 2012
6 Sohn H, "Targeting of Mycobacterium tuberculosis heparin-binding hemagglutinin to mitochondria in macrophages" 7 : e1002435-, 2011
7 Zhang J, "Survival of virulent Mycobacterium tuberculosis involves preventing apoptosis induced by Bcl-2 upregulation and release resulting from necrosis in J774 macrophages" 49 : 845-852, 2005
8 Azad N, "Superoxide-mediated proteasomal degradation of Bcl-2determines cell susceptibility to Cr(VI)-induced apoptosis" 29 : 1538-1545, 2008
9 Pathakumari B, "Rv2204c, Rv0753c and Rv0009 antigens specific T cell responses in latent and active TB-a flow cytometry-based analysis" 308 : 297-305, 2018
10 Lee KI, "Recombinant Rv3261 protein of Mycobacterium tuberculosis induces apoptosis through a mitochondrion-dependent pathway in macrophages and inhibits intracellular bacterial growth" 354 : 104145-, 2020
11 Aslan M, "Oxidants in receptor tyrosine kinase signal transduction pathways" 5 : 781-788, 2003
12 Paik S, "Mycobacterium tuberculosis acyl carrier protein inhibits macrophage apoptotic death by modulating the reactive oxygen species/c-Jun N-terminal kinase pathway" 21 : 40-49, 2019
13 Park HS, "Mycobacterium tuberculosis Rv3463 induces mycobactericidal activity in macrophages by enhancing phagolysosomal fusion and exhibits therapeutic potential" 9 : 4246-, 2019
14 Choi HG, "Mycobacterium tuberculosis Rv2882c Protein Induces Activation of Macrophages through TLR4 and Exhibits Vaccine Potential" 11 : e0164458-, 2016
15 Kim K, "Mycobacterium tuberculosis Rv0652 stimulates production of tumour necrosis factor and monocytes chemoattractant protein-1 in macrophages through the Toll-like receptor 4pathway" 136 : 231-240, 2012
16 Choi S, "Mycobacterium tuberculosis Protein Rv3841 Activates Dendritic Cells and Contributes to a T Helper 1 Immune Response" 2018 : 3525302-, 2018
17 Kim JS, "Mycobacterium tuberculosis MmsA, a n ov el immunostimulatory antigen, induces dendritic cell activation and promotes Th1 cell-type immune responses" 298 : 115-125, 2015
18 Lim YJ, "Mycobacterium kansasii-induced death of murine macrophages involves endoplasmic reticulum stress responses mediated by reactive oxygen species generation or calpain activation" 18 : 150-159, 2013
19 Lee KI, "Mycobacterium avium MAV2054 protein induces macrophage apoptosis by targeting mitochondria and reduces intracellular bacterial growth" 6 : 37804-, 2016
20 Lee KI, "Mycobacterium avium MAV2052 protein induces apoptosis in murine macrophage cells through Toll-like receptor 4" 21 : 459-472, 2016
21 Whang J, "Mycobacterium abscessus glycopeptidolipids inhibit macrophage apoptosis and bacterial spreading by targeting mitochondrial cyclophilin D" 8 : e3012-, 2017
22 Fleury C, "Mitochondrial reactive oxygen species in cell death signaling" 84 : 131-141, 2002
23 Kroemer G, "Mitochondrial control of apoptosis : an overview" 66 : 1-15, 1999
24 Green DR, "Mitochondria and apoptosis" 281 : 1309-1312, 1998
25 Fratazzi C, "Macrophage apoptosis in mycobacterial infections" 66 : 763-764, 1999
26 손호성, "Lithium Inhibits Growth of Intracellular Mycobacterium kansasii through Enhancement of Macrophage Apoptosis" 한국미생물학회 52 (52): 299-306, 2014
27 Mahamed D, "Intracellular growth of Mycobacterium tuberculosis after macrophage cell death leads to serial killing of host cells" 6 : e22028-, 2017
28 Meng CY, "Enantioselective Ir-Catalyzed Allylic Alkylation of Racemic Allylic Alcohols with Malonates" 21 : 840-843, 2019
29 Lin J, "Early secreted antigenic target of 6-kDa of Mycobacterium tuberculosis promotes caspase-9/caspase-3-mediated apoptosis in macrophages" 457 : 179-189, 2019
30 Guo Y, "EBP50 induces apoptosis in macrophages by upregulating nitric oxide production to eliminate intracellular Mycobacterium tuberculosis" 6 : 18961-, 2016
31 Parandhaman DK, "Cell death paradigms in the pathogenesis of Mycobacterium tuberculosis infection" 4 : 31-, 2014
32 Awuh JA, "Author Correction : Molecular basis of mycobacterial survival in macrophages" 75 : 161-, 2018
33 Rodrigues MF, "Apoptosis of macrophages during pulmonary Mycobacterium bovis infection : correlation with intracellular bacillary load and cytokine levels" 128 : e691-e699, 2009
Predictions of Sampling Site Based on Microbial Compositions Using a Decision Tree-based Method
Isolation and Molecular Characterization of Feline Herpesvirus 1 from Naturally Infected Korean Cats
The Roles of Chemokines in Immune Response to Mycobacterial Infection
학술지 이력
연월일 | 이력구분 | 이력상세 | 등재구분 |
---|---|---|---|
2023 | 평가예정 | 해외DB학술지평가 신청대상 (해외등재 학술지 평가) | |
2020-01-01 | 평가 | 등재학술지 유지 (해외등재 학술지 평가) | |
2010-01-01 | 평가 | 등재학술지 유지 (등재유지) | |
2008-01-01 | 평가 | 등재 1차 FAIL (등재유지) | |
2006-07-18 | 학술지명변경 | 외국어명 : 미등록 -> Journal of Bacteriology and Virology | |
2006-01-01 | 평가 | 등재학술지 유지 (등재유지) | |
2003-01-01 | 평가 | 등재학술지 선정 (등재후보2차) | |
2002-01-01 | 평가 | 등재후보 1차 PASS (등재후보1차) | |
1998-07-01 | 평가 | 등재후보학술지 선정 (신규평가) |
학술지 인용정보
기준연도 | WOS-KCI 통합IF(2년) | KCIF(2년) | KCIF(3년) |
---|---|---|---|
2016 | 0.23 | 0.23 | 0.2 |
KCIF(4년) | KCIF(5년) | 중심성지수(3년) | 즉시성지수 |
0.19 | 0.18 | 0.358 | 0.03 |