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      KCI등재

      Scavenger Receptor Class A to E Involved in Various Cancers

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      https://www.riss.kr/link?id=A106530460

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      다국어 초록 (Multilingual Abstract)

      Scavenger receptors typically bind to multiple ligands on a cell surface, including endogenous and modified host-derived molecules and microbial pathogens. They promote the elimination of degraded or harmful substances such as non-self or altered-self...

      Scavenger receptors typically bind to multiple ligands on a cell surface, including endogenous and modified host-derived molecules and microbial pathogens. They promote the elimination of degraded or harmful substances such as non-self or altered-self targets through endocytosis, phagocytosis, and adhesion. Currently, scavenger receptors are subdivided into eight classes based on several variations in their sequences due to alternative splicing. Since recent studies indicate targeting scavenger receptors has been involved in cancer prognosis and carcinogenesis, we will focus on the current knowledge about the emerging role of scavenger receptor classes A to E in cancer progression.

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      참고문헌 (Reference)

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      3 Yang L, "The class D scavenger receptor CD68contributes to mouse chronic liver injury" 66 : 414-424, 2018

      4 Simantov R, "The antiangiogenic effect of thrombospondin-2 is mediated by CD36 and modulated by histidine-rich glycoprotein" 24 : 27-34, 2005

      5 Luo HR, "Sumoylation negatively regulates CSR1-dependent prostate cancer cell death" 46 : 1861-1867, 2018

      6 Krieger M, "Structures and functions of multiligand lipoprotein receptors : macrophage scavenger receptors and LDL receptor-related protein(LRP)" 63 : 601-637, 1994

      7 Jiang Z, "Structure, organization, and chromosomal mapping of the gene encoding macrosialin, a macrophage-restricted protein" 50 : 199-205, 1998

      8 Yu X, "Scavenger receptors : emerging roles in cancer biology and immunology" 128 : 309-364, 2015

      9 Gillard BK, "Scavenger receptor B1(SR-B1)profoundly excludes high density lipoprotein(HDL)apolipoprotein AII as it nibbles HDL-cholesteryl ester" 292 : 8864-8873, 2017

      10 Shen WJ, "Scavenger receptor B type 1 : expression, molecular regulation, and cholesterol transport function" 59 : 1114-1131, 2018

      1 Jézéquel P, "Validation of tumor-associated macrophage ferritin light chain as a prognostic biomarker in nodenegative breast cancer tumors : a multicentric 2004 national PHRC study" 131 : 426-437, 2012

      2 Kodama T, "Type I macrophage scavenger receptor contains alpha-helical and collagen-like coiled coils" 343 : 531-535, 1990

      3 Yang L, "The class D scavenger receptor CD68contributes to mouse chronic liver injury" 66 : 414-424, 2018

      4 Simantov R, "The antiangiogenic effect of thrombospondin-2 is mediated by CD36 and modulated by histidine-rich glycoprotein" 24 : 27-34, 2005

      5 Luo HR, "Sumoylation negatively regulates CSR1-dependent prostate cancer cell death" 46 : 1861-1867, 2018

      6 Krieger M, "Structures and functions of multiligand lipoprotein receptors : macrophage scavenger receptors and LDL receptor-related protein(LRP)" 63 : 601-637, 1994

      7 Jiang Z, "Structure, organization, and chromosomal mapping of the gene encoding macrosialin, a macrophage-restricted protein" 50 : 199-205, 1998

      8 Yu X, "Scavenger receptors : emerging roles in cancer biology and immunology" 128 : 309-364, 2015

      9 Gillard BK, "Scavenger receptor B1(SR-B1)profoundly excludes high density lipoprotein(HDL)apolipoprotein AII as it nibbles HDL-cholesteryl ester" 292 : 8864-8873, 2017

      10 Shen WJ, "Scavenger receptor B type 1 : expression, molecular regulation, and cholesterol transport function" 59 : 1114-1131, 2018

      11 Shen WJ, "SR-B1 : a unique multifunctional receptor for cholesterol influx and efflux" 80 : 95-116, 2018

      12 Yang X, "SCARB1 gene variants are associated with the phenotype of combined high high-density lipoprotein cholesterol and high lipoprotein(a)" 9 : 408-418, 2016

      13 You K, "SCARA5 plays a critical role in the progression and metastasis of breast cancer by inactivating the ERK1/2, STAT3, and AKT signaling pathways" 435 : 47-58, 2017

      14 Bock AJ, "SCARA3mRNA is overexpressed in ovarian carcinoma compared with breast carcinoma effusions" 43 : 669-674, 2012

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      17 Khaidakov M, "Oxidized LDL receptor 1(OLR1)as a possible link between obesity, dyslipidemia and cancer" 6 : e20277-, 2011

      18 Krieger M, "Molecular flypaper, host defense, and atherosclerosis. Structure, binding properties, and functions of macrophage scavenger receptors" 268 : 4569-4572, 1993

      19 Krieger M, "Molecular flypaper, atherosclerosis, and host defense : structure and function of the macrophage scavenger receptor" 57 : 605-609, 1992

      20 Krieger M, "Molecular flypaper and atherosclerosis : structure of the macrophage scavenger receptor" 17 : 141-146, 1992

      21 Lawler PR, "Molecular basis for the regulation of angiogenesis by thrombospondin-1 and-2" 2 : a006627-, 2012

      22 Ni YH, "Microlocalization of CD68+ tumor-associated macrophages in tumor stroma correlated with poor clinical outcomes in oral squamous cell carcinoma patients" 36 : 5291-5298, 2015

      23 Zhu H, "Membrane-bound heat shock proteins facilitate the uptake of dying cells and cross-presentation of cellular antigen" 21 : 96-109, 2016

      24 Balzan S, "LOX-1 receptor : a potential link in atherosclerosis and cancer" 198 : 79-86, 2018

      25 Oh S, "LOX-1 boosts immunity" 6 : 21763-21764, 2015

      26 Nakagawa-Toyama Y, "Human scavenger receptor class B type I is expressed with cell-specific fashion in both initial and terminal site of reverse cholesterol transport" 183 : 75-83, 2005

      27 Matsumoto A, "Human macrophage scavenger receptors : primary structure, expression, and localization in atherosclerotic lesions" 87 : 9133-9137, 1990

      28 Facciponte JG, "Heat shock proteins and scavenger receptors : role in adaptive immune responses" 34 : 325-342, 2005

      29 Murshid A, "Heat shock proteins and cancer vaccines : developments in the past decade and chaperoning in the decade to come" 10 : 1553-1568, 2011

      30 Cedó L, "HDL and LDL : potential new players in breast cancer development" 8 : E853-, 2019

      31 Uray IP, "Estradiol down-regulates CD36 expression in human breast cancer cells" 207 : 101-107, 2004

      32 Kumari S, "Design and synthesis of PEG-Oligoglycerol sulfates as multivalent inhibitors for the scavenger receptor LOX-1" 20 : 1157-1166, 2019

      33 Song L, "Deletion of the murine scavenger receptor CD68" 52 : 1542-1550, 2011

      34 Hale JS, "Context dependent role of the CD36--thrombospondin--histidine-rich glycoprotein axis in tumor angiogenesis and growth" 7 : e40033-, 2012

      35 Jeannin P, "Complexity and complementarity of outer membrane protein A recognition by cellular and humoral innate immunity receptors" 22 : 551-560, 2005

      36 Ben J, "Class A scavenger receptor deficiency exacerbates lung tumorigenesis by cultivating a procarcinogenic microenvironment in humans and mice" 186 : 763-772, 2012

      37 Wang HH, "Cholesterol and lipoprotein metabolism and atherosclerosis : recent advances in reverse cholesterol transport" 16 (16): S27-S42, 2017

      38 Woo MS, "Cell surface CD36 protein in monocyte/macrophage contributes to phagocytosis during the resolution phase of ischemic stroke in mice" 291 : 23654-23661, 2016

      39 Yu G, "CSR1suppresses tumor growth and metastasis of prostate cancer" 168 : 597-607, 2006

      40 Liu H, "CSN5 promotes hepatocellular carcinoma progression by SCARA5 inhibition through suppressing β-catenin ubiquitination" 63 : 155-165, 2018

      41 Ni C, "CD68-and CD163-positive tumor infiltrating macrophages in non-metastatic breast cancer : a retrospective study and meta-analysis" 10 : 4463-4472, 2019

      42 Wang J, "CD36 tango in cancer : signaling pathways and functions" 9 : 4893-4908, 2019

      43 DeFilippis RA, "CD36 repression activates a multicellular stromal program shared by high mammographic density and tumor tissues" 2 : 826-839, 2012

      44 Oury C, "CD36 : linking lipids to the NLRP3 inflammasome, atherogenesis and atherothrombosis" 11 : 8-10, 2014

      45 Joo H, "C-type lectin-like receptor LOX-1 promotes dendritic cell-mediated class-switched B cell responses" 41 : 592-604, 2014

      46 Meng Y, "Blockade of tumor necrosis factor alpha signaling in tumor-associated macrophages as a radiosensitizing strategy" 70 : 1534-1543, 2010

      47 Hirsch HA, "A transcriptional signature and common gene networks link cancer with lipid metabolism and diverse human diseases" 17 : 348-361, 2010

      48 Graf GA, "17beta-Estradiol promotes the up-regulation of SR-BII in HepG2 cells and in rat livers" 42 : 1444-1449, 2001

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2013-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2012-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2010-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.16 0.16 0.11
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.1 0.08 0.34 0.06
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