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      Correlation between total air pollutant emissions and incidence of type 1 diabetes in the Russian Federation

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      https://www.riss.kr/link?id=A107929931

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      다국어 초록 (Multilingual Abstract)

      Background: Exposure to air pollution (gaseous pollutants and/or particulate matter) has been associated with the incidence, prevalence, and mortality of type 1 diabetes (T1D). Purpose: To examine the quantitative relationship between air pollutant em...

      Background: Exposure to air pollution (gaseous pollutants and/or particulate matter) has been associated with the incidence, prevalence, and mortality of type 1 diabetes (T1D). Purpose: To examine the quantitative relationship between air pollutant emissions and the incidence of T1D. Methods: We examined the association between the incidence of T1D and type 2 diabetes (T2D) in 2017 as well as that of T1D in patients younger than 15 years in 2016 with "emissions of air-polluting substances from stationary and mobile sources by regions of the Russian Federation in 2016" as reported by the Federal Diabetes Register of Russia downloaded from the Russian government website (http://www.mnr.gov.ru/docs/gosudarstvennye_doklady/o_sostoyanii_i_ob_okhrane_okruzhayushchey_sredy_rossiyskoy_federatsii/). Results: The incidence of T1D across all ages in each region of the Russian Federation correlated with the total air pollutants emitted in the region each year (r=0.278, P=0.013). The incidence of T2D was also correlated with the amount of air pollutants (r=0.234, P=0.037) and the incidence of T1D (r=0.600, P<0.001) in each country. Similarly, the incidence of T1D in patients younger than 15 years correlated with the total air pollutants emitted each year in each region (r=0.300, P=0.011). Conclusion: The quantitative relationship between the total air pollutants emitted and the incidence of T1D and T2D in the Russian Federation suggests that air pollution contributes to the development of T1D and T2D.

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      참고문헌 (Reference)

      1 "WHO multinational project for childhood diabetes. WHO Diamond Project Group" 13 : 1062-1068, 1990

      2 Di Ciaula A, "Type I diabetes in paediatric age in Apulia(Italy) : incidence and associations with outdoor air pollutants" 111 : 36-43, 2016

      3 Robert AA, "Type 1diabetes mellitus in Saudi Arabia : a soaring epidemic" 2018 : 9408370-, 2018

      4 Patterson CC, "Trends and cyclical variation in the incidence of childhood type 1 diabetes in 26 European centres in the 25 year period 1989-2013 : a multicentre prospective registration study" 62 : 408-417, 2019

      5 Tuomi T, "The many faces of diabetes : a disease with increasing heterogeneity" 383 : 1084-1094, 2014

      6 Borchers AT, "The geoepidemiology of type 1diabetes" 9 : A355-65, 2010

      7 Tuomilehto J, "The emerging global epidemic of type 1 diabetes" 13 : 795-804, 2013

      8 Songini M, "The Sardinian way to type 1 diabetes" 4 : 1248-1255, 2010

      9 Wang GZ, "The Aryl hydrocarbon receptor mediates tobacco-induced PD-L1 expression and is associated with response to immunotherapy" 10 : 1125-, 2019

      10 Bowe B, "The 2016 global and national burden of diabetes mellitus attributable to PM2. 5 air pollution" 2 : e301-12, 2018

      1 "WHO multinational project for childhood diabetes. WHO Diamond Project Group" 13 : 1062-1068, 1990

      2 Di Ciaula A, "Type I diabetes in paediatric age in Apulia(Italy) : incidence and associations with outdoor air pollutants" 111 : 36-43, 2016

      3 Robert AA, "Type 1diabetes mellitus in Saudi Arabia : a soaring epidemic" 2018 : 9408370-, 2018

      4 Patterson CC, "Trends and cyclical variation in the incidence of childhood type 1 diabetes in 26 European centres in the 25 year period 1989-2013 : a multicentre prospective registration study" 62 : 408-417, 2019

      5 Tuomi T, "The many faces of diabetes : a disease with increasing heterogeneity" 383 : 1084-1094, 2014

      6 Borchers AT, "The geoepidemiology of type 1diabetes" 9 : A355-65, 2010

      7 Tuomilehto J, "The emerging global epidemic of type 1 diabetes" 13 : 795-804, 2013

      8 Songini M, "The Sardinian way to type 1 diabetes" 4 : 1248-1255, 2010

      9 Wang GZ, "The Aryl hydrocarbon receptor mediates tobacco-induced PD-L1 expression and is associated with response to immunotherapy" 10 : 1125-, 2019

      10 Bowe B, "The 2016 global and national burden of diabetes mellitus attributable to PM2. 5 air pollution" 2 : e301-12, 2018

      11 American Diabetes A, "Standards of medical care in diabetes--2009" 32 (32): S13-S61, 2009

      12 Hathout EH, "Role of exposure to air pollutants in the development of type 1 diabetes before and after 5 yr of age" 3 : 184-188, 2002

      13 Jacob AM, "Prevalence of diabetes mellitus and exposure to suspended particulate matter" 9 : 190608-, 2019

      14 Malmqvist E, "Maternal exposure to air pollution and type 1diabetes--Accounting for genetic factors" 140 : 268-274, 2015

      15 Lao XQ, "Long-term exposure to ambient fine particulate matter(PM2. 5)and incident type 2diabetes : a longitudinal cohort study" 62 : 759-769, 2019

      16 Shaltout AA, "Incidence of type 1 diabetes has doubled in Kuwaiti children 0-14 years over the last 20 years" 18 : 7616-, 2017

      17 LaPorte RE, "Geographic differences in the risk of insulin-dependent diabetes mellitus : the importance of registries" 8 (8): 1017-, 1985

      18 Kawabata Y, "Genome-wide association study confirming a strong effect of HLA and identifying variants in CSAD/lnc-ITGB7-1 on chromosome 12q13. 13 associated with susceptibility to fulminant type 1 diabetes" 68 : 665-675, 2019

      19 Pociot F, "Genetic risk factors for type 1 diabetes" 387 : 2331-2339, 2016

      20 Vallero DA, "Fundamentals of air pollution" Academic Press 2014

      21 Dimakakou E, "Exposure to environmental and occupational particulate air pollution as a potential contributor to neurodegeneration and diabetes : a systematic review of epidemiological research" 15 : 1704-, 2018

      22 Gale E, "Epidemiology of type 1 diabetes" 13 : 21042-, 2012

      23 Skrodeniene E, "Environmental risk factors in prediction of childhood prediabetes" 44 : 56-63, 2008

      24 Butalia S, "Environmental risk factors and type 1 diabetes : past, present, and future" 40 : 586-593, 2016

      25 Khawandanah J, "Double or hybrid diabetes : a systematic review on disease prevalence, characteristics and risk factors" 9 : 33-, 2019

      26 Dedov II, "Diabetes mellitus in children and adolescents according to the Federal diabetes registry in the Russian Federation : dynamics of major epidemiological characteristics for 2013–2016" 20 : 392-402, 2018

      27 Dedov II, "Diabetes mellitus in Russian Federation : prevalence, morbidity, mortality, parameters of glycaemic control and structure of glucose lowering therapy according to the Federal Diabetes Register, status 2017" 21 : 144-159, 2018

      28 Patterson C, "Diabetes in the young-a global view and worldwide estimates of numbers of children with type 1 diabetes" 103 : 16175-, 2014

      29 Lockwood AH, "Diabetes and air pollution" 25 : 1487-1488, 2002

      30 Stamatouli AM, "Collateral damage : insulin-dependent diabetes induced with checkpoint inhibitors" 67 : 1471-1480, 2018

      31 Bodin J, "Can exposure to environmental chemicals increase the risk of diabetes type 1 development?" 2015 : 208947-, 2015

      32 Liu F, "Associations between long-term exposure to ambient air pollution and risk of type 2 diabetes mellitus : a systematic review and meta-analysis" 252 : 1235-1245, 2019

      33 Elten M, "Ambient air pollution and incidence of early-onset paediatric type 1diabetes : a retrospective population-based cohort study" 184 : 109291-, 2020

      34 Beyerlein A, "Ambient air pollution and early manifestation of type 1 diabetes" 26 : e31-2, 2015

      35 Hathout EH, "Air pollution and type 1 diabetes in children" 7 : 81-87, 2006

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      2020-01-15 학술지명변경 한글명 : Korean Journal of Pediatrics -> Clinical and Experimental Pediatrics
      외국어명 : Korean Journal of Pediatrics -> Clinical and Experimental Pediatrics
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      2019-07-16 학회명변경 한글명 : 대한소아과학회 -> 대한소아청소년과학회 KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-30 학술지명변경 한글명 : 소아과 -> Korean Journal of Pediatrics KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.18 0.18 0.16
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.17 0.2 0.369 0.06
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